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Douglas A. Melton

Affiliations: 
Harvard University, Cambridge, MA, United States 
Area:
Development
Website:
http://www.hsci.harvard.edu/node/723
Google:
"Douglas Melton"
Bio:

http://www.scrb.harvard.edu/lab/50/home

Mean distance: 15.05 (cluster 18)
 
SNBCP
Cross-listing: DevTree - Chemistry Tree

Children

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Martha R.C. Bhattacharya research assistant 1996-2000 Harvard
Lief E Fenno research assistant 2005-2007 Harvard
Kyle Loh research assistant 2008-2008 Harvard
Miguel R. Santos grad student 2002 Harvard
Maya E. Kumar grad student 2003 Harvard
Juliana R. Brown grad student 2005 Harvard
Kristen J. Brennand grad student 2007 Harvard
Richard I. Sherwood grad student 2009 Harvard
Adriana Tajonar grad student 2012 Harvard
Sinisa Hrvatin grad student 2013 Harvard
Danny Ben-Zvi post-doc Harvard (Chemistry Tree)
Barak Blum post-doc Harvard (DevTree)
Chad Cowan post-doc (Cell Biology Tree)
Yuval Dor post-doc Harvard (DevTree)
Amy L. Greenwood post-doc Harvard
Matthias Hebrok post-doc Harvard (DevTree)
Chris Kintner post-doc Harvard Medical School
Paul A. Krieg post-doc Harvard Medical School (Cell Biology Tree)
Kimberly L. Mowry post-doc Harvard (Chemistry Tree)
XiaoXi Qiao post-doc Harvard
Jayaraj Rajagopal post-doc Harvard Medical School (Microtree)
Clifford J. Tabin post-doc Harvard (DevTree)
Gerald H. Thomsen post-doc Harvard (DevTree)
Daniel L. Weeks post-doc Harvard
Qiao Zhou post-doc Harvard
Peng Yi post-doc 2008- Harvard (DevTree)
Quinn P. Peterson post-doc 2011- Harvard (Chemistry Tree)
David Tannahill post-doc 1987-1989 Harvard (Chemistry Tree)
Peter Vize post-doc 1990-1992 Harvard (DevTree)
Ali Brivanlou post-doc 1991-1994 Harvard
Danwei Huangfu post-doc 2005-2010 Harvard (DevTree)
Kevin C. Eggan research scientist 2003-2004 Harvard
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Publications

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Cai EP, Ishikawa Y, Zhang W, et al. (2020) Genome-scale in vivo CRISPR screen identifies RNLS as a target for beta cell protection in type 1 diabetes. Nature Metabolism
Davis JC, Alves TC, Helman A, et al. (2020) Glucose Response by Stem Cell-Derived β Cells In Vitro Is Inhibited by a Bottleneck in Glycolysis. Cell Reports. 31: 107623
Peterson QP, Veres A, Chen L, et al. (2020) A method for the generation of human stem cell-derived alpha cells. Nature Communications. 11: 2241
Helman A, Cangelosi AL, Davis JC, et al. (2020) A Nutrient-Sensing Transition at Birth Triggers Glucose-Responsive Insulin Secretion. Cell Metabolism
Walker RG, Barrandon O, Poggioli T, et al. (2020) Exogenous GDF11, but not GDF8, reduces body weight and improves glucose homeostasis in mice. Scientific Reports. 10: 4561
Helman A, Melton DA. (2020) A Stem Cell Approach to Cure Type 1 Diabetes. Cold Spring Harbor Perspectives in Biology
Alvarez-Dominguez JR, Donaghey J, Rasouli N, et al. (2019) Circadian Entrainment Triggers Maturation of Human In Vitro Islets. Cell Stem Cell
Davis JC, Helman A, Rivera-Feliciano J, et al. (2019) Live Cell Monitoring and Enrichment of Stem Cell-Derived β Cells Using Intracellular Zinc Content as a Population Marker. Current Protocols in Stem Cell Biology. 51: e99
Garbern JC, Helman A, Sereda R, et al. (2019) Inhibition of mTOR Signaling Enhances Maturation of Cardiomyocytes Derived from Human Induced Pluripotent Stem Cells via p53-Induced Quiescence. Circulation
Glieberman AL, Pope BD, Zimmerman JF, et al. (2019) Synchronized stimulation and continuous insulin sensing in a microfluidic human Islet on a Chip designed for scalable manufacturing. Lab On a Chip
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