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◆ Advanced science (Weinheim, Baden-Wurttemberg, Germany)2026-09-10

Beyond Biomimetics: Pathology-Informed Engineering Rescues Reconstituted HDL From Inflammatory Dysfunction for Sepsis Immunotherapy.

Han Zhou, Lei Zhang, Xingyu Cai, Jiajia Su, Guangyu Dai, Xue Chen, Hanming Wang, Jia Hua, Jianping Liu, Chunmeng Sun, Xiancheng Chen, Erhao Wang, Wenli Zhang

原始摘要(英文原文)· Original abstract
Biomimetic therapies hold great promise for treating intractable diseases, yet their translation is often hindered by dysfunction-the loss of intended biological function upon exposure to pathological microenvironments. This challenge is well exemplified by reconstituted high-density lipoprotein (rHDL), a clinically advanced HDL mimetic and representative biomimetic drug delivery platform. Here, guided by a pathology-informed identification-design-evaluation-validation workflow, we identified representative sepsis-relevant dysfunction liabilities of HDL-based systems under pathology-relevant conditions and designed an adaptive engineered guard for inflammatory stress (AEGIS) strategy to rescue rHDL function. AEGIS integrates triphenylphosphine-modified ceria nanozyme-celastrol coordination complex (TCe-C) into rHDL to form TCe-C@rHDL, enabling carrier protection, decoupling disease-driven damage from dysfunction, and preserving HDL-intrinsic routing for hierarchical cytoplasmic and mitochondrial delivery. Across multiple evaluation models, including inflammatory biochemical challenges, patient serum under shear flow, and inflammatory animal settings, TCe-C@rHDL consistently preserved biomimetic function better than a clinical-stage CER-001 mimetic. This performance was further validated by therapeutic efficacy in vivo, restoring 90% survival in LPS-induced systemic inflammation versus 40% for the CER-001 mimetic, and improving survival to 80% in the CLP model when combined with antibiotics versus 40% for antibiotics alone. Collectively, this work establishes a paradigm for next-generation biomimetic systems that remain functional under pathological stress.
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Beyond Biomimetics: Pathology-Informed Engineering Rescues Reconstituted HDL From Inflammatory Dysfunction for Sepsis Immunotherapy. — 科研速览 Science Skim