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Usage Information

Reversal of experimental diabetic neuropathy by VEGF gene transfer
Peter Schratzberger, Dirk H. Walter, Kilian Rittig, Ferdinand H. Bahlmann, Roberto Pola, Cynthia Curry, Marcy Silver, Joseph G. Krainin, David H. Weinberg, Allan H. Ropper, Jeffrey M. Isner
Peter Schratzberger, Dirk H. Walter, Kilian Rittig, Ferdinand H. Bahlmann, Roberto Pola, Cynthia Curry, Marcy Silver, Joseph G. Krainin, David H. Weinberg, Allan H. Ropper, Jeffrey M. Isner
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Article

Reversal of experimental diabetic neuropathy by VEGF gene transfer

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Abstract

The pathogenetic basis for diabetic neuropathy has been enigmatic. Using two different animal models of diabetes, we have investigated the hypothesis that experimental diabetic neuropathy results from destruction of the vasa nervorum and can be reversed by administration of an angiogenic growth factor. Nerve blood flow, as measured by laser Doppler imaging or direct detection of a locally administered fluorescent lectin analogue, was markedly attenuated in rats with streptozotocin-induced diabetes, consistent with a profound reduction in the number of vessels observed. A severe peripheral neuropathy developed in parallel, characterized by significant slowing of motor and sensory nerve conduction velocities, compared with nondiabetic control animals. In contrast, 4 weeks after intramuscular gene transfer of plasmid DNA encoding VEGF-1 or VEGF-2, vascularity and blood flow in the nerves of treated animals were similar to those of nondiabetic control rats; constitutive overexpression of both transgenes resulted in restoration of large and small fiber peripheral nerve function. Similar experiments performed in a rabbit model of alloxan-induced diabetes produced comparable results. These findings support the notion that diabetic neuropathy results from microvascular ischemia involving the vasa nervorum and suggest the feasibility of a novel treatment strategy for patients in whom peripheral neuropathy constitutes a secondary complication of diabetes.

Authors

Peter Schratzberger, Dirk H. Walter, Kilian Rittig, Ferdinand H. Bahlmann, Roberto Pola, Cynthia Curry, Marcy Silver, Joseph G. Krainin, David H. Weinberg, Allan H. Ropper, Jeffrey M. Isner

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Usage data is cumulative from August 2025 through August 2026.

Usage JCI PMC
Text version 1,114 79
PDF 224 16
Figure 768 15
Table 263 0
Citation downloads 196 0
Totals 2,565 110
Total Views 2,675
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Usage information is collected from two different sources: this site (JCI) and Pubmed Central (PMC). JCI information (compiled daily) shows human readership based on methods we employ to screen out robotic usage. PMC information (aggregated monthly) is also similarly screened of robotic usage.

Various methods are used to distinguish robotic usage. For example, Google automatically scans articles to add to its search index and identifies itself as robotic; other services might not clearly identify themselves as robotic, or they are new or unknown as robotic. Because this activity can be misinterpreted as human readership, data may be re-processed periodically to reflect an improved understanding of robotic activity. Because of these factors, readers should consider usage information illustrative but subject to change.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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