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Alicia A Blancas, 43Pittsford, NY

Alicia Blancas Phones & Addresses

Pittsford, NY   

527 French Rd APT 2, Rochester, NY 14618   

Houston, TX   

Merced, CA   

Fresno, CA   

Pomona, CA   

2686 Murworth Dr APT 1003, Houston, TX 77054   

Education

Degree: High school graduate or higher

Mentions for Alicia A Blancas

Alicia Blancas resumes & CV records

Resumes

Alicia Blancas Photo 27

Alicia Blancas

Location:
527 French Rd, Rochester, NY 14618
Industry:
Research
Work:
The University of Texas Health Science Center at Houston Oct 2016 - May 2018
Senior Research Associate
Bioscience Research Collaborative at Rice University Nov 1, 2011 - Jul 2015
Postdoc Research Associate
Uc Merced Aug 2005 - Oct 2011
Nih Predoctoral Fellow and Graduate Student
Ucsf 2008 Summer Agep Colloquium 2008 - 2008
Colleague
Education:
University of California, Merced 2005 - 2011
Doctorates, Doctor of Philosophy, Biology, Philosophy
California State University, Fresno 2004 - 2005
California State University, Fresno 2002 - 2004
Bachelors, Bachelor of Science, Biology
University of California
Skills:
Cell Culture, Angiogenesis, Vascular Medicine, Embryonic Stem Cells, Differentiation, Flow Cytometry, Tissue Engineering, Heart Valves, Developmental Biology, Molecular Biology, Stem Cells, Fluorescence Microscopy, Cell, Microscopy, Western Blotting, Qpcr, Biochemistry, Tissue Culture, Confocal Microscopy, Pcr, Research
Alicia Blancas Photo 28

Alicia Blancas

Publications & IP owners

Us Patents

Serum Free Culture Medium And Supplement

US Patent:
2012006, Mar 15, 2012
Filed:
Jun 2, 2011
Appl. No.:
13/152185
Inventors:
Kara E. McCloskey - Merced CA, US
Alicia A. Blancas - Merced CA, US
Marcos E. Garcia-Ojeda - Merced CA, US
International Classification:
A61K 35/12
C12M 3/00
C12Q 1/02
C12N 5/0775
C12N 5/0789
C12N 5/10
C12N 5/071
C12N 5/0735
US Classification:
424 937, 435405, 4353052, 435325, 435 29, 4352891, 435377
Abstract:
Provided herein is a chemically defined method of endothelial cell (EC) derivation from embryonic stem cells (ESC). These progenitor cells are capable of low-density lipoprotein uptake, an important function of EC, and also express EC specific markers. By using chemically defined culture conditions, the reproducibility of the derivation as well as eliminate the possibility of unknown contaminants such as undefined growth factors and sundry animal proteins is improved. The differentiated cells can then be applied to a myriad of potential therapies such as tissue engineered vascular grafts, cardiac patches, and pre-vascularized tissue transplants.

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