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◆ Analytical Chemistry2026-06-02· Stress granule

Correlating Molecule Counts with Stress Granule Size Using Novel Platinized Carbon Nanopore Electrodes

Yue Wang, Chaoyi Gu, Hui Gu, Y ZHAO, Dengchao Wang, Andrew G. Ewing

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Stress granules (SGs) are membraneless dynamic structures formed through liquid–liquid phase separation (LLPS) under stress conditions; they can pause nonessential translation and reprogram gene expression to cope with stress, thus being crucial for cell survival. This study pioneers an oxidative stress model that links SG size to redox regulation. Novel platinized carbon nanotube nanopipettes (Pt-CNTNPs) were employed for SG impact electrochemical cytometry (SGIEC) and intracellular SGIEC (ISGIEC) measurements, correlating H 2 O 2 content with SG dimensions through a size-exclusion mechanism. Gaussian fitting quantified the distribution of H 2 O 2 molecule number, and data from PEG8000 solutions demonstrated that intracellular-extracellular content number disparities are likely attributable to macromolecular crowding. All of the results confirm that H 2 O 2 generation in SGs is governed by an interfacial electric field. By establishing a quantitative SG-mediated redox framework, this study provides novel insights into LLPS and opens avenues for targeted therapies and biomimetic materials.
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