Quality Monitoring of Porous Zein Scaffolds: A Novel Biomaterial

Our previous studies have shown that zein has good biocompatibility and good mechanical properties. The first product from a porous scaffold of zein, a resorbable bone substitute, has passed the biological evaluation of medical devices (ISO 10993) by the China Food and Drug Administration. However,...

Full description

Bibliographic Details
Published in:Engineering
Main Authors: Yue Zhang, Wei-Ying Li, Run Lan, Jin-Ye Wang
Format: Article
Language:English
Published: Elsevier 2017-02-01
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S209580991730142X
_version_ 1849326184067760128
author Yue Zhang
Wei-Ying Li
Run Lan
Jin-Ye Wang
author_facet Yue Zhang
Wei-Ying Li
Run Lan
Jin-Ye Wang
author_sort Yue Zhang
collection DOAJ
container_title Engineering
description Our previous studies have shown that zein has good biocompatibility and good mechanical properties. The first product from a porous scaffold of zein, a resorbable bone substitute, has passed the biological evaluation of medical devices (ISO 10993) by the China Food and Drug Administration. However, Class III medical devices need quality monitoring before being placed on the market, and such monitoring includes quality control of raw materials, choice of sterilization method, and evaluation of biocompatibility. In this paper, we investigated four sources of zein through amino acid analysis (AAA) and sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) in order to monitor the composition and purity, and control the quality of raw materials. We studied the effect of three kinds of sterilization method on a porous zein scaffold by SDS-PAGE. We also compared the changes in SDS-PAGE patterns when irradiated with different doses of gamma radiation. We found that polymerization or breakage did not occur on peptide chains of zein during gamma-ray (γ-ray) sterilization in the range of 20–30 kGy, which suggested that γ-ray sterilization is suitable for porous zein scaffolds. Regarding cell compatibility, we found a difference between using a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) assay and a cell-counting kit-8 (CCK-8) assay to assess cell proliferation on zein film, and concluded that the CCK-8 assay is more suitable, due to its low background optical density.
format Article
id doaj-art-00a3b1af65a34867abdbdffbb203797e
institution Directory of Open Access Journals
issn 2095-8099
language English
publishDate 2017-02-01
publisher Elsevier
record_format Article
spelling doaj-art-00a3b1af65a34867abdbdffbb203797e2025-09-02T00:07:35ZengElsevierEngineering2095-80992017-02-013113013510.1016/J.ENG.2017.01.001Quality Monitoring of Porous Zein Scaffolds: A Novel BiomaterialYue ZhangWei-Ying LiRun LanJin-Ye WangOur previous studies have shown that zein has good biocompatibility and good mechanical properties. The first product from a porous scaffold of zein, a resorbable bone substitute, has passed the biological evaluation of medical devices (ISO 10993) by the China Food and Drug Administration. However, Class III medical devices need quality monitoring before being placed on the market, and such monitoring includes quality control of raw materials, choice of sterilization method, and evaluation of biocompatibility. In this paper, we investigated four sources of zein through amino acid analysis (AAA) and sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) in order to monitor the composition and purity, and control the quality of raw materials. We studied the effect of three kinds of sterilization method on a porous zein scaffold by SDS-PAGE. We also compared the changes in SDS-PAGE patterns when irradiated with different doses of gamma radiation. We found that polymerization or breakage did not occur on peptide chains of zein during gamma-ray (γ-ray) sterilization in the range of 20–30 kGy, which suggested that γ-ray sterilization is suitable for porous zein scaffolds. Regarding cell compatibility, we found a difference between using a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) assay and a cell-counting kit-8 (CCK-8) assay to assess cell proliferation on zein film, and concluded that the CCK-8 assay is more suitable, due to its low background optical density.http://www.sciencedirect.com/science/article/pii/S209580991730142XZeinAmino acid analysisSDS-PAGEGamma-ray sterilizationMTT assayCCK-8 assay
spellingShingle Yue Zhang
Wei-Ying Li
Run Lan
Jin-Ye Wang
Quality Monitoring of Porous Zein Scaffolds: A Novel Biomaterial
Zein
Amino acid analysis
SDS-PAGE
Gamma-ray sterilization
MTT assay
CCK-8 assay
title Quality Monitoring of Porous Zein Scaffolds: A Novel Biomaterial
title_full Quality Monitoring of Porous Zein Scaffolds: A Novel Biomaterial
title_fullStr Quality Monitoring of Porous Zein Scaffolds: A Novel Biomaterial
title_full_unstemmed Quality Monitoring of Porous Zein Scaffolds: A Novel Biomaterial
title_short Quality Monitoring of Porous Zein Scaffolds: A Novel Biomaterial
title_sort quality monitoring of porous zein scaffolds a novel biomaterial
topic Zein
Amino acid analysis
SDS-PAGE
Gamma-ray sterilization
MTT assay
CCK-8 assay
url http://www.sciencedirect.com/science/article/pii/S209580991730142X
work_keys_str_mv AT yuezhang qualitymonitoringofporouszeinscaffoldsanovelbiomaterial
AT weiyingli qualitymonitoringofporouszeinscaffoldsanovelbiomaterial
AT runlan qualitymonitoringofporouszeinscaffoldsanovelbiomaterial
AT jinyewang qualitymonitoringofporouszeinscaffoldsanovelbiomaterial