A Virus-Inspired Inhalable Liponanogel Induces Potent Antitumor Immunity and Regression in Metastatic Lung Tumors

Author:

Li Junyao12ORCID,Luo Lanqing12ORCID,He Jia12ORCID,Yu Jinchao12ORCID,Li Xinyan12ORCID,Shen Xueying12ORCID,Zhang Junxia234ORCID,Li Sai234ORCID,Karp Jeffrey M.5678ORCID,Kuai Rui12ORCID

Affiliation:

1. School of Pharmaceutical Sciences, Tsinghua University, Beijing, China. 1

2. Tsinghua-Peking Center for Life Sciences, Beijing, China. 2

3. School of Life Sciences, Tsinghua University, Beijing, China. 3

4. Frontier Research Center for Biological Structure & State Key Laboratory of Membrane Biology, Beijing, China. 4

5. Department of Anesthesiology, Perioperative, and Pain Medicine, Brigham and Women’s Hospital, Harvard Medical School, Boston, Massachusetts. 5

6. Harvard-MIT Program in Health Sciences and Technology, MIT, Cambridge, Massachusetts. 6

7. Harvard Stem Cell Institute, Harvard University, Cambridge, Massachusetts. 7

8. Broad Institute of MIT and Harvard, Cambridge, Massachusetts. 8

Abstract

Abstract Pulmonary delivery of immunostimulatory agents such as poly(I:C) to activate double-stranded RNA sensors MDA5 and RIG-I within lung-resident antigen-presenting cells is a potential strategy to enhance antitumor immunity by promoting type I interferon secretion. Nevertheless, following pulmonary delivery, poly(I:C) suffers from rapid degradation and poor endosomal escape, thus limiting its potency. Inspired by the structure of a virus that utilizes internal viral proteins to tune the loading and cytosolic delivery of viral nucleic acids, we developed a liponanogel (LNG)–based platform to overcome the delivery challenges of poly(I:C). The LNG comprised an anionic polymer hyaluronic acid–based nanogel core coated by a lipid shell, which served as a protective layer to stabilize the nanogel core in the lungs. The nanogel core was protonated within acidic endosomes to enhance the endosomal membrane permeability and cytosolic delivery of poly(I:C). After pulmonary delivery, LNG-poly(I:C) induced 13.7-fold more IFNβ than poly(I:C) alone and two-fold more than poly(I:C) loaded in the state-of-art lipid nanoparticles [LNP-poly(I:C)]. Additionally, LNG-poly(I:C) induced more potent CD8+ T-cell immunity and stronger therapeutic effects than LNP-poly(I:C). The combination of LNG-poly(I:C) and PD-L1 targeting led to regression of established lung metastases. Due to the ease of manufacturing and the high biocompatibility of LNG, pulmonary delivery of LNG may be broadly applicable to the treatment of different lung tumors and may spur the development of innovative strategies for cancer immunotherapy. Significance: Pulmonary delivery of poly(I:C) with a virus-inspired inhalable liponanogel strongly activates cytosolic MDA5 and RIG-I and stimulates antitumor immunity, representing a promising strategy for safe and effective treatment of metastatic lung tumors.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

American Association for Cancer Research (AACR)

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