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Mitochondrial DNA disease: new options for prevention

Authors :
Alison Murdoch
Lisa M. Lister
Joanna L. Elson
Helen A. L. Tuppen
Laura Irving
Samantha Byerley
Douglass M. Turnbull
Gareth D. Greggains
Mary Herbert
Lyndsey Craven
Source :
Human Molecular Genetics. 20:R168-R174
Publication Year :
2011
Publisher :
Oxford University Press (OUP), 2011.

Abstract

Very recently, two papers have presented intriguing data suggesting that prevention of transmission of human mitochondrial DNA (mtDNA) disease is possible. [Craven, L., Tuppen, H.A., Greggains, G.D., Harbottle, S.J., Murphy, J.L., Cree, L.M., Murdoch, A.P., Chinnery, P.F., Taylor, R.W., Lightowlers, R.N. et al. (2010) Pronuclear transfer in human embryos to prevent transmission of mitochondrial DNA disease. Nature, 465, 82–85. Tachibana, M., Sparman, M., Sritanaudomchai, H., Ma, H., Clepper, L., Woodward, J., Li, Y., Ramsey, C., Kolotushkina, O. and Mitalipov, S. (2009) Mitochondrial gene replacement in primate offspring and embryonic stem cells. Nature, 461, 367–372.] These recent advances raise hopes for families with mtDNA disease; however, the successful translational of these techniques to clinical practice will require further research to test for safety and to maximize efficacy. Furthermore, in the UK, amendment to the current legislation will be required. Here, we discuss the clinical and scientific background, studies we believe are important to establish safety and efficacy of the techniques and some of the potential concerns about the use of these approaches.

Details

ISSN :
14602083 and 09646906
Volume :
20
Database :
OpenAIRE
Journal :
Human Molecular Genetics
Accession number :
edsair.doi.dedup.....a68daafe5124278c03ad64d400846ffb
Full Text :
https://doi.org/10.1093/hmg/ddr373