Innovative COVID-19 Point-of-Care Diagnostics Suitable for Tuberculosis Diagnosis: A Scoping Review

被引:1
作者
Holtgrewe, Lydia M. L. [1 ,2 ]
Jain, Sonal [1 ,2 ]
Dekova, Ralitza [1 ,2 ]
Broger, Tobias [1 ,2 ]
Isaacs, Chris [3 ]
Theron, Grant [4 ]
Nahid, Payam [5 ]
Cattamanchi, Adithya [5 ,6 ]
Denkinger, Claudia M. [1 ,2 ,7 ]
Yerlikaya, Seda [1 ,2 ,7 ]
机构
[1] Heidelberg Univ Hosp, Dept Infect Dis & Trop Med, D-69120 Heidelberg, Germany
[2] Heidelberg Univ, Fac Med, D-69120 Heidelberg, Germany
[3] Connected Diagnost Ltd, London WC2H 9JQ, England
[4] Stellenbosch Univ, Fac Med & Hlth Sci, Div Mol Biol & Human Genet, DSI NRF Ctr Excellence Biomed TB Res,South African, POB 241, ZA-8000 Cape Town, South Africa
[5] Univ Calif San Francisco, UCSF Ctr TB, San Francisco, CA 94143 USA
[6] Univ Calif Irvine, Div Pulm Dis & Crit Med, Irvine, CA 92697 USA
[7] Univ Hosp, German Ctr Infect Res DZIF, Partner Site Heidelberg, D-69120 Heidelberg, Germany
基金
美国国家卫生研究院;
关键词
tuberculosis; COVID-19; rapid diagnostic tests; point-of-care testing; missed diagnosis; MYCOBACTERIUM-TUBERCULOSIS; SURVEILLANCE;
D O I
10.3390/jcm13195894
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Rapid and accurate point-of-care (POC) tuberculosis (TB) diagnostics are crucial to bridge the TB diagnostic gap. Leveraging recent advancements in COVID-19 diagnostics, we explored adapting commercially available POC SARS-CoV-2 tests for TB diagnosis in line with the World Health Organization (WHO) target product profiles (TPPs). A scoping review was conducted following PRISMA-ScR guidelines to systematically map POC antigen and molecular SARS-CoV-2 diagnostic tests potentially meeting the TPPs for TB diagnostic tests for peripheral settings. Data were gathered from PubMed/MEDLINE, bioRxiv, medRxiv, publicly accessible in vitro diagnostic test databases, and developer websites up to 23 November 2022. Data on developer attributes, operational characteristics, pricing, clinical performance, and regulatory status were charted using standardized data extraction forms and evaluated with a standardized scorecard. A narrative synthesis of the data is presented. Our search yielded 2003 reports, with 408 meeting eligibility criteria. Among these, we identified 66 commercialized devices: 22 near-POC antigen tests, 1 POC molecular test, 31 near-POC molecular tests, and 12 low-complexity molecular tests potentially adaptable for TB. The highest-scoring SARS-CoV-2 diagnostic tests were the near-POC antigen platform LumiraDx (Roche, Basel, Switzerland), the POC molecular test Lucira Check-It (Pfizer, New York, NY, USA), the near-POC molecular test Visby (Visby, San Jose, CA, USA), and the low-complexity molecular platform Idylla (Biocartis, Lausanne, Switzerland). We highlight a diverse landscape of commercially available diagnostic tests suitable for potential adaptation to peripheral TB testing. This work aims to bolster global TB initiatives by fostering stakeholder collaboration, leveraging SARS-CoV-2 diagnostic technologies for TB, and uncovering new commercial avenues to tackle longstanding challenges in TB diagnosis.
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页数:16
相关论文
共 56 条
  • [1] 360Dx, 2024, Roche to Acquire LumiraDx Point-of-Care Testing Tech for Up to $350M
  • [2] 360Dx. WHO, 2024, Medicines Patent Pool License Rapid Diagnostics Technology From SD Biosensor: 360Dx
  • [3] Feasibility and acceptability of SARS-CoV-2 testing and surveillance in primary school children in England: Prospective, cross-sectional study
    Aiano, Felicity
    Jones, Samuel E., I
    Amin-Chowdhury, Zahin
    Flood, Jessica
    Okike, Ifeanyichukwu
    Brent, Andrew
    Brent, Bernadette
    Beckmann, Joanne
    Garstang, Joanna
    Ahmad, Shazaad
    Baawuah, Frances
    Ramsay, Mary E.
    Ladhani, Shamez N.
    [J]. PLOS ONE, 2021, 16 (08):
  • [4] Connectivity of diagnostic technologies: improving surveillance and accelerating tuberculosis elimination
    Andre, E.
    Isaacs, C.
    Affolabi, D.
    Alagna, R.
    Brockmann, D.
    de Jong, B. C.
    Cambau, E.
    Churchyard, G.
    Cohen, T.
    Delmee, M.
    Delvenne, J. -C.
    Farhat, M.
    Habib, A.
    Holme, R.
    Keshavjee, S.
    Khan, A.
    Lightfoot, P.
    Moore, D.
    Moreno, Y.
    Mundade, Y.
    Pai, M.
    Patel, S.
    Nyaruhirira, A. U.
    Rocha, L. E. C.
    Takle, J.
    Trebucq, A.
    Creswell, J.
    Boehme, C.
    [J]. INTERNATIONAL JOURNAL OF TUBERCULOSIS AND LUNG DISEASE, 2016, 20 (08) : 999 - 1003
  • [5] Arnaout R, 2020, bioRxiv, DOI [10.1101/2020.06.02.131144, 10.1101/2020.06.02.131144, DOI 10.1101/2020.06.02.131144]
  • [6] Accuracy of package inserts of SARS-CoV-2 rapid antigen tests: a secondary analysis of manufacturer versus systematic review data
    Bigio, Jacob
    Maclean, Emily L-H
    Das, Rishav
    Sulis, Giorgia
    Kohli, Mikashmi
    Berhane, Sarah
    Dinnes, Jacqueline
    Deeks, Jonathan J.
    Bruemmer, Lukas E.
    Denkinger, Claudia M.
    Pai, Madhukar
    [J]. LANCET MICROBE, 2023, 4 (11): : E875 - E882
  • [7] Diagnostic accuracy of 3 urine lipoarabinomannan tuberculosis assays in HIV-negative outpatients
    Broger, Tobias
    Nicol, Mark P.
    Sigal, George B.
    Gotuzzo, Eduardo
    Zimmer, Alexandra J.
    Surtie, Shireen
    Caceres-Nakiche, Tatiana
    Mantsoki, Anna
    Reipold, Elena Ivanova
    Szekely, Rita
    Tsionsky, Michael
    van Heerden, Judith
    Plisova, Tatiana
    Chikamatsu, Kinuyo
    Lowary, Todd L.
    Pinter, Abraham
    Mitarai, Satoshi
    Moreau, Emmanuel
    Schumacher, Samuel G.
    Denkinger, Claudia M.
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2020, 130 (11) : 5756 - 5764
  • [8] Sensitive electrochemiluminescence (ECL) immunoassays for detecting lipoarabinomannan (LAM) and ESAT-6 in urine and serum from tuberculosis patients
    Broger, Tobias
    Tsionksy, Michael
    Mathew, Anu
    Lowary, Todd L.
    Pinter, Abraham
    Plisova, Tatiana
    Bartlett, Daniel
    Barbero, Simone
    Denkinger, Claudia M.
    Moreau, Emmanuel
    Katsuragi, Kiyonori
    Kawasaki, Masanori
    Nahid, Payam
    Sigal, George B.
    [J]. PLOS ONE, 2019, 14 (04):
  • [9] Bulterys M.A., 2019, J CLIN MED, V9, DOI [10.3390/jcm9010111, DOI 10.3390/jcm9010111]
  • [10] Chopra K K, 2020, Indian J Tuberc, V67, pS86, DOI 10.1016/j.ijtb.2020.09.025