| Literature DB >> 23782518 |
Jacqueline López1, Francisco J Valdez-Morales, Luis Benítez-Bribiesca, Marco Cerbón, Alejandro García Carrancá.
Abstract
The female reproductive system (FRS) has a great capacity for regeneration. The existence of somatic stem cells (SSC) that are likely to reside in distinct tissue compartments of the FRS is anticipated. Normal SSC are capable of regenerating themselves, produce a progeny of cells that differentiate and maintain tissue architecture and functional characteristics, and respond to homeostatic controls. Among those SSC of the FRS that have been identified are: a) undifferentiated cells capable of differentiating into thecal cells and synthesizing hormones upon transplantation, b) ovarian surface epithelium stem cells, mitotically responsive to ovulation, c) uterine endometrial and myometrial cells, as clonogenic epithelial and stromal cells, and d) epithelial and mesenchymal cells with self-renewal capacity and multipotential from cervical tissues. Importantly, these cells are believed to significantly contribute to the development of different pathologies and tumors of the FRS.It is now widely accepted that cancer stem cells (CSC) are at the origin of many tumors. They are capable of regenerating themselves, produce a progeny that will differentiate aberrantly and do not respond adequately to homeostatic controls. Several cell surface antigens such as CD44, CD117, CD133 and MYD88 have been used to isolate ovarian cancer stem cells. Clonogenic epithelial and stromal endometrial and myometrial cells have been found in normal and cancer tissues, as side population, label-retaining cells, and CD146/PDGF-R beta-positive cells with stem-like features. In summary, here we describe a number of studies supporting the existence of somatic stem cells in the normal tissues and cancer stem cells in tumors of the human female reproductive system.Entities:
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Year: 2013 PMID: 23782518 PMCID: PMC3693871 DOI: 10.1186/1477-7827-11-53
Source DB: PubMed Journal: Reprod Biol Endocrinol ISSN: 1477-7827 Impact factor: 5.211
Figure 1Summary of current evidences supporting the existence of stem cells in the female reproductive system. The existence of stem/progenitor cells is indicated in primary functional parts of the reproductive system, including ovary, uterus and cervix. Abbreviations: CD = Cluster of differentiation, MSC = Mesenchymal stem cell, SP = Side population.
Major tumor types in gynaecological cancer; genetic mutations and clinical treatments
| Loss of heterozygosity of PTEN, P53, K-ras, HNPCC mutations. BRCA1 and 2 inactivating mutation. ABCG2 overexpression, β-Catenin expression | |||
| Endometrioid, Serous, Clear cells, Transitional, Mucinous and Undifferentiated carcinoma | |||
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| Adenofibroma, Tubal intraepithelial carcinoma | | ||
| | | ||
| PTEN inactivation, K-ras, P53 and P16 mutations, Microsatellite instability, HER-2/neu overexpression | |||
| Leiomyoma [Commonly benign smooth muscle tumor] | Adjuvant radiation. Hormonal Therapy with medroxyprogesterone | ||
| Endometrial cancer in advanced stage with myometrial invasion | |||
| K-ras mutations Carbonic anhydrase | |||
| Squamous-cell, adenocarcinoma, adenosquamous and small-cell carcinoma | IX [CAIX], CAXII, hypoxia-inducible factor 1α, and VEGF upregulation | ||
| Deregulated expression of E6 and E7 viral oncogenes |
The early or advanced stage depends on the extent of local spread [shown by the tumour stage and tumour size], nodal status and histological subtype. The grading is based on the WHO International Histological Classification of Tumours and Classification of Diseases for Oncology.
Markers of cancer stem cells of the female reproductive system
| SP+ | Szoket, 2006 [ | |
| Clonogenic cells | Bapat, 2005 [ | |
| CD44+, CD117+ | Zhang, 2008 [ | |
| CD133+ | Curley, 2009 [ | |
| Baba, 2009 [ | ||
| Ferrandina, 2008 [ | ||
| Kusumbe, 2009 [ | ||
| CD44+, MYD88+ | Alvero, 2009 [ | |
| Clonogenic cells | Hubbard, 2009 [ | |
| SP+ | Friel, 2008 [ | |
| Kato, 2010 [ | ||
| p63 y CK17 | eliminated | |
| Nanog, Musashi-1, Nucleostemin | Ye, 2008 [ | |
| Spheres, ALDH1, CD44 | Li, 2011 [ | |
| Spheres-CD49f | Li, 2011 [ | |
| Spheres | López, 2012 [ | |
| ALDH1 | Gu, 2011 [ | |
| CD44 |
Abbreviations: CD, Cluster of differentiation, LRC, Label-retaining cell, SP, Side population, PDGF-Rβ, PDGF-receptor β, ALDH, Aldehyde dehydrogenase, MSC, mesenchymal stem cell.