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Articles 1 - 30 of 291
Full-Text Articles in Cell and Developmental Biology
Antimicrobial Responses Of Staphylococcus Aureus In Simulated Spaceflight Conditions, Mikayla Dutkiewicz, Yegor Bushnev
Antimicrobial Responses Of Staphylococcus Aureus In Simulated Spaceflight Conditions, Mikayla Dutkiewicz, Yegor Bushnev
Discovery Day - Daytona Beach
Microbial persistence in confined environments, such as spacecraft, can pose challenges to astronaut health and habitat maintenance. This project investigates Staphylococcus aureus, a Gram-positive bacterium commonly associated with human microbiota and opportunistic infections, in spaceflight-relevant environmental conditions. Further, this project will assess the influence of the antimicrobial/antioxidant compound quercetin to assess its effects on bacterial growth and virulence under standard Earth gravity and simulated International Space Station (ISS) conditions. This approach will assess whether spaceflight-relevant stressors, including microgravity and radiation, alter treatment efficacy by influencing microbial physiology and antimicrobial susceptibility. Data collection and analysis are ongoing, and results are expected …
Tardigrade Bio-Exploration Reproduction Research Payload, Natalie Brattain, Chloe Nissen, Kylie Nager, Peter Ulrich, Enoch Tonkine
Tardigrade Bio-Exploration Reproduction Research Payload, Natalie Brattain, Chloe Nissen, Kylie Nager, Peter Ulrich, Enoch Tonkine
Discovery Day - Daytona Beach
The Tardigrade Bio-ExplorAtion Reproduction Research Payload (tBEARR) is an external International Space Station (ISS) standardized laboratory payload module mission under development by the Embry-Riddle Orbital Research Association (ERORA), an undergraduate research organization at Embry-Riddle Aeronautical University (ERAU) in Daytona Beach, Florida. As a club-driven mission, tBEARR provides undergraduate students with hands-on experience across all phases of space research, including payload design, biological experimentation, systems integration, and mission operations. The mission is supported by a biology research team focused on stress-response biology, experimental design, and biological validation throughout ground testing, high-altitude balloon flights, and orbital operations. The primary objective of tBEARR …
Apical-Out Lung Organoids: A Platform For Spaceflight And Cf Research, Valeria Jimenez, Ally Schwennesen
Apical-Out Lung Organoids: A Platform For Spaceflight And Cf Research, Valeria Jimenez, Ally Schwennesen
Discovery Day - Daytona Beach
A genetic condition known as cystic fibrosis (CF) is brought on by mutations in the CFTR gene, which results in chronic lung inflammation and impaired chloride ion transport. CF bronchial epithelial cells enable direct comparison of disease pathology, while normal human bronchial epithelial (NHBE) cells offer an essential model for researching airway physiology. Realistic modeling of respiratory tissue and its reaction to environmental stressors like microgravity is made possible by the creation of 3D lung organoids from these cells. In this project, we developed apical-out organoids, which expose the apical surface of epithelial cells to the external environment. These organoids …
Assessing Non-Thermal Plasma In Cutaneous Regeneration, Arden Rodriguez, Meliah Martin, Graeme Grainger, Arineh Shahbazi
Assessing Non-Thermal Plasma In Cutaneous Regeneration, Arden Rodriguez, Meliah Martin, Graeme Grainger, Arineh Shahbazi
Discovery Day - Daytona Beach
Chronic and acute wounds remain a significant clinical challenge, particularly in austere and resource-limited environments where access to advanced care is restricted. Non-Thermal Plasma (NTP) has emerged as a promising, non-invasive modality with reported antimicrobial and regenerative properties; however, its mechanisms of action and effects on human skin tissue require further characterization. The scope of this project is to engineer and utilize a 3D human skin epithelial model to evaluate the effects of NTP on wound healing. We will first build a 3D epithelial tissue model that will simulate human skin, followed by modeling and evaluation of wound pathology and …
The Osteocyte-Osteoblast Network Requires Dynamic Mechanical Loading For Key Functions, Kevin Kowalski
The Osteocyte-Osteoblast Network Requires Dynamic Mechanical Loading For Key Functions, Kevin Kowalski
Discovery Day - Daytona Beach
Spaceflight investigations have demonstrated that reduction in gravity-induced loading regimes is detrimental to maintenance Earth-normal bone and marrow. Mechanistically, however, there are still gaps in knowledge about how the reduction in gravity influences the different niches within the tissue. For example, cortical bone is a stable semi-solid structure that allows for only minor deformations before failure, while marrow is a viscous hydrogel-like material that can resist significant fluidic and compressive forces. We hypothesize that maintenance of different niches within the bone microenvironment are dependent on different loading regimes, and that the collective impact if gravity-induced loading needs to be considered …
The Dynamics Of Synchrony On Replicating Biological Populations, Montse Torres Garcia, Kevin Mcgoff, Francis Motta, Breschine Cummins, Steve Haase
The Dynamics Of Synchrony On Replicating Biological Populations, Montse Torres Garcia, Kevin Mcgoff, Francis Motta, Breschine Cummins, Steve Haase
Biology and Medicine Through Mathematics Conference
No abstract provided.
A Conserved Role For Cyclin C In Regulated Cell Death Across Yeast And Humans, Samar Emami, David Stieg, Daniel Smethurst, Justin Bauer, Randy Strich
A Conserved Role For Cyclin C In Regulated Cell Death Across Yeast And Humans, Samar Emami, David Stieg, Daniel Smethurst, Justin Bauer, Randy Strich
Rowan-Virtua Research Day
Background: Programmed cell death (PCD) is a tightly regulated process that maintains tissue homeostasis and eliminates damaged, infected, or malignant cells. A key regulator of this process is Cyclin C (CCNC), which functions as a component of the mediator complex to regulate gene transcription. During cellular stress, CCNC translocates from the nucleus to the mitochondria, where it associates with Dnm1 to promote mitochondrial fragmentation and apoptosis.
Objective: This study aimed to unravel conservation of CCNC’s function between yeast and humans by investigating whether human CCNC can induce apoptosis in yeast and whether it does so through interaction with …
Optimizing Itpa R178c Assays Via Hplc, Jared J. Reisnouer, Wally D. Pines
Optimizing Itpa R178c Assays Via Hplc, Jared J. Reisnouer, Wally D. Pines
2026 Symposium
Two of the major nucleotide bases in DNA and RNA (Adenine and Guanine) are derived from the purine Inosine Monophosphate (IMP). IMP may occasionally form the noncanonical nucleotide Inosine Triphosphate (ITP) within the cell and become incorporated into DNA during replication, leading to potentially lethal errors. To combat this, human cells produce the “housekeeping” enzyme Inosine Triphosphatase (ITPA) to revert ITP to IMP. A mutation of this protein that replaces the 178th amino acid Arginine with Cysteine (R178C) is associated with a fatal infantile encephalopathy. Previous assessments of enzyme-substrate binding and catalysis for ITPA variants have been run at a …
Transgenic Plant Cells For The Cost-Effective Production Of Pharmaceutical Proteins, Maria Gambaro
Transgenic Plant Cells For The Cost-Effective Production Of Pharmaceutical Proteins, Maria Gambaro
Create@State
Plant-based systems are becoming an important method for producing pharmaceutical proteins because they can be more cost-effective, and safer compared to traditional production methods which commonly use mammalian cells. This project aims to develop a transgenic plant cell system that can produce a pharmaceutical protein using molecular cloning techniques. A transgenic plant cell has the DNA of another plant integrated into its genome, altering its gene expression to produce different proteins. To begin, a plasmid carrying the gene of interest and the DNA components needed for expression will be designed. The plasmid will then be used to introduce the gene …
Identification Of Covalent Catechin Adducts Of Enoyl-Acp Reductase (Fabi) From E. Coli Using Mass Spectrometry, Francisco G. Atwi, P. M. Joyner, Rustin Ghidari
Identification Of Covalent Catechin Adducts Of Enoyl-Acp Reductase (Fabi) From E. Coli Using Mass Spectrometry, Francisco G. Atwi, P. M. Joyner, Rustin Ghidari
Seaver College Research And Scholarly Achievement Symposium
Enoyl-ACP reductase (FabI), an enzyme which is inhibited by catechin, is essential for lipid biosynthesis in bacteria (E. coli). Another FabI inhibitor, triclosan, has strong antibacterial effects,1 but overuse can be detrimental to the environment. Flavonoids, a class of dietary compounds, are known to have potent inhibitory effects on FabI and other kinases.2,3,4 Adducts form as a result of the biochemical reaction between flavonoids and cysteine, a modification which can be verified by m/z shifts on the mass spectra.5 Samples of E. coli protein with overexpressed FabI are utilized: the wild type with ordinary primary structure, and mutant type lacking …
Associations Between The Human Breast Microbiome And Immune Genes In Breast Cancer, Luke Pontoriero, Joan Argwings-Kodhek
Associations Between The Human Breast Microbiome And Immune Genes In Breast Cancer, Luke Pontoriero, Joan Argwings-Kodhek
Seaver College Research And Scholarly Achievement Symposium
Breast cancer (BC) affects 1 in 8 women and roughly 50% of breast cancers cannot be explained by environmental or genetic factors. There is growing evidence of the role of the human breast microbiome in breast cancer, but the mechanisms guiding this role are not well understood. The co-evolution of the human microbiome with the immune system represents an interaction between host and microbiome that is understudied with regard to breast cancer pathogenesis. We hypothesized that immune genetic variation is associated with altered abundance patterns of bacterial taxa in BC. We conducted 30X whole genome sequencing on a sample of …
Cytokinesis And Dbf2, Katharine Gray
Cytokinesis And Dbf2, Katharine Gray
Miners Solving for Tomorrow Research Conference
The Mitotic Exit Network (MEN) is a signaling pathway that allows a dividing cell to exit cytokinesis. Dbf2 is a MEN protein kinase in yeast, which provides a simplified model for studying this pathway. By altering Dbf2’s activity through phosphorylation mutants, its effect on cytokinesis can be studied. Transformed cells with a mutant and degron Dbf2 allele are prompted to destroy the degron Dbf2 protein, leaving only mutated Dbf2 behind. This allows for clear analysis of the effect of the phosphorylation mutant on division. Fluorescence microscopy can be used to visualise this degradation, and the impact on actin ring formation …
The Effects Of Preventing Dephosphorylation Of Lqg1 On Cytokinesis, Jenna Mueller
The Effects Of Preventing Dephosphorylation Of Lqg1 On Cytokinesis, Jenna Mueller
Miners Solving for Tomorrow Research Conference
Iqg1 plays crucial roles in cytokinesis, including the assembly, contraction, and disassembly of the actomyosin ring, as well as the coordination of contraction and septation. Given that cytokinesis must occur post-mitosis, Iqg1 is regulated by the cell cycle. This study explores hypotheses regarding Iqg1 regulation: it’s binding to action is negatively influenced by the cyclin-dependent kinase (CDK) Cdc28 and positively influenced by dephosphorylation via Cdc14. Newly developed yeast degron tagged strains allow for rapid depletion of specific proteins. Iqg1 mutations that alter serine to threonine, which allows phosphorylation but not dephosphorylation, in the degron strain allow testing of mutant phenotypes. …
Methods Of Inducing Cellular Senescence In Lung Fibroblasts, Sara Palega, Jennifer Q. Zhou, Shan Zhu, Yan Y. Sanders
Methods Of Inducing Cellular Senescence In Lung Fibroblasts, Sara Palega, Jennifer Q. Zhou, Shan Zhu, Yan Y. Sanders
Knowledge and Creativity Expo
Methods of Inducing Cellular Senescence in Lung Fibroblasts
Sara Palega1, Jennifer Q Zhou2, Shan Zhu2, Yan Y Sanders2
1VHS Biomedical Sciences PhD program, 2Department of Biomedical and Translational Sciences, Macon & Joan Brock Virginia Health Sciences at Old Dominion University (ODU)
Introduction: Idiopathic Pulmonary Fibrosis (IPF) is the most prevalent and severe of interstitial lung diseases. This chronic and progressive condition lacks treatment options and is ultimately fatal without a lung transplant. IPF arises from aberrant wound healing that leads to excessive collagen deposition, inflammation, and cystic alveolar growths which makes …
Mitochondrial Transfer And Induced Ros As A Therapeutic Strategy In Idh2-Mutant Chondrosarcoma, Vegas R. Bedder, Caleb Wyckoff, Chris Osgood, Gavin A. Vasquez, Michael Stacey
Mitochondrial Transfer And Induced Ros As A Therapeutic Strategy In Idh2-Mutant Chondrosarcoma, Vegas R. Bedder, Caleb Wyckoff, Chris Osgood, Gavin A. Vasquez, Michael Stacey
Knowledge and Creativity Expo
Chondrosarcoma (CS) are common bone cancers that produce cartilaginous tumors and are extremely refractive to chemo-and-radiation therapies, leaving very limited treatment options. They contain mutations in the isocitrate dehydrogenase genes, IDH1 or IDH2. Either IDH1 or IDH2 mutations are present in individual tumors, but not both. They both convert alphaketoglutarate (αKG) into the potent oncometabolite D-2-hydroxyglutarate (D2HG). D2HG can be transported from the tumors to cells of the tumor microenvironment (TME) where it can alter metabolic and epigenetic profiles in recipient cells. The process of α-KG to D2HG conversion occurs in the cytoplasm of IDH1 mutant cells, and in the …
Investigating The Potential Ability Of The Tlr4-Nf-Κb Axis To Reduce Aryl Hydrocarbon Receptor Expression In Intestinal Epithelial Cells, Gabriella Longoria
Investigating The Potential Ability Of The Tlr4-Nf-Κb Axis To Reduce Aryl Hydrocarbon Receptor Expression In Intestinal Epithelial Cells, Gabriella Longoria
Student Scholar Symposium
Necrotizing enterocolitis (NEC) primarily affects premature infants and is characterized by intestinal necrosis, inflammation, and high mortality. Toll-like receptor 4 (TLR4)-induced apoptosis of intestinal epithelial cells is thought to drive NEC development. Upon binding bacterial lipopolysaccharide (LPS), TLR4 signaling activates NF-κB, leading to inflammatory gene expression. Indole-3-carbinol (I3C), a pro-ligand of the aryl hydrocarbon receptor (AhR), prevents NEC in a mouse model by downregulating TLR4, despite reduced AhR expression in NEC-affected intestines. However, the molecular mechanism behind the reduced expression of AhR in NEC is unclear. To model NEC in vitro, we treated IEC-6 enterocytes with LPS, which reduces AhR …
Exploring The Functional Role Of Neprilysin In Pi3k/Akt1 Signaling In Triple-Negative Breast Cancer, Ariadna Daniela Menjivar
Exploring The Functional Role Of Neprilysin In Pi3k/Akt1 Signaling In Triple-Negative Breast Cancer, Ariadna Daniela Menjivar
Student Scholar Symposium
Our lab is investigating the protein Neprilysin (NEP) and its role in Triple-Negative Breast Cancer (TNBC). Previous bioinformatics data from Dr. Conway’s research indicated that in TNBC cells high in Neprilysin expression (HCC38), the PI3K pathway was the most active signaling pathway. This information suggests that Neprilysin is positively upregulating the PI3K pathway in this cell line. This is interesting given the fact that in the context of TNBC, Neprilysin has been shown to negatively regulate the PI3K/AKT signaling pathway. The PI3K/AKT pathway is the most commonly mutated pathway in breast cancer. AKT is the central mediator protein in this …
Impact Of Zar1l Expression On Drug Response In Breast Cancer Cells, Maryam M. Gerges, Smita Misra
Impact Of Zar1l Expression On Drug Response In Breast Cancer Cells, Maryam M. Gerges, Smita Misra
Student Scholar Symposium
Breast cancer (BC) is the most common cancer in women worldwide and the second leading cause of cancer-related deaths among females. BC arises from the uncontrolled proliferation of breast epithelial cells. A crucial gene associated with BC is the Breast Cancer Susceptibility Gene 2 (BRCA2), a tumor suppressor that aids in DNA repair. Proper BRCA2 function helps prevent BC. Our lab studied the cell cycle-dependent expression of BRCA2 revealing that its promoter exhibits bi-directional activity. During cell division, forward activity transcribes BRCA2, while in the resting phase, reverse activity transcribes ZAR2 (Zygote Arrest 1 Like). ZAR2, an RNA-binding protein with …
Pediatric Glioblastoma Molecular Mechanisms, Ariana Trabachino, Joshua Owens
Pediatric Glioblastoma Molecular Mechanisms, Ariana Trabachino, Joshua Owens
Student Scholar Symposium
Powerpoint presentation
Functionality Of The Ryanodine Receptor Type 1 (Ryr1) In The Development Of Malignant Hyperthermia (Mh), Cesar Medina, Joshua Owens
Functionality Of The Ryanodine Receptor Type 1 (Ryr1) In The Development Of Malignant Hyperthermia (Mh), Cesar Medina, Joshua Owens
Student Scholar Symposium
Malignant Hyperthermia (MH) is a rare but potentially lethal pharmacogenetic disorder, affecting roughly 1 in 30,000 children and 1 in 100,000 adults undergoing surgery. MH can be triggered by agents used for general anesthesia. These may include volatile anesthetics such as sevoflurane, isoflurane, desflurane, halothane or depolarizing neuromuscular blockers such as succinylcholine. Upon administration of a trigger, an MH susceptible (MHS) patient can develop a hypermetabolic state during the intraoperative or postoperative periods. If not treated quickly, an MH episode could result in organ dysfunction or death. The primary mechanisms involved in the development of an MH crisis include the …
Effects Of Valerobetaine In Fatty-Acid Induced Breast Cancer Cell Proliferation, Carolyn Tran, Maryam Mina, Diyar Fadhil
Effects Of Valerobetaine In Fatty-Acid Induced Breast Cancer Cell Proliferation, Carolyn Tran, Maryam Mina, Diyar Fadhil
Student Scholar Symposium
Breast cancer is the second leading cause of cancer deaths among women with 287,500 new cases of invasive breast cancer and 43,250 deaths reported in 2022. In fact, 75% of these deaths aren’t from the initial tumor but due to the spread of breast cancer tumors to other sites, also known as metastases. Breast cancer occurs when breast tissue cells mutate and proliferate uncontrollably, resulting in a lump or mass. In breast cancer, the origin of proliferation, or the primary site, for cancer cells is mostly within the milk ducts. Then, tumor cells can start migrating away from its primary …
Investigating Carnitine-Dependent Mechanisms Of Valerobetaine In Breast Cancer Migration Inhibition, Audrey Birdwell
Investigating Carnitine-Dependent Mechanisms Of Valerobetaine In Breast Cancer Migration Inhibition, Audrey Birdwell
Student Scholar Symposium
Breast cancer accounts for approximately 297,500 cases annually in the United States, leading to over 43,000 fatalities. These deaths occur due to cancer's ability to bypass the normal cell cycle, proliferating uncontrollably and metastasizing throughout the body. Notably, over 75% of breast cancer-related deaths are attributed to metastases. The hallmark of altered cellular metabolism enables cancer cells to enhance fat metabolism alongside glycolysis, driving increased tumor aggressiveness and higher metastatic rates. Currently, no FDA-approved drugs directly target metastases or prevent migrating cancer cells. Consequently, inhibiting fat metabolism presents a potential strategy to reduce metastases and cancer cell migration; however, existing …
Her2 Amplification In Breast Cancer And Its Treatment Options, Emerald Cole, Zoe Grace Brigance
Her2 Amplification In Breast Cancer And Its Treatment Options, Emerald Cole, Zoe Grace Brigance
Student Scholar Symposium
Breast cancer affects approximately 2.3 million women worldwide, causing an estimated 670,000 deaths in 2022. Among its subtypes, 15-20% exhibit overexpression of Human Epidermal Growth Factor Receptor 2 (HER2), a tyrosine kinase receptor that drives tumor aggressiveness. HER2 activates the PI3K and RAS/RAF/MAPK pathways, promoting uncontrolled cell growth, proliferation, and survival. In HER2+ breast cancer, gene amplification leads to excess HER2 protein production, resulting in persistent signaling and unchecked tumor progression. However, this dependency on HER2 presents a key therapeutic opportunity. Trastuzumab, an anti-HER2 monoclonal antibody, inhibits HER2 signaling and enhances immune-mediated cancer cell destruction. When combined with Lapatinib, chemotherapy, …
Elucidating The Mechanism Of Neprilysin-Regulated Triple-Negative Breast Cancer Invasion, Kai Lam, Ellie Griner
Elucidating The Mechanism Of Neprilysin-Regulated Triple-Negative Breast Cancer Invasion, Kai Lam, Ellie Griner
Student Scholar Symposium
Triple-negative breast cancer (TNBC) is a highly invasive and difficult-to-target form of cancer. It is characterized by a lack of estrogen receptors, progesterone receptors, and human epidermal growth factor 2 receptors, making current targeted therapies ineffective and leaving chemotherapy as the primary treatment option. Previous studies in this lab have linked reduced expression of neprilysin (NEP), a membrane-bound protease that cleaves and inactivates mitogenic peptides, to a highly invasive phenotype in TNBC. Our data indicates that while NEP promotes phosphoinositol 3-kinase (PI3K) signaling, it simultaneously inhibits cellular invasion. Here, we begin to explain a possible mechanism behind the anti-invasive role …
Δ-Valerobetaine As A Novel Inhibitor Of Breast Cancer Cell Migration: Hinders Cellular Migration Of Mcf-7 Cells Through Reducing Atp Concentrations And Fak Activation, Braxton Ivie, Lincoln Brown, Bryson Lovorn
Δ-Valerobetaine As A Novel Inhibitor Of Breast Cancer Cell Migration: Hinders Cellular Migration Of Mcf-7 Cells Through Reducing Atp Concentrations And Fak Activation, Braxton Ivie, Lincoln Brown, Bryson Lovorn
Student Scholar Symposium
δ-valerobetaine as a Novel Inhibitor of Breast Cancer Cell Migration: Hinders Cellular Migration of MCF-7 Cells Through Reducing ATP Concentrations and FAK Activation
Lincoln Brown, Braxton Ivie, Bryson Lovorn, Joshua Owens
Based on female breast cancer diagnoses from 2014-2020, the CDC reports that the 5-year relative survival rate for local and regional breast cancers was 98.9% and 86.3%, respectively, while the survival rate for metastasized cancers was reportedly 32.4%. These discrepancies in survival highlight an increased mortality rate when cancer metastasizes. Interestingly, aggressive tumors have been shown to metabolize fats at higher rates than low-metastatic tumors. Recently, our group has …
Mathematical Model Of Ovarian Cancer Tumor Growth In Mice, Jessica A. Hoffman
Mathematical Model Of Ovarian Cancer Tumor Growth In Mice, Jessica A. Hoffman
Annual Symposium on Biomathematics and Ecology Education and Research
No abstract provided.
Balancing Stability And Complexity In Boolean Models Of Biological Networks, Venkata Sai Narayana Bavisetty
Balancing Stability And Complexity In Boolean Models Of Biological Networks, Venkata Sai Narayana Bavisetty
Annual Symposium on Biomathematics and Ecology Education and Research
No abstract provided.
Exploiting Genomics To Advance Genetic Gain For Reproductive Traits In Sheep, Mujibur Rahman
Exploiting Genomics To Advance Genetic Gain For Reproductive Traits In Sheep, Mujibur Rahman
ORBioM (Open Research BioSciences Meeting)
Poor reproductive performance has a negative impact on the profitability of sheep production systems with the number of lambs reared highlighted as a key driver of farm profitability. Nevertheless, the genetic improvement of reproductive traits in sheep has been constrained by their low heritability and pleiotropic nature. Understanding the underlying genetic architecture can improve genomic prediction estimates and enhance genetic gain.
This study will utilize large-scale genomic and phenotypic datasets to enhance genetic gain in sheep reproductive traits through four approaches: 1) to determine the effect of inbreeding depression on reproduction, 2) to identify causal variants impacting reproductive performance through …
The Anticancer Activity Of Novel Chromene Derivatives Against Colorectal Cancer Cells, Rym Magramane
The Anticancer Activity Of Novel Chromene Derivatives Against Colorectal Cancer Cells, Rym Magramane
Thesis/ Dissertation Defenses
Colorectal cancer (CRC) stands as the third most common cancer globally, accounting for nearly 10% of all newly diagnosed cancer cases. In the UAE, CRC was ranked as the third most frequently diagnosed malignancy, and the leading cause of cancer-associated deaths in 2023. Standard CRC treatment strategies include surgical resection, chemotherapy, immunotherapy, targeted therapy, or a combination of all, depending on the cancer stage and molecular profile. Despite these interventions, disease recurrence is experienced by a considerable number of cancer patients. Hence, there is an urgent need to develop novel alternative treatments to overcome poor prognosis. Recently, cancer research has …
Early Hematopoietic Differentiation Of An Inducible Pluripotent Stem Cell Model Of Infant Lymphoblastic Leukemia, Meagan Vacek, Jacqelyn Nemechek, Irina Pushel, Bradley Thornton, Priyanka Kumar, Jay L. Vivian, John M. Perry
Early Hematopoietic Differentiation Of An Inducible Pluripotent Stem Cell Model Of Infant Lymphoblastic Leukemia, Meagan Vacek, Jacqelyn Nemechek, Irina Pushel, Bradley Thornton, Priyanka Kumar, Jay L. Vivian, John M. Perry
Research Days
This abstract describes our work regarding the differentiation of human inducible pluripotent stem cells into hematopoietic stem and progenitor cells as the groundwork for the development of a genomics driven inducible pluripotent stem cell model of KMT2A rearranged infant acute lymphoblastic leukemia.