Literature DB >> 11508438

Fetal cell microchimerism in tissue from multiple sites in women with systemic sclerosis.

K L Johnson1, J L Nelson, D E Furst, P A McSweeney, D J Roberts, D K Zhen, D W Bianchi.   

Abstract

OBJECTIVE: The realization that fetal cells pass into the maternal circulation and can survive for many years has raised the question of whether fetal microchimerism can cause subsequent disease in the mother. Available data suggest that fetal-maternal transfusion may be related to some autoimmune diseases, notably systemic sclerosis (SSc). The goal of the current work was to identify and quantify tissue-specific fetal microchimerism in women with SSc.
METHODS: We analyzed multiple tissue specimens obtained at autopsy from women with SSc as well as women who had died of causes unrelated to autoimmunity, using fluorescence in situ hybridization to detect the presence of male cells in women with sons. Tissues analyzed included adrenal gland, heart, intestine, kidney, liver, lung, lymph node, pancreas, parathyroid, skin, and spleen.
RESULTS: Male cells were observed in tissue from at least 1 site in each woman with SSc and were found most frequently in spleen sections. After spleen, male cells were observed most frequently in lymph node, lung, adrenal gland, and skin tissue. The only tissue type in which male cells were not seen in any patient was pancreatic tissue. Male cells were not observed in tissue from women who had died of causes unrelated to autoimmunity.
CONCLUSION: The results of this study suggest that fetal cells migrate from the peripheral circulation into multiple organs in women with SSc. All of the women studied had previously given birth to sons, so it is likely that these cells are of fetal origin. While the relevance of this finding to the pathogenesis of SSc remains to be elucidated, the presence of fetal cells in internal organs suggests that they could play a role in disease pathogenesis and that they may preferentially sequester in the spleen. The presence of these male cells may also be a result of disease, possibly through the migration of terminally differentiated and/or progenitor cells to areas of tissue damage.

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Year:  2001        PMID: 11508438     DOI: 10.1002/1529-0131(200108)44:8<1848::AID-ART323>3.0.CO;2-L

Source DB:  PubMed          Journal:  Arthritis Rheum        ISSN: 0004-3591


  19 in total

1.  Microchimerism in Sjögren's syndrome.

Authors:  R Giacomelli; M Matucci-Cerinic; S Bombardieri
Journal:  Ann Rheum Dis       Date:  2002-12       Impact factor: 19.103

2.  Long-term feto-maternal microchimerism: nature's hidden clue for alternative donor hematopoietic cell transplantation?

Authors:  Tatsuo Ichinohe; Etsuko Maruya; Hiroh Saji
Journal:  Int J Hematol       Date:  2002-10       Impact factor: 2.490

3.  Maternal background strain influences fetal-maternal trafficking more than maternal immune competence in mice.

Authors:  Lisa R Kallenbach; Diana W Bianchi; Inga Peter; Helene Stroh; Kirby L Johnson
Journal:  J Reprod Immunol       Date:  2011-07-05       Impact factor: 4.054

Review 4.  Maternal programming: Application of a developmental psychopathology perspective.

Authors:  Laura M Glynn; Mariann A Howland; Molly Fox
Journal:  Dev Psychopathol       Date:  2018-08

Review 5.  Incognito: Are Microchimeric Fetal Stem Cells that Cross Placental Barrier Real Emissaries of Peace?

Authors:  Cosmin Andrei Cismaru; Laura Pop; Ioana Berindan-Neagoe
Journal:  Stem Cell Rev Rep       Date:  2018-10       Impact factor: 5.739

Review 6.  Fetal microchimerism and maternal health during and after pregnancy.

Authors:  Keelin O'Donoghue
Journal:  Obstet Med       Date:  2008-12-01

7.  Microchimeric fetal cells play a role in maternal wound healing after pregnancy.

Authors:  Uzma Mahmood; Keelin O'Donoghue
Journal:  Chimerism       Date:  2014

8.  A mouse model for fetal maternal stem cell transfer during ischemic cardiac injury.

Authors:  Rina J Kara; Paola Bolli; Iwao Matsunaga; Omar Tanweer; Perry Altman; Hina W Chaudhry
Journal:  Clin Transl Sci       Date:  2012-06-18       Impact factor: 4.689

Review 9.  Naturally acquired microchimerism.

Authors:  Hilary S Gammill; J Lee Nelson
Journal:  Int J Dev Biol       Date:  2010       Impact factor: 2.203

Review 10.  Chimerism and tetragametic chimerism in humans: implications in autoimmunity, allorecognition and tolerance.

Authors:  Edmond J Yunis; Joaquin Zuniga; Viviana Romero; Emilio J Yunis
Journal:  Immunol Res       Date:  2007       Impact factor: 2.829

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