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  5. Synthesis and in vivo evaluation of insulin-loaded whey beads as an oral peptide delivery system
 
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Synthesis and in vivo evaluation of insulin-loaded whey beads as an oral peptide delivery system

Author(s)
Heade, Joanne  
McCartney, Fiona  
Chenlo, Miguel  
Brayden, David James  
et al.  
Uri
http://hdl.handle.net/10197/24875
Date Issued
2021-05-04
Date Available
2023-10-24T14:50:28Z
Abstract
For many diabetics, daily, lifelong insulin injections are required to effectively manage blood glucose levels and the complications associated with the disease. This can be a burden and reduces patient quality of life. Our goal was to develop a more convenient oral delivery system that may be suitable for insulin and other peptides. Insulin was entrapped in 1.5-mm beads made from denatured whey protein isolate (dWPI) using gelation. Beads were then air-dried with fumed silica, Aerosil®. The encapsulation efficiency was ~61% and the insulin loading was ~25 µg/mg. Dissolution in simulated gastric-, and simulated intestinal fluids (SGF, SIF) showed that ~50% of the insulin was released from beads in SGF, followed by an additional ~10% release in SIF. The omission of Aerosil® allowed greater insulin release, suggesting that it formed a barrier on the bead surface. Circular dichroism analysis of bead-released insulin revealed an unaltered secondary structure, and insulin bioactivity was retained in HepG2 cells transfected to assess activation of the endogenous insulin receptors. Insulin-entrapped beads were found to provide partial protection against pancre-atin for at least 60 min. A prototype bead construct was then synthesised using an encapsulator system and tested in vivo using a rat intestinal instillation bioassay. It was found that 50 IU/kg of entrapped insulin reduced plasma glucose levels by 55% in 60 min, similar to that induced by sub-cutaneously (s.c.)-administered insulin (1 IU/kg). The instilled insulin-entrapped beads produced a relative bioavailability of 2.2%. In conclusion, when optimised, dWPI-based beads may have potential as an oral peptide delivery system.
Sponsorship
Irish Research Council
Other Sponsorship
AnaBio Technologies Ltd
Insucaps Ltd
UCD School of Veterinary Medicine
Type of Material
Journal Article
Publisher
MDPI
Journal
Pharmaceutics
Volume
13
Issue
5
Copyright (Published Version)
2021 the Authors
Subjects

Insulin

Whey protein isolate

Oral peptide delivery...

Encapsulation

Diabetes

Intestinal permeabili...

Protein secondary str...

Intestinal absorption...

Microparticles

Nanoparticles

Instillation

DOI
10.3390/pharmaceutics13050656
Language
English
Status of Item
Peer reviewed
ISSN
1999-4923
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
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Synthesis and In Vivo Evaluation of Insulin-Loaded Whey Beads as an Oral Peptide Delivery System.pdf

Size

3.89 MB

Format

Adobe PDF

Checksum (MD5)

61b49c3c759e3aa985953b901b32bed2

Owning collection
Veterinary Medicine Research Collection
Mapped collections
Conway Institute Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
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