La Jolla, CA, United States of America

Alexy Terskikh


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: Alexy Terskikh: Innovator in Neural Precursor Cell Technology

Introduction

Alexy Terskikh is a prominent inventor based in La Jolla, California. He has made significant contributions to the field of neuroscience through his innovative work on neural precursor cells. His research focuses on developing pure populations of these cells, which are crucial for advancing treatments for neurological disorders.

Latest Patents

Terskikh holds a patent for "Homogeneous neural precursor cells." This invention provides pure populations of neural precursor cells capable of differentiating into neurons, glial cells, and astrocytes. The populations are obtained by culturing stem cell populations, such as embryonic stem cells, in a cocktail of growth conditions that initiates differentiation and establishes the neural precursor population. The precursors can be further differentiated in culture into various neural phenotypes. Notably, these neural precursors can be generated in pure form (at least 99%) and in large quantities for use in drug screening and the treatment of neurological disorders.

Career Highlights

Terskikh is affiliated with the Burnham Institute for Medical Research, where he conducts his research. His work has garnered attention for its potential impact on the treatment of neurological conditions. He has dedicated his career to advancing the understanding of neural precursor cells and their applications in medicine.

Collaborations

Terskikh collaborates with Ruchi Bajpai, contributing to the advancement of research in their field. Their partnership exemplifies the collaborative spirit that drives innovation in scientific research.

Conclusion

Alexy Terskikh's work in developing homogeneous neural precursor cells represents a significant advancement in neuroscience. His contributions have the potential to transform the treatment of neurological disorders and enhance our understanding of neural development.

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