Chemical crosslinking of biopolymeric scaffolds: Current knowledge and future directions of crosslinked engineered bone scaffolds

被引:361
作者
Oryan, Ahmad [1 ]
Kamali, Amir [1 ,2 ]
Moshiri, Ali [3 ]
Baharvand, Hossien [2 ,4 ]
Daemi, Hamed [5 ]
机构
[1] Shiraz Univ, Sch Vet Med, Dept Pathol, Shiraz, Iran
[2] Univ Sci & Culture, Dept Dev Biol, Tehran, Iran
[3] Iran Univ Med Sci, Razi Drug Res Ctr, Tehran, Iran
[4] ACECR, Royan Inst Stem Cell Biol & Technol, Cell Sci Res Ctr, Dept Stem Cells & Dev Biol, Tehran, Iran
[5] ACECR, Royan Inst Stem Cell Biol & Technol, Cell Sci Res Ctr, Dept Cell Engn, Tehran, Iran
关键词
Crosslinking; Biopolymeric scaffold; Bone tissue engineering; TISSUE TRANSGLUTAMINASE; BOVINE PERICARDIUM; COLLAGEN; GENIPIN; GLUTARALDEHYDE; GELATIN; CARTILAGE; HYDROGELS; MATRICES; BIOMATERIALS;
D O I
10.1016/j.ijbiomac.2017.08.184
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Bone tissue scaffolds made from either natural or synthetic polymers are employed to promote bone healing. However, lack of sufficient or poor mechanical properties such as low integrity and stability reduces their medical applications. Crosslinking, defined as induction of chemical or physical links among polymer chains, is a simple method generally used to modify mechanical, biological and degradation properties of hydrogels. Although crosslinking through chemical reactions improves the mechanical properties of bone substitutes, most of the reagents used for this aim demonstrate undesirable effects and may exert toxic reactions. Glutaraldehyde is a widely-used chemical crosslinker with unique ability to crosslink a wide variety of biomaterials; however, many contradictory views have been recently raised on its cytotoxic effects. By keeping this limit in mind, green chemicals or natural crosslinking agents have been shown to provide desired improvements in mechanical properties of bone scaffolds. Therefore, developing more efficient crosslinking materials and methods are desirable to obtain crosslinked scaffolds with perfect properties in bone tissue engineering from different biopolymers such as collagen, gelatin, cellulose, chitosan, alginate, etc. In this review, we focused on developed or developing modalities used to improve mechanical properties of various bone scaffolds and matrices based on common crosslinking reagents. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:678 / 688
页数:11
相关论文
共 110 条
[1]  
Amini Ami R., 2012, Critical Reviews in Biomedical Engineering, V40, P363
[2]   PURIFICATION AND CHARACTERISTICS OF A NOVEL TRANSGLUTAMINASE DERIVED FROM MICROORGANISMS [J].
ANDO, H ;
ADACHI, M ;
UMEDA, K ;
MATSUURA, A ;
NONAKA, M ;
UCHIO, R ;
TANAKA, H ;
MOTOKI, M .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1989, 53 (10) :2613-2617
[3]   Cytotoxic evaluation of biomechanically improved crosslinked ovine collagen on human dermal fibroblasts [J].
Awang, Mohd Amri ;
Abu Bakar, Mohd Firdaus ;
Busra, Mohd Fauzi Mh ;
Chowdhury, Shiplu Roy ;
Rajab, Nur Fadilah ;
Kamal, Wan Hamirul Wan ;
Yusof, Mohd Reusmaazran ;
Bin Saim, Aminuddin ;
Idrus, Ruszymah Bt. Hj. .
BIO-MEDICAL MATERIALS AND ENGINEERING, 2014, 24 (04) :1715-1724
[4]   Glutaraldehyde Cross linked Gelatin/hydroxyapatite Nanocomposite Scaffold, Engineered via Compound Techniques [J].
Azami, Mahmoud ;
Rabiee, Mohammad ;
Moztarzadeh, Fathollah .
POLYMER COMPOSITES, 2010, 31 (12) :2112-2120
[5]   Host response to tissue engineered devices [J].
Babensee, JE ;
Anderson, JM ;
McIntire, LV ;
Mikos, AG .
ADVANCED DRUG DELIVERY REVIEWS, 1998, 33 (1-2) :111-139
[6]   Studies on Calcification Efficacy of Stingray Fish Skin Collagen for Possible Use as Scaffold for Bone Regeneration [J].
Balakrishnan, Swarnakumari ;
Selvam, Rajamani ;
Sundar, Kavitha ;
Chittibabu, Shanthi ;
Ramamoorthy, Usha ;
Kannan, Chandra Babu Narasimhan .
TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2015, 12 (02) :98-106
[7]   Effects of different cross-linking conditions on the properties of genipin-cross-linked chitosan/collagen scaffolds for cartilage tissue engineering [J].
Bi, Long ;
Cao, Zheng ;
Hu, Yunyu ;
Song, Yang ;
Yu, Long ;
Yang, Bo ;
Mu, Jihong ;
Huang, Zhaosong ;
Han, Yisheng .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2011, 22 (01) :51-62
[8]   Heterobifunctional PEG Ligands for Bioconjugation Reactions on Iron Oxide Nanoparticles [J].
Bloemen, Maarten ;
Van Stappen, Thomas ;
Willot, Pieter ;
Lammertyn, Jeroen ;
Koeckelberghs, Guy ;
Geukens, Nick ;
Gils, Ann ;
Verbiest, Thierry .
PLOS ONE, 2014, 9 (10)
[9]   Recent advances in bone tissue engineering scaffolds [J].
Bose, Susmita ;
Roy, Mangal ;
Bandyopadhyay, Amit .
TRENDS IN BIOTECHNOLOGY, 2012, 30 (10) :546-554
[10]   Enzymatic stabilization of gelatin-based scaffolds [J].
Broderick, EP ;
O'Halloran, DM ;
Rochev, YA ;
Griffin, M ;
Collighan, RJ ;
Pandit, AS .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2005, 72B (01) :37-42