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Supali, T.

Publications and source records attributed to Supali, T..

4 recordsLinked to original sources

Detection of Plasmodium infections in macaques from areas endemic for brugian filariasis in Belitung District, Indonesia

Background Malaria caused by Plasmodium knowlesi and lymphatic filariasis caused by Brugia malayi are mosquito-borne infections with non-human primates as reservoirs. P. knowlesi has emerged as a significant cause of human malaria in Southeast Asia over the past two decades. Belitung district, Indonesia, was until recently assumed to have eliminated B. malayi until infections were detected in humans and long-tailed macaques. To investigate whether the local reservoir of B. malayi is also a reservoir for malaria we screened macaques from 4 areas in Belitung for malaria parasites. Methods and findings Blood samples from 163 long-tailed macaques (Macaca fascicularis) that had been tested for B. malayi were examined by quantitative PCR assays specific for Plasmodium spp., P. knowlesi, P. inui, P. coatneyi and P. cynomolgi. A total of 130 macaques (79.8%) tested positive in the pan-Plasmodium qPCR assay. Plasmodium inui was most prevalent (41.7%), followed by P. knowlesi (38.7%), P. coatneyi (24.5%) and P. cynomolgi (13.5%). Multiple species infections, with 2-3 Plasmodium species were detected in 37% of macaques. Notably, 20 (91%) of 22 B. malayi-positive macaques were co-infected with at least one Plasmodium species. We sequenced the complete mitochondrion from 9 samples diagnosed by qPCR as mono-infections. Phylogenetic analysis confirmed 7 as P. knowlesi, and the other two as P. inui and P. coatneyi. Phylogenetic and pairwise analysis revealed that P. knowlesi isolates from Belitung were closely related to each other and to P. knowlesi from humans and monkeys from Thailand, Malaysia and Indonesia. Conclusions Molecular evidence shows high prevalence of zoonotic malaria parasites in macaques from Belitung, emphasizing the risk of human transmission. Increased surveillance, improved diagnostics, and targeted interventions are needed to prevent zoonotic spillover of P. knowlesi as it has been observed for B. malayi in Belitung.

microbiology↗

Mitochondrial genomes of individual microfilariae: Undescribed Dirofilaria-like filariae from Malaysian cats and two filaria species related to Dirofilaria and Mansonella from Indonesian macaques

Three molecularly undescribed filarial species were co-detected, while screening animals for Brugia malayi, the agent of lymphatic filariasis. Single microfilariae (Mf) isolated from blood samples of crab-eating macaques (Macaca fascicularis) from Belitung, Indonesia, and from pet dogs and cats in Sabah, Malaysia, were analyzed. Among 163 macaques, 33 (20.2%) were positive for large Mf (mean length 498.9 {micro}m) similar to Dirofilaria ( Belitung I). One macaque was infected with small Mf (mean length 150.4 {micro}m) ( Belitung II), with a high density of 17,150 Mf/mL. In two cats co-infected with B. malayi, Mf of a Dirofilaria species ( Sabah) with an average length of 299.1 {micro}m were detected. Morphometric analysis of Mf showed distinct differences between these three species and other Mf described in the area. Whole genome amplification and genome sequencing of 24 individual Mf enabled phylogenetic analysis of mitochondrial genomes, and analysis of specific mitochondrial and nuclear barcode regions. The three Mf groups formed distinct clusters and did not match any currently available reference sequence. Cluster Belitung I from macaques formed a sister group to all other Dirofilaria. Cluster Belitung II included bird filariae and primate filariae of the genus Mansonella as close relatives. The cluster Sabah formed a monophyletic group with the zoonotic species D. asiatica and Dirofilaria sp. Thailand. DNA of Wolbachia endobacteria was detected in Mf of Belitung I and Sabah, but not in Belitung II. These findings highlight the limited understanding of filarial diversity in macaques and cats in Asia and underscore the need for a more comprehensive approach that combines morphological and molecular data to identify and assess the pathogenicity and zoonotic potential of these parasites. Author summaryFilarial worms are parasitic nematodes that infect humans and animals and are often transmitted by the same vector mosquito. We identified three molecularly undescribed filarial species while investigating animals as reservoirs for the agent of lymphatic filariasis, Brugia malayi on Belitung Island, Indonesia, and in Sabah, Malaysia. Blood samples were collected from Indonesian macaques and Malaysian pet cats. Out of 163 macaques, 20.2% tested positive for exceptionally large microfilariae (Mf) of an unclassified Dirofilaria-like species (Belitung I). Another filarial species ( Belitung II) with very small Mf, but with a remarkably high density of 17,150 Mf/mL was detected in one macaque. Two cats harbored medium sized Mf of a Dirofilaria species (Sabah). Genetic analysis revealed unique phylogenetic clusters that did not match any reference sequence. Dirofilaria sp. Sabah was closely related to the zoonotic D. asiatica complex, whereas Belitung I clustered as a sister group to Dirofilaria. Belitung II Mf clustered next to but not within the Mansonella spp. cluster. DNA of Wolbachia endobacteria was only detected in Mf of Belitung I and Sabah. These findings highlight the limited understanding of filarial diversity in animals and underscore the need for a comprehensive approach that combines morphological and molecular data to identify and assess the pathogenicity and zoonotic potential of these parasites.

microbiology↗

Mass cytometry data integration methods reveal rural-urban gradient of immune profiles across geography

The human immune system strongly varies across populations and is shaped by a wide range of host and environmental factors. As such, a rural compared to urban lifestyle has previously been associated with baseline differences in immune profiles, which can impact outcome of vaccination. The question whether there is a immune signature that associates with rural living irrespective of ancestry or geography has been addressed here along with which analytical methods are most suitable. Using three mass cytometry datasets, we studied shared and population-specific immune characteristics of healthy rural- or urban-living Indonesian, Senegalese and Tanzanian adults and urban-living Europeans. After harmonized preprocessing and quality control, 75.4 million cells were integrated using four different data-integration methods. Among these, CytoNorm with in silico references performed best, revealing shared differences in the differentiation state within the lymphocyte compartment that distinguishes rural from urban-living individuals. Differentiated CD4+ T cells expressing CTLA-4, PD-1 and ICOS characterized rural living, as did CD4+ T cells with high CD161 expression in combination with CRTH2 and GATA3. In the innate compartment, CD56- CD16 NK cells with low CD38 and CD11c expression were expanded in rural living subjects. Together, our results demonstrate that, using a harmonized analytical pipeline and machine learning-based integration, large-scale mass cytometry data can be combined across diverse cohorts to identify shared immunological hallmarks of rural living. These signatures may provide targets for modulating immune responses in future vaccine studies.

immunology↗

Immuno-functionomics reveals geographical variation and a role for TLR8 in mRNA vaccine responses

The innate immune system plays a pivotal role in pathogen defense via pattern recognition receptor sensing, initiating responses upon infection or vaccination. Understanding its functional capacity is crucial for deciphering correlates of vaccine efficacy and understanding responses to infection. In this study, we developed a holistic approach to study immune function, generating >3100 readouts across 16 cell types, 18 pattern recognition receptors and 11 produced cytokines using spectral flow cytometry. To explore geographical variation, we studied the immune system of Europeans, urban, and rural Indonesians. We found differences in immune responses, such as increased IL1{beta} production in rural Indonesians and impaired IFN{gamma} production by innate lymphocytes after TLR8 stimulation. In Europeans vaccinated with mRNA-1273, baseline IFN{gamma} production by innate lymphocytes correlated with SARS-CoV-2 Spike-specific immune responses. In vitro mRNA vaccine stimulation also induced IFN{gamma} production, which was TLR8-dependent and reduced in rural Indonesians. This study highlights functional immune diversity and TLR8s potential role in mRNA vaccine responses. SummaryWe developed an approach to study the function capacity of the immune system, exploring geographical variation and mRNA vaccine responses. This revealed TLR8s potential role in responding to mRNA vaccines, and an impairment in this pathway in rural Indonesians.

immunology↗