Literature DB >> 16026266

Aldose reductase in diabetic microvascular complications.

S S M Chung1, S K Chung.   

Abstract

Most long-term diabetic patients develop microvascular diseases such as retinopathy, nephropathy and neuropathy. Although tight control of blood glucose greatly reduces the incidence of these complications, a significant fraction of diabetic patients with good glycemic control still develop these diseases. Therefore, it is imperative to understand the underlying mechanisms of these diseases such that effective treatment or preventive methods can be developed to augment euglycemic control. In animal studies, there is strong evidence that aldose reductase, the first and rate-limiting enzyme of the polyol pathway that converts glucose to fructose, plays a key role in the pathogenesis of microvascular complications. However, clinical trials of the aldose reductase inhibitors were disappointing and several pharmaceutical companies had abandoned the development of this line of drugs. In this review, the potential pathogenic mechanisms of the polyol pathway are presented, the evidence for the involvement of the polyol pathway in diabetic complications summarized, and the reasons for the unimpressive results of the clinical trials of the aldose inhibitors discussed. It appears that renewed efforts to develop aldose reductase inhibitors for the treatment and prevention of diabetic complications are warranted.

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Year:  2005        PMID: 16026266     DOI: 10.2174/1389450054021891

Source DB:  PubMed          Journal:  Curr Drug Targets        ISSN: 1389-4501            Impact factor:   3.465


  40 in total

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Review 5.  Pathophysiology of Diabetic Retinopathy: Contribution and Limitations of Laboratory Research.

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Journal:  Ophthalmic Res       Date:  2019-07-30       Impact factor: 2.892

6.  Consumption of polyphenol-rich Morus alba leaves extract attenuates early diabetic retinopathy: the underlying mechanism.

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7.  Polyol pathway impairs the function of SERCA and RyR in ischemic-reperfused rat hearts by increasing oxidative modifications of these proteins.

Authors:  Wai Ho Tang; Gennadi M Kravtsov; Martina Sauert; Xiao Yong Tong; Xiu Yun Hou; Tak Ming Wong; Sookja K Chung; Stephen Sum Man Chung
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8.  Cardiac contractile dysfunction during acute hyperglycemia due to impairment of SERCA by polyol pathway-mediated oxidative stress.

Authors:  Wai Ho Tang; Wing Tim Cheng; Gennadi M Kravtsov; Xiao Yong Tong; Xiu Yun Hou; Sookja K Chung; Stephen Sum Man Chung
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Review 9.  Aldose reductase inhibition suppresses oxidative stress-induced inflammatory disorders.

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10.  Osmotic expression of aldose reductase in retinal pigment epithelial cells: involvement of NFAT5.

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