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◆ Nanoscale2026-08-17

Amino acid functionalization of Au-Ag@PDA with transferrin coupling for neuroprotection in mice with intracerebral hemorrhage.

Qi Hu, Yuanwen Zou, Weina Zhang, Wenhao Li, Guoyi Xia, Duozi Wang, Dianwu Wu, Guangfu Yin, Zhongbing Huang

原始摘要(英文原文)· Original abstract
Currently, the secondary injury mechanisms during the clinical management of intracerebral hemorrhage (ICH) at deep sites include iron-induced neurotoxicity and oxidative stress, leading to sustained neuronal damage and long-term neurological deficits. Therefore, we developed a multifunctional nanoplatform by coating branched and multi-spiky Au-Ag NPs with a polydopamine (PDA) layer, and further modifying them with D-Ser and L-Glu and functionalizing them with transferrin (Tf-GSAAP), exhibiting a good photothermal response in the second near-infrared window (NIR-II). The results of an in vivo test showed that the Tf-GSAAP NPs could effectively target the ICH site, where NIR-II photothermal therapy promoted neuronal survival; furthermore, the released D-Ser and L-Glu acted as co-agonists for the NMDA receptor, leading to significant neuroprotective and reparative effects. A mechanism for the neuroprotection and neurological function recovery after ICH mediated by Tf-GSAAP NPs through a NIR-II response was proposed, with higher expression of BDNF and NGF factors, and better ROS clearance. This study provides a proof-of-concept strategy of NIR-II photothermal therapy combined with neuromodulation to promote neurological recovery of deep tissue, offering a promising new direction for the treatment of ICH.
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Amino acid functionalization of Au-Ag@PDA with transferrin coupling for neuroprotection in mice with intracerebral hemorrhage. — 科研速览 Science Skim