Treatment with Laevo (L)-carnitine reverses the mitochondrial function of human embryos

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Supplementing culture medium with L-carnitine significantly increased oxygen consumption rates and improved blastocyst formation in human embryos, leading to twenty healthy births.

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Abstract

PURPOSE: Laevo (l)-carnitine plays important roles in reducing the cytotoxic effects of free fatty acids by forming acyl-carnitine and promoting beta-oxidation, leading to alleviation of cell damage. Recently, the mitochondrial functions in morula has been shown to decrease with the maternal age. Here, we assessed the effect of l-carnitine on mitochondrial function in human embryos and embryo development. METHODS: To examine the effect of L-carnitine on mitochondrial function in morulae, 38 vitrified-thawed embryos at the 6-11-cell stage on day 3 after ICSI were donated from 19 couples. Each couple donated two embryos. Two siblings from each couple were divided randomly into two groups and were cultured in medium with or without 1 mM L-carnitine. The oxygen consumption rates (OCRs) were measured at morula stage. The development of 1029 zygotes cultured in medium with or without L-carnitine was prospectively analyzed. RESULTS: Addition of L-carnitine to the culture medium significantly increased the OCRs of morulae and improved the morphologically-good blastocyst formation rate per zygote compared with sibling embryos. Twenty healthy babies were born from embryos cultured in L-carnitine-supplemented medium after single embryo transfers. CONCLUSION(S): L-carnitine is a promising culture medium supplement that might be able to counteract the decreased mitochondrial function in human morula stage embryos.

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MeSH descriptors

Blastocyst Carnitine Embryonic Development Mitochondria Blastocyst Blastocyst Carnitine Culture Media Culture Media Embryo Culture Techniques Embryo, Mammalian Embryonic Development Embryonic Development Female Humans Mitochondria Mitochondria Oxidation-Reduction Oxidation-Reduction Oxygen Consumption

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europepmc
last seen: 2026-10-04T09:26:46.659050+00:00
pubmed
last seen: 2026-10-08T21:28:48.188428+00:00