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Profile Details
Contact
★★★★★
☆☆☆☆☆
USD 150 /hr
Hire Dr. Kaveh Daneshvar
United States
USD 150 /hr

Lead Senior Scientist at Flagship Pioneering | Former Research Faculty at Harvard | RNA Therapeutics | Regenerative Medicine

Profile Summary
Subject Matter Expertise
Services
Academic research Internet research, Secondary data compilation, Literature search
Work Experience

Senior Scientist

Flagship Pioneering

April 2020 - Present

Instructor

Massachusetts General Hospital

April 2019 - Present

Instructor in Medicine (Research Faculty)

Harvard Medical School

April 2019 - April 2020

Postdoctoral Fellow

Massachusetts General Hospital, Harvard Medical School

October 2012 - April 2019

Education

PhD (Biology)

University of North Carolina at Charlotte

2007 - 2012

MSc (Biology)

Razi University

2004 - 2007

Certifications
  • Certification details not provided.
Publications
JOURNAL ARTICLE
Zhou, Chan and Molinie, Benoit and Daneshvar, Kaveh and Pondick, Joshua V and Wang, Jinkai and Van Wittenberghe, Nicholas and Xing, Yi and Giallourakis, Cosmas C and Mullen, Alan C(2017). Genome-wide maps of m6A circRNAs identify widespread and cell-type-specific methylation patterns that are distinct from mRNAs. Cell reports. 20. (9). p. 2262--2276. Cell Press
Kaveh Daneshvar, Benoit Molinie, Jinkai Wang, Kok Seong Lim, Roman Hillebrand, Zhi-xiang Lu, Nicholas Van Wittenberghe, Benjamin D Howard, Alan C Mullen, Peter Dedon, et al.(2016). m6A-{LAIC}-seq reveals the census and complexity of the m6A epitranscriptome . Nature Methods. 13. (8). p. 692--698. Springer Nature
Daneshvar, Kaveh and Pondick, Joshua V and Kim, Byeong-moo and Zhou, Chan and York, Samuel R and Macklin, Jillian A and Abualteen, Ameed and Tan, Bo and Sigova, Alla A and Marcho, Chelsea and Tremblay, Kimberly D and Mager, Jesse and Choi, Michael Y and Mullen, Alan C(2016). DIGIT Is a Conserved Long Noncoding RNA that Regulates GSC Expression to Control Definitive Endoderm Differentiation of Embryonic Stem Cells. Cell Reports. p. 1--13.
Daneshvar, Kaveh(2015). CRISPR-Cas9 in gene therapy: much control on breaking, little control on repairing. PeerJ PrePrints. 3. p. e818v4. PeerJ Inc. San Francisco, USA