Have a personal or library account? Click to login
Does migrative and proliferative capability of epithelial cells reflect cellular developmental competence? Cover

References

  1. 1. Nicosia, S. V., Saunders, B. O., Acevedo-Duncan, M. E., Setrakian, S., and Degregorio, R., “Biopathology of Ovarian Mesothelium,” in Ultrastructure of the Ovary, Boston, MA: Springer US, 1991, pp. 287-310.10.1007/978-1-4615-3944-5_18
  2. 2. Auersperg, N., Wong, A. S. T., Choi, K.-C., Kang, S. K., and Leung, P. C. K., “Ovarian Surface Epithelium: Biology, Endocrinology, and Pathology,” Endocr. Rev., vol. 22, no. 2, pp. 255-288, Apr. 2001.10.1210/edrv.22.2.0422
  3. 3. Peters, D. G. et al., “Comparative Gene Expression Analysis of Ovarian Carcinoma and Normal Ovarian Epithelium by Serial Analysis of Gene Expression,” Cancer Epidemiol. Prev. Biomarkers, vol. 14, no. 7, 2005.10.1158/1055-9965.EPI-04-0704
  4. 4. Budna, J. et al., “Does Porcine Oocytes Maturation in Vitro is Regulated by Genes Involved in Transforming Growth Factor Beta Receptor Signaling Pathway?,” Adv. Cell Biol., vol. 5, no. 1, pp. 1-14, Jan. 2017.10.1515/acb-2017-0001
  5. 5. Bukovský, A., Keenan, J. A., Caudle, M. R., Wimalasena, J., Upadhyaya, N. B., and Van Meter, S. E., “Immunohistochemical studies of the adult human ovary: possible contribution of immune and epithelial factors to folliculogenesis.,” Am. J. Reprod. Immunol., vol. 33, no. 4, pp. 323-40, Apr. 1995.10.1111/j.1600-0897.1995.tb00901.x
  6. 6. Bukovsky, A., Svetlikova, M., and Caudle, M. R., “Oogenesis in cultures derived from adult human ovaries.,” Reprod. Biol. Endocrinol., vol. 3, p. 17, May 2005.10.1186/1477-7827-3-17
  7. 7. Bukovsky, A., Caudle, M. R., Svetlikova, M., and Upadhyaya, N. B., “Origin of germ cells and formation of new primary follicles in adult human ovaries,” Reprod. Biol. Endocrinol., no. 2, 2004.10.1186/1477-7827-2-20
  8. 8. Auersperg, N., Wong, A. S. T., Choi, K.-C., Kang, S. K., and Leung, P. C. K., “Ovarian Surface Epithelium: Biology, Endocrinology, and Pathology,” Endocr. Rev., vol. 22, no. 2, pp. 255-288, Apr. 2001.10.1210/edrv.22.2.0422
  9. 9. Juengel, J. L. et al., “Origins of follicular cells and ontogeny of steroidogenesis in ovine fetal ovaries.,” Mol. Cell. Endocrinol., vol. 191, no. 1, pp. 1-10, May 2002.10.1016/S0303-7207(02)00045-X
  10. 10. Sawyer, H. R., Smith, P., Heath, D. A., Juengel, J. L., Wakefield, S. J., and McNatty, K. P., “Formation of ovarian follicles during fetal development in sheep.,” Biol. Reprod., vol. 66, no. 4, pp. 1134-50, Apr. 2002.10.1095/biolreprod66.4.1134
  11. 11. Kranc, W. et al., “Molecular basis of growth, proliferation, and differentiation of mammalian follicular granulosa cells.,” J. Biol. Regul. Homeost. Agents, vol. 31, no. 1, pp. 1-8, 2017.
  12. 12. Chachuła, A. et al., “The differentiation of mammalian ovarian granulosa cells living in the shadow of cellular developmental capacity.,” J. Biol. Regul. Homeost. Agents, vol. 30, no. 3, pp. 627-634, 2016.
  13. 13. Hummitzsch, K. et al., “A new model of development of the mammalian ovary and follicles.,” PLoS One, vol. 8, no. 2, p. e55578, 2013.10.1371/journal.pone.0055578356712123409002
  14. 14. Osterholzer, H. O., Streibel, E. J., and Nicosia, S. V, “Growth effects of protein hormones on cultured rabbit ovarian surface epithelial cells.,” Biol. Reprod., vol. 33, no. 1, pp. 247-58, Aug. 1985.10.1095/biolreprod33.1.247
  15. 15. Bjersing, L. and Cajander, S., “Ovulation and the role of the ovarian surface epithelium,” Experientia, vol. 31, no. 5, pp. 605-608, May 1975.10.1007/BF01932485
  16. 16. Kruk, P. A., Uitto, V.-J., Firth, J. D., Dedhar, S., and Auersperg, N., “Reciprocal Interactions between Human Ovarian Surface Epithelial Cells and Adjacent Extracellular Matrix,” Exp. Cell Res., vol. 215, no. 1, pp. 97-108, Nov. 1994.10.1006/excr.1994.1320
  17. 17. Murdoch, W. J., “Programmed cell death in preovulatory ovine follicles.,” Biol. Reprod., vol. 53, no. 1, pp. 8-12, Jul. 1995.10.1095/biolreprod53.1.8
  18. 18. Ackerman, R. C. and Murdoch, W. J., “Prostaglandin-induced apoptosis of ovarian surface epithelial cells.,” Prostaglandins, vol. 45, no. 5, pp. 475-85, May 1993.10.1016/0090-6980(93)90123-O
  19. 19. Quirk, S. M., Cowan, R. G., and Huber, S. H., “Fas Antigen-Mediated Apoptosis of Ovarian Surface Epithelial Cells,” Endocrinology, vol. 138, no. 11, pp. 4558-4566, Nov. 1997.10.1210/endo.138.11.5508
  20. 20. Ferenczy, A., Bertrand, G., and Gelfand, M. M., “Proliferation kinetics of human endometrium during the normal menstrual cycle.,” Am. J. Obstet. Gynecol., vol. 133, no. 8, pp. 859-67, Apr. 1979.10.1016/0002-9378(79)90302-8
  21. 21. Chan, R. W. S., Schwab, K. E., and Gargett, C. E., “Clonogenicity of Human Endometrial Epithelial and Stromal Cells,” Biol. Reprod., vol. 70, no. 6, pp. 1738-1750, Jun. 2004.10.1095/biolreprod.103.024109
  22. 22. Padykula, H. A., “Regeneration in the primate uterus: the role of stem cells.,” Ann. N. Y. Acad. Sci., vol. 622, pp. 47-56, 1991.10.1111/j.1749-6632.1991.tb37849.x
  23. 23. Uduwela, A. S., Perera, M. A., Aiqing, L., and Fraser, I. S., “Endometrial-myometrial interface: relationship to adenomyosis and changes in pregnancy.,” Obstet. Gynecol. Surv., vol. 55, no. 6, pp. 390–400, Jun. 2000.10.1097/00006254-200006000-00025
  24. 24. McLennan, C. E. and Rydell, A. H., “Extent of endometrial shedding during normal menstruation.,” Obstet. Gynecol., vol. 26, no. 5, pp. 605-21, Nov. 1965.
  25. 25. Dunn, C. L., Kelly, R. W., and Critchley, H. O. D., “Decidualization of the human endometrial stromal cell: an enigmatic transformation.,” Reprod. Biomed. Online, vol. 7, no. 2, pp. 151-61, Sep. 2003.10.1016/S1472-6483(10)61745-2
  26. 26. Wood, C. and Rogers, P., “A Pregnancy After Planned Partial Endometrial Resection,” Aust. New Zeal. J. Obstet. Gynaecol., vol. 33, no. 3, pp. 316-318, Aug. 1993.10.1111/j.1479-828X.1993.tb02097.x
  27. 27. Weissman, I. L., “Stem cells: units of development, units of regeneration, and units in evolution.,” Cell, vol. 100, no. 1, pp. 157-68, Jan. 2000.10.1016/S0092-8674(00)81692-X
  28. 28. Pellegrini, G. et al., “Location and clonal analysis of stem cells and their differentiated progeny in the human ocular surface.,” J. Cell Biol., vol. 145, no. 4, pp. 769-82, May 1999.10.1083/jcb.145.4.769
  29. 29. Hudson, D. L., O’Hare, M., Watt, F. M., and Masters, J. R., “Proliferative heterogeneity in the human prostate: evidence for epithelial stem cells.,” Lab. Invest., vol. 80, no. 8, pp. 1243-50, Aug. 2000.10.1038/labinvest.3780132
  30. 30. Gronthos, S., Mankani, M., Brahim, J., Robey, P. G., and Shi, S., “Postnatal human dental pulp stem cells (DPSCs) in vitro and invivo,” Proc. Natl. Acad. Sci., vol. 97, no. 25, pp. 13625-13630, Dec. 2000.10.1073/pnas.240309797
  31. 31. Giudice, L. C., “Growth factors and growth modulators in human uterine endometrium: their potential relevance to reproductive medicine.,” Fertil. Steril., vol. 61, no. 1, pp. 1-17, Jan. 1994.10.1016/S0015-0282(16)56447-4
  32. 32. Smith, C. L., “Cross-talk between peptide growth factor and estrogen receptor signaling pathways.,” Biol. Reprod., vol. 58, no. 3, pp. 627-32, Mar. 1998.10.1095/biolreprod58.3.627
  33. 33. Wolff, E. F., Wolff, A. B., Hongling Du, H., and Taylor, H. S., “Demonstration of Multipotent Stem Cells in the Adult Human Endometrium by In Vitro Chondrogenesis,” Reprod. Sci., vol. 14, no. 6, pp. 524-533, Sep. 2007.10.1177/1933719107306896
  34. 34. Gargett, C. E., Schwab, K. E., Zillwood, R. M., Nguyen, H. P. T., and Wu, D., “Isolation and Culture of Epithelial Progenitors and Mesenchymal Stem Cells from Human Endometrium,” Biol. Reprod., vol. 80, no. 6, pp. 1136-1145, Jun. 2009.10.1095/biolreprod.108.075226
  35. 35. Gargett, C. E. and Masuda, H., “Adult stem cells in the endometrium,” Mol. Hum. Reprod., vol. 16, no. 11, pp. 818-834, Nov. 2010.10.1093/molehr/gaq061
  36. 36. Croxatto, H. B., “Physiology of gamete and embryo transport through the fallopian tube.,” Reprod. Biomed. Online, vol. 4, no. 2, pp. 160–9, 2002.10.1016/S1472-6483(10)61935-9
  37. 37. Abe, H. and Hoshi, H., “Bovine oviductal epithelial cells: their cell culture and applications in studies for reproductive biology.,” Cytotechnology, vol. 23, no. 1-3, pp. 171-83, Jan. 1997.10.1023/A:1007929826186
  38. 38. Odor, D. L. and Blandau, R. J., “EGG transport over the fimbrial surface of the rabbit oviduct under experimental conditions.,” Fertil. Steril., vol. 24, no. 4, pp. 292-300, Apr. 1973.10.1016/S0015-0282(16)39614-5
  39. 39. Hunter, R. H. F., Fléchon, B., and Fléchon, J. E., “Distribution, morphology and epithelial interactions of bovine spermatozoa in the oviduct before and after ovulation: A scanning electron microscope study,” Tissue Cell, vol. 23, no. 5, pp. 641-656, Jan. 1991.10.1016/0040-8166(91)90020-T
  40. 40. Pollard, J. W., Plante, C., King, W. A., Hansen, P. J., Be1teridge, K. J., and Suarez5, S. S., “Fertilizing Capacity of Bovine Sperm May Be Maintained by Binding to Oviductal Epithelial Cells,” Biol. Reprod., vol. 44, no. 1, pp. 102-107, Jan. 1991.10.1095/biolreprod44.1.1022015341
  41. 41. H.F. Hunter, R., “Modulation of gamete and embryonic microenvironments by oviduct glycoproteins,” Mol. Reprod. Dev., vol. 39, no. 2, pp. 176-181, Oct. 1994.10.1002/mrd.10803902097826619
  42. 42. Malette, B., Paquette, Y., Merlen, Y., and Bleau, G., “Oviductins possess chitinase- and mucin-like domains: A lead in the search for the biological function of these oviduct-specific ZP-associating glycoproteins,” Mol. Reprod. Dev., vol. 41, no. 3, pp. 384-397, Jul. 1995.10.1002/mrd.10804103158588939
  43. 43. Gandolfi, F., “Functions of proteins secreted by oviduct epithelial cells,” Microsc. Res. Tech., vol. 32, no. 1, pp. 1-12, Sep. 1995.10.1002/jemt.10703201028573770
  44. 44. Thibodeaux, J. K. and Godke, R. A., “In vitro enhancement of early-stage embryos with co-culture.,” Arch. Pathol. Lab. Med., vol. 116, no. 4, pp. 364-72, Apr. 1992.
  45. 45. Abe, H. and Oikawa, T., “Observations by scanning electron microscopy of oviductal epithelial cells from cows at follicular and luteal phases,” Anat. Rec., vol. 235, no. 3, pp. 399-410, Mar. 1993.10.1002/ar.10923503098430910
  46. 46. Chen, S., Einspanier, R., and Schoen, J., “In Vitro Mimicking of Estrous Cycle Stages in Porcine Oviduct Epithelium Cells: Estradiol and Progesterone Regulate Differentiation, Gene Expression, and Cellular Function,” Biol. Reprod., vol. 89, no. 3, p. 54, Sep. 2013.10.1095/biolreprod.113.10882923904510
  47. 47. Afzelius, B., “Cilia-related diseases,” J. Pathol., vol. 204, no. 4, pp. 470–477, Nov. 2004.10.1002/path.1652716793715495266
  48. 48. Ito, S., Kobayashi, Y., Yamamoto, Y., Kimura, K., and Okuda, K., “Remodeling of bovine oviductal epithelium by mitosis of secretory cells,” Cell Tissue Res., vol. 366, no. 2, pp. 403-410, Nov. 2016.10.1007/s00441-016-2432-827256395
  49. 49. Ghosh, A., Syed, S. M., and Tanwar, P. S., “In vivo genetic cell lineage tracing reveals that oviductal secretory cells self-renew and give rise to ciliated cells,” Development, vol. 144, no. 17, 2017.10.1242/dev.14998928743800
  50. 50. Bryja, A. et al., “Expression of cell mitotic progression proteins and keratinocyte markers in porcine buccal pouch mucosal cells during short-term, real-time primary culture.,” J. Biol. Regul. Homeost. Agents, vol. 31, no. 2, pp. 297-309, 2017.
  51. 51. Ishii, A. et al., “Expression of p75NGFR, a Proliferative and Basal Cell Marker, in the Buccal Mucosa Epithelium during Re-epithelialization,” ACTA Histochem. Cytochem., vol. 47, no. 4, pp. 145-153, Aug. 2014.10.1267/ahc.14011416470225392568
  52. 52. Kinikoglu, B., Hemar, J., Hasirci, V., Breton, P., and Damour, O., “Feasibility of a porcine oral mucosa equivalent: A preclinical study,” Artif. Cells, Blood Substitutes, Biotechnol., vol. 40, no. 4, pp. 271-274, Aug. 2012.10.3109/10731199.2011.64429322309108
  53. 53. Bryja, A. et al., “The biomedical aspects of oral mucosal epithelial cell culture in mammals.,” J. Biol. Regul. Homeost. Agents, vol. 31, no. 1, pp. 81-85, 2017.
  54. 54. Harris, D. and Robinson, J. R., “Drug Delivery via the Mucous Membranes of the Oral Cavity,” J. Pharm. Sci., vol. 81, no. 1, pp. 1-10, Jan. 1992.10.1002/jps.26008101021619560
  55. 55. Squier, C. A., “The Permeability of Oral Mucosa,” Crit. Rev. Oral Biol. Med., vol. 2, no. 1, pp. 13-32, Jan. 1991.10.1177/104544119100200103011912142
  56. 56. Nakamura, T., Inatomi, T., Sotozono, C., Amemiya, T., Kanamura, N., and Kinoshita, S., “Transplantation of cultivated autologous oral mucosal epithelial cells in patients with severe ocular surface disorders.,” Br. J. Ophthalmol., vol. 88, no. 10, pp. 1280–4, Oct. 2004.10.1136/bjo.2003.038497
  57. 57. de Luca, M. et al., “Evidence that human oral epithelium reconstituted in vitro and transplanted onto patients with defects in the oral mucosa retains properties of the original donor site.,” Transplantation, vol. 50, no. 3, pp. 454-9, Sep. 1990.10.1097/00007890-199009000-000192402795
  58. 58. Bryja, A. et al., “Carcinogenesis in mammalian oral mucosa from the perspective of biomedical research,” Med. Weter., vol. 73, no. 2, pp. 82-87, 2017.10.21521/mw.5641
  59. 59. Chentsova, E. V., Konyushko, O. I., Makarov, M. S., Egorova, N. S., Zinov’ev, M. Y., and Borovkova, N. V., “Optimization of the Method of Buccal Epithelial Cell Isolation and Culturing on Collagen Substrate for Ophthalmologic Application,” Bull. Exp. Biol. Med., vol. 159, no. 1, pp. 168-172, May 2015.10.1007/s10517-015-2915-826033610
  60. 60. Igarashi, T., Shimmura, S., Yoshida, S., Tonogi, M., Shinozaki, N., and Yamane, G., “Isolation of oral epithelial progenitors using collagen IV,” Oral Dis., vol. 14, no. 5, pp. 413-418, Jul. 2008.10.1111/j.1601-0825.2007.01390.x18466216
  61. 61. “Transplantation and Cutaneous Genetics,” J. Invest. Dermatol., vol. 60, no. 6, pp. 509-515, Jun. 1973.10.1111/1523-1747.ep127035764581948
  62. 62. “A Biologist’S Reflections on Dermatology,” J. Invest. Dermatol., vol. 57, no. 4, pp. 227-240, Oct. 1971.10.1111/1523-1747.ep122615434256544
  63. 63. Chung, J. H. et al., “Human oral buccal mucosa reconstructed on dermal substrates: a model for oral epithelial differentiation,” Arch. Dermatol. Res., vol. 289, no. 12, pp. 677-685, Dec. 1997.10.1007/s0040300502619452888
  64. 64. Mangera, A. and Chapple, C. R., “Tissue engineering in urethral reconstruction-an update.,” Asian J. Androl., vol. 15, no. 1, pp. 89-92, Jan. 2013.10.1038/aja.2012.91373913223042444
  65. 65. Bhargava, S., Chapple, C. R., Bullock, A. J., Layton, C., and MacNeil, S., “Tissue-engineered buccal mucosa for substitution urethroplasty,” BJU Int., vol. 93, no. 6, pp. 807-811, Apr. 2004.10.1111/j.1464-410X.2003.04723.x15049994
Language: English
Page range: 1 - 7
Submitted on: Sep 14, 2017
|
Accepted on: Nov 10, 2017
|
Published on: Jan 31, 2018
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Maurycy Jankowski, Marta Dyszkiewicz-Konwińska, Joanna Budna, Yan Huang, Sandra Knap, Artur Bryja, Sylwia Borys, Wiesława Kranc, Michal Jeseta, Magdalena Magas, Dorota Bukowska, Paweł Antosik, Klaus P. Brüssow, Marie Machatkova, Małgorzata Bruska, Michał Nowicki, Maciej Zabel, Bartosz Kempisty, published by Foundation for Cell Biology and Molecular Biology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.