Macrophage‐Hitchhiked Orally Administered β‐Glucans‐Functionalized Nanoparticles as “Precision‐Guided Stealth Missiles” for Targeted Pancreatic Cancer Therapy

Author:

Chen Kuan‐Hung1,Nguyen Nhien1,Huang Tun‐Yu1,Lin Yu‐Jung2,Yu Yu‐Tzu1,Song Hsiang‐Lin3,Wang Jui‐To45,Nguyen Van Khanh1,Chen Hsin‐Lung1,Chu Li‐An6,Chiang Hui‐Hua Kenny7,Sung Hsing‐Wen1ORCID

Affiliation:

1. Department of Chemical Engineering and Frontier Research Center on Fundamental and Applied Sciences of Matters National Tsing Hua University 30013 Hsinchu Taiwan

2. Research Center for Applied Sciences 11529 Academia Sinica Taipei Taiwan

3. Department of Pathology National Taiwan University Hospital 300 Hsinchu Branch Hsinchu Taiwan

4. Neurological Institute Department of Neurosurgery Taipei Veterans General Hospital 11217 Taipei Taiwan

5. Institute of Brain Science National Yang‐Ming Chiao Tung University 11221 Taipei Taiwan

6. Department of Biomedical Engineering and Environmental Sciences National Tsing Hua University 30013 Hsinchu Taiwan

7. Institute of Biomedical Engineering National Yang‐Ming Chiao Tung University 11221 Taipei Taiwan

Abstract

AbstractThe prognosis in cases of pancreatic ductal adenocarcinoma (PDAC) with current treatment modalities is poor owing to the highly desmoplastic tumor microenvironment (TME). Herein, a β‐glucans‐functionalized zinc–doxorubicin nanoparticle system (βGlus‐ZnD NPs) that can be orally administered, is developed for targeted PDAC therapy. Following oral administration in PDAC‐bearing mice, βGlus‐ZnD NPs actively target/transpass microfold cells, overcome the intestinal epithelial barrier, and then undergo subsequent phagocytosis by endogenous macrophages (βGlus‐ZnD@Mϕ). As hitchhiking cellular vehicles, βGlus‐ZnD@Mϕ transits through the intestinal lymphatic system and enters systemic circulation, ultimately accumulating in the tumor tissue as a result of the tumor‐homing and “stealth” properties that are conferred by endogenous Mϕ. Meanwhile, the Mϕ that hitchhikes βGlus‐ZnD NPs is activated to produce matrix metalloproteinases, destroying the desmoplastic stromal barrier, and differentiates toward the M1‐like phenotype, modulating the TME and recruiting effector T cells, ultimately inducing apoptosis of the tumor cells. The combination of βGlus‐ZnD@Mϕ and immune checkpoint blockade effectively inhibits the growth of the primary tumor and suppresses the development of metastasis. It thus represents an appealing approach to targeted PDAC therapy.

Funder

Ministry of Education

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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