Literature DB >> 23267110

Coenzyme Q10 prevents peripheral neuropathy and attenuates neuron loss in the db-/db- mouse, a type 2 diabetes model.

Tie-Jun Sten Shi1, Ming-Dong Zhang, Hugo Zeberg, Johanna Nilsson, Jacob Grünler, Su-Xing Liu, Qiong Xiang, Jonas Persson, Kaj J Fried, Sergiu Bogdan Catrina, Masahiko Watanabe, Peter Arhem, Kerstin Brismar, Tomas G M Hökfelt.   

Abstract

Diabetic peripheral neuropathy (DPN) is the most common complication in both type 1 and type 2 diabetes. Here we studied some phenotypic features of a well-established animal model of type 2 diabetes, the leptin receptor-deficient db(-)/db(-) mouse, and also the effect of long-term (6 mo) treatment with coenzyme Q10 (CoQ10), an endogenous antioxidant. Diabetic mice at 8 mo of age exhibited loss of sensation, hypoalgesia (an increase in mechanical threshold), and decreases in mechanical hyperalgesia, cold allodynia, and sciatic nerve conduction velocity. All these changes were virtually completely absent after the 6-mo, daily CoQ10 treatment in db(-)/db(-) mice when started at 7 wk of age. There was a 33% neuronal loss in the lumbar 5 dorsal root ganglia (DRGs) of the db(-)/db(-) mouse versus controls at 8 mo of age, which was significantly attenuated by CoQ10. There was no difference in neuron number in 5/6-wk-old mice between diabetic and control mice. We observed a strong down-regulation of phospholipase C (PLC) β3 in the DRGs of diabetic mice at 8 mo of age, a key molecule in pain signaling, and this effect was also blocked by the 6-mo CoQ10 treatment. Many of the phenotypic, neurochemical regulations encountered in lumbar DRGs in standard models of peripheral nerve injury were not observed in diabetic mice at 8 mo of age. These results suggest that reactive oxygen species and reduced PLCβ3 expression may contribute to the sensory deficits in the late-stage diabetic db(-)/db(-) mouse, and that early long-term administration of the antioxidant CoQ10 may represent a promising therapeutic strategy for type 2 diabetes neuropathy.

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Year:  2012        PMID: 23267110      PMCID: PMC3545822          DOI: 10.1073/pnas.1220794110

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  90 in total

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3.  Effect of peripheral nerve injury on dorsal root ganglion neurons in the C57 BL/6J mouse: marked changes both in cell numbers and neuropeptide expression.

Authors:  T J Shi; T Tandrup; E Bergman; Z Q Xu; B Ulfhake; T Hökfelt
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4.  C-peptide prevents and improves chronic Type I diabetic polyneuropathy in the BB/Wor rat.

Authors:  A A Sima; W Zhang; K Sugimoto; D Henry; Z Li; J Wahren; G Grunberger
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5.  Diabetic peripheral neuropathy: evidence for apoptosis and associated mitochondrial dysfunction.

Authors:  S Srinivasan; M Stevens; J W Wiley
Journal:  Diabetes       Date:  2000-11       Impact factor: 9.461

6.  Does diabetes target ganglion neurones? Progressive sensory neurone involvement in long-term experimental diabetes.

Authors:  D W Zochodne; V M Verge; C Cheng; H Sun; J Johnston
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7.  Diabetic polyneuropathy. Axonal or demyelinating?

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Authors:  Motoko Kishi; James Tanabe; James D Schmelzer; Phillip A Low
Journal:  Diabetes       Date:  2002-03       Impact factor: 9.461

9.  Estimating utility values for health states of type 2 diabetic patients using the EQ-5D (UKPDS 62).

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10.  Identification of gene expression profile of dorsal root ganglion in the rat peripheral axotomy model of neuropathic pain.

Authors:  Hua-Sheng Xiao; Qiu-Hua Huang; Fang-Xiong Zhang; Lan Bao; Ying-Jin Lu; Chao Guo; Liang Yang; Wein-Jing Huang; Gang Fu; Shu-Hua Xu; Xi-Ping Cheng; Qing Yan; Zhi-Dong Zhu; Xin Zhang; Zhu Chen; Ze-Guang Han; Xu Zhang
Journal:  Proc Natl Acad Sci U S A       Date:  2002-06-11       Impact factor: 11.205

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  19 in total

1.  Density of voltage-gated potassium channels is a bifurcation parameter in pyramidal neurons.

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2.  Exosomes derived from high-glucose-stimulated Schwann cells promote development of diabetic peripheral neuropathy.

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4.  The role of miR-146a in dorsal root ganglia neurons of experimental diabetic peripheral neuropathy.

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Review 5.  Alternatives to the Streptozotocin-Diabetic Rodent.

Authors:  M A Yorek
Journal:  Int Rev Neurobiol       Date:  2016-03-28       Impact factor: 3.230

6.  Combined therapeutic effects of low power laser (980nm) and CoQ10 on Neuropathic Pain in adult male rat.

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7.  Glutaredoxin mediated redox effects of coenzyme Q10 treatment in type 1 and type 2 diabetes patients.

Authors:  Sergio J Montano; Jacob Grünler; Deepika Nair; Michael Tekle; Aristi P Fernandes; Xiang Hua; Arne Holmgren; Kerstin Brismar; Johanna S Ungerstedt
Journal:  BBA Clin       Date:  2015-06-10

8.  Galanin and its receptor system promote the repair of injured sciatic nerves in diabetic rats.

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9.  Alterations in the corneal nerve and stem/progenitor cells in diabetes: preventive effects of insulin-like growth factor-1 treatment.

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10.  miR‑199a‑3p is involved in the pathogenesis and progression of diabetic neuropathy through downregulation of SerpinE2.

Authors:  Ying-Bo Li; Qun Wu; Jie Liu; Yong-Zhi Fan; Kai-Feng Yu; Yi Cai
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