Dr. Lyuqin (Lydia) Chen, Ph.D.

Consultant in Healthcare with PhD in life science

Research Expertise

Breast cancer
stem cell
wounding
regeneration
Plant Science
Physiology
Cardiology and Cardiovascular Medicine
Genetics
Pharmacology
Pharmacology (medical)
Molecular Biology
Biotechnology
Biochemistry
Cell Biology
Cancer Research
Oncology

About

Dr. Lyuqin (Lydia) Chen, Ph.D. is a highly educated and experienced professional with a diverse background in finance, marketing, and life science. She obtained her Ph.D. in Genetics at 2016 and then went on to pursue her MBA in Finance and Marketing in 2023. 2016. She has a strong academic foundation and has also gained practical experience in life science research through her postdoctoral positions at the University of Pittsburgh and Stanford University. Dr. Chen has also worked in the business world, serving as a consultant at Pittsburgh Management Consulting and an expert consultant at AlphaSense. These roles have allowed her to apply her expertise in life science to real-world problems, providing valuable insights and solutions to various industries. Her impressive educational and professional background has equipped her with a wide range of skills, including data analysis, critical thinking, and project management. Dr. Chen is a dedicated and driven individual, always seeking new opportunities to expand her knowledge and contribute to the advancement of her fields of expertise. She is a valuable asset in any organization, bringing a unique blend of scientific and business expertise to the table.

Legacy Map

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Publications

Jasmonate-mediated wound signalling promotes plant regeneration
Nature Plants
2019
YUCCA-mediated auxin biogenesis is required for cell fate transition occurring duringde novoroot organogenesis in Arabidopsis
Journal of Experimental Botany
2016
Single Cell Analysis of Endothelial Cells Identified Organ-Specific Molecular Signatures and Heart-Specific Cell Populations and Molecular Features
Frontiers in Cardiovascular Medicine
2019
Auxin-Independent NAC Pathway Acts in Response to Explant-Specific Wounding and Promotes Root Tip Emergence during de Novo Root Organogenesis in Arabidopsis
Plant Physiology
2016
FGFR4: A promising therapeutic target for breast cancer and other solid tumors
Pharmacology & Therapeutics
2020
Wound signaling: The missing link in plant regeneration
Plant Signaling & Behavior
2016
Transcriptional landscapes of de novo root regeneration from detached Arabidopsis leaves revealed by time-lapse and single-cell RNA sequencing analyses
Plant Communications
2022
Control of de novo root regeneration efficiency by developmental status of Arabidopsis leaf explants
Journal of Genetics and Genomics
2019
TAA family contributes to auxin production during de novo regeneration of adventitious roots from Arabidopsis leaf explants
Science Bulletin
2016
Data from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Data from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary FigureS1-S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary FigureS1-S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S1 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S1 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S10 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S10 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S11 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S11 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S2 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S2 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S3 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S3 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S4 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S4 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S6 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S6 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S7 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S7 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S8 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S8 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S9 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S9 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Cancer Research
2023
Data from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary FigureS1-S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary FigureS1-S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S1 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S1 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S10 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S10 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S11 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S11 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S2 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S2 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S3 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S3 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S4 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S4 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S5 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S6 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S6 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S7 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S7 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S8 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S8 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S9 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023
Supplementary Table S9 from The EstroGene Database Reveals Diverse Temporal, Context-Dependent, and Bidirectional Estrogen Receptor Regulomes in Breast Cancer
Unknown Venue
2023

Education

MBA, Finance and marketing / June, 2025 (anticipated)

Pittsburgh, Pennsylvania, United States of America

Ph.D., Genetics / July, 2016

Shanghai

Experience

University of Pittsburgh

postdoc associate / April, 2019Present

• Led and organized a trans-disciplinary journal club, involving 9 labs across 3 different institutes. • Collaborated with multidisciplinary groups, identified, and validated novel druggable targets in oncology field, contributing to a co-first author paper, and two co-authored and one review papers.

Stanford University

Postdoc / May, 2017March, 2019

Establish gene editing system in house and provide technical consulting service on CRISPR/Cas9 technology within 4 interdisciplinary research groups.

Pittsburgh Management Consulting

Consultant / January, 2024Present

Collaborated with a team of 3 consultant and 3 analysts in marketing and finance field to assist clients, including a top 25 pharmaceutical company, in solving business and operational challenges.

AlphaSense

Expert Consultant / January, 2024Present

As a seasoned professional specializing in life sciences and business, I provide comprehensive consultation services spanning R&D drug discovery, pre-clinical and clinical trials, and marketing strategies. My expertise extends to conducting thorough data research and analysis to offer valuable insights into the business landscape. I excel in delivering a holistic perspective, encompassing competitive landscape analysis, identifying M&A opportunities, and conducting margins analysis for clients within the life science sector. Collaborating closely with life science clients, I contribute to their success by analyzing market trends and providing strategic recommendations.

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