Regional Differences in Intestinal Parasitic Infections among Army Recruits in a Southern Mozambique Training Center: A Cross-Sectional Study
Abstract
:1. Introduction
2. Results
3. Discussion
4. Materials and Methods
4.1. Study Period and Area
4.2. Enrollment Process
4.3. Data Collection and Analysis
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Wang, Z.-D.; Liu, Q.; Liu, H.-H.; Li, S.; Zhang, L.; Zhao, Y.-K.; Zhu, X.-Q. Prevalence of Cryptosporidium, Microsporidia and Isospora Infection in HIV-Infected People: A Global Systematic Review and Meta-Analysis. Parasite Vectors 2018, 11, 28. [Google Scholar] [CrossRef] [PubMed]
- Kirk, M.D.; Pires, S.M.; Black, R.E.; Caipo, M.; Crump, J.A.; Devleesschauwer, B.; Döpfer, D.; Fazil, A.; Fischer-Walker, C.L.; Hald, T. World Health Organization Estimates of the Global and Regional Disease Burden of 22 Foodborne Bacterial, Protozoal, and Viral Diseases, 2010: A Data Synthesis. PLoS Med. 2015, 12, e1001921. [Google Scholar]
- Nsagha, D.S.; Njunda, A.L.; Assob, N.J.C.; Ayima, C.W.; Tanue, E.A.; Kibu, O.D.; Kwenti, T.E. Intestinal Parasitic Infections in Relation to CD4+ T Cell Counts and Diarrhea in HIV/AIDS Patients with or without Antiretroviral Therapy in Cameroon. BMC Infect. Dis. 2016, 16, 9. [Google Scholar] [CrossRef] [PubMed]
- Al-Jawabreh, A.; Ereqat, S.; Dumaidi, K.; Al-Jawabreh, H.; Abdeen, Z.; Nasereddin, A. Prevalence of Selected Intestinal Protozoan Infections in Marginalized Rural Communities in Palestine. BMC Public Health 2019, 19, 1667. [Google Scholar] [CrossRef] [PubMed]
- Gamboa, M.I.; Basualdo, J.A.; Córdoba, M.A.; Pezzani, B.C.; Minvielle, M.C.; Lahitte, H.B. Distribution of Intestinal Parasitoses in Relation to Environmental and Sociocultural Parameters in La Plata, Argentina. J. Helminthol. 2003, 77, 15–20. [Google Scholar] [CrossRef] [PubMed]
- Nhampossa, T.; Mandomando, I.; Acacio, S.; Quintó, L.; Vubil, D.; Ruiz, J.; Nhalungo, D.; Sacoor, C.; Nhabanga, A.; Nhacolo, A.; et al. Diarrheal Disease in Rural Mozambique: Burden, Risk Factors and Etiology of Diarrheal Disease among Children Aged 0–59 Months Seeking Care at Health Facilities. PLoS ONE 2015, 10, e0119824. [Google Scholar] [CrossRef] [PubMed]
- Fonseca, A.M.; Fernandes, N.; Ferreira, F.S.; Gomes, J.; Centeno-Lima, S. Intestinal Parasites in Children Hospitalized at the Central Hospital in Maputo, Mozambique. J. Infect. Dev. Ctries 2014, 8, 786–789. [Google Scholar] [CrossRef] [PubMed]
- Nelson, O.M.C. Avaliação do Tratamento Massivo No Controlo da Filaríase Linfática, Schistosomíase e das Geohelmintíases No Distrito de Murrupula e Cidade de Nampula, Moçambique; Universidade Nova de Lisboa: Lisbon, Portugal, 2018. [Google Scholar]
- Alfredo, C. Controlo Pós-Terapêutico da Schistosomose e das Parasitoses Intestinais e Atualização da Situação Malacológica nos Distritos de Quelimane e Gurué, na Província da Zambézia—Moçambique; Universidade Nova de Lisboa: Lisbon, Portugal, 2016. [Google Scholar]
- Guidetti, C.; Ricci, L.; Vecchia, L. Eziologia delle parassitosi intestinali in un campione di studenti mozambicani: Breve indagine conoscitiva. Infez. Med. 2011, 9, 157–165. [Google Scholar]
- Augusto, G.; Nalá, R.; Casmo, V.; Sabonete, A.; Mapaco, L.; Monteiro, J. Geographic Distribution and Prevalence of Schistosomiasis and Soil-Transmitted Helminths among Schoolchildren in Mozambique. Am. J. Trop. Med. Hyg. 2009, 81, 799–803. [Google Scholar] [CrossRef] [PubMed]
- Ismael, H.A. Relação Entre a Ocorrência de Cryptosporidium spp. E Cystoisospora Belli Com o Estadío da Infecção por Vih, em Pacientes com Diarreia Internados nos Serviços de Medicina Interna, Hcm, (Março de 2016–Março de 2017); Universidade Eduardo Mondlane: Maputo, Mozambique, 2018. [Google Scholar]
- Casmo, V.; Lebbad, M.; Maungate, S.; Lindh, J. Occurrence of Cryptosporidium spp. and Cystoisospora belli among Adult Patients with Diarrhoea in Maputo, Mozambique. Heliyon 2018, 4, e00769. [Google Scholar] [CrossRef] [PubMed]
- Abbaszadeh Afshar, M.J.; Barkhori Mehni, M.; Rezaeian, M.; Mohebali, M.; Baigi, V.; Amiri, S.; Amirshekari, M.B.; Hamidinia, R.; Samimi, M. Prevalence and Associated Risk Factors of Human Intestinal Parasitic Infections: A Population-Based Study in the Southeast of Kerman Province, Southeastern Iran. BMC Infect. Dis. 2020, 20, 12. [Google Scholar] [CrossRef] [PubMed]
- Cerveja, B.Z.; Tucuzo, R.M.; Madureira, A.C.; Nhacupe, N.; Langa, I.A.; Buene, T.; Banze, L.; Funzamo, C.; Noormahomed, E.V. Prevalence of Intestinal Parasites Among HIV Infected and HIV Uninfected Patients Treated at the 1° De Maio Health Centre in Maputo, Mozambique. EC Microbiol. 2017, 9, 231. [Google Scholar] [PubMed]
- Kwitshana, Z.L.; Tsoka, J.M.; Mabaso, M.L.H. Intestinal Parasitic Infections in Adult Patients in KwaZulu—Natal. South Afr. Med. J. 2008, 98, 3. [Google Scholar]
- Tese de Doutoramento Olga da Conceição Nelson TESE OLGA AMIEL.Pdf. Available online: https://www.ihmt.unl.pt/events/prova-publica-doutoramento-olga-maria-da-conceicao-nelson-amiel/ (accessed on 6 April 2022).
- Vaumourin, E.; Vourc’h, G.; Gasqui, P.; Vayssier-Taussat, M. The Importance of Multiparasitism: Examining the Consequences of Co-Infections for Human and Animal Health. Parasites Vectors 2015, 8, 545. [Google Scholar] [CrossRef] [PubMed]
- Guidetti, C.; Ricci, L.; Vecchia, L. Aetiology of Intestinal Parasites in a Sample of Students from Mozambique. Infez. Med. 2011, 3, 157–175. [Google Scholar]
- Knopp, S.; Ame, S.M.; Hattendorf, J.; Ali, S.M.; Khamis, I.S.; Bakar, F.; Khamis, M.A.; Person, B.; Kabole, F.; Rollinson, D. Urogenital Schistosomiasis Elimination in Zanzibar: Accuracy of Urine Filtration and Haematuria Reagent Strips for Diagnosing Light Intensity Schistosoma haematobium Infections. Parasites Vectors 2018, 11, 552. [Google Scholar] [CrossRef] [PubMed]
- Cartwright, C.P. Utility of Multiple-Stool-Specimen Ova and Parasite Examinations in a High-Prevalence Setting. J. Clin. Microbiol. 1999, 37, 2408–2411. [Google Scholar] [CrossRef] [PubMed]
- Lwanga, S.K.; Lemeshow, L. Sample Size Determination in Health Studies, a Practical Manual; WHO: Geneva, Switzerland, 1991. [Google Scholar]
- Ritchie, L. An Ether Sedimentation Technique for Routine Stool Examination. Bull. United States Army Med. Dep. 1948, 8, 326. [Google Scholar]
- Katz, N.; Chaves, A.; Pellegrino, J.A. A Simple Device for Quantitative Stool Thick Smear Technique in Schistosomiasis Mansoni. Rev. Inst. Med. Trop. Sao Paulo 1972, 14, 397–400. [Google Scholar] [PubMed]
- World Health Organization. Manual of Basic Techniques for a Health Laboratory, 2nd ed.; WHO: Geneva, Switzerland, 2003. [Google Scholar]
Characteristics | %(c) | n/N | p-Value |
---|---|---|---|
Gender | 0.701 a | ||
Male | 25.8 (20.9–31.3) | 70/271 | |
Female | 23.1 (15.3–32.5) | 21/91 | |
Age in years (categorized) | 0.270 a | ||
20–22 | 26.8 (21.3–32.8) | 61/228 | |
23–24 | 24.3 (16.9–33.0) | 26/107 | |
≥25 | 13.0 (3.87–28.7) | 3/23 | |
Missing | 4 | ||
Provenience | <0.001 a | ||
Niassa | 13.3 (4.7–28.7) | 4/30 | |
Inhambane | 14.0 (6.0–26.5) | 6/43 | |
Cabo Delgado | 16.7(5.9–34.9 | 4/24 | |
Manica | 17.1 (7.5–32.0) | 6/35 | |
Gaza | 20.0 (8.1–38.4) | 5/25 | |
Nampula | 23.3 (12.6–37.3) | 10/43 | |
Tete | 24.1 (11.5–41.6) | 7/29 | |
Maputo | 28.8 (19.7–39.3) | 23/80 | |
Zambezia | 41.2 (25.9–57.9) | 14/34 | |
Sofala | 70.6 (47.0–87.8) | 12/17 | |
Missing | 2 | ||
Education | 0.884 a | ||
Basic | 25.2 (20.4–30.5) | 70/278 | |
Elementary | 23.3 (12.6–37.3) | 10/43 | |
Middle/Superior | 28.1 (14.9–45.1) | 9/32 | |
Missing | 9 | ||
Occupation | 0.748 b | ||
Employed | 24.6 (17.5–32.9) | 29/118 | |
Non-employed | 25.0 (7.6–52.9) | 3/12 | |
Student | 21.1 (15.4–27.9) | 34/161 | |
Missing | 71 | ||
Religion | 0.081 b | ||
Catholic | 23.2 (18.1–28.9) | 54/233 | |
Muslim | 23.5 (13.6–36.4) | 12/51 | |
Others | 47.4 (26.6–68.8) | 9/19 | |
Missing | 59 |
Kind of Alteration | Topography | Number | Sex | Parasite |
---|---|---|---|---|
Scattered heterogenicity | Bladder | 2 | Male | S. haematobium |
Left Pieloectasia 1.5 | Ureter | 1 | Male | T. trichiura |
Focal scar | Kidney | 1 | Female | T. trichiura |
Simple cyst | Kidney | 1 | Male | E. coli and T. trichiura |
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Casmo, V.; Chicumbe, S.; Chambisse, R.; Nalá, R. Regional Differences in Intestinal Parasitic Infections among Army Recruits in a Southern Mozambique Training Center: A Cross-Sectional Study. Pathogens 2023, 12, 1105. https://doi.org/10.3390/pathogens12091105
Casmo V, Chicumbe S, Chambisse R, Nalá R. Regional Differences in Intestinal Parasitic Infections among Army Recruits in a Southern Mozambique Training Center: A Cross-Sectional Study. Pathogens. 2023; 12(9):1105. https://doi.org/10.3390/pathogens12091105
Chicago/Turabian StyleCasmo, Verónica, Sérgio Chicumbe, Rosa Chambisse, and Rassul Nalá. 2023. "Regional Differences in Intestinal Parasitic Infections among Army Recruits in a Southern Mozambique Training Center: A Cross-Sectional Study" Pathogens 12, no. 9: 1105. https://doi.org/10.3390/pathogens12091105
APA StyleCasmo, V., Chicumbe, S., Chambisse, R., & Nalá, R. (2023). Regional Differences in Intestinal Parasitic Infections among Army Recruits in a Southern Mozambique Training Center: A Cross-Sectional Study. Pathogens, 12(9), 1105. https://doi.org/10.3390/pathogens12091105