A Cascade‐Targeted Enzyme‐Instructed Peptide Self‐Assembly Strategy for Cancer Immunotherapy through Boosting Immunogenic Cell Death

Author:

Xie Limin12,Ding Yinghao2,Zhang Xiangyang2,Zhang Zhenghao2,Zeng Sheng34,Wang Ling1,Yang Zhimou2ORCID,Liu Qian34,Hu Zhi‐Wen2

Affiliation:

1. State Key Laboratory of Medicinal Chemical Biology and College of Pharmacy Nankai University Tianjin 300071 P. R. China

2. Key Laboratory of Bioactive Materials Ministry of Education State Key Laboratory of Medicinal Chemical Biology College of Life Sciences Nankai University Tianjin 300071 P. R. China

3. Department of Urology Tianjin First Central Hospital Tianjin 300192 P. R. China

4. School of Medicine Nankai University Tianjin 300071 P. R. China

Abstract

AbstractImmunogenic cell death (ICD) approaches by encumbering mitochondrial functions provide great promise for the treatment of malignant tumors, but these kinds of ICD strategies are still in their infancy. Here, one multifunctional drug‐loaded, cascade‐targeted, and enzyme‐instructed self‐assembling peptide nanomedicine (Comp. 4) for ICD‐based cancer therapy is constructed. Comp. 4 consists of 1) lonidamine (LND) that specifically interferes with mitochondrial functions; 2) a programmed death ligand 1 (PD‐L1) binding peptide sequence (NTYYEDQG) and a mitochondria‐specific motif (triphenylphosphonium, TPP) that can sequentially control the cell membrane and mitochondria targeting capacities, respectively; and 3) a ‐GDFDFpDY‐ assembly core to in situ organize peptide assemblies responsive to alkaline phosphatase (ALP). Comp. 4 demonstrates noticeable structural and morphological transformations in the presence of ALP and produces peptide assemblies in mouse colon cancer cells (CT26) with high expressions of both ALP and PD‐L1. Moreover, the presence of PD‐L1‐ and mitochondria‐specific motifs can assist Comp. 4 for effective endocytosis and endosomal escape, forming peptide assemblies and delivering LND into mitochondria. Consequently, Comp. 4 shows superior capacities to in vivo induce abundant mitochondrial oxidative stress, provoke robust ICD responses, and produce an immunogenic tumor microenvironment, successfully inhibiting CT26 tumor growth by eliciting a systemic ICD‐based antitumor immunity.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Materials Science,General Chemistry

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