Therapeutic angiogenesis is an emerging paradigm for the management of ischemic pathologies. Proangiogenic Therapy is limited, however, by the current inability to deliver angiogenic factors in a sustained manner at the site of pathology. In this study, we investigated a unique nonglycosylated active fragment of hepatocyte growth factor/scatter factor, 1K1, which acts as a potent angiogenic agent in vitro and in a zebrafish embryo and a murine matrigel implant model. Furthermore, we demonstrate that nanoformulating 1K1 for sustained release temporally alters downstream signaling through the mitogen activated protein kinase pathway, and amplifies the angiogenic outcome. Merging protein engineering and nanotechnology offers exciting possibilities for the treatment of ischemic disease, and furthermore allows the selective targeting of downstream signaling pathways, which translates into discrete phenotypes.

Coupling growth-factor engineering with nanotechnology for therapeutic angiogenesis

DE JONGE, HUGO;GHERARDI, ERMANNO;
2010-01-01

Abstract

Therapeutic angiogenesis is an emerging paradigm for the management of ischemic pathologies. Proangiogenic Therapy is limited, however, by the current inability to deliver angiogenic factors in a sustained manner at the site of pathology. In this study, we investigated a unique nonglycosylated active fragment of hepatocyte growth factor/scatter factor, 1K1, which acts as a potent angiogenic agent in vitro and in a zebrafish embryo and a murine matrigel implant model. Furthermore, we demonstrate that nanoformulating 1K1 for sustained release temporally alters downstream signaling through the mitogen activated protein kinase pathway, and amplifies the angiogenic outcome. Merging protein engineering and nanotechnology offers exciting possibilities for the treatment of ischemic disease, and furthermore allows the selective targeting of downstream signaling pathways, which translates into discrete phenotypes.
2010
Biochemistry & Biophysics
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
107
13608
13613
6
An interdisciplinary research paper in which the combination of protein engineering of the polypeptide growth factor HGF/SF and the use of nanoparticles achieves sustained angiogenesis in vivo.
protein egineering; growth factors/ angiogenesis
14
info:eu-repo/semantics/article
262
R., Sinha Roy; S., Soni; R., Harfouche; P. R., Vasudevan; O., Holmes; DE JONGE, Hugo; A., Rowe; A., Paraskar; D. M., Hentschel; D., Chirgadze; T. L., ...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/409931
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