Research & Innovation

01
Clinical exploration at UCLA

From Genes
To Patients.

My interest in biomedical science begins with understanding how disease works: at the molecular level, across organs, and eventually in the lives of patients. Through computational biology, synthetic biology, and clinical exploration, I have learned to approach health from different scales—using data to uncover biological patterns, experiments to test possible interventions, and clinical observation to understand how scientific knowledge translates into care.

Molecular Mechanisms

Diabetic Microvascular Complications

Honors & Awards

Best Paper
Runner-Up

IEEE Biomedical Engineering & Intelligent Systems

Paper Accepted

Second Honors

Bioinformatics & Computational Biology

Connecticut Science & Engineering Fair

Searching For Shared Molecular Signals Across The Kidney And Retina.

Diabetic nephropathy and diabetic retinopathy are often studied as separate complications of diabetes, yet both involve damage to small blood vessels. I wanted to understand whether they might also share underlying molecular mechanisms.

Over more than a year, I integrated transcriptomic datasets from both diseases and identified 505 and 969 differentially expressed genes. Using WGCNA and single-cell RNA sequencing, I narrowed the analysis to 35 endothelial oxidative-stress-related genes, then applied LASSO regression and ROC analysis to identify four potential shared biomarkers:

NOTCH1CELF2EMP3VGLL4

The project suggested that oxidative-stress-driven endothelial dysfunction may provide a molecular link between renal and retinal complications, offering possible directions for earlier diagnosis and integrated therapeutic research.

Transcriptomic Analysis

DN & DR gene-expression datasets

Network Analysis

WGCNA

Single-Cell Analysis

scRNA-seq

Biomarker Selection

LASSO · ROC Analysis

Research Outputs

Engineering Biology

FeliSilence

Honors & Awards

Gold Medal

International Genetically Engineered Machine Competition

Evaluated Alongside

Teams
450+
Countries
66+

Global Synthetic Biology Competition

Can Synthetic Biology Make Living With Cats—And Cat Allergies—More Compatible?

Cat allergies affect the relationship between people and one of the world's most common companion animals. Through FeliSilence, our iGEM project explored whether RNA interference could offer a new way to reduce the expression of major cat allergens.

I worked across both the scientific and translational sides of the project. In the wet lab, I helped build a yeast-based RNAi assay, tested 15 shRNA candidates targeting Fel d1, Fel d2, Fel d4, and Fel d7, and used fluorescence measurements to evaluate gene silencing. But developing a biological tool also raised questions beyond whether it worked in the lab. I conducted public surveys, investigated user needs and possible pet-medical applications, researched the market landscape, and helped translate the project into a 43-page business plan. The experience showed me that scientific innovation does not end with an experiment. It also requires thinking about the people, animals, systems, and decisions surrounding its eventual use.

The Project

4Major allergen targets
15shRNAs tested
43 pagesBusiness & translation plan
10 monthsResearch, design & development

My Role

Wet LabRNAi assay design · shRNA testing · fluorescence quantification
TranslationPet-health applications · user needs · market research
Public EngagementSurvey design · community perspectives
Venture Strategy43-page business plan
2025.igem.wiki/bwyaFeliSilence official project website homepage, with its illustrated cat and project title

FeliSilence
Project Website

Explore the BWYA team's iGEM 2025 project, including its research, experiments, human practices, and entrepreneurship.

Visit Official WebsiteView Team Certificate
From Bench To Bedside

Clinical Exploration

From Biomedical Research To Patient Care.

Research taught me to understand disease through genes, pathways, and data. Clinical experiences allowed me to see how that knowledge is translated into decisions, teamwork, and patient care across different medical settings.

UCLA Surgery Internship

Cardiothoracic Surgery · Trauma & Critical Care

Completed intensive training in cardiothoracic and trauma surgery across two summers, practicing surgical techniques on anatomical models. Returned as a selected Teaching Assistant, mentoring 15 students and supporting advanced labs.

Stanford Anesthesia Summer Institute

Clinical Science · Technology · Medicine

Explored the intersection of clinical science, biomedical technology, and healthcare delivery through lectures, case studies, and collaborative projects.

Sharon Hospital, Litchfield County, CT

Clinical Shadowing Across Six Departments

Shadowed Dr. Donald J. Soucier across six departments and observed 20+ consultations, rounds, and treatment discussions, gaining insight into diagnostic reasoning and multidisciplinary patient care.

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