Publications by authors named "Ryuichi Mizubayashi"

Background: A thiazide diuretic used in combination with benazepril is superior to amlodipine plus benazepril in reducing albuminuria in hypertensive patients with diabetes. However, calcium channel blockers have diverse characteristics. Thus, we investigated whether combining an angiotensin receptor blocker with either azelnidipine or a thiazide diuretic produced similar reductions in albuminuria in hypertensive diabetic patients for the same levels of blood pressure achieved.

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Basic fibroblast growth factor (bFGF) stimulates angiogenesis and induces neural cell regeneration. We investigated the effects of bFGF on diabetic neuropathy in streptozotocin-induced diabetic rats. Diabetic rats were treated with human recombinant bFGF as follows: 1) intravenous administration, 2) intramuscular injection into thigh and soleus muscles with cross-linked gelatin hydrogel (CGH), and 3) intramuscular injection with saline.

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Diabetic neuropathy is based on the impairment of nerve blood flow and the metabolic disorder. Although the vasodilating agents and anticoagulants improve nerve function and symptoms in diabetic neuropathy, more effective treatments are needed. Because endothelial progenitor cells (EPCs) have been identified in adult human peripheral blood, many studies have shown that transplantation of EPCs improves circulation to ischemic tissues.

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Synopsis of recent research by authors named "Ryuichi Mizubayashi"

  • - Ryuichi Mizubayashi's research primarily focuses on the effects of various pharmacological treatments on renal and neuropathic conditions associated with diabetes, examining drugs such as azelnidipine, diuretics, and basic fibroblast growth factor.
  • - His study on azelnidipine versus a diuretic in hypertensive patients with diabetes revealed that both treatments effectively reduced albuminuria, contributing valuable insights into kidney protection strategies in diabetic patients.
  • - Furthermore, Mizubayashi's investigations into the therapeutic potential of basic fibroblast growth factor and endothelial progenitor cells in diabetic neuropathy highlight innovative approaches aimed at improving nerve function and circulation in affected individuals.