A sister and brother with Vici syndrome are described. They both had oculocutaneous albinism, agenesis of the corpus callosum, cataracts, and cardiomyopathy. They were born to healthy unrelated parents, and had postnatal growth retardation, profound developmental delay, hypotonia, and cataracts. The sister had recurrent infections, and died of progressive heart failure at age 19 months. The brother is alive at age six months with mild cardiomyopathy, and had a single episode of acute bronchitis at age three months. Review of the clinical manifestations of the sibs we described and six children reported in the literature indicates that Vici syndrome is a distinct clinical entity. Its main clinical manifestations include growth retardation, profound developmental delay, hypotonia, albinism, agenesis of the corpus callosum, cataracts, cardiomyopathy, and recurrent infections. The occurrence of the syndrome in three pairs of sibs of both sexes born to unaffected parents supports autosomal recessive inheritance.
Adiponectin (APN), a protein abundantly secreted from adipocytes, has been reported to possess beneficial effects on cardiovascular diseases in association with its accumulation on target organs and cells by binding to T-cadherin. However, little is known about the role of APN in the development of diabetic microvascular complications, such as diabetic retinopathy (DR). Here we investigated the impact of APN on the progression of early retinal vascular damage using a streptozotocin (STZ)-induced diabetic mouse model. Our immunofluorescence results clearly showed T-cadherin-dependent localization of APN in the vascular endothelium of retinal arterioles, which was progressively decreased during the course of diabetes. Such reduction of retinal APN accompanied the early features of DR, represented by increased vascular permeability, and was prevented by glucose-lowering therapy with dapagliflozin, a selective sodium-glucose co-transporter 2 inhibitor. In addition, APN deficiency resulted in severe vascular permeability under relatively short-term hyperglycemia, together with a significant increase in vascular cellular adhesion molecule-1 (VCAM-1) and a reduction in claudin-5 in the retinal endothelium. The present study demonstrated a possible protective role of APN against the development of DR.
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