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◆ Nature Biotechnology2025-11-10· Medicine

Clearance of intracranial debris by ultrasound reduces inflammation and improves outcomes in hemorrhagic stroke models

Matine Azadian, Sepideh Kiani Shabestari, Arjun Rajan, Payton Martinez, Nicholas Macedo, Eric Markarian, Yun Xiang, Brenda Yu, Paul George, Ryann M. Fame, Raag D. Airan

原始摘要(英文原文)· Original abstract
Impaired clearance of neurotoxic debris in the brain exacerbates neurologic disease and presents a promising therapeutic target. Pharmacologic therapies can enhance meningeal lymphatic clearance in preclinical models but may be limited by systemic toxicities or invasive administration. Here we report a low-intensity, focused ultrasound protocol that noninvasively clears pathogenic substances from the cerebrospinal fluid and brain interstitium in mice. Using two models of hemorrhagic stroke, we demonstrate that this protocol clears the cerebrospinal fluid and interstitium of blood cells, which accumulate in the deep cervical lymph nodes via meningeal lymphatics. The protocol directly modulates molecular processes, including mechanosensitive channels, to shift microglial phenotypes and astrocytic aquaporin localization to reduce neuroinflammation and neurocytotoxicity. In the intracerebral hemorrhage model, it improves behavioral outcomes and increases survival with greater efficacy than a pharmacologic benchmark. The protocol satisfies Food and Drug Administration safety guidelines, supporting clinical translatability. If demonstrated effective clinically, it may provide therapeutic benefit not only in hemorrhagic stroke but also in other neurologic disorders that involve impaired debris clearance.
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Clearance of intracranial debris by ultrasound reduces inflammation and improves outcomes in hemorrhagic stroke models — 科研速览 Science Skim