Haemophilia gene therapy: From trailblazer to gamechanger

被引:18
作者
Evens, H. [1 ]
Chuah, M. K. [1 ,2 ]
VandenDriessche, T. [1 ,2 ]
机构
[1] Vrije Univ Brussel VUB, Dept Gene Therapy & Regenerat Med, Fac Med & Pharm, Brussels, Belgium
[2] Univ Leuven, Dept Cardiovasc Sci, Ctr Mol & Vasc Biol, Leuven, Belgium
关键词
adeno-associated viral vectors; coagulation; CRISPR; factor IX; factor IX Padua; factor VIII; haemophilia; lentiviral; zinc finger nuclease; COAGULATION-FACTOR-IX; ADENOASSOCIATED VIRAL VECTORS; FACTOR-VIII EXPRESSION; SUSTAINED PHENOTYPIC CORRECTION; LONG-TERM EXPRESSION; IN-VIVO; LENTIVIRAL VECTORS; B DOGS; TRANSCRIPTIONAL MODULES; UNTRANSLATED REGION;
D O I
10.1111/hae.13494
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Haemophilia is an attractive disease target for gene therapy that fostered the development of the field at large. The delivery of the clotting factor genes into the patients' cells could be accomplished using different types of gene delivery vehicles or vectors. Adeno-associated viral vectors (AAV) and lentiviral vectors represent some of the most promising gene delivery technologies that allow for a relatively efficient delivery of the therapeutic FVIII and FIX transgenes into the relevant target cells. To reduce the risks associated with insertional mutagenesis due to random vector integration, gene-editing approaches have also been considered based primarily on zinc finger nuclease (ZFN) and CRISPR/Cas. However, comprehensive analysis of off-target effects is still required. It is particularly encouraging that relatively stable therapeutic FVIII or FIX expression levels were reached in severe haemophilia patients in recent clinical trials after liver-directed AAV gene therapy. This success could be ascribed in part to improvements in vector design. In particular, clotting factor levels could be increased by codon optimization of coagulation factor transgenes. Alternatively, incorporation of a hyperactive gain-of-function R338L mutation (FIX Padua) in the FIX gene improved the overall efficacy. However, some patients still show transient liver toxicity, especially at high vector doses, possibly due to inflammatory immune responses, requiring the need for transient immunosuppression. The exact immune mechanisms are not fully understood, but may at least in some patients involve an AAV-capsid specific T cell response. Moreover, there is a need to identify the key factors that contribute to the interpatient variability in therapeutic efficacy and safety after gene therapy.
引用
收藏
页码:50 / 59
页数:10
相关论文
共 128 条
[1]   Robust ZFN-mediated genome editing in adult hemophilic mice [J].
Anguela, Xavier M. ;
Sharma, Rajiv ;
Doyon, Yannick ;
Miller, Jeffrey C. ;
Li, Hojun ;
Haurigot, Virginia ;
Rohde, Michelle E. ;
Wong, Sunnie Y. ;
Davidson, Robert J. ;
Zhou, Shangzhen ;
Gregory, Philip D. ;
Holmes, Michael C. ;
High, Katherine A. .
BLOOD, 2013, 122 (19) :3283-3287
[2]   Liver gene therapy by lentiviral vectors reverses anti-factor IX pre-existing immunity in haemophilic mice [J].
Annoni, Andrea ;
Cantore, Alessio ;
Della Valle, Patrizia ;
Goudy, Kevin ;
Akbarpour, Mahzad ;
Russo, Fabio ;
Bartolaccini, Sara ;
D'Angelo, Armando ;
Roncarolo, Maria Grazia ;
Naldini, Luigi .
EMBO MOLECULAR MEDICINE, 2013, 5 (11) :1684-1697
[3]   In vivo delivery of a microRNA-regulated transgene induces antigen-specific regulatory T cells and promotes immunologic tolerance [J].
Annoni, Andrea ;
Brown, Brian D. ;
Cantore, Alessio ;
Sergi, Lucia Sergi ;
Naldini, Luigi ;
Roncarolo, Maria-Grazia .
BLOOD, 2009, 114 (25) :5152-5161
[4]   Novel approaches to hemophilia therapy: successes and challenges [J].
Arruda, Valder R. ;
Doshi, Bhavya S. ;
Samelson-Jones, Benjamin J. .
BLOOD, 2017, 130 (21) :2251-2256
[5]   Peripheral transvenular delivery of adeno-associated viral vectors to skeletal muscle as a novel therapy for hemophilia B [J].
Arruda, Valder R. ;
Stedman, Hansell H. ;
Haurigot, Virginia ;
Buchlis, George ;
Baila, Stefano ;
Favaro, Patricia ;
Chen, Yifeng ;
Franck, Helen G. ;
Zhou, Shangzhen ;
Wright, J. Fraser ;
Couto, Linda B. ;
Jiang, Haiyan ;
Pierce, Glenn F. ;
Bellinger, Dwight A. ;
Mingozzi, Federico ;
Nichols, Timothy C. ;
High, Katherine A. .
BLOOD, 2010, 115 (23) :4678-4688
[6]   Adeno-Associated Virus Type 2 and Hepatocellular Carcinoma? [J].
Berns, Kenneth I. ;
Byrne, Barry J. ;
Flotte, Terence R. ;
Gao, Guangping ;
Hauswirth, William W. ;
Herzog, Roland W. ;
Muzyczka, Nicholas ;
VandenDriessche, Thierry ;
Xiao, Xiao ;
Zolotukhin, Sergei ;
Srivastava, Arun .
HUMAN GENE THERAPY, 2015, 26 (12) :779-781
[7]   Helper-dependent adenoviral vectors mediate therapeutic factor VIII expression for several months with minimal accompanying toxicity in a canine model of severe hemophilia A [J].
Brown, BD ;
Shi, CX ;
Powell, S ;
Hurlbut, D ;
Graham, FL ;
Lillicrap, D .
BLOOD, 2004, 103 (03) :804-810
[8]   A microRNA-regulated lentiviral vector mediates stable correction of hemophilia B mice [J].
Brown, Brian D. ;
Cantore, Alessio ;
Annoni, Andrea ;
Sergi, Lucia Sergi ;
Lombardo, Angelo ;
Della Valle, Patrizia ;
D'Angelo, Armando ;
Naldini, Luigi .
BLOOD, 2007, 110 (13) :4144-4152
[9]   Bioengineered coagulation factor VIII enables long-term correction of murine hemophilia A following liver-directed adeno-associated viral vector delivery [J].
Brown, Harrison C. ;
Wright, J. Fraser ;
Zhou, Shangzhen ;
Lytle, Allison M. ;
Shields, Jordan E. ;
Spencer, H. Trent ;
Doering, Christopher B. .
MOLECULAR THERAPY-METHODS & CLINICAL DEVELOPMENT, 2014, 1 :14036
[10]   Efficient, Long-term Hepatic Gene Transfer Using Clinically Relevant HDAd Doses by Balloon Occlusion Catheter Delivery in Nonhuman Primates [J].
Brunetti-Pierri, Nicola ;
Stapleton, Gary E. ;
Law, Mark ;
Breinholt, John ;
Palmer, Donna J. ;
Zuo, Yu ;
Grove, Nathan C. ;
Finegold, Milton J. ;
Rice, Karen ;
Beaudet, Arthur L. ;
Mullins, Charles E. ;
Ng, Philip .
MOLECULAR THERAPY, 2009, 17 (02) :327-333