Grant Award Details
Programmatic objective to provide appropriate enriching environment to the trainees
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Grant Application Details
- CIRM Stem Cell Biology Training Program
This is a proposal to renew funding for the host institution’s Type I Comprehensive Training Program in Stem Cell Biology. Since funding was first applied for in the summer of 2005, stem cell research at the host institution has undergone a major transformation: a center for regenerative medicine and stem cell research was established, and a world class stem cell biologist was recruited to be its director. Seven new faculty, representing a wide spectrum of stem cell-related disciplines, have been recruited as members of the Center. Groundbreaking for construction of a CIRM Stem Cell Facility took place in early [REDACTED] 2008. This initiative was launched with a multi-million dollar gift from a private foundation, and was recently matched with a Major Facilities Award from CIRM. Also with CIRM funding, the host institution has developed a Training Program in Stem Cell Biology which has thus far supported 24 individuals. Key features of this program are a flagship course in stem cell biology, co-taught with two neighboring institutions, as well as courses in stem cell ethics, developmental biology and a practical course in the culture of human ES cells. A yearly retreat was instituted and created a website created, which will soon be the principal mode of recruitment. A major benefit of our stem cell training program has been the promotion of interactions among stem cell biologists, developmental biologists and clinical scientists. The breadth of the program, in terms of the number of faculty and wide range of their expertise in stem cell biology, will provide trainees with many choices of mentor, and it will also make for training that is strongly interdisciplinary. The host institution seeks to continue and improve what is believed to be already an excellent training program in stem cell biology. Funding for 6 predoctoral fellows, 8 postdoctoral fellows, and 2 clinical fellows (a total of 16 slots) is requested. These individuals will be supported for two years, during which they will conduct research with one (or more) of 39 potential mentors. They will take courses in stem cell biology, stem cell ethics, as well as selected optional courses, including developmental biology. They will attend and present their work in the weekly combined stem cell biology/developmental biology research forum and will attend a yearly retreat. Finally, they will benefit from the extensive informal interactions among the students and faculty in stem cell biology. The host institution is also extremely pleased to partner with several nearby institutions for CIRM's "Bridges to Stem Cell Research" program. This program would enable these institutions to place trainees in stem cell labs at the host institution. We note that these collaborative efforts will broaden the influence of our training program substantially and make efficient use of state stem cell resources
This is a proposal to renew funding for the host institution’s Type I Comprehensive Training Program in Stem Cell Biology. Since funding was first applied for in the summer of 2005, stem cell research at the host institution has undergone a major transformation: a center for regenerative medicine and stem cell research was established, and groundbreaking for construction of a CIRM Stem Cell Facility took place in [REDACTED] 2008. The recent establishment of [REDACTED] an innovative agreement among 6 research institutions in [REDACTED] (including the host institution) allows members to share training programs, scientific core facilities and expertise, thus achieving highly efficient use of state funding. In mid-2006, the host institution instituted a Training Program in Stem Cell Biology (which has thus far supported 24 individuals), and seeks to continue and to improve what is believed to be already an excellent training program in stem cell biology. This program will bring great educational, scientific and economic benefit to Californians. Key features of this program are a flagship course in stem cell biology, co-taught with two neighboring institutions, as well as courses in stem cell ethics, developmental biology and a practical course in the culture of human ES cells. A major benefit of our stem cell training program has been the promotion of interactions among stem cell biologists, developmental biologists and clinical scientists. The breadth of the program, in terms of the number of faculty and wide range of their expertise in stem cell biology, will make for training that is strongly interdisciplinary. The structure of the courses, capitalizing on the rich distance learning capabilities of the host institution to produce a highly interactive, yet flexible, course accommodates the diversity of pre- and post-doctoral students as well as clinical fellows. An added benefit is this course structure will allow for enrollment by interested parties statewide and nationally. Further, the agreement between the Institutions to contribute exceptional didactic training to the program regardless of funding by this mechanism truly demonstrates the commitment of each to training in this field. The host institution is also extremely pleased to partner with several nearby institutions for CIRM's "Bridges to Stem Cell Research" program. This program would enable these institutions to place trainees in stem cell labs at the host institution. We note that these collaborative efforts will broaden the influence of our training program substantially and make efficient use of state stem cell resources.
Publications
- EMBO J (2013) Embryonic stem cell self-renewal pathways converge on the transcription factor Tfcp2l1. (PubMed: 23942238)
- Science (2013) Topology of feather melanocyte progenitor niche allows complex pigment patterns to emerge. (PubMed: 23618762)
- Cell Stem Cell (2013) Ossifying Fibroma Tumor Stem Cells Are Maintained by Epigenetic Regulation of a TSP1/TGF-beta/SMAD3 Autocrine Loop. (PubMed: 24209761)
- Stem Cells (2013) Wnt7b is an important intrinsic regulator of hair follicle stem cell homeostasis and hair follicle cycling. (PubMed: 24222445)
- Proc Natl Acad Sci U S A (2013) Competitive balance of intrabulge BMP/Wnt signaling reveals a robust gene network ruling stem cell homeostasis and cyclic activation. (PubMed: 23292934)
- PLoS One (2013) Label Retaining Cells (LRCs) with Myoepithelial Characteristic from the Proximal Acinar Region Define Stem Cells in the Sweat Gland. (PubMed: 24058524)
- Stem Cells (2013) Smad1&5 but not Smad8 establish stem cell quiescence which is critical to transform the premature hair follicle during morphogenesis towards the Postnatal State. (PubMed: 24023003)
- Dev Cell (2013) Wnt-Dependent Epithelial Transitions Drive Pharyngeal Pouch Formation. (PubMed: 23375584)
- Endocr Relat Cancer (2013) Contextual effect of repression of bone morphogenetic protein activity in prostate cancer. (PubMed: 24042462)
- J Genet Genomics (2012) Rapid and cost-effective gene targeting in rat embryonic stem cells by TALENs. (PubMed: 22749015)
- Proc Natl Acad Sci U S A (2012) Pluripotency factor-mediated expression of the leptin receptor (OB-R) links obesity to oncogenesis through tumor-initiating stem cells. (PubMed: 22207628)
- J Gastroenterol Hepatol (2012) Cancer stem cells generated by alcohol, diabetes, and hepatitis C virus. (PubMed: 22320911)
- Stem Cell Res Ther (2012) The gene expression profiles of induced pluripotent stem cells from individuals with childhood cerebral adrenoleukodystrophy are consistent with proposed mechanisms of pathogenesis. (PubMed: 23036268)
- Cancer Discov (2012) VEGF/neuropilin-2 regulation of Bmi-1 and consequent repression of IGF-IR define a novel mechanism of aggressive prostate cancer. (PubMed: 22777769)
- Proc Natl Acad Sci U S A (2012) G9a functions as a molecular scaffold for assembly of transcriptional coactivators on a subset of glucocorticoid receptor target genes. (PubMed: 23151507)
- J Vis Exp (2012) Use of LysoTracker to detect programmed cell death in embryos and differentiating embryonic stem cells. (PubMed: 23092960)
- Dev Cell (2012) The LIM protein Ajuba restricts the second heart field progenitor pool by regulating Isl1 activity. (PubMed: 22771034)
- Curr Opin Nephrol Hypertens (2011) Genetic manipulations in the rat: progress and prospects. (PubMed: 21546835)
- Mol Cancer Res (2011) Adaptive basal phosphorylation of eIF2alpha is responsible for resistance to cellular stress-induced cell death in Pten-null hepatocytes. (PubMed: 22009178)
- Nat Protoc (2011) Generating gene knockout rats by homologous recombination in embryonic stem cells. (PubMed: 21637202)
- Cell Cycle (2011) Beyond knockout rats: new insights into finer genome manipulation in rats. (PubMed: 21383544)
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