Xenotransplanted Embryonic Kidney Provides a Niche for Endogenous Mesenchymal Stem Cell Differentiation into Erythropoietin-Producing Tissue

Author:

Matsumoto Kei12,Yokoo Takashi123,Matsunari Hitomi34,Iwai Satomi35,Yokote Shinya12,Teratani Takumi6,Gheisari Yousof1,Tsuji Osahiko7,Okano Hideyuki7,Utsunomiya Yasunori2,Hosoya Tatsuo2,Okano Hirotaka James17,Nagashima Hiroshi34,Kobayashi Eiji36

Affiliation:

1. Project Laboratory for Kidney Regeneration, Institute of DNA Medicine, The Jikei University School of Medicine, Minato-ku, Tokyo, Japan

2. Department Internal Medicine, The Jikei University School of Medicine, Minato-ku, Tokyo, Japan

3. Meiji University International Institute for Bio-Resource Research, Kawasaki, Kanagawa, Japan

4. Laboratory of Developmental Engineering, Department of Life Sciences, School of Agriculture, Meiji University, Kawasaki, Kanagawa, Japan

5. Department of Surgery (I), Kitasato University School of Veterinary Medicine, Towada, Aomori, Japan

6. Division of Development of Advanced Treatment, Center for Development of Advanced Medical Technology, Jichi Medical University, Shimotsuke-shi, Tochigi-ken, Japan

7. Department of Physiology, Keio University School of Medicine, Shinjuku-ku, Tokyo, Japan

Abstract

Abstract Recent findings have demonstrated that stem cells can differentiate into mature tissue when supplied with a niche containing factors identical to those in the normal developmental program. A niche for the development of an organ can be provided by xenotransplantation of a similar developing organ. However, this process has many technical, safety, and ethical concerns. Here, we established xenotransplantation models that control endogenous mesenchymal stem cell (MSC) differentiation into mature erythropoietin (EPO)-producing tissue in a niche provided by a developing xenometanephros. Transplantation of rat metanephroi into mouse omentum, and similarly pig metanephroi into cat omentum, led to the recruitment of host cells and EPO production. EPO-expressing cells were not differentiated from integrating vessels because they did not coexpress endothelial markers (Tie-2 and VE-cadherin). Instead, EPO-expressing cells were shown to be derived from circulating host cells, as shown by enhanced green fluorescent protein (EGFP) expression in the grown transplants of chimeric mice bearing bone marrow from a transgenic mouse expressing EGFP under the control of the EPO promoter. These results suggest that donor cell recruitment and differentiation in a xenotransplanted developing organ may be consistent between species. The cells responsible for EPO expression were identified as MSCs by injecting human bone marrow-derived MSCs and endothelial progenitor cells into NOD/SCID mice. Furthermore, using metanephroi from transgenic ER-E2F1 suicide-inducible mice, the xenotissue component could be eliminated, leaving autologous EPO-producing tissue. Our findings may alleviate adverse effects due to long-lasting immunosuppression and help mitigate ethical concerns. Disclosure of potential conflicts of interest is found at the end of this article.

Funder

Baxter Extramural Grant Program

Ministry of Education, Culture, Sports, Science and Technology of Japan

Otsuka Pharmaceutical Factory, Inc

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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