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2024

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Articles 121 - 150 of 208

Full-Text Articles in Medical Cell Biology

Identification Of Potent Pan-Ephrin Receptor Kinase Inhibitors Using Dna-Encoded Chemistry Technology, Chandrashekhar Madasu, Zian Liao, Sydney E Parks, Kiran L Sharma, Kurt M Bohren, Qiuji Ye, Feng Li, Murugesan Palaniappan, Zhi Tan, Fei Yuan, Chad J Creighton, Suni Tang, Ramya P Masand, Xiaoming Guan, Damian W Young, Diana Monsivais, Martin M Matzuk May 2024

Identification Of Potent Pan-Ephrin Receptor Kinase Inhibitors Using Dna-Encoded Chemistry Technology, Chandrashekhar Madasu, Zian Liao, Sydney E Parks, Kiran L Sharma, Kurt M Bohren, Qiuji Ye, Feng Li, Murugesan Palaniappan, Zhi Tan, Fei Yuan, Chad J Creighton, Suni Tang, Ramya P Masand, Xiaoming Guan, Damian W Young, Diana Monsivais, Martin M Matzuk

Faculty, Staff and Students Publications

EPH receptors (EPHs) are highly sought-after drug targets owing to their essential roles in maintaining appropriate cellular functions in both physiological and disease conditions. However, limited potency and specificity pose significant obstacles to the development of small-molecule inhibitors for EPHs. Here, using high-throughput DNA-encoded chemical library screenings, we developed potent and selective inhibitors of the EPH receptor kinase family. Our results also emphasize the therapeutic potential of our EPH inhibitors in cancer and endometriosis, a global health concern that causes chronic pain and often leads to infertility in women. This study showcases the robust pipeline of using DNA-encoded chemistry technology …


Ras G-Domains Allosterically Contribute To The Recognition Of Lipid Headgroups And Acyl Chains, Neha Arora, Huanwen Mu, Hong Liang, Wenting Zhao, Yong Zhou May 2024

Ras G-Domains Allosterically Contribute To The Recognition Of Lipid Headgroups And Acyl Chains, Neha Arora, Huanwen Mu, Hong Liang, Wenting Zhao, Yong Zhou

Faculty, Staff and Student Publications

Mutant RAS are major contributors to cancer and signal primarily from nanoclusters on the plasma membrane (PM). Their C-terminal membrane anchors are main features of membrane association. However, the same RAS isoform bound to different guanine nucleotides spatially segregate. Different RAS nanoclusters all enrich a phospholipid, phosphatidylserine (PS). These findings suggest more complex membrane interactions. Our electron microscopy-spatial analysis shows that wild-types, G12V mutants, and membrane anchors of isoforms HRAS, KRAS4A, and KRAS4B prefer distinct PS species. Mechanistically, reorientation of KRAS4B G-domain exposes distinct residues, such as Arg 135 in orientation state 1 (OS1) and Arg 73/Arg 102 in OS2, …


Metaplastic Regeneration In The Mouse Stomach Requires A Reactive Oxygen Species Pathway, Zhi-Feng Miao, Jing-Xu Sun, Xuan-Zhang Huang, Shi Bai, Min-Jiao Pang, Jia-Yi Li, Han-Yu Chen, Qi-Yue Tong, Shi-Yu Ye, Xin-Yu Wang, Xiao-Hai Hu, Jing-Ying Li, Jin-Wei Zou, Wen Xu, Jun-Hao Yang, Xi Lu, Jason C Mills, Zhen-Ning Wang May 2024

Metaplastic Regeneration In The Mouse Stomach Requires A Reactive Oxygen Species Pathway, Zhi-Feng Miao, Jing-Xu Sun, Xuan-Zhang Huang, Shi Bai, Min-Jiao Pang, Jia-Yi Li, Han-Yu Chen, Qi-Yue Tong, Shi-Yu Ye, Xin-Yu Wang, Xiao-Hai Hu, Jing-Ying Li, Jin-Wei Zou, Wen Xu, Jun-Hao Yang, Xi Lu, Jason C Mills, Zhen-Ning Wang

Faculty, Staff and Students Publications

In pyloric metaplasia, mature gastric chief cells reprogram via an evolutionarily conserved process termed paligenosis to re-enter the cell cycle and become spasmolytic polypeptide-expressing metaplasia (SPEM) cells. Here, we use single-cell RNA sequencing (scRNA-seq) following injury to the murine stomach to analyze mechanisms governing paligenosis at high resolution. Injury causes induced reactive oxygen species (ROS) with coordinated changes in mitochondrial activity and cellular metabolism, requiring the transcriptional mitochondrial regulator Ppargc1a (Pgc1α) and ROS regulator Nf2el2 (Nrf2). Loss of the ROS and mitochondrial control in Ppargc1a-/- mice causes the death of paligenotic cells through ferroptosis. Blocking the cystine transporter SLC7A11(xCT), which …


Fos Expression In Lateral Hypothalamus/Perifornical Area Is Correlated With Psychosocial Stress-Induced Cocaine-Seeking Behavior In A Sex-Specific Manner, Milena Sudarikov, Nicole M. Hinds, Ireneusz D. Wojtas, Desta M. Pulley, Daniel F. Manvich May 2024

Fos Expression In Lateral Hypothalamus/Perifornical Area Is Correlated With Psychosocial Stress-Induced Cocaine-Seeking Behavior In A Sex-Specific Manner, Milena Sudarikov, Nicole M. Hinds, Ireneusz D. Wojtas, Desta M. Pulley, Daniel F. Manvich

Rowan-Virtua Research Day

Cocaine Use Disorder persists as a significant public health concern in the United States. Recent epidemiological data indicate that rates of cocaine-involved overdose deaths are rising, and treatment of Cocaine Use Disorder is challenging due to a lack of FDA-approved medications to help patients achieve abstinence and avoid relapse. Stress can precipitate cocaine craving and trigger relapse episodes, however the underlying neural circuitry by which stressors drive cocaine seeking is not completely understood. Our laboratory has recently identified the potential involvement of the rostrolateral aspect of the periaqueductal gray (rlPAG) in psychosocial stress-induced cocaine-seeking behavior using a rodent model of …


Mutational Landscape Of Noncoding Ultraconserved Elements In Human Cancers: Functional Relevance And Clinical Utility, Recep Bayraktar May 2024

Mutational Landscape Of Noncoding Ultraconserved Elements In Human Cancers: Functional Relevance And Clinical Utility, Recep Bayraktar

Dissertations and Theses (Open Access)

The mutational landscape of phylogenetically ultraconserved elements (UCEs), especially those in noncoding DNA regions (ncUCEs), and their functional and clinical relevance in cancers remain poorly characterized. In this thesis, we perform a systematic analysis of whole-genome sequencing (WGS) data from the International Cancer Genome Consortium (ICGC) and in-house targeted sequencing of 13,736 UCEs and demonstrate that ncUCE somatic alterations are pervasive. Using a genome-wide multiplexed CRISPR knockout screen in colorectal cancer (CRC) cell lines, we show that the loss of several mutated ncUCEs impacts cancer cell proliferation. In-depth functional studies in vitro and in vivo further reveal that UCE_11311 is …


Modeling Acute Myocardial Infarction And Cardiac Fibrosis Using Human Induced Pluripotent Stem Cell-Derived Multi-Cellular Heart Organoids, Myeongjin Song, Da Bin Choi, Jeong Suk Im, Ye Na Song, Ji Hyun Kim, Hanbyeol Lee, Jieun An, Ami Kim, Hwan Choi, Joon-Chul Kim, Choongseong Han, Young Keul Jeon, Sung Joon Kim, Dong-Hun Woo May 2024

Modeling Acute Myocardial Infarction And Cardiac Fibrosis Using Human Induced Pluripotent Stem Cell-Derived Multi-Cellular Heart Organoids, Myeongjin Song, Da Bin Choi, Jeong Suk Im, Ye Na Song, Ji Hyun Kim, Hanbyeol Lee, Jieun An, Ami Kim, Hwan Choi, Joon-Chul Kim, Choongseong Han, Young Keul Jeon, Sung Joon Kim, Dong-Hun Woo

Faculty, Staff and Student Publications

Heart disease involves irreversible myocardial injury that leads to high morbidity and mortality rates. Numerous cell-based cardiac in vitro models have been proposed as complementary approaches to non-clinical animal research. However, most of these approaches struggle to accurately replicate adult human heart conditions, such as myocardial infarction and ventricular remodeling pathology. The intricate interplay between various cell types within the adult heart, including cardiomyocytes, fibroblasts, and endothelial cells, contributes to the complexity of most heart diseases. Consequently, the mechanisms behind heart disease induction cannot be attributed to a single-cell type. Thus, the use of multi-cellular models becomes essential for creating …


Mechanisms Driving Fasting-Induced Protection From Genotoxic Injury In The Small Intestine, Kali Deans-Fielder, Timothy Wu, Thanh Nguyen, Sarah To, Yang-Zhe Huang, Steven J Bark, Jason C Mills, Noah F Shroyer May 2024

Mechanisms Driving Fasting-Induced Protection From Genotoxic Injury In The Small Intestine, Kali Deans-Fielder, Timothy Wu, Thanh Nguyen, Sarah To, Yang-Zhe Huang, Steven J Bark, Jason C Mills, Noah F Shroyer

Faculty, Staff and Students Publications

Genotoxic agents such as doxorubicin (DXR) can cause damage to the intestines that can be ameliorated by fasting. How fasting is protective and the optimal timing of fasting and refeeding remain unclear. Here, our analysis of fasting/refeeding-induced global intestinal transcriptional changes revealed metabolic shifts and implicated the cellular energetic hub mechanistic target of rapamycin complex 1 (mTORC1) in protecting from DXR-induced DNA damage. Our analysis of specific transcripts and proteins in intestinal tissue and tissue extracts showed that fasting followed by refeeding at the time of DXR administration reduced damage and caused a spike in mTORC1 activity. However, continued fasting …


Cord Blood-Derived Invariant Natural Killer T Cells As A Platform For Allogeneic Chimeric Antigen Receptor Cell Therapy, Maison Grefe May 2024

Cord Blood-Derived Invariant Natural Killer T Cells As A Platform For Allogeneic Chimeric Antigen Receptor Cell Therapy, Maison Grefe

Dissertations and Theses (Open Access)

Chimeric antigen receptor (CAR) T cells have revolutionized the treatment of hematopoietic malignancies achieving >50% complete response rates in numerous refractory/relapsed B cell malignancies. However, there are challenges that hinder CAR-T efficacy and bar the broader use of this therapy in patients. One approach to address these challenges is to create a safe allogeneic CAR cell product by using cells that do not cause graft versus host disease (GvHD). Invariant natural killer T (iNKT) cells are an ideal candidate as they are restricted to the monomorphic CD1d protein in contrast to HLA restricted αβ-T cells and therefore are safe in …


Kras Allelic Variants In Biliary Tract Cancers, Gordon Taylor Moffat, Zishuo Ian Hu, Funda Meric-Bernstam, Elisabeth Kathleen Kong, Dean Pavlick, Jeffrey S Ross, Karthikeyan Murugesan, Lawrence Kwong, Anaemy Danner De Armas, Anil Korkut, Milind Javle, Jennifer J Knox May 2024

Kras Allelic Variants In Biliary Tract Cancers, Gordon Taylor Moffat, Zishuo Ian Hu, Funda Meric-Bernstam, Elisabeth Kathleen Kong, Dean Pavlick, Jeffrey S Ross, Karthikeyan Murugesan, Lawrence Kwong, Anaemy Danner De Armas, Anil Korkut, Milind Javle, Jennifer J Knox

Faculty, Staff and Student Publications

IMPORTANCE: Biliary tract cancers (BTCs) contain several actionable molecular alterations, including FGFR2, IDH1, ERBB2 (formerly HER2), and KRAS. KRAS allelic variants are found in 20% to 30% of BTCs, and multiple KRAS inhibitors are currently under clinical investigation.

OBJECTIVES: To describe the genomic landscape, co-sequence variations, immunophenotype, genomic ancestry, and survival outcomes of KRAS-mutated BTCs and to calculate the median overall survival (mOS) for the most common allelic variants.

DESIGN, SETTING, AND PARTICIPANTS: This retrospective, multicenter, pooled cohort study obtained clinical and next-generation sequencing data from multiple databases between January 1, 2017, and December 31, 2022. These databases included Princess …


Photon Irradation And Cisplatin Enrich Cancer Stem Cells In Ovarian Cancer, Ashley Antonissen May 2024

Photon Irradation And Cisplatin Enrich Cancer Stem Cells In Ovarian Cancer, Ashley Antonissen

Electronic Theses, Projects, and Dissertations

High Grade Serous Ovarian Cancer (HGSOC) has a 5-year survival rate of less than 50%. Ovarian cancer is one of the deadliest gynecological diseases and the 7th most common female cancer worldwide. Ovarian cancer patients generally have a poor prognosis despite the relatively successful treatments. When conventional cancer treatments, such as cisplatin chemotherapy and photon irradiation, are administered, residual cancer stem-like cells (CSCs) can survive, leading to CSC enrichment. CSCs are a small population of cancer cells that exhibit stem-like characteristics: quiescence (slowing of the cell cycle), differentiation, proliferation, and self-renewal to regenerate new CSCs. We hypothesized that providing cancer …


Angiogenic Gene Therapy For Refractory Angina: Results Of The Exact Phase 2 Trial, Kenta Nakamura, Timothy D Henry, Jay H Traverse, David A Latter, Nahush A Mokadam, Geoffrey A Answini, Adam R Williams, Benjamin C Sun, Christopher R Burke, Faisal G Bakaeen, Marcelo F Dicarli, Bernard R Chaitman, Mark W Peterson, Dawn G Byrnes, E Magnus Ohman, Carl J Pepine, Ronald G Crystal, Todd K Rosengart, Elaine Kowalewski, Gary G Koch, Howard C Dittrich, Thomas J Povsic, Exact Trial Investigators May 2024

Angiogenic Gene Therapy For Refractory Angina: Results Of The Exact Phase 2 Trial, Kenta Nakamura, Timothy D Henry, Jay H Traverse, David A Latter, Nahush A Mokadam, Geoffrey A Answini, Adam R Williams, Benjamin C Sun, Christopher R Burke, Faisal G Bakaeen, Marcelo F Dicarli, Bernard R Chaitman, Mark W Peterson, Dawn G Byrnes, E Magnus Ohman, Carl J Pepine, Ronald G Crystal, Todd K Rosengart, Elaine Kowalewski, Gary G Koch, Howard C Dittrich, Thomas J Povsic, Exact Trial Investigators

Faculty, Staff and Students Publications

Background: XC001 is a novel adenoviral-5 vector designed to express multiple isoforms of VEGF (vascular endothelial growth factor) and more safely and potently induce angiogenesis. The EXACT trial (Epicardial Delivery of XC001 Gene Therapy for Refractory Angina Coronary Treatment) assessed the safety and preliminary efficacy of XC001 in patients with no option refractory angina.

Methods: In this single-arm, multicenter, open-label trial, 32 patients with no option refractory angina received a single treatment of XC001 (1×1011 viral particles) via transepicardial delivery.

Results: There were no severe adverse events attributed to the study drug. Twenty expected severe adverse events in 13 patients …


Engineering Small-Molecule And Protein Drugs For Targeting Bone Tumors, Yixian Wang, Chenhang Wang, Meng Xia, Zeru Tian, Joseph Zhou, Julian Meyer Berger, Xiang H-F Zhang, Han Xiao May 2024

Engineering Small-Molecule And Protein Drugs For Targeting Bone Tumors, Yixian Wang, Chenhang Wang, Meng Xia, Zeru Tian, Joseph Zhou, Julian Meyer Berger, Xiang H-F Zhang, Han Xiao

Faculty, Staff and Students Publications

Bone cancer is common and severe. Both primary (e.g., osteosarcoma, Ewing sarcoma) and secondary (e.g., metastatic) bone cancers lead to significant health problems and death. Currently, treatments such as chemotherapy, hormone therapy, and radiation therapy are used to treat bone cancer, but they often only shrink or slow tumor growth and do not eliminate cancer completely. The bone microenvironment contributes unique signals that influence cancer growth, immunogenicity, and metastasis. Traditional cancer therapies have limited effectiveness due to off-target effects and poor distribution on bones. As a result, therapies with improved specificity and efficacy for treating bone tumors are highly needed. …


Histone Proteoform Analysis Reveals Epigenetic Changes In Adult Mouse Brown Adipose Tissue In Response To Cold Stress, Bethany C Taylor, Loic H Steinthal, Michelle Dias, Hari Krishna Yalamanchili, Scott A Ochsner, Gladys E Zapata, Nitesh R Mehta, Neil J Mckenna, Nicolas L Young, Alli M Nuotio-Antar Apr 2024

Histone Proteoform Analysis Reveals Epigenetic Changes In Adult Mouse Brown Adipose Tissue In Response To Cold Stress, Bethany C Taylor, Loic H Steinthal, Michelle Dias, Hari Krishna Yalamanchili, Scott A Ochsner, Gladys E Zapata, Nitesh R Mehta, Neil J Mckenna, Nicolas L Young, Alli M Nuotio-Antar

Faculty, Staff and Students Publications

BACKGROUND: Regulation of the thermogenic response by brown adipose tissue (BAT) is an important component of energy homeostasis with implications for the treatment of obesity and diabetes. Our preliminary analyses of RNA-Seq data uncovered many nodes representing epigenetic modifiers that are altered in BAT in response to chronic thermogenic activation. Thus, we hypothesized that chronic thermogenic activation broadly alters epigenetic modifications of DNA and histones in BAT.

RESULTS: Motivated to understand how BAT function is regulated epigenetically, we developed a novel method for the first-ever unbiased top-down proteomic quantitation of histone modifications in BAT and validated our results with a …


Trna Anticodon Cleavage By Target-Activated Crispr-Cas13a Effector, Ishita Jain, Matvey Kolesnik, Konstantin Kuznedelov, Leonid Minakhin, Natalia Morozova, Anna Shiriaeva, Alexandr Kirillov, Sofia Medvedeva, Alexei Livenskyi, Laura Kazieva, Kira S Makarova, Eugene V Koonin, Sergei Borukhov, Konstantin Severinov, Ekaterina Semenova Apr 2024

Trna Anticodon Cleavage By Target-Activated Crispr-Cas13a Effector, Ishita Jain, Matvey Kolesnik, Konstantin Kuznedelov, Leonid Minakhin, Natalia Morozova, Anna Shiriaeva, Alexandr Kirillov, Sofia Medvedeva, Alexei Livenskyi, Laura Kazieva, Kira S Makarova, Eugene V Koonin, Sergei Borukhov, Konstantin Severinov, Ekaterina Semenova

Rowan-Virtua School of Osteopathic Medicine Departmental Research

Type VI CRISPR-Cas systems are among the few CRISPR varieties that target exclusively RNA. The CRISPR RNA–guided, sequence-specific binding of target RNAs, such as phage transcripts, activates the type VI effector, Cas13. Once activated, Cas13 causes collateral RNA cleavage, which induces bacterial cell dormancy, thus protecting the host population from the phage spread. We show here that the principal form of collateral RNA degradation elicited by Leptotrichia shahii Cas13a expressed in Escherichia coli cells is the cleavage of anticodons in a subset of transfer RNAs (tRNAs) with uridine-rich anticodons. This tRNA cleavage is accompanied by inhibition of protein synthesis, thus …


Chromosomal 3q Amplicon Encodes Essential Regulators Of Secretory Vesicles That Drive Secretory Addiction In Cancer, Xiaochao Tan, Shike Wang, Guan-Yu Xiao, Chao Wu, Xin Liu, Biyao Zhou, Jiang Yu, Dzifa Yawa Duose, Yuanxin Xi, Jing Wang, Kunika Gupta, Apar Pataer, Jack A Roth, Michael P Kim, Fengju Chen, Chad J Creighton, William K Russell, Jonathan M Kurie Apr 2024

Chromosomal 3q Amplicon Encodes Essential Regulators Of Secretory Vesicles That Drive Secretory Addiction In Cancer, Xiaochao Tan, Shike Wang, Guan-Yu Xiao, Chao Wu, Xin Liu, Biyao Zhou, Jiang Yu, Dzifa Yawa Duose, Yuanxin Xi, Jing Wang, Kunika Gupta, Apar Pataer, Jack A Roth, Michael P Kim, Fengju Chen, Chad J Creighton, William K Russell, Jonathan M Kurie

Faculty, Staff and Student Publications

Cancer cells exhibit heightened secretory states that drive tumor progression. Here, we identify a chromosome 3q amplicon that serves as a platform for secretory regulation in cancer. The 3q amplicon encodes multiple Golgi-resident proteins, including the scaffold Golgi integral membrane protein 4 (GOLIM4) and the ion channel ATPase Secretory Pathway Ca2+ Transporting 1 (ATP2C1). We show that GOLIM4 recruits ATP2C1 and Golgi phosphoprotein 3 (GOLPH3) to coordinate calcium-dependent cargo loading and Golgi membrane bending and vesicle scission. GOLIM4 depletion disrupts the protein complex, resulting in a secretory blockade that inhibits the progression of 3q-amplified malignancies. In addition to its role …


The Swi/Snf Atp-Dependent Chromatin Remodeling Complex In Cell Lineage Priming And Early Development, Dhurjhoti Saha, Srinivas Animireddy, Blaine Bartholomew Apr 2024

The Swi/Snf Atp-Dependent Chromatin Remodeling Complex In Cell Lineage Priming And Early Development, Dhurjhoti Saha, Srinivas Animireddy, Blaine Bartholomew

Faculty, Staff and Student Publications

ATP dependent chromatin remodelers have pivotal roles in transcription, DNA replication and repair, and maintaining genome integrity. SWI/SNF remodelers were first discovered in yeast genetic screens for factors involved in mating type switching or for using alternative energy sources therefore termed SWI/SNF complex (short for SWItch/Sucrose NonFermentable). The SWI/SNF complexes utilize energy from ATP hydrolysis to disrupt histone-DNA interactions and shift, eject, or reposition nucleosomes making the underlying DNA more accessible to specific transcription factors and other regulatory proteins. In development, SWI/SNF orchestrates the precise activation and repression of genes at different stages, safe guards the formation of specific cell …


Fourteen-Day Vonoprazan-Based Bismuth Quadruple Therapy For H Pylori Eradication In An Area With High Clarithromycin And Levofloxacin Resistance: A Prospective Randomized Study (Vq-Hp Trial), Nuttapat Tungtrongchitr, Phubordee Bongkotvirawan, Sarita Ratana-Amornpin, Sith Siramolpiwat, Thanee Eiamsitrakoon, Pornpen Gamnarai, Arti Wongcha-Um, Yoshio Yamaoka, Kammal Kumar Pawa, Ratha-Korn Vilaichone Apr 2024

Fourteen-Day Vonoprazan-Based Bismuth Quadruple Therapy For H Pylori Eradication In An Area With High Clarithromycin And Levofloxacin Resistance: A Prospective Randomized Study (Vq-Hp Trial), Nuttapat Tungtrongchitr, Phubordee Bongkotvirawan, Sarita Ratana-Amornpin, Sith Siramolpiwat, Thanee Eiamsitrakoon, Pornpen Gamnarai, Arti Wongcha-Um, Yoshio Yamaoka, Kammal Kumar Pawa, Ratha-Korn Vilaichone

Faculty, Staff and Students Publications

Potassium-competitive acid blockers (P-CABs) provide potent acid inhibition, yet studies on P-CAB-based quadruple therapy for H. pylori eradication are limited. We theorized that integrating bismuth subsalicylate into a quadruple therapy regimen could enhance eradication rates. However, data on the efficacy of vonoprazan bismuth quadruple therapy are notably scarce. Therefore, the aim of this study was to evaluate the efficacy of vonoprazan-based bismuth quadruple therapy in areas with high clarithromycin and levofloxacin resistance. This was a prospective, single-center, randomized trial conducted to compare the efficacy of 7-day and 14-day vonoprazan-based bismuth quadruple therapy for H. pylori eradication between June 1, 2021, …


Influence Of Co-Morbid Modifiable Risk Factors On Adipose-Derived Stem Cell Paracrine Factors In Burn Patients, Jared M. Robinson, Jenna Dennis, Sophia Trinh, Cameron Fontenot, Herb A. Phelan Iii, Jeffrey E. Carter, Jonathan E. Schoen, Alison A. Smith Apr 2024

Influence Of Co-Morbid Modifiable Risk Factors On Adipose-Derived Stem Cell Paracrine Factors In Burn Patients, Jared M. Robinson, Jenna Dennis, Sophia Trinh, Cameron Fontenot, Herb A. Phelan Iii, Jeffrey E. Carter, Jonathan E. Schoen, Alison A. Smith

School of Medicine Faculty Publications

56th Annual Meeting of the American Burn Association, 2024; April 9 - April 12, 2024; Chicago, IL


Jennifer A Wargo, Nadim J Ajami, And Carrie R Daniel-Macdougall, Jennifer A Wargo, Nadim J Ajami, Carrie R Daniel-Macdougall Apr 2024

Jennifer A Wargo, Nadim J Ajami, And Carrie R Daniel-Macdougall, Jennifer A Wargo, Nadim J Ajami, Carrie R Daniel-Macdougall

Faculty, Staff and Student Publications

Dr. Jennifer A. Wargo, Dr. Nadim J. Ajami, and Dr. Carrie R. Daniel-MacDougall describe their academic and clinical work on the role of the microbiome to determine response to immunotherapies and discuss current challenges and potential needs to integrate their findings into clinical practice.


An Exploration Of The Effectiveness Of Xanthorrhiza Simplicissima And Its Secondary Alkaloids As Antibiotics Against Staphylococcus Aureus With The Use Of Reserpine, Donald Bothe, Savita Chaurasia Apr 2024

An Exploration Of The Effectiveness Of Xanthorrhiza Simplicissima And Its Secondary Alkaloids As Antibiotics Against Staphylococcus Aureus With The Use Of Reserpine, Donald Bothe, Savita Chaurasia

Undergraduate Theses

Xanthorhiza simplicissima is a plant that is steeped in medical history. It has been used for hundreds of years by the Native Americans, and later by the Europeans, of Appalachia for its medicinal properties. One of the most useful medical applications of this plant are its antibiotic properties, as typified by its use as a tea that was consumed to treat mouth sores. These antibiotic properties can be attributed to some of its secondary alkaloids such as berberine, liriodenine, oxyacanthine, and magnoflorine. These compounds have been studied in other systems; however, oxyacanthine and magnoflorine have not been researched in tandem …


Cross-Contamination Of Crispr Guides And Other Unrelated Nucleotide Sequences Among Commercial Oligonucleotides, Hiroshi Arakawa, Hiromi Miura, Rolen M. Quadros, Masato Ohtsuka, Channabasavaiah B. Gurumurthy Apr 2024

Cross-Contamination Of Crispr Guides And Other Unrelated Nucleotide Sequences Among Commercial Oligonucleotides, Hiroshi Arakawa, Hiromi Miura, Rolen M. Quadros, Masato Ohtsuka, Channabasavaiah B. Gurumurthy

Journal Articles: Genetics, Cell Biology & Anatomy

Custom oligonucleotides (oligos) are widely used reagents in biomedical research. Some common applications of oligos include polymerase chain reaction (PCR), sequencing, hybridization, microarray, and library construction. The reliability of oligos in such applications depends on their purity and specificity. Here, we report that commercially available oligos are frequently contaminated with nonspecific sequences (i.e. other unrelated oligonucleotides). Most of the oligos that we designed to amplify clustered regularly interspersed palindromic repeats (CRISPR) guide sequences contained nonspecific CRISPR guides. These contaminants were detected in research-grade oligos procured from eight commercial oligo-suppliers located in three different geographic regions of the world. Deep sequencing …


Genome-Wide Screening Identifies Trim33 As An Essential Regulator Of Dendritic Cell Differentiation, Ioanna Tiniakou, Pei-Feng Hsu, Lorena S Lopez-Zepeda, Görkem Garipler, Eduardo Esteva, Nicholas M Adams, Geunhyo Jang, Chetna Soni, Colleen M Lau, Fan Liu, Alireza Khodadadi-Jamayran, Tori C Rodrick, Drew Jones, Aristotelis Tsirigos, Uwe Ohler, Mark T Bedford, Stephen D Nimer, Vesa Kaartinen, Esteban O Mazzoni, Boris Reizis Apr 2024

Genome-Wide Screening Identifies Trim33 As An Essential Regulator Of Dendritic Cell Differentiation, Ioanna Tiniakou, Pei-Feng Hsu, Lorena S Lopez-Zepeda, Görkem Garipler, Eduardo Esteva, Nicholas M Adams, Geunhyo Jang, Chetna Soni, Colleen M Lau, Fan Liu, Alireza Khodadadi-Jamayran, Tori C Rodrick, Drew Jones, Aristotelis Tsirigos, Uwe Ohler, Mark T Bedford, Stephen D Nimer, Vesa Kaartinen, Esteban O Mazzoni, Boris Reizis

Faculty, Staff and Student Publications

The development of dendritic cells (DCs), including antigen-presenting conventional DCs (cDCs) and cytokine-producing plasmacytoid DCs (pDCs), is controlled by the growth factor Flt3 ligand (Flt3L) and its receptor Flt3. We genetically dissected Flt3L-driven DC differentiation using CRISPR-Cas9-based screening. Genome-wide screening identified multiple regulators of DC differentiation including subunits of TSC and GATOR1 complexes, which restricted progenitor growth but enabled DC differentiation by inhibiting mTOR signaling. An orthogonal screen identified the transcriptional repressor Trim33 (TIF-1γ) as a regulator of DC differentiation. Conditional targeting in vivo revealed an essential role of Trim33 in the development of all DCs, but not of monocytes …


Targeted Deletion Of Nr2f2 And Vcam1 In Theca Cells Impacts Ovarian Follicular Development: Insights Into Polycystic Ovary Syndrome?†, Nicholes R Candelaria, Joanne S Richards Apr 2024

Targeted Deletion Of Nr2f2 And Vcam1 In Theca Cells Impacts Ovarian Follicular Development: Insights Into Polycystic Ovary Syndrome?†, Nicholes R Candelaria, Joanne S Richards

Faculty, Staff and Students Publications

Defining features of polycystic ovary syndrome (PCOS) include elevated expression of steroidogenic genes, theca cell androgen biosynthesis, and peripheral levels of androgens. In previous studies, we identified vascular cell adhesion molecule 1 (VCAM1) as a selective androgen target gene in specific NR2F2/SF1 (+/+) theca cells. By deleting NR2F2 and VCAM1 selectively in CYP17A1 theca cells in mice, we documented that NR2F2 and VCAM1 impact distinct and sometimes opposing theca cell functions that alter ovarian follicular development in vivo: including major changes in ovarian morphology, steroidogenesis, gene expression profiles, immunolocalization images (NR5A1, CYP11A1, NOTCH1, CYP17A1, INSL3, VCAM1, NR2F2) as well as …


Human Brain Glycoform Coregulation Network And Glycan Modification Alterations In Alzheimer's Disease, Qi Zhang, Cheng Ma, Lih-Shen Chin, Sheng Pan, Lian Li Apr 2024

Human Brain Glycoform Coregulation Network And Glycan Modification Alterations In Alzheimer's Disease, Qi Zhang, Cheng Ma, Lih-Shen Chin, Sheng Pan, Lian Li

Faculty, Staff and Student Publications

Despite the importance of protein glycosylation to brain health, current knowledge of glycosylated proteoforms or glycoforms in human brain and their alterations in Alzheimer's disease (AD) is limited. Here, we report a proteome-wide glycoform profiling study of human AD and control brains using intact glycopeptide-based quantitative glycoproteomics coupled with systems biology. Our study identified more than 10,000 human brain N-glycoforms from nearly 1200 glycoproteins and uncovered disease signatures of altered glycoforms and glycan modifications, including reduced sialylation and N-glycan branching and elongation as well as elevated mannosylation and N-glycan truncation in AD. Network analyses revealed a higher-order organization of brain …


The Saga Of E Faecium, Rishika Prasad, Robert R Jenq Apr 2024

The Saga Of E Faecium, Rishika Prasad, Robert R Jenq

Faculty, Staff and Student Publications

An enzyme that remodels the cell wall of Enterococcus faecium helps these gut bacteria to divide and generate peptide fragments that enhance the immune response against cancer.


Identification Of Novel F2-Isoprostane Metabolites By Specific Udp-Glucuronosyltransferases, Ginger L Milne, Marina S Nogueira, Benlian Gao, Stephanie C Sanchez, Warda Amin, Sarah Thomas, Camille Oger, Jean-Marie Galano, Harvey J Murff, Gong Yang, Thierry Durand Apr 2024

Identification Of Novel F2-Isoprostane Metabolites By Specific Udp-Glucuronosyltransferases, Ginger L Milne, Marina S Nogueira, Benlian Gao, Stephanie C Sanchez, Warda Amin, Sarah Thomas, Camille Oger, Jean-Marie Galano, Harvey J Murff, Gong Yang, Thierry Durand

Faculty, Staff and Student Publications

UDP-glucuronosyltransferases (UGTs) catalyze the conjugation of glucuronic acid with endogenous and exogenous lipophilic small molecules to facilitate their inactivation and excretion from the body. This represents approximately 35 % of all phase II metabolic transformations. Fatty acids and their oxidized eicosanoid derivatives can be metabolized by UGTs. F2-isoprostanes (F2-IsoPs) are eicosanoids formed from the free radical oxidation of arachidonic acid. These molecules are potent vasoconstrictors and are widely used as biomarkers of endogenous oxidative damage. An increasing body of evidence demonstrates the efficacy of measuring the β-oxidation metabolites of F2-IsoPs rather than the unmetabolized F2-IsoPs to quantify oxidative damage in …


An Oocyte-Specific Cas9-Expressing Mouse For Germline Crispr/Cas9-Mediated Genome Editing, Denise G Lanza, Jianqiang Mao, Isabel Lorenzo, Lan Liao, John R Seavitt, M Cecilia Ljungberg, Elizabeth M Simpson, Francesco J Demayo, Jason D Heaney Apr 2024

An Oocyte-Specific Cas9-Expressing Mouse For Germline Crispr/Cas9-Mediated Genome Editing, Denise G Lanza, Jianqiang Mao, Isabel Lorenzo, Lan Liao, John R Seavitt, M Cecilia Ljungberg, Elizabeth M Simpson, Francesco J Demayo, Jason D Heaney

Faculty, Staff and Students Publications

Cas9 transgenes can be employed for genome editing in mouse zygotes. However, using transgenic instead of exogenous Cas9 to produce gene-edited animals creates unique issues including ill-defined transgene integration sites, the potential for prolonged Cas9 expression in transgenic embryos, and increased genotyping burden. To overcome these issues, we generated mice harboring an oocyte-specific, Gdf9 promoter driven, Cas9 transgene (Gdf9-Cas9) targeted as a single copy into the Hprt1 locus. The X-linked Hprt1 locus was selected because it is a defined integration site that does not influence transgene expression, and breeding of transgenic males generates obligate transgenic females to serve as embryo …


A Mutation In Tbxt Causes Congenital Vertebral Malformations In Humans And Mice, Shuxia Chen, Yunping Lei, Yajun Yang, Chennan Liu, Lele Kuang, Li Jin, Richard H Finnell, Xueyan Yang, Hongyan Wang Apr 2024

A Mutation In Tbxt Causes Congenital Vertebral Malformations In Humans And Mice, Shuxia Chen, Yunping Lei, Yajun Yang, Chennan Liu, Lele Kuang, Li Jin, Richard H Finnell, Xueyan Yang, Hongyan Wang

Faculty, Staff and Students Publications

T-box transcription factor T (TBXT; T) is required for mesodermal formation and axial skeletal development. Although it has been extensively studied in various model organisms, human congenital vertebral malformations (CVMs) involving T are not well established. Here, we report a family with 15 CVM patients distributed across 4 generations. All affected individuals carry a heterozygous mutation, T c.596A>G (p.Q199R), which is not found in unaffected family members, indicating co-segregation of the genotype and phenotype. In vitro assays show that T p.Q199R increases the nucleocytoplasmic ratio and enhances its DNA-binding affinity, but reduces its transcriptional activity compared to the wild-type. …


Challenges And Considerations Of Preclinical Development For Ipsc-Based Myogenic Cell Therapy, Congshan Sun, Carlo Serra, Brianna Harley Kalicharan, Jeffrey Harding, Mahendra Rao Mar 2024

Challenges And Considerations Of Preclinical Development For Ipsc-Based Myogenic Cell Therapy, Congshan Sun, Carlo Serra, Brianna Harley Kalicharan, Jeffrey Harding, Mahendra Rao

Faculty, Staff and Students Publications

Cell therapies derived from induced pluripotent stem cells (iPSCs) offer a promising avenue in the field of regenerative medicine due to iPSCs' expandability, immune compatibility, and pluripotent potential. An increasing number of preclinical and clinical trials have been carried out, exploring the application of iPSC-based therapies for challenging diseases, such as muscular dystrophies. The unique syncytial nature of skeletal muscle allows stem/progenitor cells to integrate, forming new myonuclei and restoring the expression of genes affected by myopathies. This characteristic makes genome-editing techniques especially attractive in these therapies. With genetic modification and iPSC lineage specification methodologies, immune-compatible healthy iPSC-derived muscle cells …


Identification Of An Early Survival Prognostic Gene Signature For Localized Osteosarcoma Patients, Tajhal D Patel, Sandra L Grimm, Rupa S Kanchi, Tanmay Gandhi, Amrit Koirala, Jason T Yustein, Cristian Coarfa Mar 2024

Identification Of An Early Survival Prognostic Gene Signature For Localized Osteosarcoma Patients, Tajhal D Patel, Sandra L Grimm, Rupa S Kanchi, Tanmay Gandhi, Amrit Koirala, Jason T Yustein, Cristian Coarfa

Faculty, Staff and Students Publications

Osteosarcoma is the most prevalent bone tumor in pediatric patients. Neoadjuvant chemotherapy has improved osteosarcoma patient survival, however the 5-year survival rate for localized osteosarcoma is 75% with a 30-50% recurrence rate. We, therefore, sought to identify a prognostic gene signature which could predict poor prognosis in localized osteosarcoma patients. Using the TARGET osteosarcoma transcriptomic dataset, we identified a 13-hub gene signature associated with overall survival and time to death of localized osteosarcoma patients, with the high-risk group showing a 22% and the low-risk group showing 100% overall survival. Furthermore, network analysis identified five modules of co-expressed genes that significantly …