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Results for "Genetics & Molecular Biology"

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#1491Genetics & Molecular BiologyFront Page22 January 2026

The Genome’s Dark Library: How DHX58 Complicates Gastric Cancer Immunotherapy

Researchers have identified DHX58 as a 'hub gene' that is stripped of its chemical constraints in stomach tumours. This overexpression, driven by the loss of methylation, appears to help the cancer evade the immune system.

By Li, Zhang, Wen, Wang, Zhang, Wang, Li, Kang, Gao, Yu, Du

#1492Chemistry & Material ScienceFront Page28 January 2026

Beyond the Liquid Trap: Surface Organisation Defines New Solid-state Electrolytes

Researchers have developed hybrid materials for batteries that eliminate volatile solvents, discovering that the physical arrangement of molecules matters more for conductivity than their chemical identity.

By Bidal, Bil, Destarkeet, Hadad, Nguyen Van Nhien, Becuwe

#1493Medicine & HealthFront Page4 February 2026

Reading the Invisible: How AI in Prostate Cancer Decodes the Genome from a Single Slide

Researchers have developed ProGENIE, a computational framework that predicts gene expression directly from standard pathology images. By correlating tissue shape with molecular profiles, the tool offers a rapid, cost-effective alternative to extensive genomic sequencing.

By Han, Li, Mah, Logan, Wang, Liu, Ryan, Lynn, Foreman, O’Leary, Brooks, Polo, Butler, Li

#1494NeuroscienceFront Page6 February 2026

The Underwater Night Shift: Decoding Circadian Rhythms in Fish

Fish possess internal biological clocks that regulate sleep-like states and brain function based on light cycles. Depriving them of this rest significantly damages their ability to learn and remember, mirroring human sleep needs.

By Topal

#1495Chemistry & Material ScienceFront Page5 March 2026

How AI is Breaking the Bottleneck in Vibrational Spectra Simulation

Predicting how complex molecules interact with light has long frustrated chemists due to the sheer computational power required. A new AI-driven framework accurately models these interactions without manual tweaking, suggesting a faster route for understanding complex condensed phases and chemical interfaces.

By Faruque, Limbu, London, Momeni

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