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Jahan, S.

Publications and source records attributed to Jahan, S..

3 recordsLinked to original sources

Dysregulated Microglial Synaptic Engulfment in Diffuse Midline Glioma

Diffuse midline glioma (DMG) is a near-universally lethal form of pediatric high-grade glioma, driven by neuronal activity-regulated paracrine signaling and synaptic integration of malignant cells into neural circuits. In turn, DMG increases neuronal excitability, augmenting neuron-to-glioma signaling. In the healthy brain, microglia, the resident immune cells of the central nervous system (CNS), regulate neuronal excitability and synaptic connectivity. However, the role of microglia in promoting tumor-associated hyperexcitable neural networks in glioma remains unknown. Here, we investigate the activity-regulated engulfment of neuronal synapses by microglia in both healthy and glioma-bearing mice, and further explore how glioma cells alter microglia-mediated circuit refinement, contributing to pathogenic neuronal hyperexcitability. Microglia-mediated circuit refinement in the glioma microenvironment was characterized through synaptic engulfment analysis of both excitatory and inhibitory synapses by microglia in healthy mice and patient-derived DMG xenograft models, paired with optogenetic stimulation in the neocortex. We found that glutamatergic neuronal activity in the healthy brain increased excitatory synaptic engulfment by microglia in a previously unappreciated negative feedback mechanism that may guard against hyperexcitability. In contrast, this activity-regulated increase in excitatory synaptic engulfment was abrogated in DMG-infiltrated brains. Instead, inhibitory synaptic engulfment was significantly increased in DMG in response to glutamatergic neuronal activity. Together, these dysregulated synaptic engulfment mechanisms may create imbalance in the excitatory to inhibitory (E:I) synapse ratio predicted to increase neuronal excitability. Complementary single-nuclei sequencing studies revealed concordant tumor-specific, activity-regulated changes in microglia-neuron signaling showing reduced expression of excitatory synaptic refinement gene programs in microglia, potentially mediating the aberrant synaptic engulfment observed in DMG. These findings reveal novel cancer-neuron-immune interactions in DMG and provide an opportunity to potentially modulate tumor-associated neuronal hyperexcitability by targeting aberrant microglial synaptic engulfment. HIGHLIGHTSO_LIExcitatory synaptic engulfment by microglia increases in a glutamatergic neuronal activity-dependent manner in the healthy brain. C_LIO_LIIn the glioma-infiltrated brain, this feedback regulatory mechanism is inverted, with loss of activity-regulated excitatory synaptic engulfment and aberrant increased inhibitory synaptic engulfment. C_LIO_LITranscriptomic changes in glioma-associated microglia contribute to differential excitatory and inhibitory synaptic engulfment, with reduced excitatory synaptic refinement gene programs in tumor-associated microglia. C_LIO_LIActivity-regulated soluble factors drive this imbalanced excitatory-inhibitory postsynaptic engulfment by glioma-associated microglia. C_LI

neuroscience↗

Distinct Virome and Bacteriome Profiles of Term and Preterm Placentas from African, Asian and European Women

While the human placental microbiome has been extensively studied, information regarding the virome remains limited. The association between subclinical placental viral infections and spontaneous preterm birth (PTB) is poorly understood. Hence, we examined fresh placenta samples from women in the UK, Bangladesh, and South Africa to elucidate the virome profiles and association with spontaneous PTB. We employed shotgun metagenomics, real-time PCR, and Gram staining, complemented by bioinformatics, to detect both viruses and bacteria in the decidua and chorionic villous tissues. We did not identify any known pathogenic viruses in 236 placental samples, except for one preterm placenta from the Bangladeshi cohort, where human herpesvirus 6 was detected. The majority of the viruses were bacteriophages present at very low abundance and low frequencies across the three cohorts. Lambdavirus lambda was detected in 14% of UK and 11% of Bangladeshi samples but was absent in South African samples. Papiine betaherpesvirus 3 was identified in 62.5% of South African placentas. Punavirus (29.1%) and Streptococcus phages (16.67%) were also prevalent in South African samples. A variety of bacterial species including Moraxella osloensis, Delftia lacustris, Cutibacterium acnes, Escherichia coli and Staphylococcus epidermidis were detected in samples across the three cohorts in variable frequencies but without any notable tissue immune responses. None of the viruses or bacteria exhibited associations with PTB, except D. lacustris, which was significantly more abundant in preterm compared to term placentas in the Bangladeshi cohort. We conclude that the human placenta harbours a virome predominated by bacteriophages and that subclinical viral infection in spontaneous PTB is rare.

microbiology↗

Think Before You List: Integrative Systematics of an 'Endemic and Critically Endangered' Butterfly in the Sundarbans

Accurate species delineation is fundamental to understanding evolutionary relationships and guiding effective conservation measures. While the IUCN Red List serves as a critical conservation tool, its reliability hinges on precise systematic species identification and comprehensive distribution data. However, taxonomic inconsistencies remain a major challenge, particularly for poorly studied taxa in complex ecoregions like the Sundarbans mangrove forest. Here, we investigated the taxonomic identity of the Sundarbans Crow, Euploea crameri nicevillei (Moore, 1890), which is considered the only endemic and critically endangered butterfly of Bangladesh, reported only from the Sundarbans mangroves. The taxonomic status of this butterfly has long been debated, with authors regarding it as a morph of Euploea core (Cramer, 1780), while others designated it as a distinct subspecies of E. crameri (Lucas, 1853). Thus, we applied an integrative taxonomic approach incorporating morphological and molecular evidence with field observations and found that the E. crameri nicevillei is conspecific with the E. core. Based on its distinctive external wing morphology and geographic distribution, we recognize it as a valid subspecies of that, E. core nicevillei (Moore, 1890), stat. nov. Furthermore, this subspecies has a wider geographical range than previously assumed. These results suggest that its earlier designation as endemic and critically endangered was premature, emphasizing the importance of rigorous integrative systematics and the need to reassess its conservation status in Bangladesh.

zoology↗