Identification and isolation of embryonic stem cells in reproductive endocrinology: Theoretical protocols for conservation of human embryos derived from in vitro fertilization

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Abstract

Background: Embryonic stem cells (ESC) are pluripotent cells obtained from the inner cell mass (ICM) of blastocysts derived from in vitro culture associated with reproductive endocrinology therapy. Human ESCs are regarded as highly significant since they retain the capacity to differentiate into any of approximately 200 unique cell types. Human ESC research is controversial because to acquire such cells, the ICM of human blastocysts must be manipulated in a way that renders embryos nonviable and unsuitable for transfer in utero. Techniques to yield competent ESCs with conservation of source blastocysts would satisfy many objections against ESC research, but at present such approaches remain largely untested. Results and discussion: We contrast experimental culture of single blastomeres obtained by 1) non-destructive biopsy of embryos destined for transfer, and 2) isolation of karyotypically normal blastomeres from disaggregated ("dead") embryos considered unsuitable for transfer, and evaluate these approaches with regard to production of ESCs. Pluripotency was confirmed by morphological criteria and by quantification of divergent homeodomain proteins specific to undifferentiated cell development. Following ESC isolation and identification, assessment was conducted according to a novel ESC grading system, also proposed here. Conclusion: The role of reproductive endocrinology in ESC research remains paramount. In this report, we hypothesize new and expand on existing strategies having the potential to enhance human ESC isolation, identification and in vitro maintenance. © 2005 Sills et al; licensee BioMed Central Ltd.

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Sills, E. S., Takeuchi, T., Tanaka, N., Neri, Q. V., & Palermo, G. D. (2005). Identification and isolation of embryonic stem cells in reproductive endocrinology: Theoretical protocols for conservation of human embryos derived from in vitro fertilization. Theoretical Biology and Medical Modelling, 2. https://doi.org/10.1186/1742-4682-2-25

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