Literature DB >> 23051679

Development of experimental tumors formed by mouse and human embryonic stem and teratocarcinoma cells after subcutaneous and intraperitoneal transplantations into immunodeficient and immunocompetent mice.

O F Gordeeva1, T M Nikonova.   

Abstract

Pluripotent stem cells represent an attractive cell source for regenerative medicine. However, the risk of teratoma formation after transplantation restricts their clinical application. Therefore, to adequately evaluate the potential risk of tumorigenicity after cell transplantation into human tissues, effective animal transplantation assays need to be developed. We performed a multiparameter (cell number, transplantation site, cell type, host) comparative analysis of the efficiency of tumor development after transplantation of mouse and human embryonic stem (ES) cells and their malignant counterparts, teratocarcinoma (EC) cells, into animal recipients and revealed several key correlations. We found that the efficiency of tumor growth was higher after intraperitoneal than after subcutaneous transplantations of all cell lines studied. The minimal cell numbers sufficient for tumor growth in immunodeficient nude mice were 100-fold lower for intraperitoneal than for subcutaneous transplantations of mouse and human ES cells (10(3) vs. 10(5) and 10(4) vs. 10(6), respectively). Moreover, mouse ES and EC cells formed tumors in immunodeficient and immunocompetent mice more effectively than human ES and EC cells. After intraperitoneal transplantation of 10(3), 10(4), and 10(5) mouse ES cells, teratomas developed in 83%, 100%, and 100% of nude mice, whereas after human ES cell transplantation, teratomas developed in 0%, 17%, and 60%, respectively. In addition, malignant mouse and human EC cells initiated tumor growth after intraperitoneal transplantation significantly faster and more effectively than ES cells. Mouse and human ES cells formed different types of teratomas containing derivatives of three germ layers but different numbers of undifferentiated cells. ES cell-like sublines with differentiation potential similar to the parental cell line were recloned only from mouse, but not from human, ES cell teratomas. These findings provide new information about the possibility and efficiency of tumor growth after transplantation of pluripotent stem cells. This information allows one to predict and possibly prevent the possible risks of tumorigenicity that could arise from stem cell therapeutics.

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Year:  2012        PMID: 23051679     DOI: 10.3727/096368912X657837

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


  7 in total

1.  Archetypal Architecture Construction, Patterning, and Scaling Invariance in a 3D Embryoid Body Differentiation Model.

Authors:  Olga Gordeeva; Andrey Gordeev; Pavel Erokhov
Journal:  Front Cell Dev Biol       Date:  2022-04-27

2.  Increased activity of TNAP compensates for reduced adenosine production and promotes ectopic calcification in the genetic disease ACDC.

Authors:  Hui Jin; Cynthia St Hilaire; Yuting Huang; Dan Yang; Natalia I Dmitrieva; Alejandra Negro; Robin Schwartzbeck; Yangtengyu Liu; Zhen Yu; Avram Walts; Jean-Michel Davaine; Duck-Yeon Lee; Danielle Donahue; Kevin S Hsu; Jessica Chen; Tao Cheng; William Gahl; Guibin Chen; Manfred Boehm
Journal:  Sci Signal       Date:  2016-12-13       Impact factor: 8.192

3.  Tumorigenic and Differentiation Potentials of Embryonic Stem Cells Depend on TGFβ Family Signaling: Lessons from Teratocarcinoma Cells Stimulated to Differentiate with Retinoic Acid.

Authors:  Olga Gordeeva; Sergey Khaydukov
Journal:  Stem Cells Int       Date:  2017-07-16       Impact factor: 5.443

Review 4.  TGFβ Family Signaling Pathways in Pluripotent and Teratocarcinoma Stem Cells' Fate Decisions: Balancing Between Self-Renewal, Differentiation, and Cancer.

Authors:  Olga Gordeeva
Journal:  Cells       Date:  2019-11-23       Impact factor: 6.600

5.  Development of the Nude Rabbit Model.

Authors:  Jun Song; Mark Hoenerhoff; Dongshan Yang; Ying Yang; Cheng Deng; Luan Wen; Linyuan Ma; Brooke Pallas; Changzhi Zhao; Yui Koike; Tomonari Koike; Patrick Lester; Bo Yang; Jifeng Zhang; Y Eugene Chen; Jie Xu
Journal:  Stem Cell Reports       Date:  2021-02-18       Impact factor: 7.765

6.  Comparison of Immunomodulation Properties of Porcine Mesenchymal Stromal/Stem Cells Derived from the Bone Marrow, Adipose Tissue, and Dermal Skin Tissue.

Authors:  Sun-A Ock; Raghavendra Baregundi Subbarao; Yeon-Mi Lee; Jeong-Hyeon Lee; Ryoung-Hoon Jeon; Sung-Lim Lee; Ji Kwon Park; Sun-Chul Hwang; Gyu-Jin Rho
Journal:  Stem Cells Int       Date:  2015-12-21       Impact factor: 5.443

7.  Assessment of established techniques to determine developmental and malignant potential of human pluripotent stem cells.

Authors: 
Journal:  Nat Commun       Date:  2018-05-15       Impact factor: 14.919

  7 in total

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