CRISPR-Cas assisted diagnostics: A broad application biosensing approach

被引:21
|
作者
Masi, Annalisa [1 ]
Antonacci, Amina [1 ]
Moccia, Maria [1 ]
Frisulli, Valeria [1 ]
De Felice, Mariarita [2 ]
De Falco, Mariarosaria [2 ]
Scognamiglio, Viviana [1 ]
机构
[1] CNR, Inst Crystallog, Dept Chem Sci & Mat Technol, Via Salaria Km 29-300, I-00015 Rome, Italy
[2] CNR, Inst Biosci & BioResources, Dept Biol Agr & Food Sci, Via P Castellino 111, Naples 80100, Italy
关键词
CRISPR-Cas biosensing; Nucleic acid ampli fication; Infectious diseases; Cancer biomarkers; Point of care; NUCLEIC-ACID DETECTION; EVOLUTIONARY CLASSIFICATION; INTERFERENCE COMPLEX; DETECTION PLATFORM; PROTEIN; GENE; RNA; SEQUENCE; SYSTEM; DNA;
D O I
10.1016/j.trac.2023.117028
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In addition to its remarkable genome editing capability, the CRISPR-Cas system has proven to be very effective in many fields of application, including the biosensing of pathogenic infections, mutagenic defects, or early cancer diagnosis. Thanks to their many advantages in terms of simplicity, efficiency, and reduced time, several CRISPR-Cas systems have been described for the design of sensitive and selective analytical tools, paving the way for the development and further commercialization of next-generation diagnostics. However, CRISPR-Cas-based biosensors still need further research efforts to improve some drawbacks, such as the need for target amplification, low reproducibility, and lack of knowledge of exploited element robustness. This review aims to describe the latest trends in the design of CRISPR-Cas biosensing technologies to better highlight the insights of their advantages and to point out the limi-tations that still need to be overcome for their future market entry as medical diagnostics.(c) 2023 Elsevier B.V. All rights reserved.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] The application of CRISPR-Cas system in Staphylococcus aureus infection
    Wang, Jiamin
    Liu, Fang
    Long, Jinzhao
    Jin, Yuefei
    Chen, Shuaiyin
    Duan, Guangcai
    Yang, Haiyan
    HELIYON, 2024, 10 (14)
  • [32] Application of CRISPR-Cas System to Mitigate Superbug Infections
    Rabaan, Ali A.
    Al Fares, Mona A.
    Almaghaslah, Manar
    Alpakistany, Tariq
    Al Kaabi, Nawal A.
    Alshamrani, Saleh A.
    Alshehri, Ahmad A.
    Almazni, Ibrahim Abdullah
    Saif, Ahmed
    Hakami, Abdulrahim R.
    Khamis, Faryal
    Alfaresi, Mubarak
    Alsalem, Zainab
    Alsoliabi, Zainab A.
    Al Amri, Kawthar Amur Salim
    Hassoueh, Amal K.
    Mohapatra, Ranjan K.
    Arteaga-Livias, Kovy
    Alissa, Mohammed
    MICROORGANISMS, 2023, 11 (10)
  • [33] CRISPR-Cas Assisted Shotgun Mutagenesis Method for EvolutionaryGenome Engineering
    Zhao, Ming
    Gao, Miaomiao
    Xiong, Liangbin
    Liu, Yongjun
    Tao, Xinyi
    Gao, Bei
    Liu, Min
    Wang, Feng-Qing
    Wei, Dong-Zhi
    ACS SYNTHETIC BIOLOGY, 2022, 11 (05): : 1958 - 1970
  • [34] CRISPR-Cas changing biology?
    Baxter, Janella
    BIOLOGY & PHILOSOPHY, 2019, 34 (01)
  • [35] Staying on target with CRISPR-Cas
    Dana Carroll
    Nature Biotechnology, 2013, 31 : 807 - 809
  • [36] CRISPR-Cas Systems in Streptococci
    Gong, Tao
    Lu, Miao
    Zhou, Xuedong
    Zhang, Anqi
    Tang, Boyu
    Chen, Jiamin
    Jing, Meiling
    Li, Yuqing
    CURRENT ISSUES IN MOLECULAR BIOLOGY, 2019, 32 : 1 - 37
  • [37] CRISPR-Cas in its prime
    Zlotorynski, Eytan
    NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2019, 20 (12) : 718 - 719
  • [38] CRISPR-Cas Enzymes Preface
    Bailey, Scott
    CRISPR-CAS ENZYMES, 2019, 616 : XVII - XVIII
  • [39] CRISPR-Cas systems in enterococci
    Cabral, Amanda Seabra
    Lacerda, Fernanda de Freitas
    Leite, Vitor Luis Macena
    de Miranda, Filipe Martire
    da Silva, Amanda Beiral
    dos Santos, Barbara Araujo
    Lima, Jailton Lobo da Costa
    Teixeira, Lucia Martins
    Neves, Felipe Piedade Goncalves
    BRAZILIAN JOURNAL OF MICROBIOLOGY, 2024, : 3945 - 3957
  • [40] Harvest time for CRISPR-Cas?
    Gross, Michael
    CURRENT BIOLOGY, 2016, 26 (20) : R903 - R905