Literature DB >> 21352910

Adsorption of insulin with varying self-association profiles to a solid Teflon surface--influence on protein structure, fibrillation tendency and thermal stability.

Lene Jorgensen1, Pernille Bennedsen, Søren Vrønning Hoffmann, Rasmus Linnemann Krogh, Charlotte Pinholt, Minna Groenning, Susanne Hostrup, Jens T Bukrinsky.   

Abstract

Interfaces are present in the preparation of pharmaceutical products and are well known for having an influence on the physical stability of proteins. The aim of this study was to examine the conformation (i.e. secondary and tertiary structures) and fibrillation tendency, overall aggregation tendency and thermal stability of adsorbed human insulin at a solid particulate Teflon surface. The effects of changes in the association degree of insulin on the structure and stability have been determined. Using SEC-HPLC, association profiles were determined for insulin aspart, zinc-free human insulin and human insulin with two Zn(2+) per hexamer in concentrations ranging from 0.1 mg/ml to 20 mg/ml. Insulin aspart was 100% monomeric, regardless of concentration. In contrast, human insulin went from 100% monomer to 80% hexamer, and 20% dimer/monomer and zinc-free human insulin from 100% monomer to 70% dimer and 30% monomer with increasing concentration. The secondary structure of the insulins changed upon adsorption, but only minor differences were observed among the insulins. Structural changes were observed when the insulin-surface ratio was varied, but at no point did the structure resemble that of fibrillated insulin in solution. The presence of particles resulted in increased fibrillation of human insulin. The lag-time of fibrillation decreased, when the amount of particles present was increased. In conclusion, the type and association degree of the three insulin variants has no major influence on the secondary structure observed after adsorption of insulin at the solid Teflon surface. However, the presence of particles increases the tendency of insulin to fibrillate.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21352910     DOI: 10.1016/j.ejps.2011.02.007

Source DB:  PubMed          Journal:  Eur J Pharm Sci        ISSN: 0928-0987            Impact factor:   4.384


  6 in total

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Journal:  J Diabetes Sci Technol       Date:  2013-11-01

2.  In vitro and in vivo evaluation of silicated hydroxyapatite and impact of insulin adsorption.

Authors:  M Lasgorceix; A M Costa; E Mavropoulos; M Sader; M Calasans; M N Tanaka; A Rossi; C Damia; R Chotard-Ghodsnia; E Champion
Journal:  J Mater Sci Mater Med       Date:  2014-05-25       Impact factor: 3.896

3.  Capacity of Infusion Lines for Insulin Adsorption: Effect of Flow Rate on Total Adsorption.

Authors:  Jennifer L Knopp; Kaia Bishop; Theodore Lerios; J Geoffrey Chase
Journal:  J Diabetes Sci Technol       Date:  2019-09-27

4.  Insulin adsorption on functionalized silica surfaces: an accelerated molecular dynamics study.

Authors:  Marjan A Nejad; Herbert M Urbassek
Journal:  J Mol Model       Date:  2018-03-09       Impact factor: 1.810

5.  How Do Gyrating Beads Accelerate Amyloid Fibrillization?

Authors:  Alireza Abdolvahabi; Yunhua Shi; Sanaz Rasouli; Corbin M Croom; Aleksandra Chuprin; Bryan F Shaw
Journal:  Biophys J       Date:  2017-01-24       Impact factor: 4.033

Review 6.  Protein/Peptide Aggregation and Amyloidosis on Biointerfaces.

Authors:  Qi Lu; Qiuhan Tang; Yuting Xiong; Guangyan Qing; Taolei Sun
Journal:  Materials (Basel)       Date:  2016-08-30       Impact factor: 3.623

  6 in total

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