Advancements in Gene-Based Therapeutic Angiogenesis for Chronic Limb-Threatening Ischemia

The objective of this article is to summarize the research progress and discuss the current difficulties of gene-based therapeutic angiogenesis in lower limb ischemic diseases, so as to provide new research directions for the non-invasive treatment of lower limb ischemia. The basic and clinical tria...

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Published inHuman gene therapy Vol. 36; no. 9-10; p. 787
Main Authors Wang, Peng, Di, Xiao, Li, Fengshi, Rong, Zhihua, Lian, Wenzhuo, Sun, Guoqiang, Liu, ChangWei, Ni, Leng
Format Journal Article
LanguageEnglish
Published United States 01.05.2025
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Abstract The objective of this article is to summarize the research progress and discuss the current difficulties of gene-based therapeutic angiogenesis in lower limb ischemic diseases, so as to provide new research directions for the non-invasive treatment of lower limb ischemia. The basic and clinical trials of gene-based therapeutic angiogenesis in lower limb ischemia in recent years were read and reviewed. Growth factors such as vascular endothelial growth factor, hepatocyte growth factor, and fibroblast growth factor have been extensively studied for their application in lower limb ischemic diseases. However, clinical studies across various phases have shown inconsistent efficacy endpoints. The efficacy of gene therapy remains questionable. Before exploring efficient methods of delivering pro-angiogenic genes to ischemic tissues, clarification is needed regarding whether the goal of gene therapy is to simply promote collateral circulation or create a conducive tissue microenvironment for angiogenesis. In conclusion, pre-clinical and clinical studies have demonstrated the potential of therapeutic angiogenesis, but more systematic and comprehensive research is needed to explore safer, more effective, and cost-effective treatment methods.
AbstractList The objective of this article is to summarize the research progress and discuss the current difficulties of gene-based therapeutic angiogenesis in lower limb ischemic diseases, so as to provide new research directions for the non-invasive treatment of lower limb ischemia. The basic and clinical trials of gene-based therapeutic angiogenesis in lower limb ischemia in recent years were read and reviewed. Growth factors such as vascular endothelial growth factor, hepatocyte growth factor, and fibroblast growth factor have been extensively studied for their application in lower limb ischemic diseases. However, clinical studies across various phases have shown inconsistent efficacy endpoints. The efficacy of gene therapy remains questionable. Before exploring efficient methods of delivering pro-angiogenic genes to ischemic tissues, clarification is needed regarding whether the goal of gene therapy is to simply promote collateral circulation or create a conducive tissue microenvironment for angiogenesis. In conclusion, pre-clinical and clinical studies have demonstrated the potential of therapeutic angiogenesis, but more systematic and comprehensive research is needed to explore safer, more effective, and cost-effective treatment methods.
Author Wang, Peng
Li, Fengshi
Rong, Zhihua
Liu, ChangWei
Di, Xiao
Ni, Leng
Lian, Wenzhuo
Sun, Guoqiang
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Keywords clinical trial
gene therapy
therapeutic angiogenesis
peripheral artery disease
chronic limb-threatening ischemia
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Snippet The objective of this article is to summarize the research progress and discuss the current difficulties of gene-based therapeutic angiogenesis in lower limb...
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StartPage 787
SubjectTerms Angiogenesis
Animals
Chronic Limb-Threatening Ischemia - genetics
Chronic Limb-Threatening Ischemia - therapy
Genetic Therapy - methods
Hepatocyte Growth Factor - genetics
Humans
Ischemia - genetics
Ischemia - therapy
Lower Extremity - blood supply
Lower Extremity - pathology
Neovascularization, Physiologic - genetics
Vascular Endothelial Growth Factor A - genetics
Title Advancements in Gene-Based Therapeutic Angiogenesis for Chronic Limb-Threatening Ischemia
URI https://www.ncbi.nlm.nih.gov/pubmed/40298175
Volume 36
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