Growth Differentiation Factor 5 Is A Paracrine Regulator Of Sarcopenic Obesity,
2022
University of Arkansas, Fayetteville
Growth Differentiation Factor 5 Is A Paracrine Regulator Of Sarcopenic Obesity, Landen W. Saling
Graduate Theses and Dissertations
Sarcopenic obesity attributes to skeletal muscle loss more than sarcopenia and obesity alone. Individuals with SO suffer from the comorbidity of excess body fat and concurrent muscle mass loss due to aging. Growth differentiation factors (Gdfs) have never been recognized as playing a role in skeletal muscle maintenance in those with SO. Specifically, Gdf5, has been recognized as playing a part in Bone Morphogenic Protein signaling to activate protein synthesis and deactivate protein degradation via SMAD 1/5/8 and SMAD 4 complex. Using RNA sequencing, Gdf5 was identified as being significantly upregulated in SO mice. Purpose: To determine the cellular role …
Differential Expression Of Cellular And Exosomal Microrna Isolated From Oral Cancer Cells And Their Resistance To Chemotherapy,
2022
University of Nevada, Las Vegas
Differential Expression Of Cellular And Exosomal Microrna Isolated From Oral Cancer Cells And Their Resistance To Chemotherapy, Brady Petersen
UNLV Theses, Dissertations, Professional Papers, and Capstones
Introduction: MicroRNAs are abundant small non-coding RNA with a variety of known functions, including transcriptional activation and inhibition. Recent evidence has suggested that microRNA expression may influence the responsiveness of some cancers to chemotherapy, including liver and lung cancers. Some evidence has now suggested that specific microRNAs, such as miR-21, miR-155, and miR-375, may influence oral cancer responsiveness to chemotherapy – although much remains to be discovered.
Objective: Based upon the lack of evidence in this area, the primary objective of this study was to evaluate microRNA expression and responsiveness among oral cancers.
Methods: Five commercially available oral cancer cell …
Structure-Function Characterization Of Zebrafish Gadd34 And Crep,
2022
University of the Pacific
Structure-Function Characterization Of Zebrafish Gadd34 And Crep, Alice Thuc Truong, Ciera Wroten, Jessica Woo, Jey Kim, Joshua Tao, Kleo Hong, Twisha Patel
Pacific Undergraduate Research and Creativity Conference (PURCC)
No abstract provided.
Development Of Cloning Vehicles For Expression Of Gc-Maf In Yeast,
2022
University of the Pacific
Development Of Cloning Vehicles For Expression Of Gc-Maf In Yeast, Tammy Tran, Seohyun Lee, Jane Yu, Wilson Wu
Pacific Undergraduate Research and Creativity Conference (PURCC)
No abstract provided.
The Central Dogma: Gene Expression,
2022
CUNY Guttman Community College
The Central Dogma: Gene Expression, Ayisha Sookdeo
Open Educational Resources
In this lesson plan, students will learn the basic structure and function of DNA and RNA. They will also learn the process of gene expression. Finally, students will learn about the scientific contributor, Ernest Everest Just, and his contributions to the field of Biology.
Aeromonas Phage Research And The Public Health Impact Of Antibiotics In Aquaculture Workers,
2022
Bowling Green State University
Aeromonas Phage Research And The Public Health Impact Of Antibiotics In Aquaculture Workers, Madelyn Merchant
Honors Projects
One of the most common fish diseases in aquaculture is Aeromonas infection. The most common way to treat this infection is through antibiotics. The bacteria in the fish can become antibiotic-resistant and perpetuate the disease. The diseases in fish create a huge financial loss and the industry loses $6 billion per year due to diseases in fish. An alternative to antibiotics is bacteriophage which causes less environmental degradation and is better for human gut flora. In aquaculture there have been examples of aquaculture workers becoming sick from the water in aquaculture ponds as well as from people eating the fish. …
Exchange Protein Directly Activated By Camp (Epac1) Protects Human Endothelial Cells From Tumor Necrosis Factor-⍺ (Tnf-⍺) Induced Cell Death,
2022
Ohio Northern University
Exchange Protein Directly Activated By Camp (Epac1) Protects Human Endothelial Cells From Tumor Necrosis Factor-⍺ (Tnf-⍺) Induced Cell Death, Anh Luu, Abigail Carpenter, Rosetta Tolley
ONU Student Research Colloquium
Millions of people are affected by diseases involving inflammatory states such as sepsis. Sepsis is associated with elevated tumor necrosis factor alpha (TNF-⍺) which mediates inflammation. Excessive TNF-⍺ contributes to death of endothelial cells (EC) with subsequent disruption of vascular endothelial function. Exchange Factor Directly Activated by cAMP (EPAC1) is a cyclic-AMP (cAMP) sensor that regulates multiple EC functions. We hypothesized that EPAC1 activation affects the response of EC to TNF-a. Microvascular EC were pretreated for 45 minutes with 100 mM 8-pCPT-2′-O-Me-cAMP (8-CPT, specific EPAC1 activator) or 10 mM forskolin (adenylyl cyclase activator that increases cAMP), then exposed to 5 …
The Effects Of Paclitaxel On Cellular Migration And The Cytoskeleton,
2022
University of Southern Maine
The Effects Of Paclitaxel On Cellular Migration And The Cytoskeleton, Ashley Salguero-Gonzalez
Thinking Matters Symposium
In a clinical setting, some patients are exposed to an anti-cancer chemotherapy agent, paclitaxel. Cancerous cells undergo rapid, continuous cell division without control. Chemotherapy treatments try to slow and stop the uncontrollable cell division cycles and eliminate cancerous cells in the process. Paclitaxel serves as a treatment for some types of cancers, including lung, melanoma, bladder, and esophageal. Because it targets the cytoskeleton, paclitaxel can also influence cell migration. This project utilizes a cellular migration assay and an immunohistochemistry assay to analyze the effects of paclitaxel on the movement of cells and on the cytoskeleton of neuroglia rat cells with …
Spr-5; Met-2 Maternal Reprogramming Cooperates With The Dream Complex To Regulate Developmental Cell Fates,
2022
Kennesaw State University
Spr-5; Met-2 Maternal Reprogramming Cooperates With The Dream Complex To Regulate Developmental Cell Fates, Jazmin Dozier, Sandra Nguyen, Brandon Carpenter
Symposium of Student Scholars
Histone methylation is a post-transcriptional modification to the N-terminal tails of histone core proteins that regulates DNA accessibility, and consequently, gene expression. Like DNA, histone methylation can be inherited between generations, and is highly regulated during embryonic development. At fertilization, histone methylation must undergo maternal reprogramming to reset the epigenetic landscape in the new zygote. During maternal reprogramming of histone methylation in the nematode, C. elegans, H3K4me (a modification associated with active transcription) is removed by the H3K4 demethylase, SPR-5, and H3K9me (a modification associated with transcriptional repression) is subsequently added by the histone methyltransferase, MET-2. Recently, it was …
Utilization Of Bioinformatics And Immunocytochemistry To Examine Gap Junction Expression In Breast Cancers Cells,
2022
Kennesaw State University - Dept of Molecular and Cellular Biology
Utilization Of Bioinformatics And Immunocytochemistry To Examine Gap Junction Expression In Breast Cancers Cells, Jasmine D. Carter, Giovanni Reyes, Abeeha K. Choudhary, Eric A. Albrecht
Symposium of Student Scholars
Utilization of Bioinformatics and Immunocytochemistry to Examine Gap Junction Expression in Breast Cancers Cells.
Jasmine D. Carter1, Giovanni Reyes1, Abeeha Choudhary2 and Eric A. Albrecht1
Breast cancer is known for its diverse clinical classifications and expressing different levels of membrane proteins such as ion channels and gap junctions. This diversity allows more variations in cell polarization, which can lead to enhanced directional ion fluxes in certain breast cancer subtypes. We utilized the interactive web portal UALCAN to evaluate the gene expression data of gap junctions, ion exchange channels and cytoskeletal proteins in breast cancer …
Tissue-Specific Diversity Of The Muscleblind Expression In Adult Flies.,
2022
Kennesaw State University
Tissue-Specific Diversity Of The Muscleblind Expression In Adult Flies., Davron Hanley, Anton Bryantsev
Symposium of Student Scholars
Department of Molecular and Cellular Biology, Kennesaw State University
The muscleblind (mbl) family of RNA-binding proteins regulates alternative splicing, determining mRNA transcript composition for various types of tissue, and has been implicated in myotonic dystrophy. The mbl gene is subject to alternative splicing in Drosophila, leading to multiple isoforms, and has several paralogs in humans. Mbl proteins vary significantly in length, although the significance of such diversity and the role of specific isoforms have not been fully explored.
Using immunofluorescence microscopy and polyclonal serum, we analyzed Mbl protein expression across adult Drosophila tissues. Mbl was detected in …
Feasibility Of Tubulin As A Control For Gene Expression Following Transfection In Mouse Monocyte/Macrophage-Like Cells,
2022
St. Mary's University
Feasibility Of Tubulin As A Control For Gene Expression Following Transfection In Mouse Monocyte/Macrophage-Like Cells, Ankita Chabra
Honors Program Theses and Research Projects
Transfection, which is the ability to modify host cells’ genetic content, has broad application in studying normal cellular processes, molecular mechanism of disease and gene therapy. There are several transfection techniques, and all require either a control or a reference gene. Commonly used controls for transfection experiments are housekeeping genes, which maintain expression for a given cell/tissue, experimental conditions, and treatment. However, recent research has uncovered that expression levels of housekeeping genes may vary depending on the gene, cell type and experimental conditions. A growing body of evidence demonstrates that housekeeping genes are inadequate internal standards for measuring gene expression …
Chronic Alcohol Exposure Induces Hepatocyte Damage By Inducing Oxidative Stress, Satb2 And Stem Cell-Like Characteristics, And Activating Lipogenesis,
2022
VA Medical Center
Chronic Alcohol Exposure Induces Hepatocyte Damage By Inducing Oxidative Stress, Satb2 And Stem Cell-Like Characteristics, And Activating Lipogenesis, Wei Yu, Yiming Ma, Sushant K. Shrivastava, Rakesh K. Srivastava, Sharmila Shankar
School of Medicine Faculty Publications
Alcohol is a risk factor for hepatocellular carcinoma (HCC). However, the molecular mechanism by which chronic alcohol consumption contributes to HCC is not well understood. The purpose of the study was to demonstrate the effects of chronic ethanol exposure on the damage of human normal hepatocytes. Our data showed that chronic exposure of hepatocytes with ethanol induced changes similar to transformed hepatocytes that is, exhibited colonies and anchorage-independent growth. These damaged hepatocytes contained high levels of reactive oxygen species (ROS) and showed induction of the SATB2 gene. Furthermore, damaged hepatocytes gained the phenotypes of CSCs which expressed stem cell markers …
Investigating The Role Of The Basolateral Amygdala Plays In The Incubation Of Cue-Induced Cocaine Seeking Behavior,
2022
Rowan University
Investigating The Role Of The Basolateral Amygdala Plays In The Incubation Of Cue-Induced Cocaine Seeking Behavior, Claire Marie Corbett
Graduate School of Biomedical Sciences Theses and Dissertations
Cocaine use disorder is a chronic, relapsing brain disease. Sex and ovarian hormones are known to influence cocaine addiction liability and relapse vulnerability. However, little is known regarding the cellular and synaptic mechanisms contributing to sex differences in relapse vulnerability, including how these measures are influenced by hormonal fluctuations. To investigate sex differences in relapse vulnerability we use a rodent model of cocaine craving and relapse called the incubation model in which cue-induced seeking progressively increases or “incubates” during the first month of withdrawal from extended-access cocaine self-administration. Using this model, we have recently shown that females in the estrus …
Generating A Colorimetric Ssa4 Transcript Export Reporter For Multicopy Suppression Screen In S. Cerevisiae,
2022
Belmont University
Generating A Colorimetric Ssa4 Transcript Export Reporter For Multicopy Suppression Screen In S. Cerevisiae, Zaid Hatem
[Archive] Belmont University Research Symposium (BURS)
The export of mRNA from the nucleus to the cytoplasm is a regulatory point that is essential to the pathway of gene expression in eukaryotic cells. The export of mRNA transcripts is mediated through selective doorways called the nuclear pore complexes (NPC). Additionally, there are proteins associated with the nuclear pore complex that assist in facilitating the export. This includes association with the export receptor, Mex67, which binds to the transcript and ferries it through NPCs. During cellular stress, such as heat shock, the export of housekeeping mRNA transcripts is halted, forcing these transcripts to remain inside the nucleus and …
Developing An Electroporation Method For Transforming Streptomyces Nymphaeiformis,
2022
Bridgewater College
Developing An Electroporation Method For Transforming Streptomyces Nymphaeiformis, Heather Knott, Stephen Baron
Honors Projects
Streptomyces species are notoriously difficult to transform. Streptomyces nymphaeiformis is no different, so a method of electroporation was used to attempt to transform the cells. Multiple growth stages were used in order to alter the degree of development of the cell wall. The procedure did not kill the cells, but the cells were not transformed. Due to the lack of transformation with S. nymphaeiformis, transformation was attempted on two other Streptomyces strains, S. lividans and S. coelicolor. Neither was successfully transformed to thiostrepton (tsr) resistance, nor did they grow on a plate lacking thiostrepton. One possibility for the …
Identification And Characterization Of An Ftsq-Null Suppressor Gene In Streptomyces,
2022
Otterbein University
Identification And Characterization Of An Ftsq-Null Suppressor Gene In Streptomyces, Alexandra Sherman
Undergraduate Distinction Papers
Streptomyces coelicolor is a filamentous Gram-positive soil bacterium that grows similarly to fungi. The bacteria grow together in a mycelium-like structure that produces aerial hyphae above the media surface for sporulation. Evenly spaced crosswalls develop during cell division of the aerial filaments with the aid of division genes, including ftsZ and ftsQ. These cell division genes are essential for growth in the common bacterium and if silenced will cause the bacterium to die. Streptomyces uniquely retains the ability for growth after a deletion of either the ftsZ or ftsQ gene which causes a loss of septum formation in the …
Characterization Of A Medium-Dependent Streptomyces Developmental Mutant,
2022
Otterbein University
Characterization Of A Medium-Dependent Streptomyces Developmental Mutant, Dylan Gray, Jennifer A. Bennett
Undergraduate Distinction Papers
Streptomyces coelicolor is a soil-dwelling, Gram-positive Actinobacteria. Streptomyces species produce thousands of secondary metabolites which include many antibiotics used in medicine today. In Streptomyces development, as colonies grow, secondary metabolites are produced, and ultimately mature spores are dispersed. The production of each of these secondary metabolites in wild-type Streptomyces is determined by a distinct biosynthetic pathway. In order to identify new genes for antibiotic production and other aspects of development, an engineered Tn5-derived transposon was used to mutagenize wild-type cells in vivo and produce single, stable insertions.
Colonies that were visually distinct from the wild type were selected for further …
Paratesticular Solitary Fibrous Tumour Mimicking Cellular Angiofibroma: An Unusual Morphology And Rare Site,
2022
Aga Khan University
Paratesticular Solitary Fibrous Tumour Mimicking Cellular Angiofibroma: An Unusual Morphology And Rare Site, Madiha Bilal Qureshi, Muhammad Usman, Qurratulain Chundriger, Nasir Uddin
Department of Pathology and Laboratory Medicine
Solitary fibrous tumour (SFT) is a ubiquitous benign mesenchymal tumour of fibroblastic origin, which occurs most often in middle-aged adults. It usually presents as lung mass originating from pleura, but extrapleural occurrence is also common. Tumour is characterised by hypo- and hyper-cellular areas of spindle-shaped cells, arranged in haphazard manner with dispersed staghorn-shaped vessels. Surgical excision is the curative treatment. SFTs of the primary testicular or paratesticular region are extremely rare, but they exhibit histologic findings similar to SFTs originating at other body sites. Here, we report the case of a paratesticular SFT in a 37-year male, who presented with …
Defining And Modeling Pericyte-Induced Capillary Network Assembly, Capillary Regression Preceding Pericyte-Stimulated Fibrosis, And Lymphatic Capillary Regression,
2022
University of South Florida
Defining And Modeling Pericyte-Induced Capillary Network Assembly, Capillary Regression Preceding Pericyte-Stimulated Fibrosis, And Lymphatic Capillary Regression, Scott Stephen Kemp
USF Tampa Graduate Theses and Dissertations
Capillary formation and maturation can only occur through a series of highly orchestrated events that requires the coordinated efforts of both endothelial cells (ECs) and pericytes. While ECs are perfectly capable of creating tube networks on their own, the maturation and stabilization of these tube networks require the presence of a second cell type, pericytes, to create stable capillary networks. Previous studies have identified factors required for pericyte recruitment to EC tube networks, however, we hypothesized that there were still unaccounted for EC-derived molecules that were contributing to pericyte recruitment. In the first part of this study, we used serum-free, …
