Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Cell Biology (19)
- Biology (17)
- Medicine and Health Sciences (12)
- Genetics and Genomics (11)
- Biochemistry, Biophysics, and Structural Biology (8)
-
- Anatomy (5)
- Molecular Biology (5)
- Cancer Biology (4)
- Microbiology (4)
- Neuroscience and Neurobiology (4)
- Physiology (4)
- Biochemistry (3)
- Bioinformatics (3)
- Computational Biology (3)
- Genetics (3)
- Molecular Genetics (3)
- Physical Sciences and Mathematics (3)
- Animal Sciences (2)
- Biomedical Engineering and Bioengineering (2)
- Engineering (2)
- Genomics (2)
- Immunology and Infectious Disease (2)
- Marine Biology (2)
- Medical Sciences (2)
- Virology (2)
- Alternative and Complementary Medicine (1)
- Animal Experimentation and Research (1)
- Institution
-
- The Texas Medical Center Library (6)
- Old Dominion University (5)
- Himmelfarb Health Sciences Library, The George Washington University (4)
- The University of Southern Mississippi (4)
- University of Kentucky (4)
-
- City University of New York (CUNY) (3)
- University at Albany, State University of New York (3)
- Nova Southeastern University (2)
- Philadelphia College of Osteopathic Medicine (2)
- Purdue University (2)
- Aga Khan University (1)
- DePaul University (1)
- Seton Hall University (1)
- St. John Fisher University (1)
- University of Arkansas, Fayetteville (1)
- University of Nebraska - Lincoln (1)
- University of Nebraska at Omaha (1)
- University of Nevada, Las Vegas (1)
- Valparaiso University (1)
- Wayne State University (1)
- Keyword
-
- Gene expression (3)
- Autophagy (2)
- Bioinformatics (2)
- Branching processes (2)
- C. elegans (2)
-
- Differentiation (2)
- Female (2)
- Genes (2)
- Mice (2)
- Morphogenesis (2)
- Submandibular gland (2)
- Transcriptome (2)
- 14-3-3 (1)
- 14-3-3zeta (1)
- Adult (1)
- Aged (1)
- Alcohol (1)
- Algae (1)
- Alpha smooth muscle actin (1)
- Anatomy and physiology (1)
- Animals (1)
- Anterior lens capsule (1)
- Article (1)
- Assembly (1)
- Attenuated vaccine (1)
- Auditory evoked potentials (1)
- Bax (1)
- Beclin 1 (1)
- Behavioral audiograms (1)
- BiFC (1)
- Publication
-
- Dissertations and Theses (Open Access) (5)
- Theses and Dissertations--Biology (4)
- Anatomy and Regenerative Biology Faculty Publications (3)
- Dissertations, Theses, and Capstone Projects (3)
- Legacy Theses & Dissertations (2009 - 2024) (3)
-
- Biological Sciences Faculty Publications (2)
- Master's Theses (2)
- PCOM Scholarly Works (2)
- Biology Faculty Articles (1)
- Biology Faculty Books and Book Chapters (1)
- Biology Faculty Publications (1)
- DePaul Discoveries (1)
- Department of Basic Medical Sciences Faculty Publications (1)
- Department of Biological & Biomedical Sciences (1)
- Dissertations (1)
- Electrical & Computer Engineering Theses & Dissertations (1)
- Faculty, Staff and Students Publications (1)
- Genomics and Precision Medicine Faculty Publications (1)
- Graduate Theses and Dissertations (1)
- Honors Theses (1)
- Psychology Faculty Publications (1)
- Qingsheng Li Publications (1)
- School of Medical Diagnostics & Translational Sciences Publications (1)
- Science Scholars (1)
- Seton Hall University Dissertations and Theses (ETDs) (1)
- The Summer Undergraduate Research Fellowship (SURF) Symposium (1)
- Theses and Dissertations in Biomedical Sciences (1)
- UNLV Theses, Dissertations, Professional Papers, and Capstones (1)
- Wayne State University Dissertations (1)
- Publication Type
Articles 31 - 45 of 45
Full-Text Articles in Developmental Biology
Protein 14-3-3 (Ywha) Isoforms And Their Roles In Regulating Mouse Oocyte Maturation, Santanu De
Protein 14-3-3 (Ywha) Isoforms And Their Roles In Regulating Mouse Oocyte Maturation, Santanu De
Biology Faculty Books and Book Chapters
The 14-3-3 (YWHA) is a highly conserved, ubiquitously expressed protein family regulating important cellular processes including cell cycle. This work, for the first time, explored the differential expression and roles of 14-3-3 isoforms during mouse oocyte maturation.
All seven mammalian 14-3-3 isoforms were identified in mouse eggs and ovarian follicular cells including oocytes, by Western blotting. Immunocytochemical and immunohistochemical staining confirmed the presence of all 14-3-3 isoforms in oocytes, eggs and ovarian follicles with characteristic similarities and differences in their distributions.
Mammalian oocytes are arrested at meiosis prophase I by an inhibitory phosphorylation on Cyclin-Dependent Kinase I (CDK1), released by …
Clinical Features And Outcome Of Sporadic Colorectal Carcinoma In Young Patients: A Cross-Sectional Analysis From A Developing Country, Muhammad Nauman Zahir, Eisha Mahpara Azhar, Sobia Rafiq, Kulsoom Ghias, Munira Shabbir-Moosajee
Clinical Features And Outcome Of Sporadic Colorectal Carcinoma In Young Patients: A Cross-Sectional Analysis From A Developing Country, Muhammad Nauman Zahir, Eisha Mahpara Azhar, Sobia Rafiq, Kulsoom Ghias, Munira Shabbir-Moosajee
Department of Biological & Biomedical Sciences
Background: Early onset colorectal carcinoma (CRC) is rare and has been hypothesized to be a biologically and clinically distinct entity personifying aggressive disease and worse survival.
Methods: Data for 131 patients was collected by retrospective chart review. Cox proportional hazard model was used to compute prevalence ratios and 95% confidence intervals.
Results: Early onset sporadic CRC accounted for 32% of all CRC treated in the specified time period. The mean age was 33.3 ± 7.9 years and the male to female ratio was 2 : 1. Colon and rectal cancers accounted for 55% and 45% of patients, respectively. 96% of …
Nel Positively Regulates The Genesis Of Retinal Ganglion Cells By Promoting Their Differentiation And Survival During Development, Chizu Nakamoto, Soh-Leh Kuan, Amy Findlay, Elaine Durward, Zhufeng Ouyang, Masaru Nakamoto, Ewa Zakrewska, Takuma Endo
Nel Positively Regulates The Genesis Of Retinal Ganglion Cells By Promoting Their Differentiation And Survival During Development, Chizu Nakamoto, Soh-Leh Kuan, Amy Findlay, Elaine Durward, Zhufeng Ouyang, Masaru Nakamoto, Ewa Zakrewska, Takuma Endo
Biology Faculty Publications
For correct functioning of the nervous system, the appropriate number and complement of neuronal cell types must be produced during development. However, the molecular mechanisms that regulate the production of individual classes of neurons are poorly understood. In this study, we investigate the function of the thrombospondin-1–like glycoprotein, Nel (neural epidermal growth factor [EGF]-like), in the generation of retinal ganglion cells (RGCs) in chicks. During eye development, Nel is strongly expressed in the presumptive retinal pigment epithelium and RGCs. Nel overexpression in the developing retina by in ovo electroporation increases the number of RGCs, whereas the number of displaced amacrine …
Paracrine-Rescued Lobulogenesis In Chimeric Outgrowths Comprising Progesterone-Receptor-Null Mammary Epithelium And Redirected Wild-Type Testicular Cells, Robert D. Bruno, Corinne A. Boulanger, Sonia M. Rosenfield, Lisa H. Anderson, John P. Lydon, Gilbert H. Smith
Paracrine-Rescued Lobulogenesis In Chimeric Outgrowths Comprising Progesterone-Receptor-Null Mammary Epithelium And Redirected Wild-Type Testicular Cells, Robert D. Bruno, Corinne A. Boulanger, Sonia M. Rosenfield, Lisa H. Anderson, John P. Lydon, Gilbert H. Smith
School of Medical Diagnostics & Translational Sciences Publications
We have previously shown that non-mammary and tumorigenic cells can respond to the signals of the mammary niche and alter their cell fate to that of mammary epithelial progenitor cells. Here we tested the hypothesis that paracrine signals from mammary epithelial cells expressing progesterone receptor (PR) are dispensable for redirection of testicular cells, and that re-directed wild-type testicular-derived mammary cells can rescue lobulogenesis of PR-null mammary epithelium by paracrine signaling during pregnancy. We injected PR-null epithelial cells mixed with testicular cells from wild-type adult male mice into cleared fat-pads of recipient mice. The testicular cells were redirected in vivo to …
Myo/Nog Cells: Targets For Preventing The Accumulation Of Skeletal Muscle-Like Cells In The Human Lens, Jacquelyn Gerhart, M. Greenbaum, V. Scheinfeld, P. Fitzgerald, M. Crawford, Arturo Bravo Nuevo, M. Pitts, Mindy George-Weinstein
Myo/Nog Cells: Targets For Preventing The Accumulation Of Skeletal Muscle-Like Cells In The Human Lens, Jacquelyn Gerhart, M. Greenbaum, V. Scheinfeld, P. Fitzgerald, M. Crawford, Arturo Bravo Nuevo, M. Pitts, Mindy George-Weinstein
PCOM Scholarly Works
Posterior capsule opacification (PCO) is a vision impairing condition that arises in some patients following cataract surgery. The fibrotic form of PCO is caused by myofibroblasts that may emerge in the lens years after surgery. In the chick embryo lens, myofibroblasts are derived from Myo/Nog cells that are identified by their expression of the skeletal muscle specific transcription factor MyoD, the bone morphogenetic protein inhibitor Noggin, and the epitope recognized by the G8 monoclonal antibody. The goal of this study was to test the hypothesis that depletion of Myo/Nog cells will prevent the accumulation of myofibroblasts in human lens tissue. …
The Postsynaptic Regulation Of Synaptic Strength In Drosophila, Daniel Michael Gertner
The Postsynaptic Regulation Of Synaptic Strength In Drosophila, Daniel Michael Gertner
Legacy Theses & Dissertations (2009 - 2024)
Postsynaptic Ca2+ plays an important role in synaptic homeostasis and synaptic plasticity. Postsynaptic Ca2+ signals have been shown to regulate synaptic transmission at the Drosophila larval neuromuscular junction (NMJ), however, these signals have not been well characterized. This will explore how these signals regulate synaptic strength and what channels are involved. In previous lab experiments Ca2+ transients were observed during evoked and spontaneous release (Desai and Lnenicka, 2011). It was further demonstrated that a reduction in synaptic strength occurs following synaptic stimulation. It was hypothesized that the increase in postsynaptic Ca2+ following synaptic stimulation activates the gCS and causes a …
Computational Modeling-Driven Study Of Signaling Pathway Affecting Cleft Formation During Submandibular Salivary Gland Development, Shayoni Ray
Legacy Theses & Dissertations (2009 - 2024)
Branching morphogenesis is a conserved mechanism of mammalian organ development (salivary glands, lungs, mammary glands, pancreas, kidney, etc.), and has been a classic topic of study for generations of developmental biologists. During the process of tissue formation, several cellular and molecular and protein signaling events occur at successive stages enabling proper formation of tissue shape and structure. In order to provide a comprehensive understanding of the process of branching morphogenesis, we need a systems level approach to integrate multifactorial information. My overall global hypothesis is that multiple mathematical modeling approaches can be utilized to extract crucial cellular and tissue level …
Mouse Salivary Gland Development Requires Optimal Substrate Compliance, Sarah Beth Peters
Mouse Salivary Gland Development Requires Optimal Substrate Compliance, Sarah Beth Peters
Legacy Theses & Dissertations (2009 - 2024)
The embryonic mouse submandibular salivary gland (mSMG) is a classic model to study mechanochemical signals involved in morphogenesis and differentiation amongst multiple, interacting cell populations. Scaffold compliance is alters cellular phenotype, but little is known about the effects of compliance on organogenesis. The overall aim of this project was to demonstrate that the processes of salivary gland epithelial branching morphogenesis and differentiation require a compliant, in vivo-like environment and are disrupted outside of this range.
Characterization Of Adult Zebrafish Retinal Regeneration Following Two Different Damage Models, Jennifer Lee Thomas
Characterization Of Adult Zebrafish Retinal Regeneration Following Two Different Damage Models, Jennifer Lee Thomas
Wayne State University Dissertations
Unlike mammals, zebrafish can regenerate all of their retinal neurons through Müller glial cells, which respond to retinal damage by re-entering the cell cycle to create clusters of progenitor cells. The progenitors continue to proliferate as they migrate to the site of damage, where they ultimately differentiate into new retinal neurons. In contrast, Müller glia of the mammalian retina respond to injury with reactive gliosis, which if persistent, can lead to loss of Müller cell function and devastating vision loss. Despite this, multiple lines of evidence suggest that mammalian Müller glial cells possess a latent ability to regenerate retinal neurons. …
Analysis Of The Role Of Two Autophagy Pathway Related Genes, Becn1 And Tsc1, In Murine Mammary Gland Development And Differentiation, Amber N. Hale
Analysis Of The Role Of Two Autophagy Pathway Related Genes, Becn1 And Tsc1, In Murine Mammary Gland Development And Differentiation, Amber N. Hale
Theses and Dissertations--Biology
The mammary gland is a dynamic organ that undergoes the majority of its development in the postnatal period in four stages; mature virgin, pregnancy, lactation, and involution. Every stage relies on tightly regulated cellular proliferation, programmed cell death, and tissue remodeling mechanisms. Misregulation of autophagy, an intracellular catabolic process to maintain energy stores, has long been associated with mammary tumorigenesis and other pathologies. We hypothesize that appropriate regulation and execution of autophagy are necessary for proper development of the mammary ductal tree and maintenance of the secretory epithelia during late pregnancy and lactation. To test this hypothesis we examined the …
Targeted Knockout Of Beclin-1 Reveals An Essential Function In Ovary And Testis, Thomas R. Gawriluk
Targeted Knockout Of Beclin-1 Reveals An Essential Function In Ovary And Testis, Thomas R. Gawriluk
Theses and Dissertations--Biology
An estimated 12% of couples worldwide are infertile. The contributing factor is approximately equal between men and women with nearly 25% diagnosed as idiopathic. Despite the increasing numbers of couples seeking assistance from infertility clinics, few molecular mechanisms have been identified for treatment. Autophagy is an evolutionarily conserved cellular process for bulk degradation and recycling of cytosolic components through the lysosome to maintain homeostasis. Several studies have observed increased levels of autophagy during ovarian folliculogenesis and gonadal steroidogenesis; however, no genetic studies to determine the significance of autophagy exist.
To investigate the function of autophagy in the ovary and testis, …
The Interactions Between Jak/Stat Signaling Ligands In Drosophila Melanogaster, Qian Chen
The Interactions Between Jak/Stat Signaling Ligands In Drosophila Melanogaster, Qian Chen
Theses and Dissertations--Biology
The development of multi-cellular organisms requires extensive cell-cell communication to coordinate cell functions. However, only a handful of signaling pathways have emerged to mediate all the intercellular communications; therefore, each of them is under an array of regulations to achieve signaling specificity and diversity. One such signaling pathway is the Janus Kinase/ Signal Transducer and Activator of Transcription (JAK/STAT) pathway, which is the primary signaling cascade responding to a variety of cytokines and growth factors in mammals and involved in many developmental processes. This signaling pathway is highly conserved between mammals and Drosophila, …
Small Rna Expression During Programmed Rearragement Of A Vertebrate Genome, Joseph R. Herdy Iii
Small Rna Expression During Programmed Rearragement Of A Vertebrate Genome, Joseph R. Herdy Iii
Theses and Dissertations--Biology
The sea lamprey (Petromyzon marinus) undergoes programmed genome rearrangements (PGRs) during embryogenesis that results in the deletion of ~0.5 Gb of germline DNA from the somatic lineage. The underlying mechanism of these rearrangements remains largely unknown. miRNAs (microRNAs) and piRNAs (PIWI interacting RNAs) are two classes of small noncoding RNAs that play important roles in early vertebrate development, including differentiation of cell lineages, modulation of signaling pathways, and clearing of maternal transcripts. Here, I utilized next generation sequencing to determine the temporal expression of miRNAs, piRNAs, and other small noncoding RNAs during the first five days of lamprey …
Construction Of A Live-Attenuated Hiv-1 Vaccine Through Genetic Code Expansion, Nanxi Wang, Yue Li, Wei Niu, Ming Sun, Ronald Cerny, Qingsheng Li, Jiantao Guo
Construction Of A Live-Attenuated Hiv-1 Vaccine Through Genetic Code Expansion, Nanxi Wang, Yue Li, Wei Niu, Ming Sun, Ronald Cerny, Qingsheng Li, Jiantao Guo
Qingsheng Li Publications
A safe and effective vaccine against human immunodeficiency virus type 1 (HIV-1) is urgently needed to combat the worldwide AIDS pandemic, but still remains elusive. The fact that uncontrolled replication of an attenuated vaccine can lead to regaining of its virulence creates safety concerns precluding many vaccines from clinical application. We introduce a novel approach to control HIV-1 replication, which entails the manipulation of essential HIV-1 protein biosynthesis through unnatural amino acid (UAA*)-mediated suppression of genome-encoded blank codon. We successfully demonstrate that HIV-1 replication can be precisely turned on and off in vitro.
Includes supporting information.
Mouse Oocyte Maturation And Embryo Development After Exposure To Vemurafenib (Plx4032), An Anti-Melanoma B-Raf V600e Inhibitor, Bo Liu
Theses and Dissertations in Biomedical Sciences
Vemurafenib is a selective B-RafV600E inhibitor in melanoma targeted therapy which also inhibits the wild type B- and C-Raf. In oocyte maturation, the C-Raf/MAPK pathway acts as an important self-enhancing and promoting system, w hereas in embryo development, the C-Raf/M APK pathway participates in pre- and post- implantation embryo proliferation and differentiation.
The hypothesis: Vemurafenib has detrimental effects on oocyte maturation and/or embryo development. Mouse oocytes and one cell (1C) mouse embryos were tested by ex vivo culturing with Vemurafenib in serial dilution. Oocytes were evaluated by cell cycle morphology, spindle formation and chromosomal alignment by im munofluorescence (IF) …