Mobile applications on microbial drug resistance
a scoping review
DOI:
https://doi.org/10.70368/gecs.v2i1.12904Keywords:
Drug resistance, microbial, mobile applications, smartphone, antimicrobial stewardshipAbstract
Antimicrobial Resistance (AMR) is one of the major global health problems, with a significant increase following the SARS-CoV-2 pandemic. Although the natural progression of AMR is inevitable, it is essential to understand its development in order to reduce cases, emphasizing the need to limit the inappropriate use of antimicrobials. The following study aims to identify and map mobile applications developed on antimicrobial resistance in the literature or available in online app stores for smartphones with Android and iOS operating systems through a scoping review. The review was conducted following the guidelines of the Joanna Briggs Institute and the Preferred Reporting Items for Systematic reviews and Meta-Analyses extension for Scoping Reviews. Searches were conducted in databases, thesis and dissertation portals, and in app stores on Android and iOS operating systems. The searches were performed in September 2023. From the search, 1322 studies and 420 applications were identified, resulting in a final sample of 6 and 1, respectively. The apps were developed and applied in areas such as health education, teaching, primary and hospital care. Mobile apps on Antimicrobial Resistance (AMR) have proven to be important supportive tools in reducing antimicrobial resistance, highlighting health education, infection monitoring and tracking, proper prescription, access to clinical information, and rapid diagnostic tools.
References
ALEXANDRE, N.M.C; COLUCI, M.Z.O. Validade de conteúdo nos processos de construção e adaptação de instrumentos de medidas. Ciênc. Saúde Colet. 2011;16,3061-3068. https://doi.org/10.1590/S1413-81232011000800006.
ARAUJO, J.P; GALLO, A.M; PARADA, C.M.G.L; MARCON, S.S; FERRARI, R.A.P; PINTO, K.R.T.F. et al. Mobile applications as a strategy to support parents in the care of newborns: a scoping review. Rev Esc Enferm USP. 2023;57:e20220470. https://doi.org/10.1590/1980-220X-REEUSP-2022-0470en.
ARKSEY, H; O'MALLEY, L. Scoping studies: towards a methodological framework. International journal of social research methodology. 2005;8(1),19-32. https://doi.org/10.1080/1364557032000119616.
BIRJOVANU, G; WOOD, C; OLUFEMI, O; OGUNSOLA, F; OKONJI, P; KPOKIRI, E. et al. GADSA: Decision support app for antibiotics prescribing in Nigeria. In Proceedings of the 9th International Conference on Digital Public Health [Internet]. 2019 [cited 2023 Sep. 15];9-10. Available from: https://dl.acm.org/doi/10.1145/3357729.3357734.
BUSS, P.M; HARTZ, Z.M.D.A; PINTO, L.F; ROCHA, C.M.F. Promoção da saúde e qualidade de vida: uma perspectiva histórica ao longo dos últimos 40 anos (1980-2020). Ciênc. Saúde Colet. 2020;25(12),4723-4735. https://doi.org/10.1590/1413-812320202512.15902020.
CELUPPI, I.C; LIMA, G.D.S; ROSSI, E; WAZLAWICK, R.S; DALMARCO, E.M. Uma análise sobre o desenvolvimento de tecnologias digitais em saúde para o enfrentamento da COVID-19 no Brasil e no mundo. Cad. Saúde Pública. 2021;37,e00243220. https://doi.org/10.1590/0102-311X00243220.
CHRISTAKI, E; MARCOU, M; TOFARIDES, A. Antimicrobial resistance in bacteria: mechanisms, evolution, and persistence. J Mol Evol. 2020;88,26-40. https://doi.org/10.1007/s00239-019-09914-3.
CORRÊA, J.S; ZAGO, L.F; SILVA-BRANDÃO, R.R; OLIVEIRA, S.M; FRACOLLI, L.A; PADOVEZE, M.C. et al. Antimicrobial resistance in Brazil: an integrated research agenda. Rev Esc Enferm USP. 2022;56:e20210589. https://doi.org/10.1590/1980-220X-REEUSP-2021-0589.
DOYLE, D; MCDONALD, G; PRATT, C; REHAN, Z; BENTEAU, T; PHILLIPS, J; et al. Impact of a mobile decision support tool on antimicrobial stewardship indicators in St. John’s, Canada. Plos one. 2021;16(6),e0252407. https://doi.org/10.1371/journal.pone.0252407.
ERICSSON MOBILITY REPORT (EMR). Ericsson Mobility Report June 2021. [Cited 2023 Sep 29]. Available: https://www.ericsson.com/4a03c2/assets/local/mobility-report/documents/2021/june-2021-ericsson-mobility-report.pdf.
FORMAGINI, T.D.B; ERVILHA, R.R; MACHADO, N.M; ANDRADE, B.A.B.B.D; GOMIDE, H.P; RONZANI, T.M. Revisão dos aplicativos de smartphones para cessação do tabagismo disponíveis em língua portuguesa. Cad. Saúde Pública. 2017;33(2):e00178215. https://doi.org/10.1590/0102-311X00178215.
FREE, C; PHILLIPS, G; FELIX, L; GALLI, L; PATEL, V; EDWARDS, P. The effectiveness of M-health technologies for improving health and health services: a systematic review protocol. BMC res. notes. 2010;3(1),1-7. https://doi.org/10.1186/1756-0500-3-250.
GOMES, M.L.D.S; RODRIGUES, I.R; MOURA, N.D.S; BEZERRA, K.D.C; LOPES, B.B; TEIXEIRA, J.J.D. et al. Avaliação de aplicativos móveis para promoção da saúde de gestantes com pré-eclâmpsia. Acta Paul Enferm. 2019;32(2):275-81. https://doi.org/10.1590/1982-0194201900038.
LHOPITALLIER, L; KRONENBERG, A; MEUWLY, J.Y; LOCATELLI, I; MUELLER, Y; SENN, N. et al. Procalcitonin and lung ultrasonography point-of-care testing to determine antibiotic prescription in patients with lower respiratory tract infection in primary care: pragmatic cluster randomised trial. BMJ. 2021,374,n2132. https://doi.org/10.1136/bmj.n2132.
LIMEIRA, J.B.R; SILVA, V.C; NETO, N.M.G; SILVA, C.R.D.T; OLIVEIRA, V.L; ALEXANDRE, A.C.S. Development of a mobile application for health education about sepsis. Rev Esc Enferm USP. 2023;57,e20220269. https://doi.org/10.1590/1980-220X-REEUSP-2022-0269en.
LLOR, C; HERNÁNDEZ, S. Enfermedad infecciosa en atención primaria: estudio prospectivo efectuado durante todo un añoInfectious disease in primary care: 1-year prospective study. Enferm Infecc Microbiol Clin. 2010;28(4),222-226. https://doi.org/10.1016/j.eimc.2009.03.014.
MAIA, J.S; MARIN, H.F. Aplicativos móveis para as sociedades menos favorecidas. Acta Paul. Enferm. 2021;34,eAPE002214. https://doi.org/10.37689/acta-ape/2021AR02214.
MARZIALI, M.E; GIORDANO, M; GLEIT, Z; PRIGOFF, J; LANDAU, R; MARTINS, S.S. Development and design of a mobile application for prescription opioid clinical decision-making: a feasibility study in New York City, USA. BMJ open [Internet]. 2023 [cited 2023 Sep. 18];13(2),e066427. Available from: https://bmjopen.bmj.com/content/13/2/e066427.
MIRANDA, F.D; SALOMÉ, G.M. Desenvolvimento de aplicativo móvel para avaliar, tratar e prevenir lesão por pressão. Acta Paul Enferm. 2022;35,eAPE0329345. https://doi.org/10.37689/acta-ape/2022AO0329345.
MOSTAFA, A; ABDELZAHER, A; RASHED, S; ALKHAWAGA, S.I; AFIFI, S.K; ABDELALIM, S. et al. A alfabetização em saúde está associada ao uso de antibióticos, ao conhecimento e à conscientização sobre a resistência antimicrobiana entre estudantes universitários não médicos no Egito? Um estudo transversal. BMJ Open [Internet]. 2021 [acesso em 2023 Sep. 17];11(3):e046453. Disponível em: https://bmjopen.bmj.com/content/11/3/e046453.
MOURÃO, L.F; MARQUES, A.D.B; MOREIRA, T.M.M; OLIVEIRA, S.K.P. Aplicativos móveis para promoção de cuidados com pé diabético: revisão de escopo. Rev. Eletr. Enferm. 2022;24:69625. https://doi.org/10.5216/ree.v24.69625.
OGUNNIGBO, O; NABIRYO, M; ATTEH, M; MURINGU, E; OLAITAN, O.J; RUTTER, V. et al. Exploring the antimicrobial stewardship educational needs of healthcare students and the potential of an antimicrobial prescribing app as an educational tool in selected African countries. Antibiotics. 2022;11(5),691. https://doi.org/10.3390/antibiotics11050691.
ORGANIZACIÓN MUNDIAL DE LA SALUD (OMS). La resistencia a los antimicrobianos y el Marco de Cooperación de las Naciones Unidas para el Desarrollo Sostenible: orientaciones para los equipos de las Naciones Unidas en los países. 2021 [cited 2023 Sep 18]. Available from: https://www.woah.org/app/uploads/2021/10/unsdcf-amr-guidance-web-final-es.pdf
PASCUCCI, M; ROYER, G; ADAMEK, J; ASMAR, M.A; ARISTIZABAL, D; BLANCHE, L; et al. AI-based mobile application to fight antibiotic resistance. Nature communications. 2021;12(1),1173. https://doi.org/10.1038/s41467-021-21187-3.
PETERS, M,D,J; GODFREY, C; MCINERNEY, P; MUNN, Z; TRICCO, A.C; KHALIL, H. Chapter 11: Scoping Reviews (2020 version). Aromataris E, Munn Z, editors. JBI Manual for Evidence Synthesis. JBI; 2020. Available from https://synthesismanual.jbi.global. https://doi.org/10.46658/JBIMES-20-12.
PIENDEL, L; VALIŠ, M; HORT, J. An update on mobile applications collecting data among subjects with or at risk of Alzheimer's disease. Front. Aging Neurosci. 2023;15,1134096. https://doi.org/10.3389/fnagi.2023.1134096.
SILVA, A.P; BARBOSA, B.J; CAMARGO, R.F; NICHIATA, L.Y. Construção de um aplicativo móvel para Profilaxia Pós-Exposição ao HIV. Acta Paul Enferm. 2021;34,eAPE000345. https://doi.org/10.37689/acta-ape/2021AO000345.
SILVA, T.M; ESTRELA, M; MAGALHÃES, S; SIMÕES, C; CACHIM, A; COSTA, T. et al. eHealthResp, a Digital Intervention to Improve Antibiotic Prescribing in Respiratory Infections: A Pilot Study. Life. 2022;12(8),1160. https://doi.org/10.3390/life12081160.
SILVEIRA, M.D.S; COGO, A.L.P. Contribuições das tecnologias educacionais digitais no ensino de habilidades de enfermagem: revisão integrativa. Rev. Gaúcha de Enferm. 2017;38(2),e66204. https://doi.org/10.1590/1983-1447.2017.02.66204.
SLEKOVEC, C; LEROY, J; VERNAZ-HEGI, N; FALLER, J.P; SEKRI, D; HOEN, B; TALON, D; BERTRAND, X. Impact of a region wide antimicrobial stewardship guideline on urinary tract infection prescription patterns. International journal of clinical pharmacy. Internacional J. Clin. Farmacêutico. 2012,34,325–329. https://doi.org/10.1007/s11096-012-9606-6.
SUTTELS, V; VAN SINGER, M; CLACK, L.C; PLÜSS-SUARD, C; NIQUILLE, A; MUELLER. Y; BOILLAT, B.N. Factors Influencing the Implementation of Antimicrobial Stewardship in Primary Care: A Narrative Review. Antibiotics. 2022;12(1),30. https://doi.org/10.3390/antibiotics12010030.
TANG, K.W.K; MILLAR, B.C; MOORE, J.E. Antimicrobial Resistance (AMR). Br J Biomed Sci. 2023;80,11387. https://doi.org/10.3389/bjbs.2023.11387.
TENÓRIO, J.M; COHRS, F.M; SDEPANIAN, V.L; PISA, I.T; MARIN, H.F. Desenvolvimento e avaliação de um protocolo eletrônico para atendimento e monitoramento do paciente com doença celíaca. RITA. 2011;17(2),210-2. https://doi.org/10.22456/2175-2745.12119.
TRICCO, A.C; LILLIE, E; ZARIN, W; O'BRIEN, K.K; COLQUHOUN, H; LEVAC, D. et al. PRISMA extension for scoping reviews (PRISMA-ScR): checklist and explanation. Annals of internal medicine. 2018;169(7),467-473. https://doi.org/10.7326/M18-0850.
TUON, F.F; GASPARETTO, J; WOLLMANN, L.C; MORAES, T.P.D. Mobile health application to assist doctors in antibiotic prescription-an approach for antibiotic stewardship. Braz J Infect Dis. 2017;21,660-664. https://doi.org/10.1016/j.bjid.2017.08.002.
WORLD HEALTH ORGANIZATION (WHO). Antimicrobial Resistance [Internet]. 2021 [cited 2023 Sep 17]. Available from: https://www.who.int/health-topics/antimicrobial-resistance. https://www.who.int/health-topics/antimicrobial-resistance
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Copyright (c) 2024 Maria Karolayne de Araújo Pereira, Maria Luziene de Sousa Gomes , João Caio Silva Castro Ferreira , Paula Oliveira Santos, Andréia Rodrigues Moura da Costa Valle

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