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1.
Braz J Microbiol ; 51(4): 1465-1473, 2020 Dec.
Article in English | MEDLINE | ID: mdl-32638273

ABSTRACT

Vulvovaginal candidiasis is a serious health problem affecting numerous women around the world. Its treatment is based on antifungals which may not provide an effective cure because of the resistance presented by its etiological pathogens Candida spp. Candida albicans is the most prevalent species related to vulvovaginal candidiasis. Here, we evaluated the in vivo antifungal potential of thiosemicarbazide and thiosemicarbazide encapsulated within chitosan nanoparticles in a murine model of vulvovaginal candidiasis. The results demonstrated the antifungal capacity of free or nanoencapsulated thiosemicarbazide within chitosan to reduce the fungal load in the vaginal tissue of infected mice. In addition, histological analyses indicated the absence or a mild to moderate infection in thiosemicarbazide-treated groups. Statistical tests confirmed the existence of significant differences between the treated and the control groups. Therefore, our results suggest a potential application of thiosemicarbazide and encapsulated thiosemicarbazide as an alternative vulvovaginal candidiasis therapy.


Subject(s)
Antifungal Agents , Candidiasis, Vulvovaginal/drug therapy , Semicarbazides , Animals , Antifungal Agents/administration & dosage , Antifungal Agents/pharmacology , Candida albicans/drug effects , Chitosan , Drug Evaluation, Preclinical , Female , Mice , Mice, Inbred BALB C , Nanoparticles , Semicarbazides/administration & dosage , Semicarbazides/pharmacology , Vagina/microbiology
2.
Arch Environ Contam Toxicol ; 78(2): 245-253, 2020 Feb.
Article in English | MEDLINE | ID: mdl-31858197

ABSTRACT

Open-air landfill's may be are considered as a potential source of human environmental exposure to chemical substances such as, polycyclic aromatic hydrocarbons and toxic metals. Due to possible availability of mercury in the environment caused by open landfill emissions, this study evaluates the spatiality and seasonality of macroinvertebrates, in particular shrimps (Macrobrachium amazonicum), exposure to mercury (Hg). Information regarding Hg accumulation in this crustacean may be important for the development of public policies aiming conservation and preservation of ecosystems surrounding landfills in Amazon, and around the world. Sampling occurred quarterly in the following months: November/2015; February/2016; May/2016 and; August/2016. In each of these months, three points were selected: P1, P2 and P3. The samples were processed via acid digestion and the quantification of metal was performed by inductively coupled plasma mass spectrometry. The average concentration of total mercury (T-Hg) was 24.565 ± 6.610 µg kg-1 wet weight, with minimum and maximum limits of 12.742 ± 11.367 (P3) and 35.509 ± 14.761 µg kg-1 wet weight (P1) in November/2015 and August/2016, respectively. The concentration of total mercury (T-Hg) in shrimps was different between points (p = 0.004) and months (p = 0.000). The T-Hg concentrations were significantly higher in May and August 2016, which corresponds to the dry season. The presence of landfills promotes large accumulation of T-Hg in the aquatic biota and represents a risk to human health. However, seasonal changes in T-Hg levels were observed. In the wettest period, bioconcentration factor levels decrease in aquatic organisms.


Subject(s)
Environmental Monitoring/methods , Mercury/analysis , Palaemonidae/drug effects , Water Pollutants, Chemical/analysis , Animals , Aquatic Organisms/drug effects , Aquatic Organisms/metabolism , Bioaccumulation , Brazil , Ecosystem , Environmental Biomarkers , Mercury/pharmacokinetics , Mercury/toxicity , Muscles/drug effects , Muscles/metabolism , Palaemonidae/metabolism , Rivers , Seasons , Waste Disposal Facilities , Water Pollutants, Chemical/pharmacokinetics , Water Pollutants, Chemical/toxicity
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