INZ-701 Prevents Ectopic Tissue Calcification and Restores Bone Architecture and Growth in ENPP1-Deficient Mice

被引:27
作者
Cheng, Zhiliang [1 ]
O'Brien, Kevin [1 ]
Howe, Jennifer [1 ]
Sullivan, Caitlin [1 ]
Schrier, Denis [1 ]
Lynch, Angela [1 ]
Jungles, Steven [1 ]
Sabbagh, Yves [1 ]
Thompson, David [1 ]
机构
[1] Inozyme Pharma, 321 Summer St,Suite 400, Boston, MA 02210 USA
关键词
BONE QCT; MICROCT; PRECLINICAL STUDIES; OSTEOMALACIA AND RICKETS; THERAPEUTICS; DISORDERS OF CALCIUM; PHOSPHATE METABOLISM; GENERALIZED ARTERIAL CALCIFICATION; INORGANIC PYROPHOSPHATE; PHOSPHODIESTERASE-I; ENPP1; MINERALIZATION; INFANCY; PLASMA; MODEL; MUTATIONS; PHOSPHATE;
D O I
10.1002/jbmr.4315
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Ectonucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1) is the major enzyme that cleaves extracellular adenosine triphosphate (ATP) to generate pyrophosphate (PPi), an inorganic metabolite with potent anticalcification activity. Loss-of-function mutations cause hypopyrophosphatemia and lead to a state of ENPP1 deficiency, which has an acute infantile phase known as generalized arterial calcification of infancy (GACI) and a pediatric to adult phase known as autosomal-recessive hypophosphatemic rickets type 2 (ARHR2). ENPP1 deficiency manifests as ectopic calcification of multiple tissues, neointimal proliferation, premature mortality, impaired growth, and bone deformities. INZ-701, a human ENPP1-Fc protein, is in clinical development as an enzyme replacement therapy for the treatment of ENPP1 deficiency. The pharmacokinetic and pharmacodynamic profile and therapeutic effect of INZ-701 were investigated in Enpp1(asj/asj) mice, a murine model of ENPP1 deficiency. Enpp1(asj/asj) mice have undetectable plasma PPi, lower plasma phosphate, and higher FGF23 levels compared with wild-type (WT) mice. Enpp1(asj/asj) mice on the acceleration diet, containing high phosphate and low magnesium, quickly develop clinical signs, including dehydration, rough hair coat, pinned ears, stiffed legs, and hunched back. Enpp1(asj/asj) mice treated with vehicle had aforementioned clinical signs plus severe ectopic calcification in multiple tissues and bone defects, characteristics of the clinical phenotype observed in GACI and ARHR2 patients. Our results showed a durable PPi response for more than 3 days after a single dose of INZ-701. Treatment of ENPP1-deficient mice every other day with INZ-701 for 8 weeks restored circulating levels of PPi, prevented pathological calcification in all the tested organs, restored growth parameters, corrected bone defects, improved clinical signs, and decreased mortality in Enpp1(asj/asj) mice, demonstrating the potential of INZ-701 to treat ENPP1 deficiency. (c) 2021 American Society for Bone and Mineral Research (ASBMR).
引用
收藏
页码:1594 / 1604
页数:11
相关论文
共 40 条
[21]   ENPP1 enzyme replacement therapy improves blood pressure and cardiovascular function in a mouse model of generalized arterial calcification of infancy [J].
Khan, Tayeba ;
Sinkevicius, Kerstin W. ;
Vong, Sylvia ;
Avakian, Arlen ;
Leavitt, Markley C. ;
Malanson, Hunter ;
Marozsan, Andre ;
Askew, Kim L. .
DISEASE MODELS & MECHANISMS, 2018, 11 (10)
[22]  
Li LY, 2014, NAT CHEM BIOL, V10, P1043, DOI [10.1038/NChemBio.1661, 10.1038/nchembio.1661]
[23]   Mineral content of the maternal diet influences ectopic mineralization in offspring of Abcc6-/- mice [J].
Li, Qiaoli ;
Kingman, Joshua ;
Uitto, Jouni .
CELL CYCLE, 2015, 14 (19) :3184-3189
[24]   Mutant Enpp1asj mice as a model for generalized arterial calcification of infancy [J].
Li, Qiaoli ;
Guo, Haitao ;
Chou, David W. ;
Berndt, Annerose ;
Sundberg, John P. ;
Uitto, Jouni .
DISEASE MODELS & MECHANISMS, 2013, 6 (05) :1227-1235
[25]   Identification of a Soybean MOTHER OF FT AND TFL1 Homolog Involved in Regulation of Seed Germination [J].
Li, Qing ;
Fan, Chengming ;
Zhang, Xiaomei ;
Wang, Xu ;
Wu, Faqiang ;
Hu, Ruibo ;
Fu, Yongfu .
PLOS ONE, 2014, 9 (06)
[26]   Therapeutic management of hypophosphatemic rickets from infancy to adulthood [J].
Linglart, Agnes ;
Biosse-Duplan, Martin ;
Briot, Karine ;
Chaussain, Catherine ;
Esterle, Laure ;
Guillaume-Czitrom, Severine ;
Kamenicky, Peter ;
Nevoux, Jerome ;
Prie, Dominique ;
Rothenbuhler, Anya ;
Wicart, Philippe ;
Harvengt, Pol .
ENDOCRINE CONNECTIONS, 2014, 3 (01) :R13-R30
[27]   Loss-of-Function ENPP1 Mutations Cause Both Generalized Arterial Calcification of Infancy and Autosomal-Recessive Hypophosphatemic Rickets [J].
Lorenz-Depiereux, Bettina ;
Schnabel, Dirk ;
Tiosano, Dov ;
Haeusler, Gabriele ;
Strom, Tim M. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2010, 86 (02) :267-272
[28]   Altered Bone Development and an Increase in FGF-23 Expression in Enpp1-/- Mice [J].
Mackenzie, Neil Charles Wallace ;
Zhu, Dongxing ;
Milne, Elspeth M. ;
van 't Hof, Rob ;
Martin, Aline ;
Quarles, Darryl Leigh ;
Millan, Jose Luis ;
Farquharson, Colin ;
MacRae, Vicky Elisabeth .
PLOS ONE, 2012, 7 (02)
[29]   Association of the human NPPS gene with ossification of the posterior longitudinal ligament of the spine (OPLL) [J].
Nakamura, I ;
Ikegawa, S ;
Okawa, A ;
Okuda, S ;
Koshizuka, Y ;
Kawaguchi, H ;
Nakamura, K ;
Koyama, T ;
Goto, S ;
Toguchida, J ;
Matsushita, M ;
Ochi, T ;
Takaoka, K ;
Nakamura, Y .
HUMAN GENETICS, 1999, 104 (06) :492-497
[30]   ENPP1-Fc prevents neointima formation in generalized arterial calcification of infancy through the generation of AMP [J].
Nitschke, Yvonne ;
Yan, Yan ;
Buers, Insa ;
Kintziger, Kristina ;
Askew, Kim ;
Rutsch, Frank .
EXPERIMENTAL AND MOLECULAR MEDICINE, 2018, 50 :1-12