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Articles 4171 - 4200 of 15687
Full-Text Articles in Entire DC Network
Novel Species Of Triatoma (Hemiptera: Reduviidae) Identified In A Case Of Vectorial Transmission Of Chagas Disease In Northern Belize, Sarah M Gunter, Alisa Nelson, Alexander R Kneubehl, Silvia A Justi, Russell Manzanero, Emily Zielinski-Gutierrez, Claudia Herrera, Julie Thompson, Rajendra Mandage, Hans Desale, Adrianna Maliga, Kim Bautista, Shannon E Ronca, Francis Morey, Rafael Chacon Fuentes, Beatriz Lopez, Eric Dumonteil, Gerhaldine H Morazan, Kristy O Murray
Novel Species Of Triatoma (Hemiptera: Reduviidae) Identified In A Case Of Vectorial Transmission Of Chagas Disease In Northern Belize, Sarah M Gunter, Alisa Nelson, Alexander R Kneubehl, Silvia A Justi, Russell Manzanero, Emily Zielinski-Gutierrez, Claudia Herrera, Julie Thompson, Rajendra Mandage, Hans Desale, Adrianna Maliga, Kim Bautista, Shannon E Ronca, Francis Morey, Rafael Chacon Fuentes, Beatriz Lopez, Eric Dumonteil, Gerhaldine H Morazan, Kristy O Murray
Faculty, Staff and Students Publications
Chagas disease is a leading cause of non-ischemic cardiomyopathy in endemic regions of Central and South America. In Belize, Triatoma dimidiata sensu lato has been identified as the predominate taxon but vectorial transmission of Chagas disease is considered to be rare in the country. We recently identified an acute case of vector-borne Chagas disease in the northern region of Belize. Here we present a subsequent investigation of triatomines collected around the case-patient's home. We identified yet undescribed species, closely related to Triatoma huehuetenanguensis vector by molecular systematics methods occurring in the peridomestic environment. The identification of a T. cruzi-positive, novel …
Kinase Inhibitor Pulldown Assay (Kip) For Clinical Proteomics, Alexander B Saltzman, Doug W Chan, Matthew V Holt, Junkai Wang, Eric J Jaehnig, Meenakshi Anurag, Purba Singh, Anna Malovannaya, Beom-Jun Kim, Matthew J Ellis
Kinase Inhibitor Pulldown Assay (Kip) For Clinical Proteomics, Alexander B Saltzman, Doug W Chan, Matthew V Holt, Junkai Wang, Eric J Jaehnig, Meenakshi Anurag, Purba Singh, Anna Malovannaya, Beom-Jun Kim, Matthew J Ellis
Faculty, Staff and Students Publications
Protein kinases are frequently dysregulated and/or mutated in cancer and represent essential targets for therapy. Accurate quantification is essential. For breast cancer treatment, the identification and quantification of the protein kinase ERBB2 is critical for therapeutic decisions. While immunohistochemistry (IHC) is the current clinical diagnostic approach, it is only semiquantitative. Mass spectrometry-based proteomics offers quantitative assays that, unlike IHC, can be used to accurately evaluate hundreds of kinases simultaneously. The enrichment of less abundant kinase targets for quantification, along with depletion of interfering proteins, improves sensitivity and thus promotes more effective downstream analyses. Multiple kinase inhibitors were therefore deployed as …
Metabolomic Rewiring Promotes Endocrine Therapy Resistance In Breast Cancer, Songyeon Ahn, Jun Hyoung Park, Sandra L Grimm, Danthasinghe Waduge Badrajee Piyarathna, Tagari Samanta, Vasanta Putluri, Dereck Mezquita, Suzanne A W Fuqua, Nagireddy Putluri, Cristian Coarfa, Benny Abraham Kaipparettu
Metabolomic Rewiring Promotes Endocrine Therapy Resistance In Breast Cancer, Songyeon Ahn, Jun Hyoung Park, Sandra L Grimm, Danthasinghe Waduge Badrajee Piyarathna, Tagari Samanta, Vasanta Putluri, Dereck Mezquita, Suzanne A W Fuqua, Nagireddy Putluri, Cristian Coarfa, Benny Abraham Kaipparettu
Faculty, Staff and Students Publications
Approximately one-third of endocrine-treated women with estrogen receptor-alpha positive (ER+) breast cancers (BC) are at risk of recurrence due to intrinsic or acquired resistance. Thus, it is vital to understand the mechanisms underlying endocrine therapy resistance in ER+ BC to improve patient treatment. Mitochondrial fatty acid β-oxidation (FAO) has been shown to be a major metabolic pathway in triple-negative BC (TNBC) that can activate Src signaling. Here, we found metabolic reprogramming that increases FAO in ER+ BC as a mechanism of resistance to endocrine therapy. A metabolically relevant, integrated gene signature was derived from transcriptomic, metabolomic, and lipidomic analyses in …
Ephrinb2 Knockdown In Cervical Spinal Cord Preserves Diaphragm Innervation In A Mutant Sod1 Mouse Model Of Als, Mark W. Urban, Brittany A. Charsar, Nicolette M. Heinsinger, Shashirekha S. Markandaiah, Lindsay Sprimont, Wei Zhou, Eric V. Brown, Nathan T. Henderson, Samantha J. Thomas, Biswarup Ghosh, Rachel E. Cain, Davide Trotti, Piera Pasinelli, Megan C. Wright, Matthew B. Dalva, Angelo C. Lepore
Ephrinb2 Knockdown In Cervical Spinal Cord Preserves Diaphragm Innervation In A Mutant Sod1 Mouse Model Of Als, Mark W. Urban, Brittany A. Charsar, Nicolette M. Heinsinger, Shashirekha S. Markandaiah, Lindsay Sprimont, Wei Zhou, Eric V. Brown, Nathan T. Henderson, Samantha J. Thomas, Biswarup Ghosh, Rachel E. Cain, Davide Trotti, Piera Pasinelli, Megan C. Wright, Matthew B. Dalva, Angelo C. Lepore
Farber Institute for Neuroscience Staff Papers and Presentations
Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease characterized by motor neuron loss. Importantly, non-neuronal cell types such as astrocytes also play significant roles in disease pathogenesis. However, mechanisms of astrocyte contribution to ALS remain incompletely understood. Astrocyte involvement suggests that transcellular signaling may play a role in disease. We examined contribution of transmembrane signaling molecule ephrinB2 to ALS pathogenesis, in particular its role in driving motor neuron damage by spinal cord astrocytes. In symptomatic SOD1G93A mice (a well-established ALS model), ephrinB2 expression was dramatically increased in ventral horn astrocytes. Reducing ephrinB2 in the cervical spinal cord ventral horn via …
Armc5 Controls The Degradation Of Most Pol Ii Subunits, And Armc5 Mutation Increases Neural Tube Defect Risks In Mice And Humans, Hongyu Luo, Linjiang Lao, Kit Sing Au, Hope Northrup, Xiao He, Diane Forget, Marie-Soleil Gauthier, Benoit Coulombe, Isabelle Bourdeau, Wei Shi, Lucia Gagliardi, Maria Candida Barisson Villares Fragoso, Junzheng Peng, Jiangping Wu
Armc5 Controls The Degradation Of Most Pol Ii Subunits, And Armc5 Mutation Increases Neural Tube Defect Risks In Mice And Humans, Hongyu Luo, Linjiang Lao, Kit Sing Au, Hope Northrup, Xiao He, Diane Forget, Marie-Soleil Gauthier, Benoit Coulombe, Isabelle Bourdeau, Wei Shi, Lucia Gagliardi, Maria Candida Barisson Villares Fragoso, Junzheng Peng, Jiangping Wu
Faculty, Staff and Student Publications
BACKGROUND: Neural tube defects (NTDs) are caused by genetic and environmental factors. ARMC5 is part of a novel ubiquitin ligase specific for POLR2A, the largest subunit of RNA polymerase II (Pol II).
RESULTS: We find that ARMC5 knockout mice have increased incidence of NTDs, such as spina bifida and exencephaly. Surprisingly, the absence of ARMC5 causes the accumulation of not only POLR2A but also most of the other 11 Pol II subunits, indicating that the degradation of the whole Pol II complex is compromised. The enlarged Pol II pool does not lead to generalized Pol II stalling or a generalized …
Increased Iron Uptake By Splenic Hematopoietic Stem Cells Promotes Tet2-Dependent Erythroid Regeneration, Yu-Jung Tseng, Yuki Kageyama, Rebecca L Murdaugh, Ayumi Kitano, Jong Hwan Kim, Kevin A Hoegenauer, Jonathan Tiessen, Mackenzie H Smith, Hidetaka Uryu, Koichi Takahashi, James F Martin, Md Abul Hassan Samee, Daisuke Nakada
Increased Iron Uptake By Splenic Hematopoietic Stem Cells Promotes Tet2-Dependent Erythroid Regeneration, Yu-Jung Tseng, Yuki Kageyama, Rebecca L Murdaugh, Ayumi Kitano, Jong Hwan Kim, Kevin A Hoegenauer, Jonathan Tiessen, Mackenzie H Smith, Hidetaka Uryu, Koichi Takahashi, James F Martin, Md Abul Hassan Samee, Daisuke Nakada
Faculty, Staff and Student Publications
Hematopoietic stem cells (HSCs) are capable of regenerating the blood system, but the instructive cues that direct HSCs to regenerate particular lineages lost to the injury remain elusive. Here, we show that iron is increasingly taken up by HSCs during anemia and induces erythroid gene expression and regeneration in a Tet2-dependent manner. Lineage tracing of HSCs reveals that HSCs respond to hemolytic anemia by increasing erythroid output. The number of HSCs in the spleen, but not bone marrow, increases upon anemia and these HSCs exhibit enhanced proliferation, erythroid differentiation, iron uptake, and TET2 protein expression. Increased iron in HSCs promotes …
Large Scale Plasma Proteomics Identifies Novel Proteins And Protein Networks Associated With Heart Failure Development, Amil M Shah, Peder L Myhre, Victoria Arthur, Pranav Dorbala, Humaira Rasheed, Leo F Buckley, Brian Claggett, Guning Liu, Jianzhong Ma, Ngoc Quynh Nguyen, Kunihiro Matsushita, Chiadi Ndumele, Adrienne Tin, Kristian Hveem, Christian Jonasson, Håvard Dalen, Eric Boerwinkle, Ron C Hoogeveen, Christie Ballantyne, Josef Coresh, Torbjørn Omland, Bing Yu
Large Scale Plasma Proteomics Identifies Novel Proteins And Protein Networks Associated With Heart Failure Development, Amil M Shah, Peder L Myhre, Victoria Arthur, Pranav Dorbala, Humaira Rasheed, Leo F Buckley, Brian Claggett, Guning Liu, Jianzhong Ma, Ngoc Quynh Nguyen, Kunihiro Matsushita, Chiadi Ndumele, Adrienne Tin, Kristian Hveem, Christian Jonasson, Håvard Dalen, Eric Boerwinkle, Ron C Hoogeveen, Christie Ballantyne, Josef Coresh, Torbjørn Omland, Bing Yu
Faculty, Staff and Student Publications
Heart failure (HF) causes substantial morbidity and mortality but its pathobiology is incompletely understood. The proteome is a promising intermediate phenotype for discovery of novel mechanisms. We measured 4877 plasma proteins in 13,900 HF-free individuals across three analysis sets with diverse age, geography, and HF ascertainment to identify circulating proteins and protein networks associated with HF development. Parallel analyses in Atherosclerosis Risk in Communities study participants in mid-life and late-life and in Trøndelag Health Study participants identified 37 proteins consistently associated with incident HF independent of traditional risk factors. Mendelian randomization supported causal effects of 10 on HF, HF risk …
Akt Enhances The Vulnerability Of Cancer Cells To Vcp/P97 Inhibition-Mediated Paraptosis, Dong Min Lee, In Young Kim, Hong Jae Lee, Min Ji Seo, Mi-Young Cho, Hae In Lee, Gyesoon Yoon, Jae-Hoon Ji, Seok Soon Park, Seong-Yun Jeong, Eun Kyung Choi, Yong Hyeon Choi, Chae-Ok Yun, Mirae Yeo, Eunhee Kim, Kyeong Sook Choi
Akt Enhances The Vulnerability Of Cancer Cells To Vcp/P97 Inhibition-Mediated Paraptosis, Dong Min Lee, In Young Kim, Hong Jae Lee, Min Ji Seo, Mi-Young Cho, Hae In Lee, Gyesoon Yoon, Jae-Hoon Ji, Seok Soon Park, Seong-Yun Jeong, Eun Kyung Choi, Yong Hyeon Choi, Chae-Ok Yun, Mirae Yeo, Eunhee Kim, Kyeong Sook Choi
Faculty, Staff and Student Publications
Valosin-containing protein (VCP)/p97, an AAA+ ATPase critical for maintaining proteostasis, emerges as a promising target for cancer therapy. This study reveals that targeting VCP selectively eliminates breast cancer cells while sparing non-transformed cells by inducing paraptosis, a non-apoptotic cell death mechanism characterized by endoplasmic reticulum and mitochondria dilation. Intriguingly, oncogenic HRas sensitizes non-transformed cells to VCP inhibition-mediated paraptosis. The susceptibility of cancer cells to VCP inhibition is attributed to the non-attenuation and recovery of protein synthesis under proteotoxic stress. Mechanistically, mTORC2/Akt activation and eIF3d-dependent translation contribute to translational rebound and amplification of proteotoxic stress. Furthermore, the ATF4/DDIT4 axis augments VCP …
Comparative Transcriptomic Analysis Of Cerebellar Astrocytes Across Developmental Stages And Brain Regions, Wookbong Kwon, Dong-Joo Choi, Kwanha Yu, Michael R Williamson, Sanjana Murali, Yeunjung Ko, Junsung Woo, Benjamin Deneen
Comparative Transcriptomic Analysis Of Cerebellar Astrocytes Across Developmental Stages And Brain Regions, Wookbong Kwon, Dong-Joo Choi, Kwanha Yu, Michael R Williamson, Sanjana Murali, Yeunjung Ko, Junsung Woo, Benjamin Deneen
Faculty, Staff and Students Publications
Astrocytes are the most abundant glial cell type in the central nervous system, and they play a crucial role in normal brain function. While gliogenesis and glial differentiation occur during perinatal cerebellar development, the processes that occur during early postnatal development remain obscure. In this study, we conducted transcriptomic profiling of postnatal cerebellar astrocytes at postnatal days 1, 7, 14, and 28 (P1, P7, P14, and P28), identifying temporal-specific gene signatures at each specific time point. Comparing these profiles with region-specific astrocyte differentially expressed genes (DEGs) published for the cortex, hippocampus, and olfactory bulb revealed cerebellar-specific gene signature across these …
Development Of A Novel Covalently Bonded Conjugate Of Caprylic Acid Tripeptide (Isoleucine–Leucine–Aspartic Acid) For Wound-Compatible And Injectable Hydrogel To Accelerate Healing, Sachin B. Baravkar, Yan Lu, Abdul Razak Masoud, Qi Zhao, Jibao He, Song Hong
Development Of A Novel Covalently Bonded Conjugate Of Caprylic Acid Tripeptide (Isoleucine–Leucine–Aspartic Acid) For Wound-Compatible And Injectable Hydrogel To Accelerate Healing, Sachin B. Baravkar, Yan Lu, Abdul Razak Masoud, Qi Zhao, Jibao He, Song Hong
School of Medicine Faculty Publications
Third-degree burn injuries pose a significant health threat. Safer, easier-to-use, and more effective techniques are urgently needed for their treatment. We hypothesized that covalently bonded conjugates of fatty acids and tripeptides can form wound-compatible hydrogels that can accelerate healing. We first designed conjugated structures as fatty acid–aminoacid1–amonoacid2–aspartate amphiphiles (Cn acid–AA1–AA2–D), which were potentially capable of self-assembling into hydrogels according to the structure and properties of each moiety. We then generated 14 novel conjugates based on this design by using two Fmoc/tBu solid-phase peptide synthesis techniques; we verified their structures and purities through liquid chromatography with tandem mass spectrometry and nuclear …
Reactivation Of The G1 Enhancer Landscape Underlies Core Circuitry Addiction To Swi/Snf, Katerina Cermakova, Ling Tao, Milan Dejmek, Michal Sala, Matthew D Montierth, Yuen San Chan, Ivanshi Patel, Courtney Chambers, Mario Loeza Cabrera, Dane Hoffman, Ronald J Parchem, Wenyi Wang, Radim Nencka, Eveline Barbieri, H Courtney Hodges
Reactivation Of The G1 Enhancer Landscape Underlies Core Circuitry Addiction To Swi/Snf, Katerina Cermakova, Ling Tao, Milan Dejmek, Michal Sala, Matthew D Montierth, Yuen San Chan, Ivanshi Patel, Courtney Chambers, Mario Loeza Cabrera, Dane Hoffman, Ronald J Parchem, Wenyi Wang, Radim Nencka, Eveline Barbieri, H Courtney Hodges
Faculty, Staff and Student Publications
Several cancer core regulatory circuitries (CRCs) depend on the sustained generation of DNA accessibility by SWI/SNF chromatin remodelers. However, the window when SWI/SNF is acutely essential in these settings has not been identified. Here we used neuroblastoma (NB) cells to model and dissect the relationship between cell-cycle progression and SWI/SNF ATPase activity. We find that SWI/SNF inactivation impairs coordinated occupancy of non-pioneer CRC members at enhancers within 1 hour, rapidly breaking their autoregulation. By precisely timing inhibitor treatment following synchronization, we show that SWI/SNF is dispensable for survival in S and G2/M, but becomes acutely essential only during G1 phase. …
Chemical Catalysis Guides Structural Identification For The Major In Vivo Metabolite Of The Bet Inhibitor Jq1, Secondra Holmes, Prashi Jain, Kenneth Guzman Rodriguez, Jade Williams, Zhifeng Yu, Christian Cerda-Smith, Errol L G Samuel, James Campbell, John Michael Hakenjos, Diana Monsivais, Feng Li, Srinivas Chamakuri, Martin M Matzuk, Conrad Santini, Kevin R Mackenzie, Damian W Young
Chemical Catalysis Guides Structural Identification For The Major In Vivo Metabolite Of The Bet Inhibitor Jq1, Secondra Holmes, Prashi Jain, Kenneth Guzman Rodriguez, Jade Williams, Zhifeng Yu, Christian Cerda-Smith, Errol L G Samuel, James Campbell, John Michael Hakenjos, Diana Monsivais, Feng Li, Srinivas Chamakuri, Martin M Matzuk, Conrad Santini, Kevin R Mackenzie, Damian W Young
Faculty, Staff and Students Publications
The bromodomain inhibitor (+)-JQ1 is a highly validated chemical probe; however, it exhibits poor in vivo pharmacokinetics. To guide efforts toward improving its pharmacological properties, we identified the (+)-JQ1 primary metabolite using chemical catalysis methods. Treatment of (+)-JQ1 with tetrabutylammonium decatungstate under photochemical conditions resulted in selective formation of an aldehyde at the 2-position of the thiophene ring [(+)-JQ1-CHO], which was further reduced to the 2-hydroxymethyl analog [(+)-JQ1-OH]. Comparative LC/MS analysis of (+)-JQ1-OH to the product obtained from liver microsomes suggested (+)-JQ1-OH as the major metabolite of (+)-JQ1. The 2-thienyl position was then substituted to generate a trideuterated (−CD3, (+)-JQ1-D) …
Antibiotic-Induced Gut Dysbiosis Elicits Gut-Brain Axis Relevant Multi-Omic Signatures And Behavioral And Neuroendocrine Changes In A Nonhuman Primate Model, Shivdeep S. Hayer, Mackenzie Conrin, Jeffrey French, Andrew K. Benson, Sophie Alvarez, Kathryn Dempsey, Anne Fischer, Zahraa Wajih Alsafwani, William Gasper, Mallory J. Suhr Van Haute, Haley R. Hassenstab, Shayda Azadmanesh, Missy Briardy, Skyler Gerbers, Aliyah Jabenis, Jennifer L. Thompson, Jonathan B. Clayton
Antibiotic-Induced Gut Dysbiosis Elicits Gut-Brain Axis Relevant Multi-Omic Signatures And Behavioral And Neuroendocrine Changes In A Nonhuman Primate Model, Shivdeep S. Hayer, Mackenzie Conrin, Jeffrey French, Andrew K. Benson, Sophie Alvarez, Kathryn Dempsey, Anne Fischer, Zahraa Wajih Alsafwani, William Gasper, Mallory J. Suhr Van Haute, Haley R. Hassenstab, Shayda Azadmanesh, Missy Briardy, Skyler Gerbers, Aliyah Jabenis, Jennifer L. Thompson, Jonathan B. Clayton
Food for Health: Publications
Emerging evidence indicates that antibiotic-induced dysbiosis can play an etiological role in the pathogenesis of neuropsychiatric disorders. However, most of this evidence comes from rodent models. The objective of this study was to evaluate if antibiotic-induced gut dysbiosis can elicit changes in gut metabolites and behavior indicative of gut-brain axis disruption in common marmosets (Callithrix jacchus) – a nonhuman primate model often used to study sociability and stress. We were able to successfully induce dysbiosis in marmosets using a custom antibiotic cocktail (vancomycin, enrofloxacin and neomycin) administered orally for 28 days. This gut dysbiosis altered gut metabolite profiles, …
The Effects Of Physical Activity On Experimental Models Of Vascular Dementia; A Systematic Review And Meta-Analysis, Ifechukwude J. Biose, Wesley H. Chastain, Rebecca J. Solch-Ottaiano, Viktoriya S. Grayson, Hanyun Wang, Somdeb Banerjee, Gregory J. Bix
The Effects Of Physical Activity On Experimental Models Of Vascular Dementia; A Systematic Review And Meta-Analysis, Ifechukwude J. Biose, Wesley H. Chastain, Rebecca J. Solch-Ottaiano, Viktoriya S. Grayson, Hanyun Wang, Somdeb Banerjee, Gregory J. Bix
School of Medicine Faculty Publications
Background; Physical activity is associated with improved brain health and cognition in humans. However, the validity, range, and quality of evidence for the beneficial outcomes linked to exercise in experimental models of vascular dementia (VaD) have not been evaluated. We performed a systematic review and meta-analysis of studies that assessed the effect of exercise intervention on models of VaD to provide an unbiased and comprehensive determination of the cognitive function and brain morphology benefits of exercise. Summary; A systematic search in three databases as well as study design characteristics and experimental data extraction were completed in December 2021. We investigated …
Precision Microbial Intervention Improves Social Behavior But Not Autism Severity: A Pilot Double-Blind Randomized Placebo-Controlled Trial, Luigi Mazzone, Sean W Dooling, Elisabetta Volpe, Mirko Uljarević, Jillian L Waters, Andrea Sabatini, Lucrezia Arturi, Roberta Abate, Assia Riccioni, Martina Siracusano, Marcela Pereira, Lars Engstrand, Fernanda Cristofori, Domenico Adduce, Ruggiero Francavilla, Mauro Costa-Mattioli, Antonio Y Hardan
Precision Microbial Intervention Improves Social Behavior But Not Autism Severity: A Pilot Double-Blind Randomized Placebo-Controlled Trial, Luigi Mazzone, Sean W Dooling, Elisabetta Volpe, Mirko Uljarević, Jillian L Waters, Andrea Sabatini, Lucrezia Arturi, Roberta Abate, Assia Riccioni, Martina Siracusano, Marcela Pereira, Lars Engstrand, Fernanda Cristofori, Domenico Adduce, Ruggiero Francavilla, Mauro Costa-Mattioli, Antonio Y Hardan
Faculty, Staff and Students Publications
Autism spectrum disorder (ASD) is characterized by the presence of restricted/repetitive behaviors and social communication deficits. Because effective treatments for ASD remain elusive, novel therapeutic strategies are necessary. Preclinical studies show that L. reuteri selectively reversed social deficits in several models for ASD. Here, in a double-blind, randomized, placebo-controlled trial, we tested the effect of L. reuteri (a product containing a combination of strains ATCC-PTA-6475 and DSM-17938) in children with ASD. The treatment does not alter overall autism severity, restricted/repetitive behaviors, the microbiome composition, or the immune profile. However, L. reuteri combination yields significant improvements in social functioning that generalized …
Common Heart Failure With Preserved Ejection Fraction Animal Models Yield Disparate Myofibril Mechanics, Axel J. Fenwick, Vivek P. Jani, D. Brian Foster, Thomas E. Sharp, Traci T. Goodchild, Kyle Lapenna, Jake E. Doiron, David J. Lefer, Joseph A. Hill, David A. Kass, Anthony Cammarato
Common Heart Failure With Preserved Ejection Fraction Animal Models Yield Disparate Myofibril Mechanics, Axel J. Fenwick, Vivek P. Jani, D. Brian Foster, Thomas E. Sharp, Traci T. Goodchild, Kyle Lapenna, Jake E. Doiron, David J. Lefer, Joseph A. Hill, David A. Kass, Anthony Cammarato
School of Medicine Faculty Publications
No abstract provided.
Cell Membrane-Anchored And Tumor-Targeted Il-12 T-Cell Therapy Destroys Cancer-Associated Fibroblasts And Disrupts Extracellular Matrix In Heterogenous Osteosarcoma Xenograft Models, Jiemiao Hu, Alexander J Lazar, Davis Ingram, Wei-Lien Wang, Wendong Zhang, Zhiliang Jia, Dristhi Ragoonanan, Jian Wang, Xueqing Xia, Kris Mahadeo, Richard Gorlick, Shulin Li
Cell Membrane-Anchored And Tumor-Targeted Il-12 T-Cell Therapy Destroys Cancer-Associated Fibroblasts And Disrupts Extracellular Matrix In Heterogenous Osteosarcoma Xenograft Models, Jiemiao Hu, Alexander J Lazar, Davis Ingram, Wei-Lien Wang, Wendong Zhang, Zhiliang Jia, Dristhi Ragoonanan, Jian Wang, Xueqing Xia, Kris Mahadeo, Richard Gorlick, Shulin Li
Faculty, Staff and Student Publications
Background: The extracellular matrix (ECM) and cancer-associated fibroblasts (CAFs) play major roles in tumor progression, metastasis, and the poor response of many solid tumors to immunotherapy. CAF-targeted chimeric antigen receptor-T cell therapy cannot infiltrate ECM-rich tumors such as osteosarcoma.
Method: In this study, we used RNA sequencing to assess whether the recently invented membrane-anchored and tumor-targeted IL-12-armed (attIL12) T cells, which bind cell-surface vimentin (CSV) on tumor cells, could destroy CAFs to disrupt the ECM. We established an in vitro model of the interaction between osteosarcoma CAFs and attIL12-T cells to uncover the underlying mechanism by which attIL12-T cells penetrate …
Effects Of Kras Genetic Interactions On Outcomes In Cancers Of The Lung, Pancreas, And Colorectum, Isabella N Grabski, John V Heymach, Kenneth L Kehl, Scott Kopetz, Ken S Lau, Gregory J Riely, Deborah Schrag, Rona Yaeger, Rafael A Irizarry, Kevin M Haigis
Effects Of Kras Genetic Interactions On Outcomes In Cancers Of The Lung, Pancreas, And Colorectum, Isabella N Grabski, John V Heymach, Kenneth L Kehl, Scott Kopetz, Ken S Lau, Gregory J Riely, Deborah Schrag, Rona Yaeger, Rafael A Irizarry, Kevin M Haigis
Faculty, Staff and Student Publications
Background: KRAS is among the most commonly mutated oncogenes in cancer, and previous studies have shown associations with survival in many cancer contexts. Evidence from both clinical observations and mouse experiments further suggests that these associations are allele- and tissue-specific. These findings motivate using clinical data to understand gene interactions and clinical covariates within different alleles and tissues.
Methods: We analyze genomic and clinical data from the AACR Project GENIE Biopharma Collaborative for samples from lung, colorectal, and pancreatic cancers. For each of these cancer types, we report epidemiological associations for different KRAS alleles, apply principal component analysis (PCA) to …
Hypoxia-Activated Prodrug And Antiangiogenic Therapies Cooperatively Treat Pancreatic Cancer But Elicit Immunosuppressive G-Mdsc Infiltration, Arthur Liu, Seth T Gammon, Federica Pisaneschi, Akash Boda, Casey R Ager, David Piwnica-Worms, David S Hong, Michael A Curran
Hypoxia-Activated Prodrug And Antiangiogenic Therapies Cooperatively Treat Pancreatic Cancer But Elicit Immunosuppressive G-Mdsc Infiltration, Arthur Liu, Seth T Gammon, Federica Pisaneschi, Akash Boda, Casey R Ager, David Piwnica-Worms, David S Hong, Michael A Curran
Faculty, Staff and Student Publications
We previously showed that ablation of tumor hypoxia can sensitize tumors to immune checkpoint blockade (ICB). Here, we used a Kras+/G12D TP53+/R172H Pdx1-Cre-derived (KPC-derived) model of pancreatic adenocarcinoma to examine the tumor response and adaptive resistance mechanisms involved in response to 2 established methods of hypoxia-reducing therapy: the hypoxia-activated prodrug TH-302 and vascular endothelial growth factor receptor 2 (VEGFR-2) blockade. The combination of both modalities normalized tumor vasculature, increased DNA damage and cell death, and delayed tumor growth. In contrast with prior cancer models, the combination did not alleviate overall tissue hypoxia or sensitize these KPC tumors to ICB therapy …
The Immune System And Metabolic Products In Epilepsy And Glioma-Associated Epilepsy: Emerging Therapeutic Directions, Shashwat Tripathi, Cody L Nathan, Matthew C Tate, Craig M Horbinski, Jessica W Templer, Joshua M Rosenow, Timothy L Sita, Charles D James, Benjamin Deneen, Stephen D Miller, Amy B Heimberger
The Immune System And Metabolic Products In Epilepsy And Glioma-Associated Epilepsy: Emerging Therapeutic Directions, Shashwat Tripathi, Cody L Nathan, Matthew C Tate, Craig M Horbinski, Jessica W Templer, Joshua M Rosenow, Timothy L Sita, Charles D James, Benjamin Deneen, Stephen D Miller, Amy B Heimberger
Faculty, Staff and Students Publications
Epilepsy has a profound impact on quality of life. Despite the development of new antiseizure medications (ASMs), approximately one-third of affected patients have drug-refractory epilepsy and are nonresponsive to medical treatment. Nearly all currently approved ASMs target neuronal activity through ion channel modulation. Recent human and animal model studies have implicated new immunotherapeutic and metabolomic approaches that may benefit patients with epilepsy. In this Review, we detail the proinflammatory immune landscape of epilepsy and contrast this with the immunosuppressive microenvironment in patients with glioma-related epilepsy. In the tumor setting, excessive neuronal activity facilitates immunosuppression, thereby contributing to subsequent glioma progression. …
Tfeb Drives Mtorc1 Hyperactivation And Kidney Disease In Tuberous Sclerosis Complex, Nicola Alesi, Damir Khabibullin, Dean M Rosenthal, Elie W Akl, Pieter M Cory, Michel Alchoueiry, Samer Salem, Melissa Daou, William F Gibbons, Jennifer A Chen, Long Zhang, Harilaos Filippakis, Laura Graciotti, Caterina Miceli, Jlenia Monfregola, Claudia Vilardo, Manrico Morroni, Chiara Di Malta, Gennaro Napolitano, Andrea Ballabio, Elizabeth P Henske
Tfeb Drives Mtorc1 Hyperactivation And Kidney Disease In Tuberous Sclerosis Complex, Nicola Alesi, Damir Khabibullin, Dean M Rosenthal, Elie W Akl, Pieter M Cory, Michel Alchoueiry, Samer Salem, Melissa Daou, William F Gibbons, Jennifer A Chen, Long Zhang, Harilaos Filippakis, Laura Graciotti, Caterina Miceli, Jlenia Monfregola, Claudia Vilardo, Manrico Morroni, Chiara Di Malta, Gennaro Napolitano, Andrea Ballabio, Elizabeth P Henske
Duncan NRI Faculty and Staff Publications
Tuberous Sclerosis Complex (TSC) is caused by TSC1 or TSC2 mutations, leading to hyperactivation of mechanistic target of rapamycin complex 1 (mTORC1) and lesions in multiple organs including lung (lymphangioleiomyomatosis) and kidney (angiomyolipoma and renal cell carcinoma). Previously, we found that TFEB is constitutively active in TSC. Here, we generated two mouse models of TSC in which kidney pathology is the primary phenotype. Knockout of TFEB rescues kidney pathology and overall survival, indicating that TFEB is the primary driver of renal disease in TSC. Importantly, increased mTORC1 activity in the TSC2 knockout kidneys is normalized by TFEB knockout. In TSC2-deficient …
N-Acetylaspartate From Fat Cells Regulates Postprandial Body Temperature, Jessica B Felix, Pradip K Saha, Evelyn De Groot, Lin Tan, Robert Sharp, Elizabeth S Anaya, Yafang Li, Holly Quang, Nooshin Saidi, Layla Abushamat, Christie M Ballantyne, Christopher I Amos, Philip L Lorenzi, Samuel Klein, Xia Gao, Sean M Hartig
N-Acetylaspartate From Fat Cells Regulates Postprandial Body Temperature, Jessica B Felix, Pradip K Saha, Evelyn De Groot, Lin Tan, Robert Sharp, Elizabeth S Anaya, Yafang Li, Holly Quang, Nooshin Saidi, Layla Abushamat, Christie M Ballantyne, Christopher I Amos, Philip L Lorenzi, Samuel Klein, Xia Gao, Sean M Hartig
Faculty, Staff and Students Publications
N-acetylaspartate (NAA), the brain’s second most abundant metabolite, provides essential substrates for myelination through its hydrolysis. However, activities and physiological roles of NAA in other tissues remain unknown. Here, we show aspartoacylase (ASPA) expression in white adipose tissue (WAT) governs systemic NAA levels for postprandial body temperature regulation. Proteomics and mass spectrometry revealed NAA accumulation in WAT of Aspa knockout mice stimulated the pentose phosphate pathway and pyrimidine production. Stable isotope tracing confirmed higher incorporation of glucose-derived carbon into pyrimidine metabolites in Aspa knockout cells. Additionally, serum NAA positively correlates with the pyrimidine intermediate orotidine and this relationship predicted lower …
Increased Cysteinyl-Trna Synthetase Drives Neuroinflammation In Alzheimer’S Disease, Xiu-Hong Qi, Peng Chen, Yue-Ju Wang, Zhe-Ping Zhou, Xue-Chun Liu, Hui Fang, Chen-Wei Wang, Ji Liu, Rong-Yu Liu, Han-Kui Liu, Zhen-Xin Zhang, Jiang-Ning Zhou
Increased Cysteinyl-Trna Synthetase Drives Neuroinflammation In Alzheimer’S Disease, Xiu-Hong Qi, Peng Chen, Yue-Ju Wang, Zhe-Ping Zhou, Xue-Chun Liu, Hui Fang, Chen-Wei Wang, Ji Liu, Rong-Yu Liu, Han-Kui Liu, Zhen-Xin Zhang, Jiang-Ning Zhou
Faculty, Staff and Student Publications
Background
Microglia-mediated neuroinflammation in Alzheimer’s disease (AD) is not only a response to pathophysiological events, but also plays a causative role in neurodegeneration. Cytoplasmic cysteinyl-tRNA synthetase (CARS) is considered to be a stimulant for immune responses to diseases; however, it remains unknown whether CARS is involved in the pathogenesis of AD.
Methods
Postmortem human temporal cortical tissues at different Braak stages and AD patient-derived serum samples were used to investigate the changes of CARS levels in AD by immunocytochemical staining, real-time PCR, western blotting and ELISA. After that, C57BL/6J and APP/PS1 transgenic mice and BV-2 cell line were used to …
Variants In The Wdr44 Wd40-Repeat Domain Cause A Spectrum Of Ciliopathy By Impairing Ciliogenesis Initiation, Andrea Accogli, Saurabh Shakya, Taewoo Yang, Christine Insinna, Soo Yeon Kim, David Bell, Kirill R Butov, Mariasavina Severino, Marcello Niceta, Marcello Scala, Hyun Sik Lee, Taekyeong Yoo, Jimmy Stauffer, Huijie Zhao, Chiara Fiorillo, Marina Pedemonte, Maria C Diana, Simona Baldassari, Viktoria Zakharova, Anna Shcherbina, Yulia Rodina, Christina Fagerberg, Laura Sønderberg Roos, Jolanta Wierzba, Artur Dobosz, Amanda Gerard, Lorraine Potocki, Jill A Rosenfeld, Seema R Lalani, Tiana M Scott, Daryl Scott, Mahshid S Azamian, Raymond Louie, Hannah W Moore, Neena L Champaigne, Grace Hollingsworth, Annalaura Torella, Vincenzo Nigro, Rafal Ploski, Vincenzo Salpietro, Federico Zara, Simone Pizzi, Giovanni Chillemi, Marzia Ognibene, Erin Cooney, Jenny Do, Anders Linnemann, Martin J Larsen, Suzanne Specht, Kylie J Walters, Hee-Jung Choi, Murim Choi, Marco Tartaglia, Phillippe Youkharibache, Jong-Hee Chae, Valeria Capra, Sung-Gyoo Park, Christopher J Westlake
Variants In The Wdr44 Wd40-Repeat Domain Cause A Spectrum Of Ciliopathy By Impairing Ciliogenesis Initiation, Andrea Accogli, Saurabh Shakya, Taewoo Yang, Christine Insinna, Soo Yeon Kim, David Bell, Kirill R Butov, Mariasavina Severino, Marcello Niceta, Marcello Scala, Hyun Sik Lee, Taekyeong Yoo, Jimmy Stauffer, Huijie Zhao, Chiara Fiorillo, Marina Pedemonte, Maria C Diana, Simona Baldassari, Viktoria Zakharova, Anna Shcherbina, Yulia Rodina, Christina Fagerberg, Laura Sønderberg Roos, Jolanta Wierzba, Artur Dobosz, Amanda Gerard, Lorraine Potocki, Jill A Rosenfeld, Seema R Lalani, Tiana M Scott, Daryl Scott, Mahshid S Azamian, Raymond Louie, Hannah W Moore, Neena L Champaigne, Grace Hollingsworth, Annalaura Torella, Vincenzo Nigro, Rafal Ploski, Vincenzo Salpietro, Federico Zara, Simone Pizzi, Giovanni Chillemi, Marzia Ognibene, Erin Cooney, Jenny Do, Anders Linnemann, Martin J Larsen, Suzanne Specht, Kylie J Walters, Hee-Jung Choi, Murim Choi, Marco Tartaglia, Phillippe Youkharibache, Jong-Hee Chae, Valeria Capra, Sung-Gyoo Park, Christopher J Westlake
Faculty, Staff and Students Publications
WDR44 prevents ciliogenesis initiation by regulating RAB11-dependent vesicle trafficking. Here, we describe male patients with missense and nonsense variants within the WD40 repeats (WDR) of WDR44, an X-linked gene product, who display ciliopathy-related developmental phenotypes that we can model in zebrafish. The patient phenotypic spectrum includes developmental delay/intellectual disability, hypotonia, distinct craniofacial features and variable presence of brain, renal, cardiac and musculoskeletal abnormalities. We demonstrate that WDR44 variants associated with more severe disease impair ciliogenesis initiation and ciliary signaling. Because WDR44 negatively regulates ciliogenesis, it was surprising that pathogenic missense variants showed reduced abundance, which we link to misfolding of …
Amphiregulin Exerts Proangiogenic Effects In Developing Murine Lungs, Shyam Thapa, Nithyapriya Shankar, Amrit Kumar Shrestha, Monish Civunigunta, Amos S Gaikwad, Binoy Shivanna
Amphiregulin Exerts Proangiogenic Effects In Developing Murine Lungs, Shyam Thapa, Nithyapriya Shankar, Amrit Kumar Shrestha, Monish Civunigunta, Amos S Gaikwad, Binoy Shivanna
Faculty, Staff and Students Publications
Interrupted lung angiogenesis is a hallmark of bronchopulmonary dysplasia (BPD); however, druggable targets that can rescue this phenotype remain elusive. Thus, our investigation focused on amphiregulin (Areg), a growth factor that mediates cellular proliferation, differentiation, migration, survival, and repair. While Areg promotes lung branching morphogenesis, its effect on endothelial cell (EC) homeostasis in developing lungs is understudied. Therefore, we hypothesized that Areg promotes the proangiogenic ability of the ECs in developing murine lungs exposed to hyperoxia. Lung tissues were harvested from neonatal mice exposed to normoxia or hyperoxia to determine Areg expression. Next, we performed genetic loss-of-function and pharmacological gain-of-function …
Gut Epithelial Interleukin-17 Receptor A Signaling Can Modulate Distant Tumors Growth Through Microbial Regulation, Vidhi Chandra, Le Li, Olivereen Le Roux, Yu Zhang, Rian M Howell, Dhwani N Rupani, Seyda Baydogan, Haiyan D Miller, Erick Riquelme, Joseph Petrosino, Michael P Kim, Krishna P L Bhat, James R White, Jay K Kolls, Yuliya Pylayeva-Gupta, Florencia Mcallister
Gut Epithelial Interleukin-17 Receptor A Signaling Can Modulate Distant Tumors Growth Through Microbial Regulation, Vidhi Chandra, Le Li, Olivereen Le Roux, Yu Zhang, Rian M Howell, Dhwani N Rupani, Seyda Baydogan, Haiyan D Miller, Erick Riquelme, Joseph Petrosino, Michael P Kim, Krishna P L Bhat, James R White, Jay K Kolls, Yuliya Pylayeva-Gupta, Florencia Mcallister
Faculty, Staff and Student Publications
Microbes influence cancer initiation, progression and therapy responsiveness. IL-17 signaling contributes to gut barrier immunity by regulating microbes but also drives tumor growth. A knowledge gap remains regarding the influence of enteric IL-17-IL-17RA signaling and their microbial regulation on the behavior of distant tumors. We demonstrate that gut dysbiosis induced by systemic or gut epithelial deletion of IL-17RA induces growth of pancreatic and brain tumors due to excessive development of Th17, primary source of IL-17 in human and mouse pancreatic ductal adenocarcinoma, as well as B cells that circulate to distant tumors. Microbial dependent IL-17 signaling increases DUOX2 signaling in …
A Road Map For The Treatment Of Pediatric Diffuse Midline Glioma, Carl Koschmann, Wajd N Al-Holou, Marta M Alonso, Jamie Anastas, Pratiti Bandopadhayay, Tara Barron, Oren Becher, Rodrigo Cartaxo, Maria G Castro, Chan Chung, Madison Clausen, Derek Dang, Robert Doherty, Ryan Duchatel, Matthew Dun, Mariella Filbin, Andrea Franson, Stefanie Galban, Marc Garcia Moure, Hugh Garton, Pruthvi Gowda, Joana Graca Marques, Cynthia Hawkins, Allison Heath, Esther Hulleman, Sunjong Ji, Chris Jones, Lindsay Kilburn, Cassie Kline, Michael A Koldobskiy, Daniel Lim, Pedro R Lowenstein, Q Richard Lu, Joanna Lum, Stephen Mack, Suresh Magge, Bernard Marini, Donna Martin, Neena Marupudi, Dana Messinger, Rajen Mody, Meredith Morgan, Mateus Mota, Karin Muraszko, Sabine Mueller, Siva Kumar Natarajan, Javad Nazarian, Michael Niculcea, Nicholas Nuechterlein, Hideho Okada, Valerie Opipari, Manjunath P Pai, Sharmistha Pal, Erik Peterson, Timothy Phoenix, John R Prensner, Matthew Pun, G Praveen Raju, Zachary J Reitman, Adam Resnick, David Rogawski, Amanda Saratsis, Stefanie G Sbergio, Mark Souweidane, James M Stafford, Theophilos Tzaridis, Sujatha Venkataraman, Orazio Vittorio, Jack Wadden, Daniel Wahl, Robert J Wechsler-Reya, Viveka Nand Yadav, Xu Zhang, Qiang Zhang, Sriram Venneti
A Road Map For The Treatment Of Pediatric Diffuse Midline Glioma, Carl Koschmann, Wajd N Al-Holou, Marta M Alonso, Jamie Anastas, Pratiti Bandopadhayay, Tara Barron, Oren Becher, Rodrigo Cartaxo, Maria G Castro, Chan Chung, Madison Clausen, Derek Dang, Robert Doherty, Ryan Duchatel, Matthew Dun, Mariella Filbin, Andrea Franson, Stefanie Galban, Marc Garcia Moure, Hugh Garton, Pruthvi Gowda, Joana Graca Marques, Cynthia Hawkins, Allison Heath, Esther Hulleman, Sunjong Ji, Chris Jones, Lindsay Kilburn, Cassie Kline, Michael A Koldobskiy, Daniel Lim, Pedro R Lowenstein, Q Richard Lu, Joanna Lum, Stephen Mack, Suresh Magge, Bernard Marini, Donna Martin, Neena Marupudi, Dana Messinger, Rajen Mody, Meredith Morgan, Mateus Mota, Karin Muraszko, Sabine Mueller, Siva Kumar Natarajan, Javad Nazarian, Michael Niculcea, Nicholas Nuechterlein, Hideho Okada, Valerie Opipari, Manjunath P Pai, Sharmistha Pal, Erik Peterson, Timothy Phoenix, John R Prensner, Matthew Pun, G Praveen Raju, Zachary J Reitman, Adam Resnick, David Rogawski, Amanda Saratsis, Stefanie G Sbergio, Mark Souweidane, James M Stafford, Theophilos Tzaridis, Sujatha Venkataraman, Orazio Vittorio, Jack Wadden, Daniel Wahl, Robert J Wechsler-Reya, Viveka Nand Yadav, Xu Zhang, Qiang Zhang, Sriram Venneti
Faculty, Staff and Students Publications
Recent clinical trials for H3K27-altered diffuse midline gliomas (DMGs) have shown much promise. We present a consensus roadmap and identify three major barriers: (1) refinement of experimental models to include immune and brain-specific components; (2) collaboration among researchers, clinicians, and industry to integrate patient-derived data through sharing, transparency, and regulatory considerations; and (3) streamlining clinical efforts including biopsy, CNS-drug delivery, endpoint determination, and response monitoring. We highlight the importance of comprehensive collaboration to advance the understanding, diagnostics, and therapeutics for DMGs.
D-Mannose Reduces Cellular Senescence And Nlrp3/Gasdermind/Il-1Β-Driven Pyroptotic Uroepithelial Cell Shedding In The Murine Bladder, Chetanchandra S Joshi, Arnold M Salazar, Caihong Wang, Marianne M Ligon, Rayvanth R Chappidi, Bisiayo E Fashemi, Paul A Felder, Amy Mora, Sandra L Grimm, Cristian Coarfa, Indira U Mysorekar
D-Mannose Reduces Cellular Senescence And Nlrp3/Gasdermind/Il-1Β-Driven Pyroptotic Uroepithelial Cell Shedding In The Murine Bladder, Chetanchandra S Joshi, Arnold M Salazar, Caihong Wang, Marianne M Ligon, Rayvanth R Chappidi, Bisiayo E Fashemi, Paul A Felder, Amy Mora, Sandra L Grimm, Cristian Coarfa, Indira U Mysorekar
Faculty, Staff and Students Publications
Aging is a risk factor for disease via increased susceptibility to infection, decreased ability to maintain homeostasis, inefficiency in combating stress, and decreased regenerative capacity. Multiple diseases, including urinary tract infection (UTI), are more prevalent with age; however, the mechanisms underlying the impact of aging on the urinary tract mucosa and the correlation between aging and disease remain poorly understood. Here, we show that, relative to young (8-12 weeks) mice, the urothelium of aged (18-24 months) female mice accumulates large lysosomes with reduced acid phosphatase activity and decreased overall autophagic flux in the aged urothelium, indicative of compromised cellular homeostasis. …
Mechanism Of Anion Exchange And Small-Molecule Inhibition Of Pendrin, Lie Wang, Anthony Hoang, Eva Gil-Iturbe, Arthur Laganowsky, Matthias Quick, Ming Zhou
Mechanism Of Anion Exchange And Small-Molecule Inhibition Of Pendrin, Lie Wang, Anthony Hoang, Eva Gil-Iturbe, Arthur Laganowsky, Matthias Quick, Ming Zhou
Faculty, Staff and Students Publications
Pendrin (SLC26A4) is an anion exchanger that mediates bicarbonate (HCO3−) exchange for chloride (Cl−) and is crucial for maintaining pH and salt homeostasis in the kidney, lung, and cochlea. Pendrin also exports iodide (I−) in the thyroid gland. Pendrin mutations in humans lead to Pendred syndrome, causing hearing loss and goiter. Inhibition of pendrin is a validated approach for attenuating airway hyperresponsiveness in asthma and for treating hypertension. However, the mechanism of anion exchange and its inhibition by drugs remains poorly understood. We applied cryo-electron microscopy to determine structures of pendrin from Sus scrofa in the presence of either Cl−, …
Emerging Perspectives Of Synaptic Biomarkers In Als And Ftd, Karthik Krishnamurthy, Raj Kumar Pradhan
Emerging Perspectives Of Synaptic Biomarkers In Als And Ftd, Karthik Krishnamurthy, Raj Kumar Pradhan
Farber Institute for Neuroscience Staff Papers and Presentations
Amyotrophic Lateral Sclerosis (ALS) and Frontotemporal Dementia (FTD) are debilitating neurodegenerative diseases with shared pathological features like transactive response DNA-binding protein of 43 kDa (TDP-43) inclusions and genetic mutations. Both diseases involve synaptic dysfunction, contributing to their clinical features. Synaptic biomarkers, representing proteins associated with synaptic function or structure, offer insights into disease mechanisms, progression, and treatment responses. These biomarkers can detect disease early, track its progression, and evaluate therapeutic efficacy. ALS is characterized by elevated neurofilament light chain (NfL) levels in cerebrospinal fluid (CSF) and blood, correlating with disease progression. TDP-43 is another key ALS biomarker, its mislocalization linked …