4.6 Article Proceedings Paper

A nanoemulsion/micelles mixed nanosystem for the oral administration of hydrophobically modified insulin

期刊

DRUG DELIVERY AND TRANSLATIONAL RESEARCH
卷 11, 期 2, 页码 524-545

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s13346-021-00920-x

关键词

Oral; Peptide; Insulin; Nanocarrier; Nanoemulsion; Micelles

资金

  1. European Union's Seventh Framework Programme (FP7/2007-2013) for research, technological development, and demonstration [281035]
  2. Xunta de Galicia [ED431C 2017/09]
  3. FPU program from the Ministry of Education, Culture and Sports, MECD, Spain [FPU13/02015]

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The study developed and characterized a novel nanoemulsion for oral delivery of hydrophobically modified insulin. The nanoemulsion showed good stability, miscibility, and mucodiffusive behavior in vitro, as well as high interaction and internalization in cell cultures. Additionally, it demonstrated a moderate hypoglycemic response in both healthy and diabetic rat models.
The potential of nanoemulsions for the oral administration of peptides is still in its early stage. The aim of the present work was to rationally design, develop, and fully characterize a new nanoemulsion (NE) intended for the oral administration of hydrophobically modified insulin (HM-insulin). Specific components of the NE were selected based on their enhancing permeation properties as well as their ability to improve insulin association efficiency ( Miglyol 812, sodium taurocholate), stability in the intestinal fluids, and mucodiffusion (PEGylated phospholipids and poloxamer 407). The results showed that the NE co-existed with a population of micelles, forming a mixed system that exhibited a 100% of HM-insulin association efficiency. The nanosystem showed good stability and miscibility in different bio-relevant media and displayed an acceptable mucodiffusive behavior in porcine mucus. In addition, it exhibited a high interaction with cell mono-cultures (Caco-2 and C2BBe1 human colon carcinoma Caco-2 clone cells) and co-cultures (C2BBe1 human colon carcinoma Caco-2 clone/HT29-MTX cells). The internalization in Caco-2 monolayers was also confirmed by confocal microscopy. Finally, the promising in vitro behavior of the nanosystem in terms of overcoming the biological barriers of the intestinal tract was translated into a moderate, although significant, hypoglycemic response (approximate to 20-30%), following intestinal administration to both healthy and diabetic rat models. Overall, this information underlines the crucial steps to address when designing peptide-based nanoformulations to successfully overcome the intestinal barriers associated to the oral modality of administration.

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