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1.
Parasitol Int ; 101: 102891, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38537686

ABSTRACT

Malaria remains a significant global public health concern, with a recent increase in the number of zoonotic malaria cases in Southeast Asian countries. However, limited reports on the vector for zoonotic malaria exist owing to difficulties in detecting parasite DNA in Anopheles mosquito vectors. Herein, we demonstrate for the first time that several Anopheles mosquitoes contain simian malaria parasite DNA using droplet digital PCR (ddPCR), a highly sensitive PCR method. An entomological survey was conducted to identify simian malaria vector species at Phra Phothisat Temple (PPT), central Thailand, recognized for a high prevalence of simian malaria in wild cynomolgus macaques. A total of 152 mosquitoes from six anopheline species were collected and first analyzed by a standard 18S rRNA nested-PCR analysis for malaria parasite which yielded negative results in all collected mosquitoes. Later, ddPCR was used and could detect simian malaria parasite DNA, i.e. Plasmodium cynomolgi, in 25 collected mosquitoes. And this is the first report of simian malaria parasite DNA detection in Anopheles sawadwongporni. This finding proves that ddPCR is a powerful tool for detecting simian malarial parasite DNA in Anopheles mosquitoes and can expand our understanding of the zoonotic potential of malaria transmission between monkeys and humans.


Subject(s)
Anopheles , Malaria , Mosquito Vectors , Polymerase Chain Reaction , Anopheles/parasitology , Animals , Polymerase Chain Reaction/methods , Malaria/transmission , Malaria/epidemiology , Malaria/parasitology , Malaria/diagnosis , Mosquito Vectors/parasitology , Thailand/epidemiology , RNA, Ribosomal, 18S/analysis , RNA, Ribosomal, 18S/genetics , Plasmodium/isolation & purification , Plasmodium/genetics , Macaca fascicularis/parasitology , DNA, Protozoan/analysis , Humans , Sensitivity and Specificity
2.
Parasitol Int ; 100: 102856, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38199522

ABSTRACT

The Plasmodium life cycle involves differentiation into multiple morphologically distinct forms, a process regulated by developmental stage-specific gene expression. Histone proteins are involved in epigenetic regulation in eukaryotes, and the histone variant H3.3 plays a key role in the regulation of gene expression and maintenance of genomic integrity during embryonic development in mice. However, the function of H3.3 through multiple developmental stages in Plasmodium remains unknown. To examine the function of H3.3, h3.3-deficient mutants (Δh3.3) were generated in P. berghei. The deletion of h3.3 was not lethal in blood stage parasites, although it had a minor effect of the growth rate in blood stage; however, the in vitro ookinete conversion rate was significantly reduced, and the production of the degenerated form was increased. Regarding the mosquito stage development of Δh3.3, oocysts number was significantly reduced, and no sporozoite production was observed. The h3.3 gene complemented mutant have normal development in mosquito stage producing mature oocysts and salivary glands contained sporozoites, and interestingly, the majority of H3.3 protein was detected in female gametocytes. However, Δh3.3 male and female gametocyte production levels were comparable to the wild-type levels. Transcriptome analysis of Δh3.3 male and female gametocytes revealed the upregulation of several male-specific genes in female gametocytes, suggesting that H3.3 functions as a transcription repressor of male-specific genes to maintain sexual identity in female gametocytes. This study provides new insights into the molecular biology of histone variants H3.3 which plays a critical role on zygote-to-oocyst development in primitive unicellular eukaryotes.


Subject(s)
Malaria , Parasites , Plasmodium , Rodent Diseases , Male , Female , Animals , Mice , Oocysts , Histones/genetics , Zygote/metabolism , Epigenesis, Genetic , Sporozoites/physiology , Malaria/parasitology , Plasmodium berghei/physiology , Protozoan Proteins/genetics , Protozoan Proteins/metabolism
3.
IJID Reg ; 7: 130-135, 2023 Jun.
Article in English | MEDLINE | ID: mdl-37025347

ABSTRACT

Objectives: Trichomonas vaginalis is the most prevalent sexually transmitted parasite worldwide. However, no surveillance system exists to monitor T. vaginalis cases and drug resistance in Japan. Methods: Cervical cytology vaginal swabs were collected from women with and without suspected symptoms of T. vaginalis infection; these swabs were used for the detection of T. vaginalis, human papillomavirus (HPV), and Candida albicans using specific polymerase chain reaction. Clinical isolates of T. vaginalis were subjected to metronidazole susceptibility tests using the previously reported minimal lethal concentration (MLC) and newly established half-maximal inhibitory concentration (IC50) values. Results: The prevalence of T. vaginalis in the study population was 4.2% (5/119; 95% confidence interval [Cl], 1.5-9.7). Additionally, asymptomatic infection constituted 60% (3/5) of all cases of T. vaginalis infection. All T. vaginalis-positive patients were coinfected with HPV but not C. albicans. Five clinical T. vaginalis isolates showed metronidazole susceptibility, which was evaluated using MLC values. The quantitative IC50 values revealed that two of these clinical isolates exhibited a decreased metronidazole susceptibility. Conclusion: This is the first study to demonstrate the prevalence of T. vaginalis in Japanese women. The IC50 values of metronidazole against T. vaginalis enabled the precise and quantitative evaluation of metronidazole-susceptible T. vaginalis.

4.
ACS Infect Dis ; 8(3): 457-462, 2022 03 11.
Article in English | MEDLINE | ID: mdl-35090116

ABSTRACT

The infectious protozoan parasite Entamoeba histolytica is responsible for amebiasis causing colitis and liver abscesses, which is an epidemic in developing countries. To develop a drug discovery strategy targeting the iron source required for the proliferation of E. histolytica, an untapped chemical group consisting of low-molecular-weight compounds with metal-binding affinity was investigated. Electrochemically neutral polypyridine compounds, PHN-R2, that showed specific Fe(II)-binding affinity and growth inhibitory ability against E. histolytica were identified. Furthermore, the iron-dependent IC50 values of PHN-R2 and the spectrometric analytical data of their iron complexes clarified the relationship between the antiamebic activity and the iron-targeting specificity. Notably, when PHN-H2 was administrated to E. histolytica-infected hamsters as an animal model of amebiasis, it exhibited a prominent therapeutic efficacy to completely cure liver abscesses without serious side effects. Deciphering the antiamebic activity of iron-targeting compounds in vitro and in vivo provides valuable insights into the development of a next-generation drug against amebiasis.


Subject(s)
Amebiasis , Entamoeba histolytica , Parasites , Amebiasis/drug therapy , Animals , Cricetinae , Drug Discovery , Iron
5.
AIDS Res Hum Retroviruses ; 37(12): 994-997, 2021 12.
Article in English | MEDLINE | ID: mdl-34652965

ABSTRACT

HIV-1 subtype/circulating recombinant form (CRF) distribution of HIV-1-positive specimens for evaluating HIV in vitro diagnostics (IVDs) was examined and compared with the HIV-1 epidemic in Japan. The nucleotide sequences of the gag-pol region of 173 plasma specimens (84, provided in 2007, and 89 in 2013-2015) were determined. HIV-1 subtype/CRF classification was performed based on the phylogenetic analyses of the sequences. The subtype/CRF distribution resulting in this study was similar to that of a previous epidemiological report. Three CRF02_AG and one unique recombinant form, including subtype G and A regions, were observed in the 2013 and 2014 specimens, except in the 2007 specimens. The reference panel consisting of these specimens was practical for the evaluation of HIV IVDs in Japan.


Subject(s)
HIV Infections , HIV-1 , Base Sequence , HIV Infections/diagnosis , HIV-1/genetics , Humans , Japan/epidemiology , Phylogeny
6.
Parasitol Int ; 76: 102034, 2020 Jun.
Article in English | MEDLINE | ID: mdl-31805442

ABSTRACT

The genus Plasmodium is a unicellular eukaryotic parasite that is the causative agent of malaria, which is transmitted by Anopheline mosquito. There are a total of three developmental stages in the production of haploid parasites in the Plasmodium life cycle: the oocyst stage in mosquitoes and the liver and blood stages in mammalian hosts. The Plasmodium oocyst stage plays an important role in the production of the first generation of haploid parasites. Nuclear division is the most important event that occurs during the proliferation of all eukaryotes. However, obtaining the details of nuclear division at the oocyst stage is challenging owing to difficulties in preparation. In this study, we used focused-ion-beam-milling combined with scanning-electron-microscopy to report the 3D architecture during nuclear segregations in oocyst stage. This advanced technology allowed us to analyse the 3D details of organelle segregation inside the oocyst during sporogony formation. It was revealed that multiple nuclei were involved with several centrosomes in one germ nucleus during sporozoite budding (endopolygeny). Our high-resolution 3D analysis uncovered the endopolygeny-like nuclear architecture of Plasmodium in the definitive host. This nuclear segregation was different from that in the blood stage, and its similarity to other apicomplexan parasite nuclear divisions such as Sarcocystis is discussed.


Subject(s)
Cell Nucleus Division , Cell Nucleus/ultrastructure , Oocysts/ultrastructure , Plasmodium/ultrastructure , Animals , Cell Division , Female , Imaging, Three-Dimensional , Macaca/parasitology , Microscopy, Electron, Scanning , Oocysts/growth & development , Plasmodium/growth & development
7.
Hum Mol Genet ; 18(19): 3708-24, 2009 Oct 01.
Article in English | MEDLINE | ID: mdl-19605412

ABSTRACT

ARX (the aristaless-related homeobox gene) is a transcription factor that participates in the development of GABAergic and cholinergic neurons in the forebrain. Many ARX mutations have been identified in X-linked lissencephaly and mental retardation with epilepsy, and thus ARX is considered to be a causal gene for the two syndromes although the neurobiological functions of each mutation remain unclear. We attempted to elucidate the causal relationships between individual ARX mutations and disease phenotypes by generating a series of mutant mice. We generated three types of mice with knocked-in ARX mutations associated with X-linked lissencephaly (P353R) and mental retardation [P353L and 333ins(GCG)7]. Mice with the P355R mutation (equivalent to the human 353 position) that died after birth were significantly different in Arx transcript/protein amounts, GABAergic and cholinergic neuronal development, brain morphology and lifespan from mice with P355L and 330ins(GCG)7 but considerably similar to Arx-deficient mice with truncated ARX mutation in lissencephaly. Mice with the 330ins(GCG)7 mutation showed severe seizures and impaired learning performance, whereas mice with the P355L mutation exhibited mild seizures and only slightly impaired learning performance. Both types of mutant mice exhibited the mutation-specific lesser presence of GABAergic and cholinergic neurons in the striatum, medial septum and ventral forebrain nuclei when compared with wild-type mice. Present findings that reveal a causal relationship between ARX mutations and the pleiotropic phenotype in mice, suggest that the ARX-related syndrome, including lissencephaly or mental retardation, is caused by only the concerned ARX mutations without the involvement of other genetic factors.


Subject(s)
Epilepsy/genetics , Homeodomain Proteins/genetics , Intellectual Disability/genetics , Lissencephaly/genetics , Mutation , Transcription Factors/genetics , Animals , Disease Models, Animal , Doublecortin Protein , Epilepsy/metabolism , Female , Homeodomain Proteins/metabolism , Humans , Intellectual Disability/metabolism , Lissencephaly/metabolism , Male , Mice , Mice, Inbred C57BL , Mice, Transgenic , Phenotype , Transcription Factors/metabolism
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