Engineered phage with antibacterial CRISPR-Cas selectively reduce E. coli burden in mice

被引:119
作者
Gencay, Yilmaz Emre [1 ]
Jasinskyte, Dziuginta [1 ]
Robert, Camille [1 ]
Semsey, Szabolcs [1 ]
Martinez, Virginia [1 ]
Petersen, Anders Ostergaard [1 ]
Brunner, Katja [1 ]
Torio, Ana de Santiago [1 ]
Salazar, Alex [1 ]
Turcu, Iszabela Cristiana [1 ]
Eriksen, Melissa Kviesgaard [1 ]
Koval, Lev [1 ]
Takos, Adam [1 ]
Pascal, Ricardo [1 ]
Schou, Thea Staffeldt [1 ]
Bayer, Lone [1 ]
Bryde, Tina [1 ]
Johansen, Katja Chandelle [1 ]
Bak, Emilie Glad [1 ]
Smrekar, Frenk [2 ]
Doyle, Timothy B. [3 ]
Satlin, Michael J. [4 ]
Gram, Aurelie [1 ]
Carvalho, Joana [1 ]
Jessen, Lene [1 ]
Hallstrom, Bjorn [1 ]
Hink, Jonas [1 ]
Damholt, Birgitte [1 ]
Troy, Alice [1 ]
Grove, Mette [1 ]
Clube, Jasper [1 ]
Grondahl, Christian [1 ]
Haaber, Jakob Krause [1 ]
van der Helm, Eric [1 ]
Zdravkovic, Milan [1 ]
Sommer, Morten Otto Alexander [1 ,5 ]
机构
[1] SNIPR BIOME ApS, Copenhagen, Denmark
[2] JAFRAL, Ljubljana, Slovenia
[3] JMI Labs, North Liberty, IA USA
[4] Weill Cornell Med, Div Infect Dis, New York, NY USA
[5] DTU Biosustain, Novo Nord Fdn Ctr Biosustainabil, Lyngby, Denmark
基金
英国惠康基金;
关键词
BLOOD-STREAM INFECTIONS; ESCHERICHIA-COLI; ANTIMICROBIAL RESISTANCE; HEMATOLOGIC MALIGNANCIES; NEUTROPENIC PATIENTS; SOLID TUMORS; HOST-RANGE; BACTERIOPHAGES; CANCER; TRANSPLANTATION;
D O I
10.1038/s41587-023-01759-y
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
Antibiotic treatments have detrimental effects on the microbiome and lead to antibiotic resistance. To develop a phage therapy against a diverse range of clinically relevant Escherichia coli, we screened a library of 162 wild-type (WT) phages, identifying eight phages with broad coverage of E. coli, complementary binding to bacterial surface receptors, and the capability to stably carry inserted cargo. Selected phages were engineered with tail fibers and CRISPR-Cas machinery to specifically target E. coli. We show that engineered phages target bacteria in biofilms, reduce the emergence of phage-tolerant E. coli and out-compete their ancestral WT phages in coculture experiments. A combination of the four most complementary bacteriophages, called SNIPR001, is well tolerated in both mouse models and minipigs and reduces E. coli load in the mouse gut better than its constituent components separately. SNIPR001 is in clinical development to selectively kill E. coli, which may cause fatal infections in hematological cancer patients. Phage engineered with tail fibers and CRISPR-Cas reduce Escherichia coli load in animals.
引用
收藏
页码:265 / 274
页数:23
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