Ruboxistaurin, a Protein Kinase C β Inhibitor, as an Emerging Treatment for Diabetes Microvascular Complications

Author:

Joy Scott V1,Scates Ann C2,Bearelly Srilaxmi3,Dar Moahad4,Taulien Christina A5,Goebel Jason A6,Cooney Michael J7

Affiliation:

1. Scott V Joy MD CDE FACP, Associate Clinical Professor of Medicine, Department of Medicine, Duke University Medical Center, Durham, NC

2. Ann C Scates PharmD, Clinical Pharmacist and Drug Information Specialist, Department of Pharmacy, Duke University Hospital

3. Srilaxmi Bearelly MD, Assistant Professor of Ophthalmology, Department of Ophthalmology, Duke University Medical Center

4. Moahad Dar MD, Fellow in Endocrinology, Department of Medicine, Duke University Medical Center

5. Christina A Taulien MD, Resident in Internal Medicine, Department of Medicine, Duke University Medical Center

6. Jason A Goebel MD, Resident in Internal Medicine, Department of Medicine, Duke University Medical Center

7. Michael J Cooney MD, Assistant Professor of Ophthalmology, Department of Ophthalmology, Duke University Medical Center

Abstract

OBJECTIVE: To review current clinical data regarding the pharmacologic actions of ruboxistaurin (LY333531) mesylate, an inhibitor of protein kinase C (PKC) β, and its role to potentially reduce the development and/or the progression of diabetic microvascular complications. DATA SOURCES: Primary literature was obtained via a MEDLINE search (1966–August 2004) and through review of pertinent abstracts and presentations at major medical meetings. STUDY SELECTION AND DATA EXTRACTION: Literature relevant to PKC physiology, the pharmacokinetics of ruboxistaurin, and data evaluating the use of ruboxistaurin in treating diabetic microvascular complications in human and relevant animal models was reviewed. DATA SYNTHESIS: PKC is part of a group of intracellular signaling molecules activated in response to various specific hormonal, neuronal, and growth factor stimuli. Hyperglycemia leads to PKC β 1 and 2 isoform activation, which experimentally has been shown to contribute to the development and progression of diabetic microvascular complications (retinopathy, nephropathy, neuropathy) through various biochemical mechanisms. Animal and/or human studies using ruboxistaurin mesylate, a novel, highly selective inhibitor of PKC β, have shown delay in the progression and, in some cases, reversal of diabetic retinopathy, nephropathy, and neuropathy. CONCLUSIONS: Ruboxistaurin mesylate, by inhibiting excessive activation of certain PKC isoforms, has the potential to reduce the burden of microvascular complications for patients with diabetes.

Publisher

SAGE Publications

Subject

Pharmacology (medical)

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