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Research Methods in Life Sciences Commons™
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- Discipline
- Keyword
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- Apoptosis (9)
- Ewing Sarcoma (9)
- Incucyte (9)
- Pediatric Cancer (9)
- Proliferation (9)
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- QRTPCR (9)
- Tissue Culture (9)
- Migration (8)
- CRISPR (4)
- Extracellular Matrix (4)
- MTOR (3)
- Everolimus (2)
- AKT (1)
- Adhesion Receptor (1)
- Animal Welfare (1)
- BRD4 (1)
- CDK2 (1)
- CXCR4 (1)
- Cetaceans (1)
- Chemokine Receptor (1)
- Euthanasia; Ethical Issues; Fertility (1)
- FGFR1 (1)
- Five Domains Model (1)
- Illudin (1)
- LY2874455 (1)
- PTK2 (1)
- Panobinostat (1)
- Pinnipeds (1)
- RPTOR (1)
- SNAI1 (1)
Articles 1 - 11 of 11
Full-Text Articles in Research Methods in Life Sciences
Cell Cycle Inhibition: Illudin S And Its Effects On Cdk2 In Ewing Sarcoma, Stephanie Diez, Natalie Flores, Alexandria Hernandez, Viviana Palacios, Terry Jo Shackleford
Cell Cycle Inhibition: Illudin S And Its Effects On Cdk2 In Ewing Sarcoma, Stephanie Diez, Natalie Flores, Alexandria Hernandez, Viviana Palacios, Terry Jo Shackleford
Cell and Molecular Methods
Ewing Sarcomas are aggressive round cell mesenchymal neoplasmas that have a high occurrence in children and young adults. CDK2 is a protein that is involved in the G1 phase of the cell cycle, which promotes the transition to the S phase. CDK2 kinase activation is mainly observed in the G1/S-phase transition.3 CDK2 binds to Cyclin proteins is responsible for entry and progression, thereby leading to maximal apoptosis activity in the S-phase. Illudin S is a drug that has been known to target cancer-specific cells, such as leukemia. Illudin S, in general are a cytotoxic metabolite that comes from plants, specifically …
Yap1 Knockdown And Panobinostat Treatment Increase Apoptotic Response And Decrease Gene Expression In Ewing Sarcoma Cells, Luna Collazo-Garcia, Alejandra Favela Santos, Madeline Torres-Salazar, Isabella Toscano, Terry Jo Shackleford
Yap1 Knockdown And Panobinostat Treatment Increase Apoptotic Response And Decrease Gene Expression In Ewing Sarcoma Cells, Luna Collazo-Garcia, Alejandra Favela Santos, Madeline Torres-Salazar, Isabella Toscano, Terry Jo Shackleford
Cell and Molecular Methods
Ewing sarcoma (EWS) is considered to be one of the most aggressive pediatric malignancies, often characterized by its dysregulated gene expression driven by oncogenic fusion proteins. The Hippo signaling effector Yes-associated protein 1 (YAP1) has been known in promoting cell proliferation, survival, and therapeutic resistance in multiple cancers. However, its role in Ewing sarcoma response to treatment remains unclear. This study investigated whether YAP1 knockdown enhances the sensitivity of Ewing sarcoma cells to the histone deacetylase inhibitor Panobinostat. Ewing sarcoma, ES8, cells were transfected with a YAP1-targeting siRNA (siYAP1) or a non-targeting control (siControl) and treated with DMSO, 0.1 μM, …
Everolimus Treatment Combined With Akt1 Knockdown Increased Apoptosis And Decreased Cell Proliferation In Ewing Sarcoma Cells, Arisha Arif, Alfie Barcenez, Sophia Ruter, Nicole Vanegas-Riddick, Terry Jo Shackleford
Everolimus Treatment Combined With Akt1 Knockdown Increased Apoptosis And Decreased Cell Proliferation In Ewing Sarcoma Cells, Arisha Arif, Alfie Barcenez, Sophia Ruter, Nicole Vanegas-Riddick, Terry Jo Shackleford
Cell and Molecular Methods
The purpose of this study is to use the gene AKT1, due to the interest in AKT1’s role in cancer cell proliferation, and the drug Everolimus, to determine if combined targeted therapy works as a more efficient therapeutic approach. Ewing Sarcoma has been connected to chromosomal translocations and is most common in pediatric patients. It is most often treated with chemotherapy and local treatments. It may be connected to the gene AKT1 due to how it regulates cell metabolism, growth, and proliferation. The gene mTOR is similarly connected to cell metabolism and proliferation, and is inhibited by the drug Everolimus. …
Everolimus And Sirna-Mediated Mtor Inhibition Reduces Proliferation And Promotes Apoptosis In Ewing Sarcoma Cells, Dylan Calvert, Malorie Martinez, Alexa Miner, Ellis Quiroga, Terry Jo Shackleford
Everolimus And Sirna-Mediated Mtor Inhibition Reduces Proliferation And Promotes Apoptosis In Ewing Sarcoma Cells, Dylan Calvert, Malorie Martinez, Alexa Miner, Ellis Quiroga, Terry Jo Shackleford
Cell and Molecular Methods
Ewing Sarcoma (ES) is an aggressive pediatric bone cancer characterized by rapid cell proliferation and poor prognosis, making the identification of therapeutic targets critical. One of the mechanistic targets is rapamycin (mTOR) signaling pathway, which is critical for regulating cell growth, proliferation, and survival. Abnormal activation of the mTOR signaling pathway has been linked to the progression of ES, as it drives uncontrolled cell growth and apoptosis resistance. Because mTOR represents a promising therapeutic target for ES treatment, we hypothesized that inhibiting mTOR activity through an siRNA-mediated knockdown or through Everolimus drug treatment, would reduce cell proliferation and promote ES …
Sirna Knockdown Of Rptor Reduces Rptor Expression, Increases Brd4 Expression, And Alters Proliferation And Apoptosis In Ewing's Sarcoma Cells, Sergio Cipriano, David Leavitt, Michael Olivia, Liam Valdez, Terry Jo Shackleford
Sirna Knockdown Of Rptor Reduces Rptor Expression, Increases Brd4 Expression, And Alters Proliferation And Apoptosis In Ewing's Sarcoma Cells, Sergio Cipriano, David Leavitt, Michael Olivia, Liam Valdez, Terry Jo Shackleford
Cell and Molecular Methods
Ewing sarcoma is a highly aggressive cancer that primarily affects children and young adults. Although treatment options exist, many patients do not respond effectively, showing the need for improved targeted therapies. RPTOR is a key in mTORC1 complex which regulates cell growth, proliferation, and survival. LY2874455 is a selective pan-FGFR inhibitor that targets growth factor signaling pathways involved in tumor progression, and FGFR signaling interacts with pathways such as mTOR, making it a potential target for combination therapies. We hypothesized that silencing RPTOR in Ewing sarcoma cells would disrupt mTOR signaling and alter expression of genes linked to cell survival …
Investigating The Role Of Twist1 In Cancer Progression Using Crispr Knockdown, Abby Guerrero, Sofia Perez, Terry J. Shackleford
Investigating The Role Of Twist1 In Cancer Progression Using Crispr Knockdown, Abby Guerrero, Sofia Perez, Terry J. Shackleford
Mechanisms of Disease
TWIST1 is a transcription factor that plays a critical role in epithelial-mesenchymal transition (EMT), a process that promotes cancer cell migration, invasion, and metastasis. This study investigates the functional role of TWIST1 in cancer progression by using CRISPR/Cas9-mediated knockdown to examine its effects on apoptosis, proliferation, migration, and invasion. TWIST1 was knocked down in cancer cell lines using CRISPR/Cas9 assay. Knockdown efficiency and changes in genes were confirmed by qRT-PCR. Functional assays included caspase assays for apoptosis, MTT assays for proliferation, wound-healing assays for migration, Matrigel invasion assays, and colony formation assays to assess long-term growth and invasive potential. Across …
Evaluating The Sna1 Gene Using Crispr Mediated Knockdown In Ewing Sarcoma Cells, Rosanna Jees, Sonia Cerrillo, Terry Jo Shackleford
Evaluating The Sna1 Gene Using Crispr Mediated Knockdown In Ewing Sarcoma Cells, Rosanna Jees, Sonia Cerrillo, Terry Jo Shackleford
Mechanisms of Disease
Ewing sarcoma is a pediatric cancer with limited therapeutic options and poor long-term survival. CRISPR–Cas9–mediated gene editing provides a powerful tool for investigating tumor molecular behavior and identifying potential therapeutic targets. In this study, we worked with CRISPR–Cas9 in Ewing sarcoma ES8 cells to evaluate the roles of the transcription factors SNAI1 and SNAI2, both implicated in epithelial–mesenchymal transition and cancer progression. Using guide RNAs targeting each gene, we assessed proliferation, apoptosis, migration, and long-term survival through Incucyte live-cell imaging and colony-formation assays. Knockout of SNAI1 resulted in decreased cell proliferation and reduced migratory capacity compared with controls, suggesting a …
How Cxcr4 Knockdown Affects Tumorigenic Properties In Es8 Cells, Gabriella Galdeano, Damon James, Terry Jo Shackleford
How Cxcr4 Knockdown Affects Tumorigenic Properties In Es8 Cells, Gabriella Galdeano, Damon James, Terry Jo Shackleford
Mechanisms of Disease
C-X-C chemokine receptor type 4 (CXCR4) is a seven-transmembrane G-protein–coupled receptor (GPCR). When activated by its ligand SDF-1 (CXCL12), CXCR4 triggers signaling pathways that promote cell survival, proliferation, angiogenesis, and chemotaxis. Many cancers exploit the CXCR4/SDF-1 axis to support tumor growth and metastasis. Ewing sarcoma (ES8) is an aggressive pediatric bone and soft-tissue cancer, and elevated CXCR4 signaling has been linked to increased migration and metastatic behavior. ES8 cells, a well-established ES8 cell line, provided a model to study how CXCR4contributes to tumor progression. CRISPR-Cas9 genome editing was used to knock down CXCR4 in ES8 cells, delivered through lipid-based transfection. …
Effects Of Ptk2 Knockdown On Key Cellular Processes In Es8 Cells, Adrian Cruz, Emiliano Rueda, Dylan Andrews, Terry Jo Shackleford
Effects Of Ptk2 Knockdown On Key Cellular Processes In Es8 Cells, Adrian Cruz, Emiliano Rueda, Dylan Andrews, Terry Jo Shackleford
Mechanisms of Disease
Ewing sarcoma is an aggressive form of pediatric cancer characterized by rapid growth and metastatic potential, with limited treatment options available. PTK2 is a key regulator of many pathways involved in tumor behavior, including integrin-mediated adhesion, survival, and migration. This research lab investigated how CRISPR-Cas9 knockdown of PTK2 can affect cellular processes in ES8 Ewing sarcoma cells. To assess the effectiveness of reducing PTK2 expression, we utilized live-cell imaging, wound-healing assays, measurements of caspase activity, colony formation, and qRT-PCR. Our results showed that incomplete knockdown decreased cell proliferation and colony formation, while also increasing apoptotic activity. Additionally, migratory ability was …
A Deeper Dive Into Literature Published About Pinnipeds And Cetaceans Using The Five Domain Model, Aqsa Khan, Pedro Beltran
A Deeper Dive Into Literature Published About Pinnipeds And Cetaceans Using The Five Domain Model, Aqsa Khan, Pedro Beltran
Posters - 2024
Research was conducted on cetaceans (whales and dolphins) (Figure 1) and pinnipeds (seals and sea lions) (Figure 2), focusing on five domains: nutrition, environment, health, behavior, and mental state. The goal was to identify the most discussed domain in existing literature. Specifically examining researchers' opinions on assessing the well-being of these marine mammals. After analyzing articles, hypotheses were formed suggesting that environmental factors are prominent for cetaceans, while behavior is the prominent domain for pinnipeds. To test these hypotheses, peer-reviewed articles were coded, providing both qualitative insights and quantitative representations of each domain's prevalence. The research uncovered the focal domains …
Bioethics: Everything You Wanted To Know About Life Or Death, But Were Afraid To Ask, St Mary's University
Bioethics: Everything You Wanted To Know About Life Or Death, But Were Afraid To Ask, St Mary's University
President's Peace Commission - Programs
The President’s Peace Commission existed from 1984 to 2013 at St. Mary's University. The Commission fostered an ethical commitment to participate in the establishment of world peace and social justice.
This program is about genetic technologies, ethical issues in human and animal experimentation and physician assisted suicide.