tumor vaccine with optimized nanoadjuvants and lymph node targeting capacity to treat ovarian cancer and metastases.

Acta Pharm Sin B

Key Laboratory of Drug Targeting and Drug Delivery Systems, West China School of Pharmacy, Sichuan University, Chengdu 610041, China.

Published: September 2024

AI Article Synopsis

  • - Tumor vaccines are a type of immunotherapy aimed at training the immune system to fight tumors, but they struggle to meet all necessary steps for effectiveness, such as generating antigens and activating T-cells.
  • - A new smart nanogel system called CpG@Man-P/Tra/Gel has been developed to target lymph nodes, enhance immune response against ovarian cancer, and prevent tumor recurrence and metastasis.
  • - This nano-vaccine utilizes mannose modifications for better targeting, releases trametinib and a nano-adjuvant in response to enzymes (MMP-2), and works even better when combined with PD-1 blocking to inhibit tumor growth and promote specific immune responses.

Article Abstract

Tumor vaccine, a promising modality of tumor immunotherapy, needs to go through the process of tumor antigen generation and loading, antigen drainage to lymph nodes (LNs), antigen internalization by dendritic cells (DCs), DC maturation, and antigen cross-presentation to activate T-cells. However, tumor vaccines are often unable to satisfy all the steps, leading to the limitation of their application and efficacy. Herein, based on a smart nanogel system, an nano-vaccine (CpG@Man-P/Tra/Gel) targeting LNs was constructed to induce potent anti-tumor immune effects and inhibit the recurrence and metastasis of ovarian cancer. The CpG@Man-P/Tra/Gel exhibited MMP-2-sensitive release of trametinib (Tra) and nano-adjuvant CPG@Man-P, which generated abundant depot of whole-cell tumor antigens and formed nano-vaccines with CpG@Man-P. Benefiting from mannose (Man) modification, the nano-vaccines targeted to LNs, promoted the uptake of antigens by DCs, further inducing the maturation of DCs and activation of T cells. Moreover, CpG@Man-P with different particle sizes were prepared and the effective size was selected to evaluate the antitumor effect and immune response . Notably, combined with PD-1 blocking, the vaccine effectively inhibited primary tumor growth and induced tumor-specific immune response against tumor recurrence and metastasis of ovarian cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11413692PMC
http://dx.doi.org/10.1016/j.apsb.2024.06.003DOI Listing

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