Mintruls: Prediction Of Mirna-Mrna Target Site Interactions Using Regularized Least Square Method,
2022
University of Nebraska Medical Center
Mintruls: Prediction Of Mirna-Mrna Target Site Interactions Using Regularized Least Square Method, Sushil Kumar Shakyawar, Siddesh Southekal, Chittibabu Guda
Journal Articles: Genetics, Cell Biology & Anatomy
Identification of miRNA-mRNA interactions is critical to understand the new paradigms in gene regulation. Existing methods show suboptimal performance owing to inappropriate feature selection and limited integration of intuitive biological features of both miRNAs and mRNAs. The present regularized least square-based method, mintRULS, employs features of miRNAs and their target sites using pairwise similarity metrics based on free energy, sequence and repeat identities, and target site accessibility to predict miRNA-target site interactions. We hypothesized that miRNAs sharing similar structural and functional features are more likely to target the same mRNA, and conversely, mRNAs with similar features can be targeted by …
Extracellular Mechanotransduction,
2022
University of Nebraska Medical Center
Extracellular Mechanotransduction, Stephen J. Haller, Andrew T. Dudley
Journal Articles: Genetics, Cell Biology & Anatomy
We highlight the force-sensing function of extracellular matrix and present a complementary mechanotransduction paradigm.
Methodologies To Unlock The Molecular Expression And Cellular Structure Of Ocular Lens Epithelial Cells,
2022
The Texas Medical Center Library
Methodologies To Unlock The Molecular Expression And Cellular Structure Of Ocular Lens Epithelial Cells, Justin Parreno, Grace Emin, Michael P Vu, Jackson T Clark, Sandeep Aryal, Shaili D Patel, Catherine Cheng
Faculty, Staff and Student Publications
The transparent ocular lens in the anterior chamber of the eye is responsible for fine focusing of light onto the retina. The lens is entirely cellular with bulk of the tissue composed of fiber cells, and the anterior hemisphere of the lens is covered by a monolayer of epithelial cells. Lens epithelial cells are important for maintaining fiber cell homeostasis and for continual growth of the lens tissue throughout life. Cataracts, defined as any opacity in the lens, remain the leading cause of blindness in the world. Following cataract surgery, lens epithelial cells can undergo a process of epithelial-to-mesenchymal transition …
Regulation Of The Protease Activity For The Mitochondrial Omi/Htra2,
2022
University of Central Florida
Regulation Of The Protease Activity For The Mitochondrial Omi/Htra2, Simon Larson
Honors Undergraduate Theses
Human High Temperature requirement A2 (HtrA2) also known as Omi, is a serine protease located in the mitochondria with an important function in both cell survival and death. My results show the proteolytic activity of Omi/HtrA2 varies under different conditions. I characterized the optimal condition for Omi/HtrA2 protease activity using an in vitro assay system. Additionally, I identified a new allosteric regulation of Omi/HtrA2 through interaction with a specific substrate, the MUL1 protein. MUL1 is a multifunctional E3 ubiquitin ligase anchored in the outer mitochondrial membrane with domains both inside mitochondria and in the cytoplasm. The data shown here strongly …
Phytochemical Constituents Of Aquilaria Malaccensis Leaf Extract And Their Anti-Inflammatory Activity Against Lps/Ifn-Γ-Stimulated Raw 264.7 Cell Line,
2022
The British University in Egypt
Phytochemical Constituents Of Aquilaria Malaccensis Leaf Extract And Their Anti-Inflammatory Activity Against Lps/Ifn-Γ-Stimulated Raw 264.7 Cell Line, Eman Ramadan, Manar A. Eissa, Yumi Z. H-Y Hashim, Dina M. El-Kersh
Pharmacy
This study aims to identify the major phytochemical constituents in Aquilaria malaccensis (Thymelaeaceae) ethanolic leaf extract (ALEX-M) and elucidate their ability to suppress nitric oxide (NO) production from a murine macrophage-like cell line (RAW 264.7) stimulated by lipopolysaccharide (LPS) and interferon-γ (IFN-γ). Dichloromethane (DCM) and ethyl acetate (EtOAc) fractions of ALEX-M were subjected to column chromatography. Eight known compounds were isolated for the first time from this species. Compounds were identified using spectroscopic techniques (IR, UV, HRESIMS, and 1D and 2D NMR). Anti-inflammatory activity of both extract and isolated compounds were investigated in vitro. The fractions offered the isolation of …
A Transgenic Bacterial Artificial Chromosome Approach To Identify Regulatory Regions That Direct Amhr2 And Osterix Expression In Müllerian Duct Mesenchyme,
2022
The Texas Medical Center Library
A Transgenic Bacterial Artificial Chromosome Approach To Identify Regulatory Regions That Direct Amhr2 And Osterix Expression In Müllerian Duct Mesenchyme, Malcolm M Moses, Rachel D Mullen, Daniel I Idowu, Peter Maye, Soazik P Jamin, Richard R Behringer
Faculty, Staff and Student Publications
A transgenic mouse approach using bacterial artificial chromosomes (BAC) was used to identify regulatory regions that direct Müllerian duct expression for Amhr2 and Osterix (Osx, also known as Sp7). Amhr2 encodes the receptor that mediates anti-Müllerian hormone (AMH) signaling for Müllerian duct regression in male embryos. Amhr2 is expressed in the Müllerian duct mesenchyme of both male and female embryos. A ∼147-kb BAC clone containing the Amhr2 locus was used to generate transgenic mice. The transgene was able to rescue the block in Müllerian duct regression of Amhr2-null males, suggesting that the BAC clone contains regulatory …
Regulation Of T Cell Function By Protein S-Acylation,
2022
The Texas Medical Center Library
Regulation Of T Cell Function By Protein S-Acylation, Savannah J West, Darren Boehning, Askar M Akimzhanov
Faculty, Staff and Student Publications
S-acylation, the reversible lipidation of free cysteine residues with long-chain fatty acids, is a highly dynamic post-translational protein modification that has recently emerged as an important regulator of the T cell function. The reversible nature of S-acylation sets this modification apart from other forms of protein lipidation and allows it to play a unique role in intracellular signal transduction. In recent years, a significant number of T cell proteins, including receptors, enzymes, ion channels, and adaptor proteins, were identified as S-acylated. It has been shown that S-acylation critically contributes to their function by regulating protein localization, stability and protein-protein interactions. …
Anthracyclines Attenuate The Nrf1-Mediated Bounce-Back Response,
2022
Virginia Commonwealth University
Anthracyclines Attenuate The Nrf1-Mediated Bounce-Back Response, Bader Albalawi
Theses and Dissertations
Proteasome inhibitors, such as carfilzomib, are FDA-approved to treat multiple myeloma and mantle cell lymphoma. Unfortunately, proteasome inhibitors have only produced clinically significant results in patients with hematologic cancers, despite their predicted pan-cancer utility, and even hematologic cancer types frequently show intrinsic and acquired resistance.
One proposed mechanism responsible for the proteasome inhibitors' shortcomings is the NRF1-mediated bounce-back response. Identification of drugs that can potentiate the action of proteasome inhibitors could overcome resistance in patients with hematologic cancers and expand proteasome inhibitors' use to treat solid tumors. Our previous studies have identified anthracyclines as potential compounds that interfere with the …
Embryonic Hypotaurine Levels Contribute To Strain-Dependent Susceptibility In Mouse Models Of Valproate-Induced Neural Tube Defects,
2022
The Texas Medical Center Library
Embryonic Hypotaurine Levels Contribute To Strain-Dependent Susceptibility In Mouse Models Of Valproate-Induced Neural Tube Defects, John W Steele, Ying Linda Lin, Nellie Chen, Bogdan J Wlodarczyk, Qiuying Chen, Nabeel Attarwala, Madhu Venkatesalu, Robert M Cabrera, Steven S Gross, Richard H Finnell
Faculty, Staff and Students Publications
Valproic acid (VPA, valproate, Depakote) is a commonly used anti-seizure medication (ASM) in the treatment of epilepsy and a variety of other neurological disorders. While VPA and other ASMs are efficacious for management of seizures, they also increase the risk for adverse pregnancy outcomes, including neural tube defects (NTDs). Thus, the utility of these drugs during pregnancy and in women of childbearing potential presents a continuing public health challenge. Elucidating the underlying genetic or metabolic risk factors for VPA-affected pregnancies may lead to development of non-teratogenic ASMs, novel prevention strategies, or more targeted methods for managing epileptic pregnancies. To address …
Uveitis-Mediated Immune Cell Invasion Through The Extracellular Matrix Of The Lens Capsule,
2022
Thomas Jefferson University
Uveitis-Mediated Immune Cell Invasion Through The Extracellular Matrix Of The Lens Capsule, Jodirae Dedreu, Sonali Pal-Ghosh, Mary J Mattapallil, Rachel R Caspi, Mary Ann Stepp, A Sue Menko
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
While the eye is considered an immune privileged site, its privilege is abrogated when immune cells are recruited from the surrounding vasculature in response to trauma, infection, aging, and autoimmune diseases like uveitis. Here, we investigate whether in uveitis immune cells become associated with the lens capsule and compromise its privilege in studies of C57BL/6J mice with experimental autoimmune uveitis. These studies show that at D14, the peak of uveitis in these mice, T cells, macrophages, and Ly6G/Ly6C+ immune cells associate with the lens basement membrane capsule, burrow into the capsule matrix, and remain integrated with the capsule as immune …
Extracellular Matrix Guidance Of Autophagy: A Mechanism Regulating Cancer Growth,
2022
Thomas Jefferson University
Extracellular Matrix Guidance Of Autophagy: A Mechanism Regulating Cancer Growth, Carolyn Chen, Renato V. Iozzo
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
The extracellular matrix (ECM) exists as a dynamic network of biophysical and biochemical factors that maintain tissue homeostasis. Given its sensitivity to changes in the intra- and extracellular space, the plasticity of the ECM can be pathological in driving disease through aberrant matrix remodelling. In particular, cancer uses the matrix for its proliferation, angiogenesis, cellular reprogramming and metastatic spread. An emerging field of matrix biology focuses on proteoglycans that regulate autophagy, an intracellular process that plays both critical and contextual roles in cancer. Here, we review the most prominent autophagic modulators from the matrix and the current understanding of the …
Interferon Gamma Release Assay Mitogen Responses In Covid-19,
2022
Division of Infectious Diseases, Thomas Jefferson University, Philadelphia, PA, United States
Interferon Gamma Release Assay Mitogen Responses In Covid-19, Dagan Coppock, Claire E. Zurlo, Jenna M. Meloni, Sara L. Goss, John J. Zurlo, Matthew A. Pettengill
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Background
Elevated cytokine release and T cell exhaustion have been associated with COVID-19 disease severity. T cell activity may be indirectly measured through interferon gamma release assays (IGRAs), which use mitogen stimulation of T lymphocytes as a positive control. In our institution, an unexpectedly high rate of indeterminate IGRAs was noted in COVID-19–positive patients. We aimed to evaluate the clinical characteristics associated with indeterminate IGRA results and the difference in mitogen responses between COVID-19–positive and COVID-19–negative patients.
Methods
We reviewed all patients, regardless of COVID status, who were admitted between March 1, 2020, and May 31, 2020, and for whom …
Monitoring The Systemic Immune System To Understand And Improve The Efficacy Of Immunotherapy For Metastatic Osteosarcoma,
2022
West Virginia University
Monitoring The Systemic Immune System To Understand And Improve The Efficacy Of Immunotherapy For Metastatic Osteosarcoma, Justin Edward Markel
Graduate Theses, Dissertations, and Problem Reports (ETD)
Osteosarcoma (OS) is a complex tumor with no effective targeted therapies due to its genomic heterogeneity and pleomorphism. The immune response it creates, particularly against metastatic lesions, is considerable; however, various suppressive mechanisms induced by the tumor prohibit its effectiveness. The presence of infiltrating lymphocytes suggests that therapeutic disinhibition through checkpoint blockade could increase antitumor immunity, though none have been successful in clinical trials. The complexities of the immune response to OS tumors have yet to be unraveled; however, there is evidence to suggest that cell-mediated immunity (CMI, specifically T cells, Natural Killer [NK] cells, and myeloid-lineage cells [MLCs]) plays …
Barriers And Facilitators Of Availability Of Hydroxyurea For Sickle Cell Disease In Tanzania; A Qualitative Study Of Pharmaceutical Manufacturers, Importers, And Regulators,
2022
Muhimbili University of Health and Allied Sciences, Dar es Salaam
Barriers And Facilitators Of Availability Of Hydroxyurea For Sickle Cell Disease In Tanzania; A Qualitative Study Of Pharmaceutical Manufacturers, Importers, And Regulators, Hamu J. Mlyuka, Manase Kilonzi, Ritah F. Mutagonda, Lulu Chirande, Wigilya P. Mikomangwa, David T. Myemba, Godfrey Sambayi, Dorkasi L. Mwakawanga, Joyce Ndunguru, Paschal Ruggajo
Internal Medicine, East Africa
Despite three decades of proven safety and effectiveness of hydroxyurea in modifying sickle cell disease (SCD), its accessibility is limited in Sub-Saharan Africa, which shares 75% of the world’s SCD burden. Therefore, it is time to explore the barriers and facilitators for manufacturing and importation of hydroxyurea for SCD in Tanzania. This was qualitative research that employed a case study approach. Purposive sampling followed by an in-depth interview (IDI) using a semi-structured questionnaire aspired by data saturation enabled us to gather data from 10 participants. The study participants were people with more than three years of experience in pharmaceuticals importation, …
Epithelial Morphogenesis In The Drosophila Egg Chamber Requires Parvin And Ilk,
2022
The Texas Medical Center Library
Epithelial Morphogenesis In The Drosophila Egg Chamber Requires Parvin And Ilk, Athina Keramidioti, Evgenia Golegou, Eleni Psarra, Nikolaos Paschalidis, Konstantina Kalodimou, Shinya Yamamoto, Christos Delidakis, Katerina M Vakaloglou, Christos G Zervas
Duncan NRI Faculty and Staff Publications
Integrins are the major family of transmembrane proteins that mediate cell-matrix adhesion and have a critical role in epithelial morphogenesis. Integrin function largely depends on the indirect connection of the integrin cytoplasmic tail to the actin cytoskeleton through an intracellular protein network, the integrin adhesome. What is currently unknown is the role of individual integrin adhesome components in epithelia dynamic reorganization. Drosophila egg chamber consists of the oocyte encircled by a monolayer of somatic follicle epithelial cells that undergo specific cell shape changes. Egg chamber morphogenesis depends on a developmental array of cell-cell and cell-matrix signalling events. Recent elegant work …
Hypermethylation Of Pi3k-Akt Signalling Pathway Genes Is Associated With Human Neural Tube Defects,
2022
The Texas Medical Center Library
Hypermethylation Of Pi3k-Akt Signalling Pathway Genes Is Associated With Human Neural Tube Defects, Tian Tian, Xinyuan Lai, Kuanhui Xiang, Xiao Han, Shengju Yin, Robert M Cabrera, John W Steele, Yunping Lei, Xuanye Cao, Richard H Finnell, Linlin Wang, Aiguo Ren
Faculty, Staff and Students Publications
Neural tube defects (NTDs) are a group of common and severe congenital malformations. The PI3K-AKT signalling pathway plays a crucial role in the neural tube development. There is limited evidence concerning any possible association between aberrant methylation in PI3K-AKT signalling pathway genes and NTDs. Therefore, we aimed to investigate potential associations between aberrant methylation of PI3K-AKT pathway genes and NTDs. Methylation studies of PI3K-AKT pathway genes utilizing microarray genome-methylation data derived from neural tissues of ten NTD cases and eight non-malformed controls were performed. Targeted DNA methylation analysis was subsequently performed in an independent cohort of 73 NTD cases and …
Beth Levine's Legacy: From The Discovery Of Becn1 To Therapies A Mentees' Perspective,
2022
The Texas Medical Center Library
Beth Levine's Legacy: From The Discovery Of Becn1 To Therapies A Mentees' Perspective, Zhenyi An, Wei-Chung Chiang, Álvaro F Fernández, Luis H Franco, Congcong He, Shu-Yi Huang, Eunmyong Lee, Yang Liu, Salwa Sebti, Sanae Shoji-Kawata, Shyam Sirasanagandla, Richard C Wang, Yongjie Wei, Yuting Zhao, Silvia Vega-Rubin-De-Celis
Faculty, Staff and Student Publications
With great sadness, the scientific community received the news of the loss of Beth Levine on 15 June 2020. Dr. Levine was a pioneer in the autophagy field and work in her lab led not only to a better understanding of the molecular mechanisms regulating the pathway, but also its implications in multiple physiological and pathological conditions, including its role in development, host defense, tumorigenesis, aging or metabolism. This review does not aim to provide a comprehensive view of autophagy, but rather an outline of some of the discoveries made by the group of Beth Levine, from the perspective of …
Autologous Cellular Therapy For Cerebral Palsy: A Randomized, Crossover Trial,
2022
The Texas Medical Center Library
Autologous Cellular Therapy For Cerebral Palsy: A Randomized, Crossover Trial, Charles S Cox, Jenifer Juranek, Steven Kosmach, Claudia Pedroza, Nivedita Thakur, Allison Dempsey, Kimberly Rennie, Michael C Scott, Margaret Jackson, Akshita Kumar, Benjamin Aertker, Henry Caplan, Fabio Triolo, Sean I Savitz
Faculty, Staff and Student Publications
We examined an autologous mononuclear-cell-therapy-based approach to treat cerebral palsy using autologous umbilical cord blood or bone-marrow-derived mononuclear cells. The primary objective was to determine if autologous cells are safe to administer in children with cerebral palsy. The secondary objectives were to determine if there was improvement in motor function of patients 12 months after infusion using the Gross Motor Function Measure and to evaluate impact of treatment on corticospinal tract microstructure as determined by radial diffusivity measurement. This Phase 1/2a trial was a randomized, blinded, placebo-controlled, crossover study in children aged 2–10 years of age with cerebral palsy enrolled …
Comparative Analysis Of Gene Expression Patterns For Oral Epithelial Cell Functions In Periodontitis,
2022
The Texas Medical Center Library
Comparative Analysis Of Gene Expression Patterns For Oral Epithelial Cell Functions In Periodontitis, Octavio A Gonzalez, Sreenatha Kirakodu, Linh M Nguyen, Luis Orraca, Michael J Novak, Janis Gonzalez-Martinez, Jeffrey L Ebersole
Faculty, Staff and Student Publications
The structure and function of epithelial cells are critical for the construction and maintenance of intact epithelial surfaces throughout the body. Beyond the mechanical barrier functions, epithelial cells have been identified as active participants in providing warning signals to the host immune and inflammatory cells and in communicating various detailed information on the noxious challenge to help drive specificity in the characteristics of the host response related to health or pathologic inflammation. Rhesus monkeys were used in these studies to evaluate the gingival transcriptome for naturally occurring disease samples (GeneChip® Rhesus Macaque Genome Array) or for ligature-induced disease (GeneChip® Rhesus …
Regenerative Medicine Technologies Applied To Transplant Medicine An Update,
2022
The Texas Medical Center Library
Regenerative Medicine Technologies Applied To Transplant Medicine An Update, Astgik Petrosyan, Filippo Montali, Andrea Peloso, Antonio Citro, Lori N Byers, Catherine La Pointe, Mara Suleiman, Alice Marchetti, Eoin P Mcneill, Allison L Speer, Wai Hoe Ng, Xi Ren, Benedetta Bussolati, Laura Perin, Paolo Di Nardo, Vincenzo Cardinale, Jerome Duisit, Alexandra Rose Monetti, John Richard Savino, Amish Asthana, Giuseppe Orlando
Faculty, Staff and Student Publications
Regenerative medicine (RM) is changing how we think and practice transplant medicine. In regenerative medicine, the aim is to develop and employ methods to regenerate, restore or replace damaged/diseased tissues or organs. Regenerative medicine investigates using tools such as novel technologies or techniques, extracellular vesicles, cell-based therapies, and tissue-engineered constructs to design effective patient-specific treatments. This review illustrates current advancements in regenerative medicine that may pertain to transplant medicine. We highlight progress made and various tools designed and employed specifically for each tissue or organ, such as the kidney, heart, liver, lung, vasculature, gastrointestinal tract, and pancreas. By combing both …
