1. Fisher CR, Streicker DG, Schnell MJ. The spread and evolution of rabies virus: conquering new frontiers. Nat Rev Microbiol. 2018; 16 (4): 241-55. [
DOI:10.1038/nrmicro.2018.11] [
PMID] [
]
2. Gholami AR, Fayaz A, Farahtaj F. Rabies in Iran: Past, Present and Future. J Med Microbiol Infec Dis. 2014; 2 (1): 1-10.
3. Farahtaj F, Fayaz A, Howaizi N, Biglari P, Gholami A. Human rabies in Iran. Trop Doct. 2014; 44 (4): 226-9. [
DOI:10.1177/0049475514528174] [
PMID]
4. Rupprecht CE. The direct fluorescent antibody test.In:Rupprecht CE,Fooks AR, Abela-Ridder B, editors. Laboratory techniques in rabies, 5th edition, Geneva: World Health Organization; 2018; Volume 1, p 108-129.
5. Kamolvarin N, Tirawatnpong T, Rattanasiwamoke R, Tirawatnpong S, Panpanich T, Hemachudha T. Diagnosis of rabies by polymerase chain reaction with nested primers. J Infect Dis. 1993; 167 (1): 207-10. [
DOI:10.1093/infdis/167.1.207] [
PMID]
6. Naji E, Fadajan Z, Afshar D, Fazeli M. Comparison of Reverse Transcription Loop-Mediated Isothermal Amplification Method with SYBR Green Real-Time RT-PCR and Direct Fluorescent Antibody Test for Diagnosis of Rabies. Jpn J Infect Dis. 2020; 73 (1): 19-25. [
DOI:10.7883/yoken.JJID.2019.009] [
PMID]
7. Broughton JP, Deng X, Yu G, Fasching CL, Servellita V, Singh J, et al. CRISPR-Cas12-based detection of SARS-CoV-2. Nat Biotechnol. 2020; 38 (7): 870-4. [
DOI:10.1038/s41587-020-0513-4] [
PMID] [
]
8. Realegeno S, Niezgoda M, Yager PA, Kumar A, Hoque L, Orciari L, et al. An ELISA-based method for detection of rabies virus nucleoprotein-specific antibodies in human antemortem samples. PLoS One. 2018; 13 (11): e0207009. [
DOI:10.1371/journal.pone.0207009] [
PMID] [
]
9. Abudayyeh OO, Gootenberg JS, Essletzbichler P, Han S, Joung J, Belanto JJ, et al. RNA targeting with CRISPR-Cas13. Nature. 2017; 550 (7675): 280-4. [
DOI:10.1038/nature24049] [
PMID] [
]
10. Abudayyeh OO, Gootenberg JS, Konermann S, Joung J, Slaymaker IM, Cox DBT, et al. C2c2 is a single-component programmable RNA-guided RNA-targeting CRISPR effector. Science. 2016; 353 (6299): aaf5573. [
DOI:10.1126/science.aaf5573] [
PMID] [
]
11. Ren M, Mei H, Zhou J, Zhou M, Han H, Zhao L. Early diagnosis of rabies virus infection by RPA-CRISPR techniques in a rat model. Arch Virol. 2021; 166 (4): 1083-92. [
DOI:10.1007/s00705-021-04970-x] [
PMID] [
]
12. Myhrvold C , Freije CA, Gootenberg JS, Abudayyeh OO, Metsky HC, Durbin AF, et al. Field-deployable viral diagnostics using CRISPR-Cas13. Science. 2018; 360 (6387): 444-8. [
DOI:10.1126/science.aas8836] [
PMID] [
]
13. Konermann S, Lotfy P, Brideau NJ, Oki J, Shokhirev MN, Hsu PD. Transcriptome Engineering with RNA-Targeting Type VI-D CRISPR Effectors. Cell. 2018 Apr 19; 173 (3): 665-76. [
DOI:10.1016/j.cell.2018.02.033] [
PMID] [
]
14. Kellner MJ, Koob J, Gootenberg JS, Abudayyeh OO, Zhang F. SHERLOCK: nucleic acid detection with CRISPR nucleases. Nat Protoc. 2019; 14 (10): 2986-3012. [
DOI:10.1038/s41596-019-0210-2] [
PMID] [
]
15. Gootenberg JS, Abudayyeh OO, Lee JW, Essletzbichler P, Dy AJ, Joung J, et al. Nucleic acid detection with CRISPR-Cas13a/C2c2. Science. 2017; 356 (6336): 438-42. [
DOI:10.1126/science.aam9321] [
PMID] [
]
16. Antropov DN, Stepanov GA. Molecular Mechanisms Underlying CRISPR/Cas-Based Assays for Nucleic Acid Detection. Curr Issues Mol Biol. 2023; 45 (1): 649-62. [
DOI:10.3390/cimb45010043] [
PMID] [
]
17. Cox DBT, Gootenberg JS, Abudayyeh OO, Franklin B, Kellner MJ, Joung J, et al. RNA editing with CRISPR-Cas13. Science. 2017 Nov 24; 358(6366):1019-1027. [
DOI:10.1126/science.aaq0180] [
PMID] [
]