Trang chủ
SD

Scientist II

Shubhankar Dutta

862
48
20
Scientist-IIVị trí mong muốn
Thứ 2 - Thứ 6Ngày có thể làm việc

Tóm tắt chuyên môn

My name is Shubhankar Dutta, PhD,  and I have been a professional medicinal chemist since 2020, although I have been a quintessential organic chemist since 2005. I received PhD in 2017 from the University of Kentucky at Lexington, UKY, under the guidance of Prof. Robert B. Grossman. Total synthesis of 7-epi-clusianone was the PhD dissertation topic. Before graduating from UKY, I interned for a one-year in GSK at King of Prussia to understand the science of drug making. The quest for drug-making led me to UCSF for a postdoc in Prof. Dr. Michelle Arkin’s group. If I can describe the GSK stint as the foundation of my understanding of drug discovery, UCSF is the first floor on that foundation, where I first encountered how disease biology influences SAR. During my postdoctoral time, I have been productive, working on three covalent drug discovery projects, which produced later 2 papers and 2 patents. In 2020, when the pandemic stalled the world, I joined Sanford Burnham Prebys (SBP) Medical Discovery Institute as a scientist. Dr. Steve Olson was the director of medicinal chemistry then, and I started a new project: cMYC inhibitor design for treating medulloblastoma in young children. CPCCG, a part of SBP, works like a small biotech company, where we have several projects for drug discovery, and I have also worked on multiple projects. CMYC inhibitor design was such a project that I worked till the end of it—almost 4 years. Using the phenotypic assay, we aimed to develop a brain-penetrant small molecule that could inhibit cMYC. When I was in GSK, I heard several discussions about how solving one problem in medicinal chemistry led to another; in the cMYC project I experienced personally—we got rid of AhR agonism, but the brain penetrance went down, and promiscuity went up. Unfortunately, we had to pause because of the toxicity issue, but I am thrilled that we have been trying to put the cMYC inhibitor. I am an avid learner of new tools in the drug discovery field. Like many other disciplines, Bioinformatics and molecular modeling are two areas where medicinal chemistry is leapfrogging. I try to be ahead of time, so I use MOE and Maestro for my understanding of drug-target interaction but also resort to quantum mechanics calculations, which I need to be more proficient in to find the putative binding mode and its physiological relevance. Single-point energy calculation in Gaussian has emboldened my understanding of the rationale behind the Pi-Pi interactions—and how it can be used to tackle the hERG problem in SAR development. I always embrace new technologies to advance my understanding of drug discovery. Therefore, deepmirror, an AI tool, and Stardrop have become my mainstay in projects where I must design new analogs. In a nutshell, I enjoy the vicissitudes of drug discovery.

Liên hệ ứng viên này

Kết nối để thảo luận về cơ hội tiềm năng

Đang kiểm tra quyền truy cập…

Thông tin hồ sơ