Understanding positional cues in salamander limb regeneration: implications for optimizing cell-based regenerative therapies

Author:

McCusker Catherine D.1,Gardiner David M.1

Affiliation:

1. Francisco J. Ayala School of Biological Sciences, Department of Developmental and Cell Biology, University of California Irvine, CA 92602, USA.

Abstract

Regenerative medicine has reached the point where we are performing clinical trials with stem-cell-derived cell populations in an effort to treat numerous human pathologies. However, many of these efforts have been challenged by the inability of the engrafted populations to properly integrate into the host environment to make a functional biological unit. It is apparent that we must understand the basic biology of tissue integration in order to apply these principles to the development of regenerative therapies in humans. Studying tissue integration in model organisms, where the process of integration between the newly regenerated tissues and the ‘old’ existing structures can be observed and manipulated, can provide valuable insights. Embryonic and adult cells have a memory of their original position, and this positional information can modify surrounding tissues and drive the formation of new structures. In this Review, we discuss the positional interactions that control the ability of grafted cells to integrate into existing tissues during the process of salamander limb regeneration, and discuss how these insights could explain the integration defects observed in current cell-based regenerative therapies. Additionally, we describe potential molecular tools that can be used to manipulate the positional information in grafted cell populations, and to promote the communication of positional cues in the host environment to facilitate the integration of engrafted cells. Lastly, we explain how studying positional information in current cell-based therapies and in regenerating limbs could provide key insights to improve the integration of cell-based regenerative therapies in the future.

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

Reference52 articles.

1. Retinoic acid, local cell-cell interactions, and pattern formation in vertebrate limbs;Bryant;Dev. Biol.,1992

2. Distal regeneration and symmetry;Bryant;Science,1981

3. Vertebrate limb regeneration and the origin of limb stem cells;Bryant;Int. J. Dev. Biol.,2002

4. The effects of rotation and positional change of stump tissues upon morphogenesis of the regenerating axolotl limb;Carlson;Dev. Biol.,1975

5. Diversity, topographic differentiation, and positional memory in human fibroblasts;Chang;Proc. Natl. Acad. Sci. USA,2002

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