Literature DB >> 32204104

Biodegradable polymer-nanoclay composites as intestinal sleeve implants installed in digestive tract for obesity and type 2 diabetes treatment.

Wei-Hsin Hsu1, Hao-Ming Chang2, Ya-Lun Lee3, Adhimoorthy Prasannan4, Chien-Chieh Hu5, Jun-Sheng Wang6, Juin-Yih Lai5, Jen Ming Yang7, Nimita Jebaranjitham8, Hsieh-Chih Tsai9.   

Abstract

Obesity and type 2 diabetes have become serious health problems in 21st century. Development of non-invasive treatment to treat obesity and type-2 diabetes is still unmet needs. For targeting on this, one of the promising treatments is to implant an intestine sleeve in the gastrointestinal tract for limitation of food absorption. In this context, biodegradable polymer intestine sleeve was composed of polycaprolactone (PCL), poly-DL-lactic acid (PDLLA) and disk-shape nano-clay (Laponite®), and fabricated as an implantable device. Here, Laponite® as a rheological additive to improve the compatibility of PCL and PDLLA, and the polymers/clay composites were also evaluated by scanning electron microscopy SEM analysis and mechanical measurements. The mass ratio 90/10/1 of PCL/PDLLA/Laponite® composite was selected for fabrication of intestine sleeve, because of the highest toughness and flexibility, which are tensile strength of 91.9 N/mm2 and tensile strain of 448% at the failure point. The prepared intestine sleeve was implanted and deployed at the duodenum in type2 diabetic rats, providing significant benefits in control of the body weight and blood glucose, while compared with the non-implanted type 2 diabetic rats. More importantly, the food intake records and histopathological section reports presented that the implanted rats still have normal appetites and no noticeable acute symptoms of inflammation in the end of the test. These appreciable performances suggested the implantation of biocompatible polymer composites has a highly potential treatment for obesity and type 2 diabetes.
Copyright © 2020 Elsevier B.V. All rights reserved.

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Keywords:  Intestine sleeve; Laponite®; Poly(D,L-lactic acid); Polycaprolactone; Type-2 diabetes

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Year:  2020        PMID: 32204104     DOI: 10.1016/j.msec.2020.110676

Source DB:  PubMed          Journal:  Mater Sci Eng C Mater Biol Appl        ISSN: 0928-4931            Impact factor:   7.328


  2 in total

1.  Nanocomposites Materials of PLA Reinforced with Nanoclays Using a Masterbatch Technology: A Study of the Mechanical Performance and Its Sustainability.

Authors:  Helena Oliver-Ortega; Josep Tresserras; Fernando Julian; Manel Alcalà; Alba Bala; Francesc Xavier Espinach; José Alberto Méndez
Journal:  Polymers (Basel)       Date:  2021-06-29       Impact factor: 4.329

2.  Poly(caprolactone)-Based Coatings on 3D-Printed Biodegradable Implants: A Novel Strategy to Prolong Delivery of Hydrophilic Drugs.

Authors:  Sarah A Stewart; Juan Domínguez-Robles; Victoria J McIlorum; Zoilo Gonzalez; Emilia Utomo; Elena Mancuso; Dimitrios A Lamprou; Ryan F Donnelly; Eneko Larrañeta
Journal:  Mol Pharm       Date:  2020-08-03       Impact factor: 4.939

  2 in total

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