教育背景
PhD, Rutgers University, 2023
实验室信息
Rosalind Segal Lab
https://segallab.dana-farber.org/
发表论文
https://www.ncbi.nlm.nih.gov/myncbi/srestha.dasgupta.1/bibliography/public/1. Dasgupta S, Montroull LE, Pandya MA, Zanin JP, Wang W, Wu Z, Friedman WJ. Cortical Brain Injury Causes Retrograde Degeneration of Afferent Basal Forebrain Cholinergic Neurons via the p75NTR. eNeuro. 2023 Aug 29;10(8):ENEURO.0067-23.2023. doi: 10.1523/ENEURO.0067-23.2023. PMID: 37558465; PMCID: PMC10467018.
2. LeBlang C.J., Pazyra-Murphy M.F., Silagi E.S., Dasgupta S., Tsolias M., Miller T., Petrova V., Zhen S., V. Jovanovic, Castellano D., Gerrish K., Ormanoglu P., Tristan C., Singeç I., Woolf C.J., Tasdemir-Yilmaz O., Segal R.A. Satellite glial contact enhances differentiation and maturation of human iPSC-derived sensory neurons. Stem Cell Reports. 2024. (Under review).
(Available on bioRxiv 2024.07.24.604966; doi: https://doi.org/10.1101/2024.07.24.604966)
3. Dasgupta S, Pandya M, Zanin J.P, Liu T, Sun Q, Li H and Friedman WJ. ProNGF elicits retrograde axonal degeneration of basal forebrain neurons through p75NTR and induction of amyloid precursor protein. Sci. Signal.17, eadn2616(2024).DOI:10.1126/scisignal.adn2616.
4. Dasgupta S & Friedman W.J. Microfluidic cultures of Basal Forebrain Cholinergic Neurons for assessing cell death in live imaging. Bio-Protocol. 2024. (Accepted)