Experimental Approaches to Diabetic Retinopathy

This volume sets the stage for clinical experts working with diabetic patients as well as for researchers by describing the clinical presentations of retinopathy and their anatomical and functional correlates. It reviews currently available experimental models in animals. The impact of retinal peric...

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Bibliographic Details
Main Author: Hammes, Hans-Peter ([Hrsg.])
Other Authors: Porta, Massimo ([Hrsg.])
Format: eBook
Language:English
Published: Basel S. Karger 2010, 2010
Series:Frontiers in diabetes
Subjects:
Online Access:
Collection: Karger eBooks Collection 1997-2009 - Collection details see MPG.ReNa
Description
Summary:This volume sets the stage for clinical experts working with diabetic patients as well as for researchers by describing the clinical presentations of retinopathy and their anatomical and functional correlates. It reviews currently available experimental models in animals. The impact of retinal pericytes, neuroglia and, specifically, Müller cells are discussed in detail. The volume addresses a variety of current scientific discussions about mechanisms of damage such as growth factors and the VEGF/PEDF balance in the diabetic eye, the ocular renin-angiotensin system, and leukocyte interactions with the microvasculature among others. Stem and progenitor cells in the retina are discussed as potential directions for future investigation. The final chapters return to emerging clinical aspects, including current approaches to retinopathy as a predictor of cardiovascular risk and how knowledge can be translated from bench to bedside. Bridging a widening gap in medical research between basic scientists, who may lose sight of the clinical presentations, and clinical researchers, who may grow unaware of the limits of experimental models, this volume serves as a reference platform for endocrinologists, diabetologists, ophthalmologists, as well as for scientists involved in clinical and basic research in diabetic retinopathy and other vascular complications of diabetes
Physical Description:VIII + 232 S.