4.4 Article

Recombinant Human Epidermal Growth Factor/Quatsome Nanoconjugates: A Robust Topical Delivery System for Complex Wound Healing

期刊

ADVANCED THERAPEUTICS
卷 4, 期 6, 页码 -

出版社

WILEY
DOI: 10.1002/adtp.202000260

关键词

chronic wounds; nanomedicine; nanovesicles; rhEGF; therapy

资金

  1. Spanish Ministry/FEDER project MOTHER [MAT2016-80826-R]
  2. Networking Research Center on Bioengineering, Biomaterials, and Nanomedicine (CIBER-BBN)
  3. Generalitat de Catalunya [2017SGR918]
  4. Spanish Ministry of Economy and Competitiveness by the Severo Ochoa FUNFUTURE Excellence Centre distinction [CEX2019-000917-S]
  5. European Union through FEDER project NANONAFRES [COMRDI15-1-0023]
  6. Industrial Doctorates Plan of Agaur-Generalitat de Catalunya [2018 DI 057]

向作者/读者索取更多资源

A method based on compressed CO2 was reported for obtaining nanoconjugates of recombinant human growth factor and nanovesicles called quatsomes, which show potential application in treating complex wounds.
A multitude of microparticles and nanoparticles is developed to improve the delivery of different small drugs and large biomolecules, which are subject to several hindering biological barriers that limit their optimal biodistribution and therapeutic effects. Here, a soft, reliable, and scalable method based on compressed CO2 is reported for obtaining nanoconjugates of recombinant human epidermal growth factor and nanovesicles called quatsomes, where the latter consists of cholesterol and cetyltrimethylammonium bromide. These nanoconjugates exhibit appropriate values of the major critical quality attributes of colloidal nanomedicines, such as controlled and narrow nanoscopic particle size distribution (which play important roles in determining their stability), drug loading, drug release, drug protection, targeting ability, and bioactivity. Also, they exhibit a dual action by 1) inbuilt antimicrobial activity preventing infections and 2) promoting regeneration of granulation tissue and re-epithelialization with complete closure of complex wounds. Therefore, such nanoconjugates are a potential nanomedicine for the topical treatment of complex wounds, particularly diabetic foot ulcers and venous leg ulcers.

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