HO-responsive VEGF/NGF gene co-delivery nano-system achieves stable vascularization in ischemic hindlimbs.

J Nanobiotechnology

Tianjin Key Laboratory of Biomaterial Research, Institute of Biomedical Engineering, Chinese Academy of Medical Science and Peking Union Medical College, 236 Baidi Road, Tianjin, 300192, People's Republic of China.

Published: March 2022

AI Article Synopsis

  • Peripheral vascular disease (PVD) is often caused by atherosclerosis and VEGF gene therapy shows potential for its treatment, but limitations exist.
  • Recent research explores the co-delivery of VEGF and nerve growth factor (NGF) using specially designed nanoparticles (VEGF/NGF-NPs) that respond to a harmful environment in the body.
  • Results suggest that these nanoparticles improve blood flow and support vascular health by promoting angiogenesis, showing promise as a new treatment for PVD.

Article Abstract

Peripheral vascular disease (PVD) is a common clinical manifestation of atherosclerosis. Vascular endothelial growth factor (VEGF) gene therapy is a promising approach for PVD treatment. However, due to single-gene therapy limitations and high HO pathological microenvironment, VEGF gene therapy are not as expectations and its clinical application are limited. Synergistic effects of Nerve factors and vascular factors in angiogenesis have attracted attention in recent years. In this study, VEGF and nerve growth factor (NGF) genes co-delivery nanoparticles (VEGF/NGF-NPs) were prepared by using HO responsive 6s-PLGA-Po-PEG as a carrier. 6s-PLGA-Po-PEG could react with HO specifically due to the internal peroxalate bond. Angiogenic effects of VEGF/NGF-NPs has been evaluated in cells and hindlimb ischemia mice model. Results showed that VEGF/NGF-NPs promoted VEGF and NGF co-expression simultaneously, eliminated excessive HO, strengthened reactions between SH-SY5Ys and HUVECs, and finally enhanced migration, tube formation, proliferation and HO damage resistance of HUVECs. VEGF/NGF-NPs also recovered blood perfusion, promoted the expression of VEGF, NGF, eNOS and NO, and enhanced vascular coverage of pericytes. Treatment effects of VEGF/NGF-NPs may related to VEGF/eNOS/NO pathway. Altogether, VEGF/NGF-NPs eliminated excessive HO while achieving gene co-delivery, and promoted stable angiogenesis. It's a promising way for PVD treatment by using VEGF/NGF-NPs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8934504PMC
http://dx.doi.org/10.1186/s12951-022-01328-6DOI Listing

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