1995
DOI: 10.1016/0168-8227(95)01184-6
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Effects of cilostazol on development of experimental diabetic neuropathy: functional and structural studies, and Na+-K+-ATPase acidity in peripheral nerve in rats with streptozotocin-induced diabetes

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Cited by 20 publications
(24 citation statements)
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“…Although cilostazol is primarily used in peripheral vascular diseases, this compound has recently gained much greater favor in the prevention and treatment of diabetic complications, including vasculopathy (Gao et al, 2006;Yamasaki et al, 2006), neuropathy (Naka et al, 1995;Yamamoto et al, 2000), and retinopathy (Hotta et al, 1997). We found in the current study that cilostazol could also suppress the characteristic changes in early DN, such as glomerular hyperplasia, inflammatory cells infiltration and increased relative kidney weight (g kg − 1 body weight), ultimately hampering the progression of DN.…”
Section: Discussionmentioning
confidence: 98%
“…Although cilostazol is primarily used in peripheral vascular diseases, this compound has recently gained much greater favor in the prevention and treatment of diabetic complications, including vasculopathy (Gao et al, 2006;Yamasaki et al, 2006), neuropathy (Naka et al, 1995;Yamamoto et al, 2000), and retinopathy (Hotta et al, 1997). We found in the current study that cilostazol could also suppress the characteristic changes in early DN, such as glomerular hyperplasia, inflammatory cells infiltration and increased relative kidney weight (g kg − 1 body weight), ultimately hampering the progression of DN.…”
Section: Discussionmentioning
confidence: 98%
“…Another explanation is the impairment of Na + /K + -ATPase, a cation membrane transporter. There are reports of altered Na + /K + -ATPase function in myocardial cells of noninsulin-dependent and insulin-dependent DM [46], in cerebral cortex [47] and in peripheral nerves [48] of STZ diabetes-induced adult rats. We found approximately 4-5 mV of depolarization in hyperglycemic animals, and this value is compatible with Na + /K + -ATPase contribution to neuron resting membrane potential [40].…”
Section: Discussionmentioning
confidence: 99%
“…O cilostazol melhorou a atividade da bomba de sódio e potássio corrigindo o fluxo sangüíneo e a hipóxia neural, através de ações na microvascularização endoneural, por agir no metabolismo das prostaglandinas e do óxido nítrico (57). Tem ação na morfologia da fibra mielínica através da diminuição da atrofia axonal, por facilitar o aporte de proteínas cito-esqueléticas devido ao bloqueio da inflamação neurogênica e chegada de macrófagos nesses sítios.…”
Section: Ações Do Cilostazol Na Prevenção E No Tratamento Das Complicunclassified