Engineered antibody fragments and the rise of single domains

被引:1432
作者
Holliger, P
Hudson, PJ
机构
[1] MRC, Mol Biol Lab, Cambridge CB2 2QH, England
[2] CSIRO, Mol & Hlth Technol & Cooperat Res Ctr Diagnost, Parkville, Vic 3052, Australia
关键词
D O I
10.1038/nbt1142
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
With 18 monoclonal antibody (mAb) products currently on the market and more than 100 in clinical trials, it is clear that engineered antibodies have come of age as biopharmaceuticals. In fact, by 2008, engineered antibodies are predicted to account for > 30% of all revenues in the biotechnology market. Smaller recombinant antibody fragments ( for example, classic monovalent antibody fragments (Fab, scFv) and engineered variants (diabodies, triabodies, minibodies and single-domain antibodies) are now emerging as credible alternatives. Smaller recombinant antibody fragments ( for example, classic monovalent antibody fragments ( Fab, scFv)) and engineered variants ( diabodies, triabodies, minibodies and single-domain antibodies) are now emerging as credible alternatives. These fragments retain the targeting specificity of whole mAbs but can be produced more economically and possess other unique and superior properties for a range of diagnostic and therapeutic applications. Antibody fragments have been forged into multivalent and multispecific reagents, linked to therapeutic payloads ( such as radionuclides, toxins, enzymes, liposomes and viruses) and engineered for enhanced therapeutic efficacy. Recently, single antibody domains have been engineered and selected as targeting reagents against hitherto immunosilent cavities in enzymes, receptors and infectious agents. Single-domain antibodies are anticipated to significantly expand the repertoire of antibody-based reagents against the vast range of novel biomarkers being discovered through proteomics. As this review aims to show, there is tremendous potential for all antibody fragments either as robust diagnostic reagents ( for example in biosensors), or as nonimmunogenic in vivo biopharmaceuticals with superior biodistribution and blood clearance properties.
引用
收藏
页码:1126 / 1136
页数:11
相关论文
共 128 条
[1]   Structure of a γδ T cell receptor in complex with the nonclassical MHC T22 [J].
Adams, EJ ;
Chien, YH ;
Garcia, KC .
SCIENCE, 2005, 308 (5719) :227-231
[2]   A single treatment of yttrium-90-labeled CHX-A"-C6.5 diabody inhibits the growth of established human tumor xenografts in immunodeficient mice [J].
Adams, GP ;
Shaller, CC ;
Dadachova, E ;
Simmons, HH ;
Horak, EM ;
Tesfaye, A ;
Klein-Szanto, AJP ;
Marks, JD ;
Brechbiel, MW ;
Weiner, LM .
CANCER RESEARCH, 2004, 64 (17) :6200-6206
[3]   Single-chain antibody and its derivatives directed against vascular endothelial growth factor: application for antiangiogenic gene therapy [J].
Afanasieva, TA ;
Wittmer, M ;
Vitaliti, A ;
Ajmo, M ;
Neri, D ;
Klemenz, R .
GENE THERAPY, 2003, 10 (21) :1850-1859
[4]   Antigen binding and stability properties of non-covalently linked anti-CD22 single-chain Fv dimers [J].
Arndt, MAE ;
Krauss, R ;
Rybak, SM .
FEBS LETTERS, 2004, 578 (03) :257-261
[5]   HA22 (R490A) is a recombinant immunotoxin with increased antitumor activity without an increase in animal toxicity [J].
Bang, S ;
Nagata, S ;
Onda, M ;
Kreitman, RJ ;
Pastan, I .
CLINICAL CANCER RESEARCH, 2005, 11 (04) :1545-1550
[6]   ESCHERICHIA-COLI SECRETION OF AN ACTIVE CHIMERIC ANTIBODY FRAGMENT [J].
BETTER, M ;
CHANG, CP ;
ROBINSON, RR ;
HORWITZ, AH .
SCIENCE, 1988, 240 (4855) :1041-1043
[7]   A novel bispecific tetravalent antibody fusion protein to target costimulatory activity for T-cell activation to tumor cells overexpressing ErbB2/HER2 [J].
Biburger, M ;
Weth, R ;
Wels, WS .
JOURNAL OF MOLECULAR BIOLOGY, 2005, 346 (05) :1299-1311
[8]   Engineered proteins as specific binding reagents [J].
Binz, HK ;
Plückthun, A .
CURRENT OPINION IN BIOTECHNOLOGY, 2005, 16 (04) :459-469
[9]   SINGLE-CHAIN ANTIGEN-BINDING PROTEINS [J].
BIRD, RE ;
HARDMAN, KD ;
JACOBSON, JW ;
JOHNSON, S ;
KAUFMAN, BM ;
LEE, SM ;
LEE, T ;
POPE, SH ;
RIORDAN, GS ;
WHITLOW, M .
SCIENCE, 1988, 242 (4877) :423-426
[10]   Induction of human T lymphocyte cytotoxicity and inhibition of tumor growth by tumor-specific diabody-based molecules secreted from gene-modified bystander cells [J].
Blanco, B ;
Holliger, P ;
Vile, RG ;
Alvarez-Vallina, L .
JOURNAL OF IMMUNOLOGY, 2003, 171 (02) :1070-1077