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Kaustabh Ghosh, PhD

Principal Investigator
Associate Professor of Ophthalmology
David Geffen School of Medicine, UCLA
Doheny Eye Institute
Academic Degrees
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Bachelor of Technology

National Institute of Technology, Warangal, India
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Master of Science

Biomedical Engineering, Stony Brook University

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Doctor of Philosophy

Biomedical Engineering, Stony Brook University

Postdoctoral Fellowships
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Vascular Biology Program

Boston Children’s Hospital and Harvard Medical School
Research Interests

Vascular Inflammation in Diabetes and Aging, Eye Diseases, Mechanobiology, Cell-Matrix Interactions, Nanotherapeutics

The goal of our vascular mechanobiology lab is to integrate the principles of biology and engineering to develop effective therapies for vision-threatening diseases, specifically diabetic retinopathy (DR) and age-related macular degeneration (AMD). Currently, DR and AMD are clinically managed only in their advanced stages that are marked by excessive multiplication and leakiness of blood vessels in the inner and outer retina, respectively. However, there is growing recognition that more effective treatment of these conditions is possible by tackling them in the early stages when these blood vessels degenerate.

We are taking a multidisciplinary approach to understand and prevent this early loss of blood vessels in diabetes and aging. Integrating the principles of vascular biology, mechanobiology, inflammation, and bioengineering, our work has introduced a new paradigm that implicates vascular ‘stiffness’ as a crucial determinant of vascular degeneration associated with early DR and AMD. Our ongoing studies aim to identify the factors that alter vascular stiffness in the eye and uncover the mechanobiological mechanisms by which altered stiffness causes vascular loss in diabetes and aging. These studies, performed in collaboration with ophthalmologists and funded by the National Eye Institute/NIH, have the potential to identify new classes of drugs that restore normal vascular stiffness and function in the eye and thereby block DR and AMD progression in their early stages.

Selected Publications

Chandrakumar Sathishkumar, Santiago Tierno Irene, Agarwal Mahesh, Lessieur Emma M, Du Yunpeng, Tang Jie, Kier Jianying, Yang Xiao, Kern Timothy S, Ghosh Kaustabh. Mechanical regulation of retinal vascular inflammation and degeneration in diabetes. Diabetes, 2023 Nov 21; doi: 10.2337/db23-0584

Chandrakumar Sathishkumar, Santiago Tierno Irene, Agarwal Mahesh, Matisioudis Nikolaos, Kern Timothy S, Ghosh Kaustabh. Subendothelial matrix stiffening by lysyl oxidase enhances RAGE-mediated retinal endothelial activation in diabetes Diabetes. 2023 Apr 14; https://doi.org/10.2337/db22-076

Cabrera Andrea P, Stoddard Jonathan, Santiago Tierno Irene, Matisioudis Nikolaos, Agarwal Mahesh, Renner Lauren, Palegar Neha, Neuringer Martha, McGill Trevor, Ghosh Kaustabh. Increased cell stiffness contributes to complement-mediated injury of choroidal endothelial cells in a monkey model of early age-related macular degeneration The Journal of Pathology, 2022; 257(3): 314-326.

Cabrera Andrea P, Bhaskaran Arun, Xu Jun, Yang Xiao, Scott Harry A, Mohideen Umar, Ghosh Kaustabh Senescence Increases Choroidal Endothelial Stiffness and Susceptibility to Complement Injury: Implications for Choriocapillaris Loss in AMD Investigative ophthalmology & visual science, 2016; 57(14): 5910-5918.

Scott Harry A, Quach Boi, Yang Xiao, Ardekani Soroush, Cabrera Andrea P, Wilson Randall, Messaoudi-Powers Ilhem, Ghosh Kaustabh Matrix stiffness exerts biphasic control over monocyte-endothelial adhesion via Rho-mediated ICAM-1 clustering Integrative biology : quantitative biosciences from nano to macro, 2016; 8(8): 869-78.

Yang Xiao, Scott Harry A, Monickaraj Finny, Xu Jun, Ardekani Soroush, Nitta Carolina F, Cabrera Andrea, McGuire Paul G, Mohideen Umar, Das Arup, Ghosh Kaustabh Basement membrane stiffening promotes retinal endothelial activation associated with diabetes FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 2016; 30(2): 601-11.

Adini Irit, Ghosh Kaustabh, Adini Avner, Chi Zai-Long, Yoshimura Takeru, Benny Ofra, Connor Kip M, Rogers Michael S, Bazinet Lauren, Birsner Amy E, Bielenberg Diane R, D’Amato Robert J Melanocyte-secreted fibromodulin promotes an angiogenic microenvironment The Journal of Clinical Investigation, 2014; 124(1): 425-36.

Ghosh Kaustabh, Thodeti Charles K, Dudley Andrew C, Mammoto Akiko, Klagsbrun Michael, Ingber Donald E Tumor-derived endothelial cells exhibit aberrant Rho-mediated mechanosensing and abnormal angiogenesis in vitro Proceedings of the National Academy of Sciences of the United States of America, 2008; 105(32): 11305-10.

Ghosh Kaustabh, Ingber Donald E Micromechanical control of cell and tissue development: implications for tissue engineering Advanced drug delivery reviews, 2007; 59(13): 1306-18.

Selected Awards & Honors

2023 Catalyst Award for Innovative Research Approaches for AMD, Research to Prevent Blindness/IRRF
2017 Featured Scientist, BrightFocus Foundation
2017 Regents Faculty Development Award, University of California
2016 Outstanding Educator Award, Orange County Engineering Council, CA
2014 Hellman Fellowship
2013 Regents Faculty Fellowship, University of California
2011 Lindbergh Lecturer, University of Wisconsin-Madison
2008 NIH/NIBIB T32 Postdoctoral Training Grant
2006 President’s Award to Distinguished Doctoral Students, SUNY at Stony Brook

Contact

Kaustabh Ghosh, PhD

Associate Professor, Department of Ophthalmology

Faculty, Graduate Programs in Biosciences, MCIP Home Area
David Geffen School of Medicine, UCLA
Principal Investigator, Doheny Eye Institute
150 N. Orange Grove Rm. 330, Pasadena, CA 91103
Tel. 323-342-7164;
UCLA Faculty Profile