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Updated: Jan 10, 2026

Author Spotlight: Innovative Microneedle-Based Strategies for Enhanced Exosome Delivery and Stability
Published on: July 12, 2024
Lymph node delivery of immunogenic dendritic cell exosomes via extended-tip microneedles for cancer prevention
Shijie Zhao1, Yubing Guo1, Yue Yin2
1School of Medical Technology, Beijing Institute of Technology, Beijing 100081, China.
Abstract:
Cancer prevention remains a significant challenge due to the ubiquitous presence of potentially malignant cells in the body. This study presents a novel cancer vaccine platform aimed at training the immune system to prevent the development of solid tumors. We engineered a nanostimulator (nano-IS3) comprising survivin-encoding plasmid DNA, polyethylenimine, and interferon-β-expressing nanoprotoplasts to activate dendritic cells (DCs), producing immunogenic exosomes enriched with survivin-derived antigens and costimulatory molecules (IdE@S). These IdE@S were loaded into long-tipped, high-mechanical strength dissolvable microneedles (HdMN-IdE@S) designed to penetrate the dermis for enhanced delivery to draining lymph nodes. In vitro studies demonstrated enhanced T cell activation by IdE@S compared to conventional exosomes. In vivo, the HdMN-IdE@S vaccine induced robust CD8+ T cell responses, potentially enabling continuous immune surveillance against emerging cancer cells. Importantly, this prevention strategy showed no systemic toxicity or organ damage. This approach offers a potent, safe, and patient-friendly method for cancer prevention, potentially advancing the clinical translation of tumor-associated antigen-based immunotherapies for maintaining long-term cancer-free status.

