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Full-Text Articles in Medical Cell Biology

The Nlrp3 Inflammasome Fires Up Heme-Induced Inflammation In Hemolytic Conditions, Suruchi Salgar, Beatriz E Bolívar, Jonathan M Flanagan, Shaniqua J Anum, Lisa Bouchier-Hayes Feb 2023

The Nlrp3 Inflammasome Fires Up Heme-Induced Inflammation In Hemolytic Conditions, Suruchi Salgar, Beatriz E Bolívar, Jonathan M Flanagan, Shaniqua J Anum, Lisa Bouchier-Hayes

Faculty, Staff and Students Publications

Overactive inflammatory responses are central to the pathophysiology of many hemolytic conditions including sickle cell disease. Excessive hemolysis leads to elevated serum levels of heme due to saturation of heme scavenging mechanisms. Extracellular heme has been shown to activate the NLRP3 inflammasome, leading to activation of caspase-1 and release of pro-inflammatory cytokines IL-1β and IL-18. Heme also activates the non-canonical inflammasome pathway, which may contribute to NLRP3 inflammasome formation and leads to pyroptosis, a type of inflammatory cell death. Some clinical studies indicate there is a benefit to blocking the NLRP3 inflammasome pathway in patients with sickle cell disease and …


Enhancer-Promoter Entanglement Explains Their Transcriptional Interdependence, Anil K Panigrahi, David M Lonard, Bert W O'Malley Jan 2023

Enhancer-Promoter Entanglement Explains Their Transcriptional Interdependence, Anil K Panigrahi, David M Lonard, Bert W O'Malley

Faculty, Staff and Students Publications

Enhancers not only activate target promoters to stimulate messenger RNA (mRNA) synthesis, but they themselves also undergo transcription to produce enhancer RNAs (eRNAs), the significance of which is not well understood. Transcription at the participating enhancer-promoter pair appears coordinated, but it is unclear why and how. Here, we employ cell-free transcription assays using constructs derived from the human GREB1 locus to demonstrate that transcription at an enhancer and its target promoter is interdependent. This interdependence is observable under conditions where direct enhancer-promoter contact (EPC) takes place. We demonstrate that transcription activation at a participating enhancer-promoter pair is dependent on i) …


Mixcan: A Framework For Cell-Type-Aware Transcriptome-Wide Association Studies With An Application To Breast Cancer, Xiaoyu Song, Jiayi Ji, Joseph H Rothstein, Stacey E Alexeeff, Lori C Sakoda, Adriana Sistig, Ninah Achacoso, Eric Jorgenson, Alice S Whittemore, Robert J Klein, Laurel A Habel, Pei Wang, Weiva Sieh Jan 2023

Mixcan: A Framework For Cell-Type-Aware Transcriptome-Wide Association Studies With An Application To Breast Cancer, Xiaoyu Song, Jiayi Ji, Joseph H Rothstein, Stacey E Alexeeff, Lori C Sakoda, Adriana Sistig, Ninah Achacoso, Eric Jorgenson, Alice S Whittemore, Robert J Klein, Laurel A Habel, Pei Wang, Weiva Sieh

Faculty, Staff and Student Publications

Human bulk tissue samples comprise multiple cell types with diverse roles in disease etiology. Conventional transcriptome-wide association study approaches predict genetically regulated gene expression at the tissue level, without considering cell-type heterogeneity, and test associations of predicted tissue-level expression with disease. Here we develop MiXcan, a cell-type-aware transcriptome-wide association study approach that predicts cell-type-level expression, identifies disease-associated genes via combination of cell-type-level association signals for multiple cell types, and provides insight into the disease-critical cell type. As a proof of concept, we conducted cell-type-aware analyses of breast cancer in 58,648 women and identified 12 transcriptome-wide significant genes using MiXcan compared …


Hypoxia Truncates And Constitutively Activates The Key Cholesterol Synthesis Enzyme Squalene Monooxygenase, Hudson W Coates, Isabelle M Capell-Hattam, Ellen M Olzomer, Ximing Du, Rhonda Farrell, Hongyuan Yang, Frances L Byrne, Andrew J Brown Jan 2023

Hypoxia Truncates And Constitutively Activates The Key Cholesterol Synthesis Enzyme Squalene Monooxygenase, Hudson W Coates, Isabelle M Capell-Hattam, Ellen M Olzomer, Ximing Du, Rhonda Farrell, Hongyuan Yang, Frances L Byrne, Andrew J Brown

Faculty, Staff and Student Publications

Cholesterol synthesis is both energy- and oxygen-intensive, yet relatively little is known of the regulatory effects of hypoxia on pathway enzymes. We previously showed that the rate-limiting and first oxygen-dependent enzyme of the committed cholesterol synthesis pathway, squalene monooxygenase (SM), can undergo partial proteasomal degradation that renders it constitutively active. Here, we show hypoxia is a physiological trigger for this truncation, which occurs through a two-part mechanism: (1) increased targeting of SM to the proteasome via stabilization of the E3 ubiquitin ligase MARCHF6 and (2) accumulation of the SM substrate, squalene, which impedes the complete degradation of SM and liberates …


Generation Of A Tree Shrew Breast Cancer Model Using Lentivirus Expressing Pik3ca-H1047r, Li Zeng, Hong-Yan Zhang, Chuan-Yu Yang, Zhuo Cheng, Qiu-Yun Jiang, Yao Luo, Yi Li, Fu-Bing Li, Ce-Shi Chen Jan 2023

Generation Of A Tree Shrew Breast Cancer Model Using Lentivirus Expressing Pik3ca-H1047r, Li Zeng, Hong-Yan Zhang, Chuan-Yu Yang, Zhuo Cheng, Qiu-Yun Jiang, Yao Luo, Yi Li, Fu-Bing Li, Ce-Shi Chen

Faculty, Staff and Students Publications

No abstract provided.


Editorial: Hallmark Of Cancer: Reprogramming Of Cellular Metabolism, Baljinder Kaur, Yahya Sohrabi, Abhinav Achreja, Michael P. Lisanti, Ubaldo Emilio Martinez-Outshoorn Jan 2023

Editorial: Hallmark Of Cancer: Reprogramming Of Cellular Metabolism, Baljinder Kaur, Yahya Sohrabi, Abhinav Achreja, Michael P. Lisanti, Ubaldo Emilio Martinez-Outshoorn

Department of Medical Oncology Faculty Papers

No abstract provided.


Outcomes Of Patients Treated For Hepatoblastoma With Low Alpha-Fetoprotein And/Or Small Cell Undifferentiated Histology: A Report From The Children's Hepatic Tumors International Collaboration (Chic), Angela D Trobaugh-Lotrario, Rudolf Maibach, Daniel C Aronson, Arun Rangaswami, Beate Häberle, Allison F O'Neill, Irene Schmid, Marc Ansari, Tomoro Hishiki, Sarangarajan Ranganathan, Rita Alaggio, Ronald R De Krijger, Yukichi Tanaka, Soo-Jin Cho, Christian Vokuhl, Rebecca Maxwell, Mark Krailo, Eiso Hiyama, Piotr Czauderna, Milton Finegold, James H Feusner, Marcio H Malogolowkin, Rebecka L Meyers, Dolores Lopez-Terrada Jan 2023

Outcomes Of Patients Treated For Hepatoblastoma With Low Alpha-Fetoprotein And/Or Small Cell Undifferentiated Histology: A Report From The Children's Hepatic Tumors International Collaboration (Chic), Angela D Trobaugh-Lotrario, Rudolf Maibach, Daniel C Aronson, Arun Rangaswami, Beate Häberle, Allison F O'Neill, Irene Schmid, Marc Ansari, Tomoro Hishiki, Sarangarajan Ranganathan, Rita Alaggio, Ronald R De Krijger, Yukichi Tanaka, Soo-Jin Cho, Christian Vokuhl, Rebecca Maxwell, Mark Krailo, Eiso Hiyama, Piotr Czauderna, Milton Finegold, James H Feusner, Marcio H Malogolowkin, Rebecka L Meyers, Dolores Lopez-Terrada

Faculty, Staff and Students Publications

Small cell undifferentiated (SCU) histology and alpha-fetoprotein (AFP) levels below 100 ng/mL have been reported as poor prognostic factors in hepatoblastoma (HB); subsequent studies reported SMARCB1 mutations in some SCU HBs confirming the diagnosis of rhabdoid tumor. The Children's Hepatic tumors International Collaboration (CHIC) database was queried for patients with HB who had AFP levels less than 100 ng/mL at diagnosis or were historically diagnosed as SCU HBs. Seventy-three of 1605 patients in the CHIC database were originally identified as SCU HB, HB with SCU component, or HB with low AFP levels. Upon retrospective review, they were re-classified as rhabdoid …


Technology Meets Tils: Deciphering T Cell Function In The -Omics Era, William H Hudson, Andreas Wieland Jan 2023

Technology Meets Tils: Deciphering T Cell Function In The -Omics Era, William H Hudson, Andreas Wieland

Faculty, Staff and Students Publications

T cells are at the centerstage of cancer immunology due to their ability to recognize mutations within tumor cells and directly mediate cancer cell killing. Immunotherapies to rejuvenate exhausted T cell responses have transformed the clinical management of several malignancies. In parallel, the development of novel multidimensional analysis platforms such as single-cell RNA-sequencing and high-dimensional flow cytometry has yielded unprecedented insights into immune cell biology. This convergence has revealed substantial heterogeneity of tumor-infiltrating immune cells, both within single tumors, across tumor types, and among cancer patients. Here, we discuss the opportunities and challenges of studying the complex tumor microenvironment with …


Feasibility And Preclinical Efficacy Of Cd7-Unedited Cd7 Car T Cells For T Cell Malignancies, Norihiro Watanabe, Feiyan Mo, Rong Zheng, Royce Ma, Vanesa C Bray, Dayenne G Van Leeuwen, Juntima Sritabal-Ramirez, Hongxiang Hu, Sha Wang, Birju Mehta, Madhuwanti Srinivasan, Lauren D Scherer, Huimin Zhang, Sachin G Thakkar, Laquisa C Hill, Helen E Heslop, Chonghui Cheng, Malcolm K Brenner, Maksim Mamonkin Jan 2023

Feasibility And Preclinical Efficacy Of Cd7-Unedited Cd7 Car T Cells For T Cell Malignancies, Norihiro Watanabe, Feiyan Mo, Rong Zheng, Royce Ma, Vanesa C Bray, Dayenne G Van Leeuwen, Juntima Sritabal-Ramirez, Hongxiang Hu, Sha Wang, Birju Mehta, Madhuwanti Srinivasan, Lauren D Scherer, Huimin Zhang, Sachin G Thakkar, Laquisa C Hill, Helen E Heslop, Chonghui Cheng, Malcolm K Brenner, Maksim Mamonkin

Faculty, Staff and Students Publications

Chimeric antigen receptor (CAR)-mediated targeting of T lineage antigens for the therapy of blood malignancies is frequently complicated by self-targeting of CAR T cells or their excessive differentiation driven by constant CAR signaling. Expression of CARs targeting CD7, a pan-T cell antigen highly expressed in T cell malignancies and some myeloid leukemias, produces robust fratricide and often requires additional mitigation strategies, such as CD7 gene editing. In this study, we show fratricide of CD7 CAR T cells can be fully prevented using ibrutinib and dasatinib, the pharmacologic inhibitors of key CAR/CD3ζ signaling kinases. Supplementation with ibrutinib and dasatinib rescued the …


Effect Of Stretch And Release On Myofascial Stem Cell Function In Vitro: A Putative Model To Understand The Molecular Benefits Of The Myofascial Release (Mfr) Technique, Ben Smith, Shahn Notta, Debasis Mondal Jan 2023

Effect Of Stretch And Release On Myofascial Stem Cell Function In Vitro: A Putative Model To Understand The Molecular Benefits Of The Myofascial Release (Mfr) Technique, Ben Smith, Shahn Notta, Debasis Mondal

Research Day

Despite the beneficial effects of osteopathic manipulative techniques (OMT), there is a lack of in vitro models to understand the molecular mechanisms associated with these time-tested therapies. The Myofascial Release (MFR) technique is a non-invasive approach that involves passive stretching, hold and release, of the soft tissue to achieve myofascial homeostasis. Tissue-resident mesenchymal stem cells (MSC) can regulate the myofascial microenvironment by altering their secreted factors following stretch and release. Therefore, we initiated studies to develop an in vitro model to investigate the possible effects of stretch and release on MSC function, i.e. proliferation and differentiation capabilities, and changes in …


Heterogeneity Of Memory T Cells In Aging, Abhinav Jain, Ines Sturmlechner, Cornelia M Weyand, Jörg J Goronzy Jan 2023

Heterogeneity Of Memory T Cells In Aging, Abhinav Jain, Ines Sturmlechner, Cornelia M Weyand, Jörg J Goronzy

Faculty, Staff and Student Publications

Immune memory is a requisite and remarkable property of the immune system and is the biological foundation of the success of vaccinations in reducing morbidity from infectious diseases. Some vaccines and infections induce long-lasting protection, but immunity to other vaccines and particularly in older adults rarely persists over long time periods. Failed induction of an immune response and accelerated waning of immune memory both contribute to the immuno-compromised state of the older population. Here we review how T cell memory is influenced by age. T cell memory is maintained by a dynamic population of T cells that are heterogeneous in …


Protein Translation Paradox: Implications In Translational Regulation Of Aging, Harper S Kim, Andrew M Pickering Jan 2023

Protein Translation Paradox: Implications In Translational Regulation Of Aging, Harper S Kim, Andrew M Pickering

Faculty, Staff and Student Publications

Protein translation is an essential cellular process playing key roles in growth and development. Protein translation declines over the course of age in multiple animal species, including nematodes, fruit flies, mice, rats, and even humans. In all these species, protein translation transiently peaks in early adulthood with a subsequent drop over the course of age. Conversely, lifelong reductions in protein translation have been found to extend lifespan and healthspan in multiple animal models. These findings raise the protein synthesis paradox: age-related declines in protein synthesis should be detrimental, but life-long reductions in protein translation paradoxically slow down aging and prolong …


Sexually-Divergent Differentiation And Inflammatory Response To Osteoclasts, Lilijanna L. Cummings Jan 2023

Sexually-Divergent Differentiation And Inflammatory Response To Osteoclasts, Lilijanna L. Cummings

EWU Masters Thesis Collection

No abstract provided.


Characterizing The Effects Of Antiandrogens And Senolytics To Enhance The Therapeutic Response To Castration-Resistant Prostate Cancer, Justin M. Silverman Jan 2023

Characterizing The Effects Of Antiandrogens And Senolytics To Enhance The Therapeutic Response To Castration-Resistant Prostate Cancer, Justin M. Silverman

Theses and Dissertations

Prostate cancer is the most frequently diagnosed cancer in males and the second most common cause of cancer deaths. Androgen deprivation therapy, whether through surgical or chemical castration, is the mainstay for treatment of advanced prostate cancer; however, despite an initial response, most patients eventually develop a progressive PSA rise, and castration- sensitive prostate cancer gives rise to castration-resistant prostate cancer. The standard of care therapy includes the antiandrogens such as enzalutamide and abiraterone acetate as well as the microtubule poison, docetaxel, and various immunotherapies; however, while prostate cancer research is progressing, there continues to be a compelling need for …


Role Of Adenosine Deaminase In Prostate Cancer Progression, Christy Charles, Stacy M Lloyd, Danthasinghe Waduge Badrajee Piyarathna, Jie Gohlke, Uttam Rasaily, Vasanta Putluri, Brian W Simons, Alexander Zaslavsky, Srinivas Nallandhighal, George Michailidis, Nallasivam Palanisamy, Nora Navone, Jeffrey A Jones, Michael M Ittmann, Nagireddy Putluri, David R Rowley, Simpa S Salami, Ganesh S Palapattu, Arun Sreekumar Jan 2023

Role Of Adenosine Deaminase In Prostate Cancer Progression, Christy Charles, Stacy M Lloyd, Danthasinghe Waduge Badrajee Piyarathna, Jie Gohlke, Uttam Rasaily, Vasanta Putluri, Brian W Simons, Alexander Zaslavsky, Srinivas Nallandhighal, George Michailidis, Nallasivam Palanisamy, Nora Navone, Jeffrey A Jones, Michael M Ittmann, Nagireddy Putluri, David R Rowley, Simpa S Salami, Ganesh S Palapattu, Arun Sreekumar

Faculty, Staff and Students Publications

Prostate cancer (PCa) is the second most common cancer and constitutes about 14.7% of total cancer cases. PCa is highly prevalent and more aggressive in African-American (AA) men than in European-American (EA) men. PCa tends to be highly heterogeneous, and its complex biology is not fully understood. We use metabolomics to better understand the mechanisms behind PCa progression and disparities in its clinical outcome. Adenosine deaminase (ADA) is a key enzyme in the purine metabolic pathway; it was found to be upregulated in PCa and is associated with higher-grade PCa and poor disease-free survival. The inosine-to-adenosine ratio, which is a …


Novel Compound Heterozygous Variants In The Ush2a Gene Associated With Autosomal Recessive Retinitis Pigmentosa Without Hearing Loss, Yanxia Huang, Lamei Yuan, Guiyun He, Yanna Cao, Xiong Deng, Hao Deng Jan 2023

Novel Compound Heterozygous Variants In The Ush2a Gene Associated With Autosomal Recessive Retinitis Pigmentosa Without Hearing Loss, Yanxia Huang, Lamei Yuan, Guiyun He, Yanna Cao, Xiong Deng, Hao Deng

Faculty, Staff and Student Publications

Background: Retinitis pigmentosa (RP) is a group of progressive inherited retinal dystrophies characterized by the primary degeneration of rod photoreceptors and the subsequent loss of cone photoreceptors because of cell death. It is caused by different mechanisms, including inflammation, apoptosis, necroptosis, pyroptosis, and autophagy. Variants in the usherin gene (USH2A) have been reported in autosomal recessive RP with or without hearing loss. In the present study, we aimed to identify causative variants in a Han-Chinese pedigree with autosomal recessive RP.

Methods: A six-member, three-generation Han-Chinese family with autosomal recessive RP was recruited. A full clinical examination, whole exome …


Spatial And Temporal Organization Of The Genome: Current State And Future Aims Of The 4d Nucleome Project, Clara Agudo-Rios, Amber Rogers, Isaiah King, Virali Bhagat, Le My Tu Nguyen, Carlos Córdova-Fletes, Diego Krapf, Jerome F Strauss, Lena Arévalo, Gina Esther Merges, Hubert Schorle, Eduardo R S Roldan, Maria Eugenia Teves Jan 2023

Spatial And Temporal Organization Of The Genome: Current State And Future Aims Of The 4d Nucleome Project, Clara Agudo-Rios, Amber Rogers, Isaiah King, Virali Bhagat, Le My Tu Nguyen, Carlos Córdova-Fletes, Diego Krapf, Jerome F Strauss, Lena Arévalo, Gina Esther Merges, Hubert Schorle, Eduardo R S Roldan, Maria Eugenia Teves

Faculty, Staff and Student Publications

Protamines (PRM1 and PRM2) are small, arginine-rich, nuclear proteins that replace histones in the final stages of spermiogenesis, ensuring chromatin compaction and nuclear remodeling. Defects in protamination lead to increased DNA fragmentation and reduced male fertility. Since efficient sperm production requires the translocation of protamines from the cytoplasm to the nucleus, we investigated whether SPAG17, a protein crucial for intracellular protein trafficking during spermiogenesis, participates in protamine transport. Initially, we assessed the protein-protein interaction between SPAG17 and protamines using proximity ligation assays, revealing a significant interaction originating in the cytoplasm and persisting within the nucleus. Subsequently, immunoprecipitation and mass spectrometry …


Molecular Mechanisms Of Prdm16 As A Tumor Suppressor In Pancreatic Ductal Adenocarcinoma, Eric Hurwitz Jan 2023

Molecular Mechanisms Of Prdm16 As A Tumor Suppressor In Pancreatic Ductal Adenocarcinoma, Eric Hurwitz

Theses and Dissertations

The transcription factor Prdm16 functions as a potent suppressor of transforming growth factor-beta (TGF-b) signaling, whose inactivation is deemed essential to the progression of pancreatic ductal adenocarcinoma (PDAC). Using the KrasG12D-based mouse model of human PDAC, we surprisingly found that ablating Prdm16 did not block but instead accelerated PDAC formation and progression, suggesting that Prdm16 might function as a tumor suppressor in this malignancy. Subsequent genetic experiments showed that ablating Prdm16 along with Smad4 resulted in a shift from a well-differentiated and confined neoplasm to a highly aggressive and metastatic disease, which was associated with a striking deviation …


Cell-Type-Specific Aging Clocks To Quantify Aging And Rejuvenation In Neurogenic Regions Of The Brain, Matthew T Buckley, Eric D Sun, Benson M George, Ling Liu, Nicholas Schaum, Lucy Xu, Jaime M Reyes, Margaret A Goodell, Irving L Weissman, Tony Wyss-Coray, Thomas A Rando, Anne Brunet Jan 2023

Cell-Type-Specific Aging Clocks To Quantify Aging And Rejuvenation In Neurogenic Regions Of The Brain, Matthew T Buckley, Eric D Sun, Benson M George, Ling Liu, Nicholas Schaum, Lucy Xu, Jaime M Reyes, Margaret A Goodell, Irving L Weissman, Tony Wyss-Coray, Thomas A Rando, Anne Brunet

Faculty, Staff and Students Publications

The diversity of cell types is a challenge for quantifying aging and its reversal. Here we develop 'aging clocks' based on single-cell transcriptomics to characterize cell-type-specific aging and rejuvenation. We generated single-cell transcriptomes from the subventricular zone neurogenic region of 28 mice, tiling ages from young to old. We trained single-cell-based regression models to predict chronological age and biological age (neural stem cell proliferation capacity). These aging clocks are generalizable to independent cohorts of mice, other regions of the brains, and other species. To determine if these aging clocks could quantify transcriptomic rejuvenation, we generated single-cell transcriptomic datasets of neurogenic …


The Nr2f2-Hand2 Signaling Axis Regulates Progesterone Actions In The Uterus At Early Pregnancy, Yeongseok Oh, Elvis Quiroz, Tianyuan Wang, Yassmin Medina-Laver, Skylar Montague Redecke, Francisco Dominguez, John P Lydon, Francesco J Demayo, San-Pin Wu Jan 2023

The Nr2f2-Hand2 Signaling Axis Regulates Progesterone Actions In The Uterus At Early Pregnancy, Yeongseok Oh, Elvis Quiroz, Tianyuan Wang, Yassmin Medina-Laver, Skylar Montague Redecke, Francisco Dominguez, John P Lydon, Francesco J Demayo, San-Pin Wu

Faculty, Staff and Students Publications

Endometrial function is dependent on a tight crosstalk between the epithelial and stromal cells of the endometrium. This communication is critical to ensure a fertile uterus and relies on progesterone and estrogen signaling to prepare a receptive uterus for embryo implantation in early pregnancy. One of the key mediators of this crosstalk is the orphan nuclear receptor NR2F2, which regulates uterine epithelial receptivity and stromal cell differentiation. In order to determine the molecular mechanism regulated by NR2F2, RNAseq analysis was conducted on the uterus of


Resveratrol Attenuates Staphylococcal Enterotoxin B-Activated Immune Cell Metabolism, Hasan Alghetaa, Amira Mohammed, Narendra Singh, Kiesha Wilson, Goushuai Cai, Nagireddy Putluri, Mitzi Nagarkatti, Prakash Nagarkatti Jan 2023

Resveratrol Attenuates Staphylococcal Enterotoxin B-Activated Immune Cell Metabolism, Hasan Alghetaa, Amira Mohammed, Narendra Singh, Kiesha Wilson, Goushuai Cai, Nagireddy Putluri, Mitzi Nagarkatti, Prakash Nagarkatti

Faculty, Staff and Students Publications

Acute Respiratory Distress Syndrome (ARDS) is triggered by a variety of insults, such as bacterial and viral infections, including SARS-CoV-2, leading to high mortality. In the murine model of ARDS induced by Staphylococcal enterotoxin-B (SEB), our previous studies showed that while SEB triggered 100% mortality, treatment with Resveratrol (RES) completely prevented such mortality by attenuating inflammation in the lungs. In the current study, we investigated the metabolic profile of SEB-activated immune cells in the lungs following treatment with RES. RES-treated mice had higher expression of miR-100 in the lung mononuclear cells (MNCs), which targeted mTOR, leading to its decreased expression. …


The Covert Symphony: Cellular And Molecular Accomplices In Breast Cancer Metastasis, Hongjiang Si, Madelyn Esquivel, Erika Mendoza Mendoza, Kevin Roarty Jan 2023

The Covert Symphony: Cellular And Molecular Accomplices In Breast Cancer Metastasis, Hongjiang Si, Madelyn Esquivel, Erika Mendoza Mendoza, Kevin Roarty

Faculty, Staff and Students Publications

Breast cancer has emerged as the most commonly diagnosed cancer and primary cause of cancer-related deaths among women worldwide. Although significant progress has been made in targeting the primary tumor, the effectiveness of systemic treatments to prevent metastasis remains limited. Metastatic disease continues to be the predominant factor leading to fatality in the majority of breast cancer patients. The existence of a prolonged latency period between initial treatment and eventual recurrence in certain patients indicates that tumors can both adapt to and interact with the systemic environment of the host, facilitating and sustaining the progression of the disease. In order …


The Coordinated Management Of Ribosome And Translation During Injury And Regeneration, Thanh Nguyen, Jason C Mills, Charles J Cho Jan 2023

The Coordinated Management Of Ribosome And Translation During Injury And Regeneration, Thanh Nguyen, Jason C Mills, Charles J Cho

Faculty, Staff and Students Publications

Diverse acute and chronic injuries induce damage responses in the gastrointestinal (GI) system, and numerous cell types in the gastrointestinal tract demonstrate remarkable resilience, adaptability, and regenerative capacity in response to stress. Metaplasias, such as columnar and secretory cell metaplasia, are well-known adaptations that these cells make, the majority of which are epidemiologically associated with an elevated cancer risk. On a number of fronts, it is now being investigated how cells respond to injury at the tissue level, where diverse cell types that differ in proliferation capacity and differentiation state cooperate and compete with one another to participate in regeneration. …


The Gastrointestinal-Brain-Microbiota Axis: A Promising Therapeutic Target For Ischemic Stroke, Yan-Hao Wei, Ren-Tang Bi, Yan-Mei Qiu, Chun-Lin Zhang, Jian-Zhuang Li, Ya-Nan Li, Bo Hu Jan 2023

The Gastrointestinal-Brain-Microbiota Axis: A Promising Therapeutic Target For Ischemic Stroke, Yan-Hao Wei, Ren-Tang Bi, Yan-Mei Qiu, Chun-Lin Zhang, Jian-Zhuang Li, Ya-Nan Li, Bo Hu

Faculty, Staff and Student Publications

Ischemic stroke is a highly complex systemic disease characterized by intricate interactions between the brain and gastrointestinal tract. While our current understanding of these interactions primarily stems from experimental models, their relevance to human stroke outcomes is of considerable interest. After stroke, bidirectional communication between the brain and gastrointestinal tract initiates changes in the gastrointestinal microenvironment. These changes involve the activation of gastrointestinal immunity, disruption of the gastrointestinal barrier, and alterations in gastrointestinal microbiota. Importantly, experimental evidence suggests that these alterations facilitate the migration of gastrointestinal immune cells and cytokines across the damaged blood-brain barrier, ultimately infiltrating the ischemic brain. …


Selective Reprogramming Of Regulatory T Cells In Solid Tumors Can Strongly Enhance Or Inhibit Tumor Growth, Rami Alfar, John V Napoleon, Imrul Shahriar, Richard Finnell, Cole Walchle, Austin Johnson, Philip S Low Jan 2023

Selective Reprogramming Of Regulatory T Cells In Solid Tumors Can Strongly Enhance Or Inhibit Tumor Growth, Rami Alfar, John V Napoleon, Imrul Shahriar, Richard Finnell, Cole Walchle, Austin Johnson, Philip S Low

Faculty, Staff and Students Publications

Folate receptor delta (FRδ) has been used as a biomarker for regulatory T cells (Tregs), because its expression is limited to Tregs and ovum. Although FRδ is unable to bind folate, we have used molecular docking software to identify a folate congener that binds FRδ with high affinity and have exploited this FRδ-specific ligand to target attached drugs (imaging agents, immune activators, and immune suppressors) specifically to Tregs in murine tumor xenografts. Analysis of treated tumors demonstrates that targeting of a Toll-like receptor 7 agonist inhibits Treg expression of FOXP3, PD-1, CTLA4, and HELIOS, resulting in 40-80% reduction in tumor …


Binary Classification Of The Endocrine Disrupting Chemicals By Artificial Neural Networks, Zahir Aghayev, George F Walker, Funda Iseri, Moustafa Ali, Adam T Szafran, Fabio Stossi, Michael A Mancini, Efstratios N Pistikopoulos, Burcu Beykal Jan 2023

Binary Classification Of The Endocrine Disrupting Chemicals By Artificial Neural Networks, Zahir Aghayev, George F Walker, Funda Iseri, Moustafa Ali, Adam T Szafran, Fabio Stossi, Michael A Mancini, Efstratios N Pistikopoulos, Burcu Beykal

Faculty, Staff and Students Publications

We develop a machine learning framework that integrates high content/high throughput image analysis and artificial neural networks (ANNs) to model the separation between chemical compounds based on their estrogenic receptor activity. Natural and man-made chemicals have the potential to disrupt the endocrine system by interfering with hormone actions in people and wildlife. Although numerous studies have revealed new knowledge on the mechanism through which these compounds interfere with various hormone receptors, it is still a very challenging task to comprehensively evaluate the endocrine disrupting potential of all existing chemicals and their mixtures by pure


Versican Provides The Provisional Matrix For Uterine Spiral Artery Dilation And Fetal Growth, Yusuke Sagae, Akihito Horie, Akihiro Yanai, Tsutomu Ohara, Baku Nakakita, Yoshimi Kitawaki, Asuka Okunomiya, Hirohiko Tani, Ken Yamaguchi, Junzo Hamanishi, John P Lydon, Takiko Daikoku, Hideto Watanabe, Masaki Mandai Jan 2023

Versican Provides The Provisional Matrix For Uterine Spiral Artery Dilation And Fetal Growth, Yusuke Sagae, Akihito Horie, Akihiro Yanai, Tsutomu Ohara, Baku Nakakita, Yoshimi Kitawaki, Asuka Okunomiya, Hirohiko Tani, Ken Yamaguchi, Junzo Hamanishi, John P Lydon, Takiko Daikoku, Hideto Watanabe, Masaki Mandai

Faculty, Staff and Students Publications

The extracellular matrix (ECM) in the endometrium plays a crucial role in mammalian pregnancy. We have shown that versican secreted from the endometrial epithelium promotes embryo implantation. Versican is a proteoglycan, a major player in the provisional matrix, and versikine, its N-terminal fragment cleaved by ADAMTS proteinases, serves as a bioactive molecule. Here, since versican expression in the placenta was dynamically altered in humans and mice, we investigated the role of versican in pregnancy using uterine-specific Vcan deletion mice (uKO mice) and ADAMTS-resistant versican expressing mice (V1R mice). uKO mice exhibited insufficient spiral artery dilation, followed by fetal growth restriction …


Integrative Metabolomics And Transcriptomics Analysis Reveals Novel Therapeutic Vulnerabilities In Lung Cancer, Jose Thaiparambil, Jianrong Dong, Sandra L Grimm, Dimuthu Perera, Chandra Shekar R Ambati, Vasanta Putluri, Matthew J Robertson, Tajhal D Patel, Brandon Mistretta, Preethi H Gunaratne, Min P Kim, Jason T Yustein, Nagireddy Putluri, Cristian Coarfa, Randa El-Zein Jan 2023

Integrative Metabolomics And Transcriptomics Analysis Reveals Novel Therapeutic Vulnerabilities In Lung Cancer, Jose Thaiparambil, Jianrong Dong, Sandra L Grimm, Dimuthu Perera, Chandra Shekar R Ambati, Vasanta Putluri, Matthew J Robertson, Tajhal D Patel, Brandon Mistretta, Preethi H Gunaratne, Min P Kim, Jason T Yustein, Nagireddy Putluri, Cristian Coarfa, Randa El-Zein

Faculty, Staff and Students Publications

BACKGROUND: Non-small cell lung cancer (NSCLC) comprises the majority (~85%) of all lung tumors, with lung adenocarcinoma (LUAD) and squamous cell carcinoma (LUSC) being the most frequently diagnosed histological subtypes. Multi-modal omics profiling has been carried out in NSCLC, but no studies have yet reported a unique metabolite-related gene signature and altered metabolic pathways associated with LUAD and LUSC.

METHODS: We integrated transcriptomics and metabolomics to analyze 30 human lung tumors and adjacent noncancerous tissues. Differential co-expression was used to identify modules of metabolites that were altered between normal and tumor.

RESULTS: We identified unique metabolite-related gene signatures specific for …


Emerging Challenges To Cellular Therapy Of Cancer, Premal D Lulla, Malcolm Brenner Jan 2023

Emerging Challenges To Cellular Therapy Of Cancer, Premal D Lulla, Malcolm Brenner

Faculty, Staff and Students Publications

Cellular immunotherapy of cancer in the form of chimeric antigen receptor-modified T-cell therapy has become a standard treatment for lymphoid and more recently plasma cell malignancies. Although their successes in these cancers represent a breakthrough for adoptive cell therapy, there are several challenges to their continued growth in the field of cancer medicine. In this review, we discuss the progress made thus far toward achieving "off-the-shelf" accessibility of cell therapies that has the potential to greatly offset the costs associated with the current practice of making patient-specific products. We also review the innovations under investigation that attempt to make cellular …


An Overview: The Diversified Role Of Mitochondria In Cancer Metabolism, Yu'e Liu, Yihong Sun, Yadong Guo, Xiaoyun Shi, Xi Chen, Wenfeng Feng, Lei-Lei Wu, Jin Zhang, Shibo Yu, Yi Wang, Yufeng Shi Jan 2023

An Overview: The Diversified Role Of Mitochondria In Cancer Metabolism, Yu'e Liu, Yihong Sun, Yadong Guo, Xiaoyun Shi, Xi Chen, Wenfeng Feng, Lei-Lei Wu, Jin Zhang, Shibo Yu, Yi Wang, Yufeng Shi

Faculty, Staff and Students Publications

Mitochondria are intracellular organelles involved in energy production, cell metabolism and cell signaling. They are essential not only in the process of ATP synthesis, lipid metabolism and nucleic acid metabolism, but also in tumor development and metastasis. Mutations in mtDNA are commonly found in cancer cells to promote the rewiring of bioenergetics and biosynthesis, various metabolites especially oncometabolites in mitochondria regulate tumor metabolism and progression. And mutation of enzymes in the TCA cycle leads to the unusual accumulation of certain metabolites and oncometabolites. Mitochondria have been demonstrated as the target for cancer treatment. Cancer cells rely on two main energy …