Follicular renewal and stemness potency of follicular cells depended of telomerase activity and TERT expression – short review
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W. Kranc | M. Skowroński | D. Bukowska | P. Mozdziak | P. Antosik | R. Procházka | M. Grzesiak | Kornelia Krajnik | A. G. Narenji | Wiktoria Zgórecka
[1] M. Hibi,et al. Maintenance of quiescent oocytes by noradrenergic signals , 2021, Nature Communications.
[2] M. Nowicki,et al. Human Granulosa Cells—Stemness Properties, Molecular Cross-Talk and Follicular Angiogenesis , 2021, Cells.
[3] R. Rungsiwiwut,et al. Characterization of stem cells from human ovarian follicular fluid; a potential source of autologous stem cell for cell-based therapy , 2021, Human Cell.
[4] R. Farré,et al. In Vitro Follicular Activation and Stem Cell Therapy as a Novel Treatment Strategies in Diminished Ovarian Reserve and Primary Ovarian Insufficiency , 2021, Frontiers in Endocrinology.
[5] T. R. Kumar,et al. In vitro ovarian follicle growth: a comprehensive analysis of key protocol variables† , 2020, Biology of Reproduction.
[6] M. Nowicki,et al. Expression of genes involved in neurogenesis, and neuronal precursor cell proliferation and development: Novel pathways of human ovarian granulosa cell differentiation and transdifferentiation capability in vitro , 2020, Molecular medicine reports.
[7] M. Ješeta,et al. Evidence for existence of molecular stemness markers in porcine ovarian follicular granulosa cells , 2019 .
[8] M. Nowicki,et al. Novel markers of human ovarian granulosa cell differentiation toward osteoblast lineage: A microarray approach , 2019, Molecular medicine reports.
[9] J. Shay,et al. Telomeres and telomerase: three decades of progress , 2019, Nature Reviews Genetics.
[10] F. Uysal,et al. Journal of Reproduction and Development , 2018 .
[11] Z. Zhou,et al. Structure of Telomerase with Telomeric DNA , 2018, Cell.
[12] P. Jagodziński,et al. The effect of endometrioma on ovarian reserve , 2017 .
[13] C. Genestie,et al. Ovarian Cancer: A Heterogeneous Disease , 2017, Pathobiology.
[14] D. Shah,et al. Fertility with early reduction of ovarian reserve: the last straw that breaks the Camel’s back , 2017, Fertility Research and Practice.
[15] M. Stojkovic,et al. Primordial Germ Cells: Current Knowledge and Perspectives , 2015, Stem cells international.
[16] D. Ozsavcı,et al. Ovarian stem cells: From basic to clinical applications. , 2015, World journal of stem cells.
[17] C. Omes,et al. In-vitro culture system for mesenchymal progenitor cells derived from waste human ovarian follicular fluid. , 2014, Reproductive biomedicine online.
[18] S. Novaković,et al. Expression of Mesenchymal Stem Cells-Related Genes and Plasticity of Aspirated Follicular Cells Obtained from Infertile Women , 2014, BioMed research international.
[19] J. Tilly,et al. Isolation, characterization and propagation of mitotically active germ cells from adult mouse and human ovaries , 2013, Nature Protocols.
[20] Shee-Uan Chen,et al. Evaluation of telomere length in cumulus cells as a potential biomarker of oocyte and embryo quality. , 2013, Human reproduction.
[21] Ho-Joon Lee,et al. Embryonic Stem Cell–Derived Granulosa Cells Participate in Ovarian Follicle Formation In Vitro and In Vivo , 2013, Reproductive Sciences.
[22] K. Gruden,et al. Isolation of Small SSEA-4-Positive Putative Stem Cells from the Ovarian Surface Epithelium of Adult Human Ovaries by Two Different Methods , 2013, BioMed research international.
[23] C. De Geyter,et al. Cells with Stem Cell Characteristics in Somatic Compartments of the Ovary , 2012, BioMed research international.
[24] V. Kalles,et al. Markers of stem cells in human ovarian granulosa cells: is there a clinical significance in ART? , 2012, Journal of Ovarian Research.
[25] V. Russo,et al. Osteo-regenerative potential of ovarian granulosa cells: an in vitro and in vivo study. , 2012, Theriogenology.
[26] M. Štimpfel,et al. Ovarian Surface Epithelium in Patients with Severe Ovarian Infertility: A Potential Source of Cells Expressing Markers of Pluripotent/Multipotent Stem Cells , 2011, Journal of biomedicine & biotechnology.
[27] Dongzi Yang,et al. Women with high telomerase activity in luteinised granulosa cells have a higher pregnancy rate during in vitro fertilisation treatment , 2011, Journal of Assisted Reproduction and Genetics.
[28] E. Simpson,et al. Estrogen deficiency reversibly induces telomere shortening in mouse granulosa cells and ovarian aging in vivo , 2011, Protein & Cell.
[29] E. Blackburn,et al. Telomerase: an RNP enzyme synthesizes DNA. , 2011, Cold Spring Harbor perspectives in biology.
[30] D. Bhartiya,et al. Detection, characterization, and spontaneous differentiation in vitro of very small embryonic-like putative stem cells in adult mammalian ovary. , 2011, Stem cells and development.
[31] S. Higashijima,et al. Identification of Germline Stem Cells in the Ovary of the Teleost Medaka , 2010, Science.
[32] K. Barnhart,et al. Correlation of telomere length and telomerase activity with occult ovarian insufficiency. , 2009, The Journal of clinical endocrinology and metabolism.
[33] Robert C. Bast,et al. The biology of ovarian cancer: new opportunities for translation , 2009, Nature Reviews Cancer.
[34] I. Martin,et al. The Multipotency of Luteinizing Granulosa Cells Collected from Mature Ovarian Follicles , 2009, Stem cells.
[35] P. Rožman,et al. Putative stem cells with an embryonic character isolated from the ovarian surface epithelium of women with no naturally present follicles and oocytes. , 2008, Differentiation; research in biological diversity.
[36] T. Kott,et al. Telomerase activity in pig granulosa cells proliferating and differentiating in vitro. , 2008, Animal reproduction science.
[37] C. McCallum,et al. nanos1 is required to maintain oocyte production in adult zebrafish. , 2007, Developmental biology.
[38] E. Hiyama,et al. Telomere and telomerase in stem cells , 2007, British Journal of Cancer.
[39] M. D’Incalci,et al. Telomerase Expression in Somatic Cells: Fountain of Youth or Damocles’ Sword? , 2006, Cell cycle.
[40] A. Bukovsky,et al. Oogenesis in cultures derived from adult human ovaries , 2005, Reproductive biology and endocrinology : RB&E.
[41] J. Tilly,et al. Germline stem cells and follicular renewal in the postnatal mammalian ovary , 2004, Nature.
[42] N. Sugino,et al. Changes in telomerase activity in experimentally induced atretic follicles of immature rats. , 2002, Endocrine journal.
[43] P. Leung,et al. Ovarian surface epithelium: biology, endocrinology, and pathology. , 2001, Endocrine reviews.
[44] A. Spradling,et al. A niche maintaining germ line stem cells in the Drosophila ovary. , 2000, Science.
[45] J. Shay,et al. Evidence for ovarian granulosa stem cells: telomerase activity and localization of the telomerase ribonucleic acid component in bovine ovarian follicles. , 1999, Biology of reproduction.