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Full-Text Articles in Medical Specialties

Aif3 Splicing Variant Elicits Mitochondrial Malfunction Via The Concurrent Dysregulation Of Electron Transport Chain And Glutathione-Redox Homeostasis, Mi Zhou, Shuiqiao Liu, Yanan Wang, Bo Zhang, Ming Zhu, Jennifer E Wang, Veena Rajaram, Yisheng Fang, Weibo Luo, Yingfei Wang Feb 2025

Aif3 Splicing Variant Elicits Mitochondrial Malfunction Via The Concurrent Dysregulation Of Electron Transport Chain And Glutathione-Redox Homeostasis, Mi Zhou, Shuiqiao Liu, Yanan Wang, Bo Zhang, Ming Zhu, Jennifer E Wang, Veena Rajaram, Yisheng Fang, Weibo Luo, Yingfei Wang

Faculty, Staff and Student Publications

Genetic mutations in apoptosis-inducing factor (AIF) have a strong association with mitochondrial disorders; however, little is known about the aberrant splicing variants in affected patients and how these variants contribute to mitochondrial dysfunction and brain development defects. We identified pathologic AIF3/AIF3-like splicing variants in postmortem brain tissues of pediatric individuals with mitochondrial disorders. Mutations in AIFM1 exon-2/3 increase splicing risks. AIF3-splicing disrupts mitochondrial complexes, membrane potential, and respiration, causing brain development defects. Mechanistically, AIF is a mammalian NAD(P)H dehydrogenase and possesses glutathione reductase activity controlling respiratory chain functions and glutathione regeneration. Conversely, AIF3, lacking these activities, disassembles mitochondrial complexes, increases …


Benefits Of Equilibrium Between Microbiota- And Host-Derived Ligands Of The Aryl Hydrocarbon Receptor After Stroke In Aged Male Mice, Pedram Peesh, Maria P Blasco-Conesa, Ahmad El Hamamy, Romeesa Khan, Gary U Guzman, Parisa Honarpisheh, Eric C Mohan, Grant W Goodman, Justin N Nguyen, Anik Banerjee, Bryce E West, Kyung Ae Ko, Janelle M Korf, Chunfeng Tan, Huihui Fan, Gabriela D Colpo, Hilda Ahnstedt, Lucy Couture, Solji Roh, Julia K Kofler, Jose F Moruno-Manchon, Michael E Maniskas, Jaroslaw Aronowski, Rodney M Ritzel, Juneyoung Lee, Jun Li, Robert M Bryan, Anjali Chauhan, Venugopal Reddy Venna, Louise D Mccullough, Bhanu Priya Ganesh Feb 2025

Benefits Of Equilibrium Between Microbiota- And Host-Derived Ligands Of The Aryl Hydrocarbon Receptor After Stroke In Aged Male Mice, Pedram Peesh, Maria P Blasco-Conesa, Ahmad El Hamamy, Romeesa Khan, Gary U Guzman, Parisa Honarpisheh, Eric C Mohan, Grant W Goodman, Justin N Nguyen, Anik Banerjee, Bryce E West, Kyung Ae Ko, Janelle M Korf, Chunfeng Tan, Huihui Fan, Gabriela D Colpo, Hilda Ahnstedt, Lucy Couture, Solji Roh, Julia K Kofler, Jose F Moruno-Manchon, Michael E Maniskas, Jaroslaw Aronowski, Rodney M Ritzel, Juneyoung Lee, Jun Li, Robert M Bryan, Anjali Chauhan, Venugopal Reddy Venna, Louise D Mccullough, Bhanu Priya Ganesh

Faculty, Staff and Student Publications

Recent studies have highlighted the crucial role of microglia (MG) and their interactions with the gut microbiome in post-stroke neuroinflammation. The activation of immunoregulatory pathways, including the aryl hydrocarbon receptor (AHR) pathway, is influenced by a dynamic balance of ligands derived from both the host and microbiota. This study aimed to investigate the association between stroke-induced dysbiosis and the resultant imbalance in AHR ligand sources (loss of microbiota-derived [indole-based] and increase of host-derived [kynurenine-based]) after stroke. Microbiota-derived AHR ligands decreased in human plasma and remained low for days following an ischemic stroke highlighting the translational significance. Transient-middle-cerebral-artery-occlusion was performed in …


Biguanides Antithetically Regulate Tumor Properties By The Dose-Dependent Mitochondrial Reprogramming-Driven C-Src Pathway, Jun Hyoung Park, Kwang Hwa Jung, Dongya Jia, Sukjin Yang, Kuldeep S Attri, Songyeon Ahn, Divya Murthy, Tagari Samanta, Debasmita Dutta, Meron Ghidey, Somik Chatterjee, Seung Yeop Han, Diego A Pedroza, Abha Tiwari, Joyce V Lee, Caitlin Davis, Shuting Li, Vasanta Putluri, Chad J Creighton, Nagireddy Putluri, Lacey E Dobrolecki, Michael T Lewis, Jeffrey M Rosen, José N Onuchic, Andrei Goga, Benny Abraham Kaipparettu Feb 2025

Biguanides Antithetically Regulate Tumor Properties By The Dose-Dependent Mitochondrial Reprogramming-Driven C-Src Pathway, Jun Hyoung Park, Kwang Hwa Jung, Dongya Jia, Sukjin Yang, Kuldeep S Attri, Songyeon Ahn, Divya Murthy, Tagari Samanta, Debasmita Dutta, Meron Ghidey, Somik Chatterjee, Seung Yeop Han, Diego A Pedroza, Abha Tiwari, Joyce V Lee, Caitlin Davis, Shuting Li, Vasanta Putluri, Chad J Creighton, Nagireddy Putluri, Lacey E Dobrolecki, Michael T Lewis, Jeffrey M Rosen, José N Onuchic, Andrei Goga, Benny Abraham Kaipparettu

Faculty, Staff and Students Publications

The biguanide metformin attenuates mitochondrial oxidation and is proposed as an anti-cancer therapy. However, recent clinical studies suggest increased proliferation and fatty acid β-oxidation (FAO) in a subgroup of patients with breast cancer (BC) after metformin therapy. Considering that FAO can activate Src kinase in aggressive triple-negative BC (TNBC), we postulate that low-dose biguanide-driven AMPK-ACC-FAO signaling may activate the Src pathway in TNBC. The low bioavailability of metformin in TNBC xenografts mimics metformin's in vitro low-dose effect. Pharmacological or genetic inhibition of FAO significantly enhances the anti-tumor properties of biguanides. Lower doses of biguanides induce and higher doses suppress Src …


Single-Cell Analysis Of Neoplastic Plasma Cells Identifies Myeloma Pathobiology Mediators And Potential Targets, Luz Yurany Moreno Rueda, Hua Wang, Keiko Akagi, Minghao Dang, Amishi Vora, Li Qin, Hans C Lee, Krina K Patel, Pei Lin, David E Mery, Fenghuang Zhan, John D Shaughnessy, Qing Yi, Yang Song, Bo Jiang, Maura L Gillison, Sheeba K Thomas, Donna M Weber, Lixia Diao, Jing Wang, Isere Kuiatse, Elisabet E Manasanch, David E Symer, Robert Z Orlowski Feb 2025

Single-Cell Analysis Of Neoplastic Plasma Cells Identifies Myeloma Pathobiology Mediators And Potential Targets, Luz Yurany Moreno Rueda, Hua Wang, Keiko Akagi, Minghao Dang, Amishi Vora, Li Qin, Hans C Lee, Krina K Patel, Pei Lin, David E Mery, Fenghuang Zhan, John D Shaughnessy, Qing Yi, Yang Song, Bo Jiang, Maura L Gillison, Sheeba K Thomas, Donna M Weber, Lixia Diao, Jing Wang, Isere Kuiatse, Elisabet E Manasanch, David E Symer, Robert Z Orlowski

Faculty, Staff and Student Publications

Multiple myeloma is a clonal plasma cell (PC) dyscrasia that arises from precursors and has been studied utilizing approaches focused on CD138+ cells. By combining single-cell RNA sequencing (scRNA-seq) with scB-cell receptor sequencing (scBCR-seq), we differentiate monoclonal/neoplastic from polyclonal/normal PCs and find more dysregulated genes, especially in precursor patients, than we would have by analyzing bulk PCs. To determine whether this approach can identify oncogenes that contribute to disease pathobiology, mitotic arrest deficient-2 like-1 (MAD2L1) and S-adenosylmethionine synthase isoform type-2 (MAT2A) are validated as targets with drug-like molecules that suppress myeloma growth in preclinical models. Moreover, functional studies show a …


Mitochondrial Defects And Metabolic Vulnerabilities In Lynch Syndrome-Associated Msh2-Deficient Endometrial Cancer, Mikayla Borthwick Bowen, Brenda Melendez, Qian Zhang, Diana Moreno, Leah Peralta, Wai Kin Chan, Collene Jeter, Lin Tan, M Anna Zal, Philip L Lorenzi, Kenneth Dunner, Richard K Yang, Russell R Broaddus, Joseph Celestino, Nisha Gokul, Elizabeth Whitley, Deena M Scoville, Tae Hoon Kim, Jae-Wook Jeong, Rosemarie Schmandt, Karen Lu, Hyun-Eui Kim, Melinda S Yates Feb 2025

Mitochondrial Defects And Metabolic Vulnerabilities In Lynch Syndrome-Associated Msh2-Deficient Endometrial Cancer, Mikayla Borthwick Bowen, Brenda Melendez, Qian Zhang, Diana Moreno, Leah Peralta, Wai Kin Chan, Collene Jeter, Lin Tan, M Anna Zal, Philip L Lorenzi, Kenneth Dunner, Richard K Yang, Russell R Broaddus, Joseph Celestino, Nisha Gokul, Elizabeth Whitley, Deena M Scoville, Tae Hoon Kim, Jae-Wook Jeong, Rosemarie Schmandt, Karen Lu, Hyun-Eui Kim, Melinda S Yates

Faculty, Staff and Student Publications

Lynch syndrome (LS), caused by inherited mutations in DNA mismatch repair genes, including MSH2, carries a 60% lifetime risk of developing endometrial cancer (EC). Beyond hypermutability, mechanisms driving LS-associated EC (LS-EC) remain unclear. We investigated MSH2 loss in EC pathogenesis using a mouse model (PR-Cre Msh2LoxP/LoxP, abbreviated Msh2KO), primary cell lines, human tissues, and human EC cells with isogenic MSH2 knockdown. By 8 months, 58% of Msh2KO mice developed endometrial atypical hyperplasia (AH), a precancerous lesion. At 12-16 months, 50% of Msh2KO mice exhibited either AH or ECs with histologic similarities to human LS-ECs. Transcriptomic profiling of EC from Msh2KO …


Mage-A4 Induces Non-Small Cell Lung Cancer And Tumor-Promoting Plasma Cell Accumulation, Dominique Armstrong, Cheng-Yen Chang, Monica J Hong, Linda Green, Yichao Shen, William Hudson, Kelsey E Mauk, Li-Zhen Song, Sheetal Jammi, Benjamin Casal, Brianna Burns, Chad J Creighton, Alexandre Carisey, Xiang H-F Zhang, Neil J Mckenna, Sung Wook Kang, Hyun-Sung Lee, William Decker, David B Corry, Farrah Kheradmand Feb 2025

Mage-A4 Induces Non-Small Cell Lung Cancer And Tumor-Promoting Plasma Cell Accumulation, Dominique Armstrong, Cheng-Yen Chang, Monica J Hong, Linda Green, Yichao Shen, William Hudson, Kelsey E Mauk, Li-Zhen Song, Sheetal Jammi, Benjamin Casal, Brianna Burns, Chad J Creighton, Alexandre Carisey, Xiang H-F Zhang, Neil J Mckenna, Sung Wook Kang, Hyun-Sung Lee, William Decker, David B Corry, Farrah Kheradmand

Faculty, Staff and Students Publications

Adaptive immunity is critical in eliminating tumors, but cancer-intrinsic factors can subvert this function. Melanoma antigen-A4 (MAGE-A4), a cancer-testis antigen, is expressed in solid tumors and correlates with poor survival, but its role in tumorigenesis and antitumor immunity remains unclear. We found that expression of MAGE-A4 was highly associated with the loss of PTEN, a tumor suppressor, in human non–small cell lung cancers (NSCLC). Here, we show that constitutive expression of human MAGE-A4 with Pten loss in mouse airway epithelia results in metastatic adenocarcinoma. Tumors showed distinct enrichment in IgA+ CD138+ CXCR4+ plasma cells (PCs) and increased expression of …


Single-Cell Analysis Identifies Ifi27l2a As A Gene Regulator Of Microglial Inflammation In The Context Of Aging And Stroke In Mice, Gab Seok Kim, Elisabeth Harmon, Manuel C Gutierrez, Sodam Kim, Lauren Vance, Haven Burrous, Jessica M Stephenson, Anjali Chauhan, Anik Banerjee, Zachary Wise, Andrea Doan, John Ahn, Ting Wu, Jesus Bautista-Garrido, Juneyoung Lee, Chunfeng Tan, Joo Eun Jung, Louise D Mccullough, Joshua D Wythe, Sean P Marrelli Feb 2025

Single-Cell Analysis Identifies Ifi27l2a As A Gene Regulator Of Microglial Inflammation In The Context Of Aging And Stroke In Mice, Gab Seok Kim, Elisabeth Harmon, Manuel C Gutierrez, Sodam Kim, Lauren Vance, Haven Burrous, Jessica M Stephenson, Anjali Chauhan, Anik Banerjee, Zachary Wise, Andrea Doan, John Ahn, Ting Wu, Jesus Bautista-Garrido, Juneyoung Lee, Chunfeng Tan, Joo Eun Jung, Louise D Mccullough, Joshua D Wythe, Sean P Marrelli

Faculty, Staff and Student Publications

Inflammation is a significant driver of ischemic stroke pathology in the brain. To identify potential regulators of inflammation, we performed single-cell RNA sequencing (scRNA-seq) of young and aged mouse brains following stroke and found that interferon alpha-inducible protein 27 like 2 A (Ifi27l2a) was significantly up-regulated, particularly in microglia of aged brain. Ifi27l2a is induced by interferons for viral host defense and has been linked with pro-inflammatory cellular mechanisms. However, its potential role in neurodegeneration is unknown. Using a combination of cell culture, experimental stroke models in mice, and human autopsy brain samples, we demonstrated that induction of Ifi27l2a occurs …


Inhibition Of Histone Methyltransferase Ezh2 For Immune Interception Of Colorectal Cancer In Lynch Syndrome, Charles M Bowen, Fahriye Duzagac, Abel Martel-Martel, Laura Reyes-Uribe, Mahira Zaheer, Jacklyn Thompson, Nan Deng, Ria Sinha, Soham Mazumdar, Melissa W Taggart, Abhinav K Jain, Elena Tosti, Winfried Edelmann, Krishna M Sinha, Eduardo Vilar Feb 2025

Inhibition Of Histone Methyltransferase Ezh2 For Immune Interception Of Colorectal Cancer In Lynch Syndrome, Charles M Bowen, Fahriye Duzagac, Abel Martel-Martel, Laura Reyes-Uribe, Mahira Zaheer, Jacklyn Thompson, Nan Deng, Ria Sinha, Soham Mazumdar, Melissa W Taggart, Abhinav K Jain, Elena Tosti, Winfried Edelmann, Krishna M Sinha, Eduardo Vilar

Faculty, Staff and Student Publications

Colorectal precancers in Lynch syndrome (LS) exhibit a distinct immune profile, presenting unique opportunities for developing immune-interception strategies to prevent carcinogenesis. Epigenetic modulation by EZH2 of immune-related genes is implicated in the carcinogenesis of different cancer types, including colorectal cancer. This study utilizes a mouse model of LS and ex vivo colonic organoids to assess the effects of the EZH2 inhibitor GSK503 on immune regulatory pathways, tumorigenesis, and epigenetic reprogramming. Our findings revealed that GSK503 significantly increased CD4+ and CD8+ T cells in both splenocytes and colonic mucosa of treated mice compared with controls. Additionally, a preventive dose of GSK503 …


Mbnl Overexpression Rescues Cardiac Phenotypes In A Myotonic Dystrophy Type 1 Heart Mouse Model, Rong-Chi Hu, Yi Zhang, Larissa Nitschke, Sara J Johnson, Ayrea E Hurley, William R Lagor, Zheng Xia, Thomas A Cooper Feb 2025

Mbnl Overexpression Rescues Cardiac Phenotypes In A Myotonic Dystrophy Type 1 Heart Mouse Model, Rong-Chi Hu, Yi Zhang, Larissa Nitschke, Sara J Johnson, Ayrea E Hurley, William R Lagor, Zheng Xia, Thomas A Cooper

Faculty, Staff and Students Publications

Myotonic dystrophy type 1 (DM1) is an autosomal dominant disease caused by a CTG repeat expansion in the dystrophia myotonica protein kinase (DMPK) gene. The expanded CUG repeat RNA (CUGexp RNA) transcribed from the mutant allele sequesters the muscleblind-like (MBNL) family of RNA-binding proteins, causing their loss of function and disrupting regulated pre-mRNA processing. We used a DM1 heart mouse model that inducibly expresses CUGexp RNA to test the contribution of MBNL loss to DM1 cardiac abnormalities and explored MBNL restoration as a potential therapy. AAV9-mediated overexpression of MBNL1 and/or MBNL2 significantly rescued DM1 cardiac phenotypes including conduction delays, contractile …


Nprl2 Gene Therapy Induces Effective Antitumor Immunity In Kras/Stk11 Mutant Anti-Pd1 Resistant Metastatic Non-Small Cell Lung Cancer (Nsclc) In A Humanized Mouse Model, Ismail M Meraz, Mourad Majidi, Renduo Song, Feng Meng, Lihui Gao, Qi Wang, Jing Wang, Elizabeth J Shpall, Jack A Roth Feb 2025

Nprl2 Gene Therapy Induces Effective Antitumor Immunity In Kras/Stk11 Mutant Anti-Pd1 Resistant Metastatic Non-Small Cell Lung Cancer (Nsclc) In A Humanized Mouse Model, Ismail M Meraz, Mourad Majidi, Renduo Song, Feng Meng, Lihui Gao, Qi Wang, Jing Wang, Elizabeth J Shpall, Jack A Roth

Faculty, Staff and Student Publications

Expression of NPRL2/TUSC4, a tumor-suppressor gene, is reduced in many cancers including NSCLC. Restoration of NPRL2 induces DNA damage, apoptosis, and cell-cycle arrest. We investigated NPRL2 antitumor immune responses in aPD1R/KRAS/STK11mt NSCLC in humanized-mice. Humanized-mice were generated by transplanting fresh human cord blood-derived CD34 stem cells into sub-lethally irradiated NSG mice. Lung-metastases were developed from KRAS/STK11mt/aPD1R A549 cells and treated with NPRL2 w/wo pembrolizumab. NPRL2-treatment reduced lung metastases significantly, whereas pembrolizumab was ineffective. Antitumor effect was greater in humanized than non-humanized-mice. NPRL2 + pembrolizumab was not synergistic in KRAS/STK11mt/aPD1R tumors but was …


Bbox1 Restrains Tbk1-Mtorc1 Oncogenic Signaling In Clear Cell Renal Cell Carcinoma, Chengheng Liao, Lianxin Hu, Liwei Jia, Jin Zhou, Tao Wang, Kangsan Kim, Hua Zhong, Hongwei Yao, Lei Dong, Lei Guo, Qian Liang, Cheng Zhang, Fangzhou Zhao, Jun Fang, Hongyi Liu, Shina Li, Lin Xu, Jeremy M Simon, Srinivas Malladi, Payal Kapur, James Brugarolas, Ralph J Deberardinis, Qing Zhang Feb 2025

Bbox1 Restrains Tbk1-Mtorc1 Oncogenic Signaling In Clear Cell Renal Cell Carcinoma, Chengheng Liao, Lianxin Hu, Liwei Jia, Jin Zhou, Tao Wang, Kangsan Kim, Hua Zhong, Hongwei Yao, Lei Dong, Lei Guo, Qian Liang, Cheng Zhang, Fangzhou Zhao, Jun Fang, Hongyi Liu, Shina Li, Lin Xu, Jeremy M Simon, Srinivas Malladi, Payal Kapur, James Brugarolas, Ralph J Deberardinis, Qing Zhang

Faculty, Staff and Student Publications

Clear cell renal cell carcinoma (ccRCC), a metabolic disease originating from renal proximal convoluted tubule (PCT) epithelial cells, remains incompletely understood in terms of its initiating signaling events. Here, we identify γ-butyrobetaine hydroxylase 1 (BBOX1), a key enzyme in carnitine synthesis predominantly expressed in PCT cells, as a tumor suppressor in ccRCC. BBOX1 expression is lost during ccRCC malignant transformation, and its restoration reduces cell viability in physiological medium and inhibits xenograft tumor growth. Transcriptomic analyses reveal that BBOX1 suppresses critical metabolic pathways including mTORC1 signaling and glycolysis in ccRCC. Further, we identify TANK-binding kinase 1 (TBK1) as an essential …


Engineered Immunomodulatory Extracellular Vesicles From Epithelial Cells With The Capacity For Stimulation Of Innate And Adaptive Immunity In Cancer And Autoimmunity, Xin Luo, Fernanda G Kugeratski, Dara P Dowlatshahi, Hikaru Sugimoto, Kent A Arian, Yibo Fan, Li Huang, Danielle Wills, Sergio Lilla, Kelly Hodge, Sara R Zanivan, Valerie S Lebleu, Kathleen M Mcandrews, Raghu Kalluri Feb 2025

Engineered Immunomodulatory Extracellular Vesicles From Epithelial Cells With The Capacity For Stimulation Of Innate And Adaptive Immunity In Cancer And Autoimmunity, Xin Luo, Fernanda G Kugeratski, Dara P Dowlatshahi, Hikaru Sugimoto, Kent A Arian, Yibo Fan, Li Huang, Danielle Wills, Sergio Lilla, Kelly Hodge, Sara R Zanivan, Valerie S Lebleu, Kathleen M Mcandrews, Raghu Kalluri

Faculty, Staff and Student Publications

Extracellular vesicles (EVs) are generated by all cells. Systemic administration of allogenic EVs derived from epithelial and mesenchymal cells have been shown to be safe, despite carrying an array of functional molecules, including thousands of proteins. To address whether epithelial cells derived EVs can be modified to acquire the capacity to induce immune response, we engineered 293T EVs to harbor the immunomodulatory molecules CD80, OX40L and PD-L1. We demonstrated abundant levels of these proteins on the engineered cells and EVs. Functionally, the engineered EVs efficiently elicited positive and negative co-stimulation of human and murine T cells. In the setting of …


Repeat Expansion In A Fragile X Model Is Independent Of Double Strand Break Repair Mediated By Pol Θ, Rad52, Rad54 Or Rad54b, Bruce E Hayward, Geum-Yi Kim, Carson J Miller, Cai Mccann, Megan G Lowery, Richard D Wood, Karen Usdin Feb 2025

Repeat Expansion In A Fragile X Model Is Independent Of Double Strand Break Repair Mediated By Pol Θ, Rad52, Rad54 Or Rad54b, Bruce E Hayward, Geum-Yi Kim, Carson J Miller, Cai Mccann, Megan G Lowery, Richard D Wood, Karen Usdin

Faculty, Staff and Student Publications

Microsatellite instability is responsible for the human repeat expansion diseases (REDs). The mutagenic process differs from classical cancer-associated microsatellite instability (MSI) in that it requires the mismatch repair proteins that normally protect against MSI. LIG4, an enzyme essential for non-homologous end-joining (NHEJ), the major pathway for double-strand break repair (DSBR) in mammalian cells, protects against expansion in mouse models. Thus, NHEJ may compete with the expansion pathway for access to a common intermediate. This raises the possibility that expansion involves an NHEJ-independent form of DSBR. Pol θ, a polymerase involved in the theta-mediated end joining (TMEJ) DSBR pathway, has been …


Long-Read Sequencing Of 945 Han Individuals Identifies Structural Variants Associated With Phenotypic Diversity And Disease Susceptibility, Jiao Gong, Huiru Sun, Kaiyuan Wang, Yanhui Zhao, Yechao Huang, Qinsheng Chen, Hui Qiao, Yang Gao, Jialin Zhao, Yunchao Ling, Ruifang Cao, Jingze Tan, Qi Wang, Yanyun Ma, Jing Li, Jingchun Luo, Sijia Wang, Jiucun Wang, Guoqing Zhang, Shuhua Xu, Feng Qian, Fang Zhou, Huiru Tang, Dali Li, Chinese Pangenome Consortium (Cpc), Fritz J Sedlazeck, Li Jin, Yuting Guan, Shaohua Fan Feb 2025

Long-Read Sequencing Of 945 Han Individuals Identifies Structural Variants Associated With Phenotypic Diversity And Disease Susceptibility, Jiao Gong, Huiru Sun, Kaiyuan Wang, Yanhui Zhao, Yechao Huang, Qinsheng Chen, Hui Qiao, Yang Gao, Jialin Zhao, Yunchao Ling, Ruifang Cao, Jingze Tan, Qi Wang, Yanyun Ma, Jing Li, Jingchun Luo, Sijia Wang, Jiucun Wang, Guoqing Zhang, Shuhua Xu, Feng Qian, Fang Zhou, Huiru Tang, Dali Li, Chinese Pangenome Consortium (Cpc), Fritz J Sedlazeck, Li Jin, Yuting Guan, Shaohua Fan

Faculty, Staff and Students Publications

Genomic structural variants (SVs) are a major source of genetic diversity in humans. Here, through long-read sequencing of 945 Han Chinese genomes, we identify 111,288 SVs, including 24.56% unreported variants, many with predicted functional importance. By integrating human population-level phenotypic and multi-omics data as well as two humanized mouse models, we demonstrate the causal roles of two SVs: one SV that emerges at the common ancestor of modern humans, Neanderthals, and Denisovans in GSDMD for bone mineral density and one modern-human-specific SV in WWP2 impacting height, weight, fat, craniofacial phenotypes and immunity. Our results suggest that the GSDMD SV could …


Neuronal Network Activation Induced By Forniceal Deep Brain Stimulation In Mice, Bin Tang, Zhenyu Wu, Qi Wang, Jianrong Tang Feb 2025

Neuronal Network Activation Induced By Forniceal Deep Brain Stimulation In Mice, Bin Tang, Zhenyu Wu, Qi Wang, Jianrong Tang

Faculty, Staff and Students Publications

Background: The fimbria-fornix is a nerve fiber bundle that connects various structures of the limbic system in the brain and plays a key role in cognition. It has become a major target of deep brain stimulation (DBS) to treat memory impairment in both dementia patients and animal models of neurological diseases. Previously, we have reported the beneficial memory effects of chronic forniceal DBS in mouse models of intellectual disability disorders. In Rett syndrome and CDKL5 deficiency disorder models, DBS strengthens hippocampal synaptic plasticity, reduces dentate inhibitory transmission or increases adult hippocampal neurogenesis that aids memory. However, the underlying neuronal circuitry …


Motor Pool Selectivity Of Neuromuscular Degeneration In Type I Spinal Muscular Atrophy Is Conserved Between Human And Mouse, Justin C Lee, Wendy K Chung, David J Pisapia, Christopher E Henderson Feb 2025

Motor Pool Selectivity Of Neuromuscular Degeneration In Type I Spinal Muscular Atrophy Is Conserved Between Human And Mouse, Justin C Lee, Wendy K Chung, David J Pisapia, Christopher E Henderson

Faculty, Staff and Students Publications

Spinal muscular atrophy (SMA) is caused by low levels of the survival motor neuron (SMN) protein. Even though SMN is ubiquitously expressed, the disease selectively affects motor neurons, leading to progressive muscle weakness. Even among motor neurons, certain motor units appear more clinically resistant to SMA. To quantitatively survey selective resistance, we studied extensive neuromuscular autopsies of Type I SMA patients and age-matched controls. We found highly divergent degrees of degeneration of neighboring motor units, even within individual cranial nerves or a single anatomical area such as the neck. Examination of a Type I SMA patient maintained on life support …


Preclinical Efficacy Of Cdk7 Inhibitor-Based Combinations Against Myeloproliferative Neoplasms Transformed To Aml, Warren Fiskus, Christopher P Mill, Prithviraj Bose, Lucia Masarova, Naveen Pemmaraju, Andrew Dunbar, Christine E Birdwell, John A Davis, Kaberi Das, Hanxi Hou, Taghi Manshouri, Antrix Jain, Anna Malovannaya, Kevin Philip, Noor Alhamadani, Alicia Matthews, Katie Lin, Lauren B Flores, Sanam Loghavi, Courtney Dinardo, Xiaoping Su, Raajit K Rampal, Kapil N Bhalla Feb 2025

Preclinical Efficacy Of Cdk7 Inhibitor-Based Combinations Against Myeloproliferative Neoplasms Transformed To Aml, Warren Fiskus, Christopher P Mill, Prithviraj Bose, Lucia Masarova, Naveen Pemmaraju, Andrew Dunbar, Christine E Birdwell, John A Davis, Kaberi Das, Hanxi Hou, Taghi Manshouri, Antrix Jain, Anna Malovannaya, Kevin Philip, Noor Alhamadani, Alicia Matthews, Katie Lin, Lauren B Flores, Sanam Loghavi, Courtney Dinardo, Xiaoping Su, Raajit K Rampal, Kapil N Bhalla

Faculty, Staff and Student Publications

Rising blast percentage or secondary acute myeloid leukemia (sAML) transformation in myeloproliferative neoplasms (MPNs) leads to JAK1/2 inhibitor (JAKi) therapy resistance and poor survival. Here, we demonstrate that treatment with the CDK7 inhibitor (CDK7i) SY-5609 depletes phenotypically characterized post-MPN sAML stem/progenitor cells. In cultured post-MPN sAML SET2, HEL and patient-derived (PD) post-MPN sAML cells, SY-5609 treatment inhibited growth and induced lethality while sparing normal cells. RNA-sequencing analysis after SY-5609 treatment reduced mRNA expression of MYC, MYB, CDK4/6, PIM1, and CCND1 but increased expression of CDKN1A and BCL2L1. Mass spectrometry of SY-5609-treated MPN-sAML cells also reduced c-Myc, c-Myb, PIM1, and CDK4/6 …


Oncogenic Kras Mutations Confer A Unique Mechanotransduction Response To Peristalsis In Colorectal Cancer Cells, Abigail J Clevenger, Claudia A Collier, John Paul M Gorley, Sarah Colijn, Maygan K Mcfarlin, Spencer C Solberg, Scott Kopetz, Amber N Stratman, Shreya A Raghavan Feb 2025

Oncogenic Kras Mutations Confer A Unique Mechanotransduction Response To Peristalsis In Colorectal Cancer Cells, Abigail J Clevenger, Claudia A Collier, John Paul M Gorley, Sarah Colijn, Maygan K Mcfarlin, Spencer C Solberg, Scott Kopetz, Amber N Stratman, Shreya A Raghavan

Faculty, Staff and Student Publications

Colorectal cancer tumors start as polyps on the inner lining of the colorectum, in which they are exposed to the mechanics of peristalsis. Our previous work leveraged a custom-built peristalsis bioreactor to demonstrate that colonic peristalsis led to cancer stem cell enrichment in colorectal cancer cells. However, this malignant mechanotransductive response was confined to select colorectal cancer lines that harbored an oncogenic mutation in the Kirsten rat sarcoma virus (KRAS) gene. In this study, we explored the involvement of activating KRAS mutations on peristalsis-associated mechanotransduction in colorectal cancer. Peristalsis enriched cancer stem cell marker Leucine-rich repeat-containing G protein-coupled receptor 5 …


Targeting Tiam1 Enhances Hippocampal-Dependent Learning And Memory In The Adult Brain And Promotes Nmda Receptor-Mediated Synaptic Plasticity And Function, Francisco A Blanco, Md Ali Bin Saifullah, Jinxuan X Cheng, Carlota Abella, Federico Scala, Karen Firozi, Sanyong Niu, Jin Park, Jeannie Chin, Kimberley F Tolias Feb 2025

Targeting Tiam1 Enhances Hippocampal-Dependent Learning And Memory In The Adult Brain And Promotes Nmda Receptor-Mediated Synaptic Plasticity And Function, Francisco A Blanco, Md Ali Bin Saifullah, Jinxuan X Cheng, Carlota Abella, Federico Scala, Karen Firozi, Sanyong Niu, Jin Park, Jeannie Chin, Kimberley F Tolias

Faculty, Staff and Students Publications

Excitatory synapses and the actin-rich dendritic spines on which they reside are indispensable for information processing and storage in the brain. In the adult hippocampus, excitatory synapses must balance plasticity and stability to support learning and memory. However, the mechanisms governing this balance remain poorly understood. Tiam1 is an actin cytoskeleton regulator prominently expressed in the dentate gyrus (DG) throughout life. Previously, we showed that Tiam1 promotes dentate granule cell synapse and spine stabilization during development, but its role in the adult hippocampus remains unclear. Here, we deleted Tiam1 from adult forebrain excitatory neurons (Tiam1fKO) and assessed …


Acute Mecp2 Loss In Adult Mice Reveals Transcriptional And Chromatin Changes That Precede Neurological Dysfunction And Inform Pathogenesis, Sameer S Bajikar, Jian Zhou, Ryan O'Hara, Harini P Tirumala, Mark A Durham, Alexander J Trostle, Michelle Dias, Yingyao Shao, Hu Chen, Wei Wang, Hari Krishna Yalamanchili, Ying-Wooi Wan, Laura A Banaszynski, Zhandong Liu, Huda Y Zoghbi Feb 2025

Acute Mecp2 Loss In Adult Mice Reveals Transcriptional And Chromatin Changes That Precede Neurological Dysfunction And Inform Pathogenesis, Sameer S Bajikar, Jian Zhou, Ryan O'Hara, Harini P Tirumala, Mark A Durham, Alexander J Trostle, Michelle Dias, Yingyao Shao, Hu Chen, Wei Wang, Hari Krishna Yalamanchili, Ying-Wooi Wan, Laura A Banaszynski, Zhandong Liu, Huda Y Zoghbi

Faculty, Staff and Students Publications

Mutations in the X-linked methyl-CpG-binding protein 2 (MECP2) gene cause Rett syndrome, a severe childhood neurological disorder. MeCP2 is a well-established transcriptional repressor, yet upon its loss, hundreds of genes are dysregulated in both directions. To understand what drives such dysregulation, we deleted Mecp2 in adult mice, circumventing developmental contributions and secondary pathogenesis. We performed time series transcriptional, chromatin, and phenotypic analyses of the hippocampus to determine the immediate consequences of MeCP2 loss and the cascade of pathogenesis. We find that loss of MeCP2 causes immediate and bidirectional progressive dysregulation of the transcriptome. To understand what drives gene downregulation, we …


Brd7 Loss Reawakens Dormant Metastasis Initiating Cells In Lung By Forging An Immunosuppressive Niche, Jayanta Mondal, Junfeng Zhang, Feng Qing, Shunping Li, Dhiraj Kumar, Jason T Huse, Filippo G Giancotti Feb 2025

Brd7 Loss Reawakens Dormant Metastasis Initiating Cells In Lung By Forging An Immunosuppressive Niche, Jayanta Mondal, Junfeng Zhang, Feng Qing, Shunping Li, Dhiraj Kumar, Jason T Huse, Filippo G Giancotti

Faculty, Staff and Student Publications

Metastasis in cancer is influenced by epigenetic factors. Using an in vivo screen, we demonstrate that several subunits of the polybromo-associated BAF (PBAF) chromatin remodeling complex, particularly Brd7, are required for maintaining breast cancer metastatic dormancy in the lungs of female mice. Brd7 loss induces metastatic reawakening, along with modifications in epigenomic landscapes and upregulated oncogenic signaling. Breast cancer cells harboring Brd7 inactivation also reprogram the surrounding immune microenvironment by downregulating MHC-1 expression and promoting a pro-metastatic cytokine profile. Flow cytometric and single-cell analyses reveal increased levels of pro-tumorigenic inflammatory and transitional neutrophils, CD8+ exhausted T cells, and CD4+ stress …


Diet Therapy Abates Mutant Apc And Kras Effects By Reshaping Plasma Membrane Cholesterol Nanodomains, Eunjoo Kim, Alfredo Erazo-Oliveras, Mónica Muñoz-Vega, Natividad R Fuentes, Michael L Salinas, Miranda J George, Roger S Zoh, Martha E Hensel, Bhimanagouda S Patil, Ivan Ivanov, Nancy D Turner, Robert S Chapkin Feb 2025

Diet Therapy Abates Mutant Apc And Kras Effects By Reshaping Plasma Membrane Cholesterol Nanodomains, Eunjoo Kim, Alfredo Erazo-Oliveras, Mónica Muñoz-Vega, Natividad R Fuentes, Michael L Salinas, Miranda J George, Roger S Zoh, Martha E Hensel, Bhimanagouda S Patil, Ivan Ivanov, Nancy D Turner, Robert S Chapkin

Faculty, Staff and Student Publications

Cholesterol-enriched plasma membrane domains are known to serve as signaling platforms in a diverse array of cellular processes. However, the link between cholesterol homeostasis and mutant APC-KRas-associated colorectal tumorigenesis remains to be established. Thus, we investigated the impact of Apc-Kras on 1) colonocyte plasma membrane cholesterol homeostasis, order, and receptor nanoclustering, 2) colonocyte cell proliferation, and 3) whether these effects are modulated by select membrane active dietaries (MADs). We observed that oncogenic APC-KRas increased membrane order by perturbing cholesterol homeostasis when cell proliferation is upregulated, in part by altering the expression of genes associated with cholesterol influx, export and de …


Estrogen Receptor-Α Ablation Reverses Muscle Fibrosis And Inguinal Hernias, Tanvi Potluri, Tianming You, Ping Yin, John Coon, Jonah J Stulberg, Yang Dai, David J Escobar, Richard L Lieber, Hong Zhao, Serdar E Bulun Feb 2025

Estrogen Receptor-Α Ablation Reverses Muscle Fibrosis And Inguinal Hernias, Tanvi Potluri, Tianming You, Ping Yin, John Coon, Jonah J Stulberg, Yang Dai, David J Escobar, Richard L Lieber, Hong Zhao, Serdar E Bulun

Faculty, Staff and Student Publications

Fibrosis of the lower abdominal muscle (LAM) contributes to muscle weakening and inguinal hernia formation, an ailment that affects a noteworthy 50% of men by age 75 and necessitates surgical correction as the singular therapy. Despite its prevalence, the mechanisms driving LAM fibrosis and hernia development remain poorly understood. Using a humanized mouse model that replicates the elevated skeletal muscle tissue estrogen concentrations seen in aging men, we identified estrogen receptor-α (ESR1) as a key driver of LAM fibroblast proliferation, extracellular matrix deposition, and hernia formation. Fibroblast-specific ESR1 ablation effectively prevented muscle fibrosis and herniation, while pharmacological ESR1 inhibition with …


From Bench To Bedside: Murine Models Of Inherited And Sporadic Brain Arteriovenous Malformations, Ashely R Ricciardelli, Gael Genet, Nafiisha Genet, Samuel T Mcclugage, Peter T Kan, Karen K Hirschi, Jason E Fish, Joshua D Wythe Feb 2025

From Bench To Bedside: Murine Models Of Inherited And Sporadic Brain Arteriovenous Malformations, Ashely R Ricciardelli, Gael Genet, Nafiisha Genet, Samuel T Mcclugage, Peter T Kan, Karen K Hirschi, Jason E Fish, Joshua D Wythe

Faculty, Staff and Students Publications

Brain arteriovenous malformations are abnormal vascular structures in which an artery shunts high pressure blood directly to a vein without an intervening capillary bed. These lesions become highly remodeled over time and are prone to rupture. Historically, brain arteriovenous malformations have been challenging to treat, using primarily surgical approaches. Over the past few decades, the genetic causes of these malformations have been uncovered. These can be divided into (1) familial forms, such as loss of function mutations in TGF-β (BMP9/10) components in hereditary hemorrhagic telangiectasia, or (2) sporadic forms, resulting from somatic gain of function mutations in genes involved in …


Antitumor Activity And Biomarker Analysis For Trop2 Antibody-Drug Conjugate Datopotamab Deruxtecan In Patient-Derived Breast Cancer Xenograft Models, Funda Meric-Bernstam, Erkan Yuca, Kurt W Evans, Ming Zhao, Takanori Maejima, Tsuyoshi Karibe, Maria Gabriela Raso, Ximing Tang, Xiaofeng Zheng, Yasmeen Qamar Rizvi, Argun Akcakanat, Stephen M Scott, Bailiang Wang, Lauren A Byers, Debu Tripathy, Daisuke Okajima, Senthil Damodaran Feb 2025

Antitumor Activity And Biomarker Analysis For Trop2 Antibody-Drug Conjugate Datopotamab Deruxtecan In Patient-Derived Breast Cancer Xenograft Models, Funda Meric-Bernstam, Erkan Yuca, Kurt W Evans, Ming Zhao, Takanori Maejima, Tsuyoshi Karibe, Maria Gabriela Raso, Ximing Tang, Xiaofeng Zheng, Yasmeen Qamar Rizvi, Argun Akcakanat, Stephen M Scott, Bailiang Wang, Lauren A Byers, Debu Tripathy, Daisuke Okajima, Senthil Damodaran

Faculty, Staff and Student Publications

PURPOSE: Datopotamab deruxtecan (Dato-DXd) is a humanized anti-trophoblast cell-surface antigen-2 (TROP2) IgG1 mAb linked to a potent topoisomerase I inhibitor payload (DXd). Dato-DXd has already shown antitumor activity in breast cancer; however, the determinants of response, including the importance of TROP2 expression, remain unclear. We tested the activity of Dato-DXd in a panel of breast cancer patient-derived xenografts (BCX) varying in TROP2 expression.

EXPERIMENTAL DESIGN: The antitumor activity of Dato-DXd and isotype-control-DXd (IgG-DXd) was assessed against 11 BCXs varying in TROP2 expression, 10 representing tumors postneoadjuvant chemotherapy. Pharmacodynamic effects were assessed at 24 and 72 hours. The effects of TROP2 …


Plant-Nanoparticles Enhance Anti-Pd-L1 Efficacy By Shaping Human Commensal Microbiota Metabolites, Yun Teng, Chao Luo, Xiaolan Qiu, Jingyao Mu, Mukesh K Sriwastva, Qingbo Xu, Minmin Liu, Xin Hu, Fangyi Xu, Lifeng Zhang, Juw Won Park, Jae Yeon Hwang, Maiying Kong, Zhanxu Liu, Xiang Zhang, Raobo Xu, Jun Yan, Michael L Merchant, Craig J Mcclain, Huang-Ge Zhang Feb 2025

Plant-Nanoparticles Enhance Anti-Pd-L1 Efficacy By Shaping Human Commensal Microbiota Metabolites, Yun Teng, Chao Luo, Xiaolan Qiu, Jingyao Mu, Mukesh K Sriwastva, Qingbo Xu, Minmin Liu, Xin Hu, Fangyi Xu, Lifeng Zhang, Juw Won Park, Jae Yeon Hwang, Maiying Kong, Zhanxu Liu, Xiang Zhang, Raobo Xu, Jun Yan, Michael L Merchant, Craig J Mcclain, Huang-Ge Zhang

Faculty, Staff and Student Publications

Diet has emerged as a key impact factor for gut microbiota function. However, the complexity of dietary components makes it difficult to predict specific outcomes. Here we investigate the impact of plant-derived nanoparticles (PNP) on gut microbiota and metabolites in context of cancer immunotherapy with the humanized gnotobiotic mouse model. Specifically, we show that ginger-derived exosome-like nanoparticle (GELN) preferentially taken up by Lachnospiraceae and Lactobacillaceae mediated by digalactosyldiacylglycerol (DGDG) and glycine, respectively. We further demonstrate that GELN aly-miR159a-3p enhances anti-PD-L1 therapy in melanoma by inhibiting the expression of recipient bacterial phospholipase C (PLC) and increases the accumulation of docosahexaenoic acid …


Cancer Cells Avoid Ferroptosis Induced By Immune Cells Via Fatty Acid Binding Proteins, Maria Angelica Freitas-Cortez, Fatemeh Masrorpour, Hong Jiang, Iqbal Mahmud, Yue Lu, Ailing Huang, Lisa K Duong, Qi Wang, Tiffany A Voss, Claudia S Kettlun Leyton, Bo Wei, Wai-Kin Chan, Kevin Lin, Jie Zhang, Efrosini Tsouko, Shonik Ganjoo, Hampartsoum B Barsoumian, Thomas S Riad, Yun Hu, Carola Leuschner, Nahum Puebla-Osorio, Jing Wang, Jian Hu, Michael A Davies, Vinay K Puduvalli, Cyrielle Billon, Thomas P Burris, Philip L Lorenzi, Boyi Gan, James W Welsh Feb 2025

Cancer Cells Avoid Ferroptosis Induced By Immune Cells Via Fatty Acid Binding Proteins, Maria Angelica Freitas-Cortez, Fatemeh Masrorpour, Hong Jiang, Iqbal Mahmud, Yue Lu, Ailing Huang, Lisa K Duong, Qi Wang, Tiffany A Voss, Claudia S Kettlun Leyton, Bo Wei, Wai-Kin Chan, Kevin Lin, Jie Zhang, Efrosini Tsouko, Shonik Ganjoo, Hampartsoum B Barsoumian, Thomas S Riad, Yun Hu, Carola Leuschner, Nahum Puebla-Osorio, Jing Wang, Jian Hu, Michael A Davies, Vinay K Puduvalli, Cyrielle Billon, Thomas P Burris, Philip L Lorenzi, Boyi Gan, James W Welsh

Faculty, Staff and Student Publications

Background: Cancer creates an immunosuppressive environment that hampers immune responses, allowing tumors to grow and resist therapy. One way the immune system fights back is by inducing ferroptosis, a type of cell death, in tumor cells through CD8 + T cells. This involves lipid peroxidation and enzymes like lysophosphatidylcholine acyltransferase 3 (Lpcat3), which makes cells more prone to ferroptosis. However, the mechanisms by which cancer cells avoid immunotherapy-mediated ferroptosis are unclear. Our study reveals how cancer cells evade ferroptosis and anti-tumor immunity through the upregulation of fatty acid-binding protein 7 (Fabp7).

Methods: To explore how cancer cells resist immune cell-mediated …


Investigating The In Vivo Effects Of Anti-Prion Protein Nanobodies On Prion Disease With Aav Vector, Jingjing Zhang, Mengfei Wang, Dan Wang, Xiangyi Zhang, Yue Ma, Els Pardon, Jan Steyaert, Romany Abskharon, Fei Wang, Jiyan Ma Feb 2025

Investigating The In Vivo Effects Of Anti-Prion Protein Nanobodies On Prion Disease With Aav Vector, Jingjing Zhang, Mengfei Wang, Dan Wang, Xiangyi Zhang, Yue Ma, Els Pardon, Jan Steyaert, Romany Abskharon, Fei Wang, Jiyan Ma

Faculty, Staff and Student Publications

Prion diseases are fatal neurodegenerative disorders affecting humans and animals, and the central pathogenic event is the conversion of normal prion protein (PrPC) into the pathogenic PrPSc isoform. Previous studies have identified nanobodies that specifically recognize PrPC and inhibit the PrPC to PrPSc conversion in vitro. In this study, we investigated the potential for in vivo expression of anti-PrPC nanobodies and evaluated their impact on prion disease. The coding sequences of three nanobodies were packaged into recombinant adeno-associated virus (rAAV) and were administered via intracerebroventricular (ICV) injection in newborn mice. We found that the expression of these nanobodies remained robust …


Pancreatic Organogenesis Mapped Through Space And Time, Marissa A Scavuzzo, Wojciech J Szlachcic, Matthew C Hill, Natalia M Ziojla, Jessica Teaw, Jeffrey C Carlson, Jonathan Tiessen, Jolanta Chmielowiec, James F Martin, Malgorzata Borowiak Feb 2025

Pancreatic Organogenesis Mapped Through Space And Time, Marissa A Scavuzzo, Wojciech J Szlachcic, Matthew C Hill, Natalia M Ziojla, Jessica Teaw, Jeffrey C Carlson, Jonathan Tiessen, Jolanta Chmielowiec, James F Martin, Malgorzata Borowiak

Faculty, Staff and Students Publications

The spatial organization of cells within a tissue is dictated throughout dynamic developmental processes. We sought to understand whether cells geometrically coordinate with one another throughout development to achieve their organization. The pancreas is a complex cellular organ with a particular spatial organization. Signals from the mesenchyme, neurons, and endothelial cells instruct epithelial cell differentiation during pancreatic development. To understand the cellular diversity and spatial organization of the developing pancreatic niche, we mapped the spatial relationships between single cells over time. We found that four transcriptionally unique subtypes of mesenchyme in the developing pancreas spatially coordinate throughout development, with each …


Oxidative Stress Promotes Lipid-Laden Macrophage Formation Via Cyp1b1, Yin Zhu, Saugata Dutta, Yohan Han, Dooyoung Choi, Francesca Polverino, Caroline A Owen, Payaningal R Somanath, Xiaoyun Wang, Duo Zhang Feb 2025

Oxidative Stress Promotes Lipid-Laden Macrophage Formation Via Cyp1b1, Yin Zhu, Saugata Dutta, Yohan Han, Dooyoung Choi, Francesca Polverino, Caroline A Owen, Payaningal R Somanath, Xiaoyun Wang, Duo Zhang

Faculty, Staff and Students Publications

Emerging evidence suggests that lipid-laden macrophages (LLM) participate in lung damage in various clinical conditions. However, the mechanisms involved in LLM formation are not fully understood. In this study, we aimed to investigate the link between reactive oxygen species (ROS) and LLM formation. We found that ROS triggered by cigarette smoke extract (CSE) or H2O2 significantly promoted LLM formation. Given the key role of ROS in LLM formation, we further demonstrated that LLM formation is induced by various ROS-producing stimuli, including bacteria, oxidized low-density lipoprotein (OxLDL), hyperoxia, and E-cigarette vapor extract (EVE). Meanwhile, cytochrome P450 family-1 subfamily B member 1 …