Literature DB >> 21092404

Autologous transplantation of amniotic fluid-derived mesenchymal stem cells into sheep fetuses.

S W Steven Shaw1, Sveva Bollini, Khalil Abi Nader, Annalisa Gastaldello, Annalisa Gastadello, Vedanta Mehta, Elisa Filppi, Mara Cananzi, H Bobby Gaspar, Waseem Qasim, Paolo De Coppi, Anna L David.   

Abstract

Long-term engraftment and phenotype correction has been difficult to achieve in humans after in utero stem cell transplantation mainly because of allogeneic rejection. Autologous cells could be obtained during gestation from the amniotic fluid with minimal risk for the fetus and the mother. Using a sheep model, we explored the possibility of using amniotic fluid mesenchymal stem cells (AFMSCs) for autologous in utero stem cell/gene therapy. We collected amniotic fluid (AF) under ultrasound-guided amniocentesis in early gestation pregnant sheep (n = 9, 58 days of gestation, term = 145 days). AFMSCs were isolated and expanded in all sampled fetal sheep. Those cells were transduced using an HIV vector encoding enhanced green fluorescent protein (GFP) with 63.2% (range 38.3-96.2%) transduction efficiency rate. After expansion, transduced AFMSCs were injected into the peritoneal cavity of each donor fetal sheep at 76 days under ultrasound guidance. One ewe miscarried twin fetuses after amniocentesis. Intraperitoneal injection was successful in the remaining 7 fetal sheep giving a 78% survival for the full procedure. Tissues were sampled at postmortem examination 2 weeks later. PCR analysis detected GFP-positive cells in fetal tissues including liver, heart, placenta, membrane, umbilical cord, adrenal gland, and muscle. GFP protein was detected in these tissues by Western blotting and further confirmed by cytofluorimetric and immunofluorescence analyses. This is the first demonstration of autologous stem cell transplantation in the fetus using AFMSCs. Autologous cells derived from AF showed widespread organ migration and could offer an alternative way to ameliorate prenatal congenital disease.

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Year:  2010        PMID: 21092404     DOI: 10.3727/096368910X543402

Source DB:  PubMed          Journal:  Cell Transplant        ISSN: 0963-6897            Impact factor:   4.064


  13 in total

1.  EphB2 isolates a human marrow stromal cell subpopulation with enhanced ability to contribute to the resident intestinal cellular pool.

Authors:  Evan Colletti; Deena El Shabrawy; Melisa Soland; Takashi Yamagami; Saloomeh Mokhtari; Craig Osborne; Karen Schlauch; Esmail D Zanjani; Christopher D Porada; Graça Almeida-Porada
Journal:  FASEB J       Date:  2013-02-14       Impact factor: 5.191

Review 2.  Human-animal chimeras for autologous organ transplantation: technological advances and future perspectives.

Authors:  Yingfei Lu; Yu Zhou; Rong Ju; Jianquan Chen
Journal:  Ann Transl Med       Date:  2019-10

3.  Investigating Optimal Autologous Cellular Platforms for Prenatal or Perinatal Factor VIII Delivery to Treat Hemophilia A.

Authors:  Christopher Stem; Christopher Rodman; Ritu M Ramamurthy; Sunil George; Diane Meares; Andrew Farland; Anthony Atala; Christopher B Doering; H Trent Spencer; Christopher D Porada; Graça Almeida-Porada
Journal:  Front Cell Dev Biol       Date:  2021-08-10

4.  Treatment of Hemophilia A in Utero and Postnatally using Sheep as a Model for Cell and Gene Delivery.

Authors:  Christopher D Porada; Graça Almeida-Porada
Journal:  J Genet Syndr Gene Ther       Date:  2012-05-25

Review 5.  Hemophilia A: an ideal disease to correct in utero.

Authors:  Christopher D Porada; Christopher Rodman; Glicerio Ignacio; Anthony Atala; Graça Almeida-Porada
Journal:  Front Pharmacol       Date:  2014-12-11       Impact factor: 5.810

6.  In utero therapy for congenital disorders using amniotic fluid stem cells.

Authors:  Durrgah L Ramachandra; Steven S W Shaw; Panicos Shangaris; Stavros Loukogeorgakis; Pascale V Guillot; Paolo De Coppi; Anna L David
Journal:  Front Pharmacol       Date:  2014-12-19       Impact factor: 5.810

7.  Applications of amniotic membrane and fluid in stem cell biology and regenerative medicine.

Authors:  Kerry Rennie; Andrée Gruslin; Markus Hengstschläger; Duanqing Pei; Jinglei Cai; Toshio Nikaido; Mahmud Bani-Yaghoub
Journal:  Stem Cells Int       Date:  2012-10-10       Impact factor: 5.443

8.  Intramyocardial transplantation and tracking of human mesenchymal stem cells in a novel intra-uterine pre-immune fetal sheep myocardial infarction model: a proof of concept study.

Authors:  Maximilian Y Emmert; Benedikt Weber; Petra Wolint; Thomas Frauenfelder; Steffen M Zeisberger; Luc Behr; Sebastien Sammut; Jacques Scherman; Chad E Brokopp; Ruth Schwartländer; Viola Vogel; Peter Vogt; Jürg Grünenfelder; Hatem Alkadhi; Volkmar Falk; Andreas Boss; Simon P Hoerstrup
Journal:  PLoS One       Date:  2013-03-22       Impact factor: 3.240

9.  Amniotic fluid stem cells with low γ-interferon response showed behavioral improvement in Parkinsonism rat model.

Authors:  Yu-Jen Chang; Tsung-Yen Ho; Mei-Ling Wu; Shiaw-Min Hwang; Tzyy-Wen Chiou; Ming-Song Tsai
Journal:  PLoS One       Date:  2013-09-30       Impact factor: 3.240

10.  Calcium sensing receptor expression in ovine amniotic fluid mesenchymal stem cells and the potential role of R-568 during osteogenic differentiation.

Authors:  Pamela Di Tomo; Caterina Pipino; Paola Lanuti; Caterina Morabito; Laura Pierdomenico; Vittorio Sirolli; Mario Bonomini; Sebastiano Miscia; Maria Addolorata Mariggiò; Marco Marchisio; Barbara Barboni; Assunta Pandolfi
Journal:  PLoS One       Date:  2013-09-09       Impact factor: 3.240

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