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Real-time Clinical AI Systems in Tsui Lab

The Tsui lab works on real-time clinical AI and machine learning research and deployment for solving real-world problems using real-world data.

X-Inactivation Analysis

The students will learn how to use molecular biology technologies to answer fundamental genetic questions.

Ganguly Arupa

Sudden Cardiac Death Prevention

The research student works with a mentor in the Electrophysiology (Arrhythmia) Section of the Pediatric Cardiology Division at CHOP (Dr. Vetter) on a project related to conditions that can result in sudden cardiac arrest in children, Automated External Defibrillators (AEDs) in schools, or associated areas.

Vetter Victoria

Undergraduate Laboratory Research Assistant in Immunology

The Oliver lab is focused on understanding basic mechanisms that explain how our immune system protects us against pathogenic infection and prevents inflammation and consequent tissue damage.

Oliver Paula

Ovarian Cancer and Cellular Senescence

EPIGENETICS OF EPITHELIAL OVARIAN CANCER

A major discovery in recent cancer genome-wide sequencing is the identification of significant genetic changes in chromatin-modifying genes. However, despite great strides in identifying the various epigenetic enzymes/factors involved in cancer, the translational application of these findings in cancer intervention remains to be explored. The Zhang lab will pursue these issues in the coming years by focusing on the epigenetic SWItch/Sucrose Non-Fermentable (SWI/SNF) and Polycomb repressive complex 2 (PRC2) complexes as proof of principles in the context of ovarian cancer.

a. Mechanism-guided therapeutic strategies for genetic alterations that affect the SWI/SNF chromatin remodeling complex in epithelial ovarian cancer (such as ARID1A mutation in clear cell and endometrioid subtypes of ovarian cancer, and CARM1 amplification/overexpression in high-grade serous ovarian cancer).

b. Epigenetic approaches to chemotherapy resistance and cancer stemness in epithelial ovarian cancer.

c. Epigenetic approaches to primer for and/or synergize with immunological therapy in epithelial ovarian cancer.

d. PARP inhibitors resistance mechanism and approaches to sensitizing BRCA-proficient ovarian cancer to PARP inhibitors.



EPIGENETIC AND METABOLIC BASIS OF CELLULAR SENESCENCE

Cellular senescence is a state of stable cell growth arrest that is accompanied by drastic molecular and phenotypic changes. Cellular senescence is a major contributor to tissue aging and plays a context-dependent role in tumor development. For example, cellular senescence is tumor suppressive and overcoming the senescence-associated cell growth arrest is a necessary step during cell transformation. In contrast to its tumor suppressive function, senescent cells can also promote cancer by acquiring a secretory phenotype and create a pro-tumorigenic microenvironment. The biological process of cellular senescence represents an ideal paradigm to examine the role of the DNA damage response, epigenetically determined chromatin structure, and metabolic reprogramming during tissue aging and cancer development.

a. Chromatin basis of the senescence-associated secretory phenotype.

b. Targeting senescence-associated metabolic vulnerability to develop cancer therapeutics.

c. Targeting senescence-associated immunological vulnerability to develop cancer therapeutics.

Zhang Rugang

High-Value Care Delivery During Hospital To Home Transitions

Investigating the role of physician practice organization in the outcomes of patients with multiple chronic conditions.

PET Imaging and Instrumentation

Research projects cover aspects of hardware development (electronics, radiation detectors, mechanical design), Monte Carlo simulation for new system designs, optimization of imaging protocols, data corrections for generating quantitative images, and task-based image analysis.

Developmental Biology Of Pancreatic Endocrine Cells

Projects will vary. Interested students should contact us to discuss possibilities.

Stanescu Diana

Epigenetic Basis Of Cellular Identity

Projects will vary. Interested students should contact us to discuss possibilities.

Blanco Andres

Understanding Human Brain Function and Individual Differences

We use multiple functional neuroimaging modalities and data modeling techniques to understand human brain function and individual differences in cognition and decision-making.

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