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1.
Gut Pathog ; 16(1): 7, 2024 Jan 28.
Artículo en Inglés | MEDLINE | ID: mdl-38282036

RESUMEN

BACKGROUND: Patients with mental disorders have a high risk of intestinal parasitic infection due to poor hygiene practices. Hence, to better clarify this overlooked phenomenon, the current study is conducted to determine the global prevalence of protozoan parasite infections in patients with mental disorders and investigate the associated risk factors. METHODS: Several databases (PubMed, Scopus, Web of Science, ProQuest, and Google Scholar) were searched for papers published until December 2022. The fixed effect meta-analysis was used to estimate the overall odds ratio (OR) and pooled prevalence was estimated using a random-effects model with a 95% confidence interval (CI). RESULTS: Totally, 131 articles (91 case-control and 40 cross-sectional studies) met the eligibility criteria. Patients with mental disorders were significantly at higher risk for protozoan parasites than healthy controls (OR: 2.059, 1.830-2.317). The highest pooled OR (2.485, 1.413-4.368) was related to patients with neurodevelopmental disorders, and the highest pooled prevalence was detected in patients with neurodevelopmental disorders (0.341, 0.244-0.446), followed by bipolar and related disorders (0.321, 0.000-0.995). Toxoplasma gondii was the most prevalent protozoan parasite (0.343, 0.228-0.467) in cross-sectional studies and the highest pooled OR was related to Cyclospora cayetanensis (4.719, 1.352-16.474) followed by Cryptosporidium parvum (4.618, 2.877-7.412). CONCLUSION: Our findings demonstrated that individuals afflicted with mental disorders are significantly more susceptible to acquiring protozoan parasites in comparison to healthy individuals. Preventive interventions, regular screening, and treatment approaches for parasitic diseases should be considered for patients with mental disorders.

2.
Acta Parasitol ; 68(4): 735-745, 2023 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-37589882

RESUMEN

INTRODUCTION: Leishmania is a parasitic protozoan that tries to enter and amplify within macrophages. Macrophage cells are also immune defense cells that phagocyte many microbes like bacteria, fungi, as well as parasites like Leishmania spp. However, they are unable to kill this parasite that resides in the phagosomes of contaminated macrophages and multiplies in these macrophages, leading to the destruction of contaminated macrophages and the emerging of Leishmania wounds. A large number of current therapies for Leishmania cure have adverse effects, or parasites have developed resistance to some of these therapies, so a better therapy for the cure of Leishmania is required. Thymoquinone is one of the Nigella Sativa ingredients with numerous biological effects, such as antioxidant as well as antimicrobial effects on a variety of microbes, namely fungi, bacteria, as well as parasites like Leishmania spp. The impacts of Thymoquinone on Leishmania tropica and Leishmania infantum, as well as Leishmania-infected macrophages, were examined in this study. METHODS: The impact of various Thymoquinone dosages on L. tropica and L. infantum promastigotes and amastigotes was examined in vitro. Flow cytometry, as well as MTT, was also applied to examine the cytotoxic activity of Thymoquinone on promastigotes of L. tropica and L. infantum, as well as the incidence of apoptosis. The amastigote assay is also utilized to calculate the % of contaminated macrophages as well as the number of the present parasites in each macrophage. RESULTS: The percentage of macrophages contaminated with L. tropica and L. infantum amastigotes after medicating with 20 µM of Thymoquinone was 23% and 19%, respectively. Also, after medicating with 10 µM of Thymoquinone, these percentages were 32% and 31%, respectively. Flow cytometry indicated that Thymoquinone caused 33.9% and 31.4% apoptosis in L. tropica and L. infantum, respectively. As determined by the promastigote assay, the inhibitory concentration (IC50) of Thymoquinone for L. tropica and L. infantum was 9.49 µM and 12.66 µM, respectively. The results of the promastigote and amastigote assay show that with an increase in Thymoquinone doses, its ability to kill Leishmania parasites increases, too. CONCLUSION: According to the results of the study, Thymoquinone has a potentially lethal impact on L. tropica and L. infantum promastigotes as well as amastigotes (within leishmania contaminated macrophages).


Asunto(s)
Leishmania infantum , Leishmania tropica , Animales , Macrófagos , Benzoquinonas/farmacología
3.
Int Health ; 2023 Aug 09.
Artículo en Inglés | MEDLINE | ID: mdl-37555353

RESUMEN

Trichomonas vaginalis is a protozoan parasite and probably one of the main causes of adverse birth outcomes. Still, there is a paucity of information regarding the burden of T. vaginalis infection in Iranian women. To address this gap, we conducted a systematic review and meta-analysis of studies on trichomoniasis among females in Iran from January 2000 to January 2023. We searched multiple electronic databases (PubMed, Science Direct, Scopus, ProQuest, Web of Science, Google Scholar, Scientific Information Database, Iran Medex, Magiran and Iran Doc) and identified 108 articles with a total of 200 728 women. Using a random effects model, we found a pooled prevalence of 4.30% (95% CI 3.23 to 5.52%). Subgroup analysis, also, demonstrated a statistically significant association between the T. vaginalis prevalence in Iranian women, and the age range, city, sample type, being in prison, sex working and symptomatic infections. Our findings provide important information for healthcare authorities and can inform prevention strategies against trichomoniasis in Iran.

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