On the mechanisms of biocompatibility

被引:2219
作者
Williams, David F. [1 ,2 ]
机构
[1] Univ Liverpool, Liverpool L69 3BX, Merseyside, England
[2] Tsinghua Univ, Beijing 100084, Peoples R China
基金
英国医学研究理事会; 英国生物技术与生命科学研究理事会;
关键词
foreign body response; inflammation; implant; scaffold; biodegradation;
D O I
10.1016/j.biomaterials.2008.04.023
中图分类号
R318 [生物医学工程];
学科分类号
0831 [生物医学工程];
摘要
The manner in which a mutually acceptable co-existence of biomaterials and tissues is developed and sustained has been the focus of attention in biomaterials science for many years, and forms the foundation of the subject of biocompatibility. There are many ways in which materials and tissues can be brought into contact such that this co-existence may be compromised, and the search for biomaterials that are able to provide for the best performance in devices has been based upon the understanding of all the interactions within biocompatibility phenomena. Our understanding of the mechanisms of biocompatibility has been restricted whilst the focus of attention has been long-term implantable devices. In this paper, over 50 years of experience with such devices is analysed and it is shown that, in the vast majority of circumstances, the sole requirement for biocompatibility in a medical device intended for long-term contact with the tissues of the human body is that the material shall do no harm to those tissues, achieved through chemical and biological inertness. Rarely has an attempt to introduce biological activity into a biomaterial been clinically successful in these applications. This essay then turns its attention to the use of biomaterials in tissue engineering, sophisticated cell, drug and gene delivery systems and applications in biotechnology, and shows that here the need for specific and direct interactions between biomaterials and tissue components has become necessary, and with this a new paradigm for biocompatibility has emerged. It is believed that once the need for this change is recognised, so our understanding of the mechanisms of biocompatibility will markedly improve. (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2941 / 2953
页数:13
相关论文
共 136 条
[1]
A late complication following the insertion of hydrogel breast implants [J].
Adams, Titus S. T. ;
Crook, Timothy ;
Cadier, Michael A. M. .
JOURNAL OF PLASTIC RECONSTRUCTIVE AND AESTHETIC SURGERY, 2007, 60 (02) :210-212
[2]
MECHANISMS OF POLYMER DEGRADATION IN IMPLANTABLE DEVICES .2. POLY(DL-LACTIC ACID) [J].
ALI, SAM ;
DOHERTY, PJ ;
WILLIAMS, DF .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 1993, 27 (11) :1409-1418
[3]
Biodegradation and biocompatibility of PLA and PLGA microspheres [J].
Anderson, JM ;
Shive, MS .
ADVANCED DRUG DELIVERY REVIEWS, 1997, 28 (01) :5-24
[4]
Cartilage repair using an in vitro generated scaffold-free tissue-engineered construct derived from porcine synovial mesenchymal stem cells [J].
Ando, Wataru ;
Tateishi, Kosuke ;
Hart, David A. ;
Katakai, Daisuke ;
Tanaka, Yoshinari ;
Nakata, Ken ;
Hashimoto, Jun ;
Fujie, Hiromichi ;
Shino, Konsel ;
Yoshikawa, Hideki ;
Nakamura, Norimasa .
BIOMATERIALS, 2007, 28 (36) :5462-5470
[5]
The porous-coated anatomic total hip prosthesis: Failure of the metal-backed acetabular component [J].
Astion, DJ ;
Saluan, P ;
Stulberg, BN ;
Rimnac, CM ;
Li, S .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 1996, 78A (05) :755-766
[6]
Morphologic study of small intestinal submucosa as a body wall repair device [J].
Badylak, S ;
Kokini, K ;
Tullius, B ;
Simmons-Byrd, A ;
Morff, R .
JOURNAL OF SURGICAL RESEARCH, 2002, 103 (02) :190-202
[7]
The pathology of total joint arthroplasty I. Mechanisms of implant fixation [J].
Bauer, TW ;
Schils, J .
SKELETAL RADIOLOGY, 1999, 28 (08) :423-432
[8]
LATE DEGRADATION TISSUE-RESPONSE TO POLY(L-LACTIDE) BONE PLATES AND SCREWS [J].
BERGSMA, JE ;
DEBRUIJN, WC ;
ROZEMA, FR ;
BOS, RRM ;
BOERING, G .
BIOMATERIALS, 1995, 16 (01) :25-31
[9]
Hydrophilic nanofibrous structure of polylactide; fabrication and cell affinity [J].
Bhattarai, Shanta Raj ;
Bhattarai, Narayan ;
Viswanathamurthi, Periasamy ;
Yi, Ho Keun ;
Hwang, Pyoung Han ;
Kim, Hak Yong .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2006, 78A (02) :247-257
[10]
Synthesis of two-component injectable polyurethanes for bone tissue engineering [J].
Bonzani, Ian C. ;
Adhikari, Raju ;
Houshyar, Shadi ;
Mayadunne, Roshan ;
Gunatillake, Pathiraja ;
Stevens, Molly M. .
BIOMATERIALS, 2007, 28 (03) :423-433