Blockage of MLKL prevents myelin damage in experimental diabetic neuropathy

Author:

Guo Jia12ORCID,Guo Zehui2,Huang Yanju3,Ma Suchen3,Yan Bo12,Pan Chenjie12,Jiang Zhaodi12,Wang Fengchao12ORCID,Zhang Zhiyuan12,Da Yuwei4,Wang Xiaodong12ORCID,Ying Zhengxin3

Affiliation:

1. National Institute of Biological Sciences, Beijing 102206, China

2. Tsinghua Institute of Multidisciplinary Biomedical Research, Tsinghua University, Beijing 102206, China

3. State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing 100193, China

4. Xuanwu Hospital, Capital Medical University, Beijing 100053, China

Abstract

Significance Diabetic neuropathy is a commonly occurring complication of diabetes that affects hundreds of millions of patients worldwide. Patients suffering from diabetic neuropathy experience abnormal sensations and have damage in their peripheral nerve axons as well as myelin, a tightly packed Schwann cell sheath that wraps around axons to provide insulation and increases electrical conductivity along the nerve fibers. The molecular events underlying myelin damage in diabetic neuropathy are largely unknown, and there is no efficacious treatment for the disease. The current study, using a diabetic mouse model and human patient nerve samples, uncovered a molecular mechanism underlying myelin sheath damage in diabetic neuropathy and provides a potential treatment strategy for the disease.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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