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Senescent cancer cell-derived nanovesicle as a personalized therapeutic cancer vaccine
Jihye Hong1, Mungyo Jung2, Cheesue Kim2
1Interdisciplinary Program for Bioengineering, Seoul National University, Seoul, 08826, Republic of Korea.
Abstract:
The development of therapeutic cancer vaccines (TCVs) that provide clinical benefits is challenging mainly due to difficulties in identifying immunogenic tumor antigens and effectively inducing antitumor immunity. Furthermore, there is an urgent need for personalized TCVs because only a limited number of tumor antigens are shared among cancer patients. Several autologous nanovaccines that do not require the identification of immunogenic tumor antigens have been proposed as personalized TCVs. However, these nanovaccines generally require exogenous adjuvants (e.g., Toll-like receptor agonists) to improve vaccine immunogenicity, which raises safety concerns. Here, we present senescent cancer cell-derived nanovesicle (SCCNV) as a personalized TCV that provides patient-specific tumor antigens and improved vaccine immunogenicity without the use of exogenous adjuvants. SCCNVs are prepared by inducing senescence in cancer cells ex vivo and subsequently extruding the senescent cancer cells through nanoporous membranes. In the clinical setting, SCCNVs can be prepared from autologous cancer cells from the blood of liquid tumor patients or from tumors surgically removed from solid cancer patients. SCCNVs also contain interferon-γ and tumor necrosis factor-α, which are expressed during senescence. These endogenous cytokines act as adjuvants and enhance vaccine immunogenicity, avoiding the need for exogenous adjuvants. Intradermally injected SCCNVs effectively activate dendritic cells and tumor-specific T cells and inhibit primary and metastatic tumor growth and tumor recurrence. SCCNV therapy showed an efficacy similar to that of immune checkpoint blockade (ICB) therapy and synergized with ICB. SCCNVs, which can be prepared using a simple and facile procedure, show potential as personalized TCVs.
Insights
Senescent cancer cell-derived nanovesicles (SCCNVs) offer a novel approach to personalized cancer vaccines. These SCCNVs stimulate potent antitumor immunity without exogenous adjuvants, showing promise for cancer therapy.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Developing effective therapeutic cancer vaccines (TCVs) is challenging due to difficulties in identifying tumor antigens and inducing antitumor immunity.
- Personalized TCVs are needed as tumor antigens vary among patients.
- Existing autologous nanovaccines often require exogenous adjuvants, raising safety concerns.
Purpose of the Study:
- To present senescent cancer cell-derived nanovesicles (SCCNVs) as a personalized TCV.
- To demonstrate SCCNVs can provide patient-specific antigens and enhance immunogenicity without exogenous adjuvants.
Main Methods:
- Inducing senescence in cancer cells ex vivo.
- Extruding senescent cancer cells through nanoporous membranes to create SCCNVs.
- Preparing SCCNVs from autologous cancer cells (blood or tumor tissue).
Main Results:
- SCCNVs contain endogenous adjuvants (interferon-γ and tumor necrosis factor-α).
- Intradermal SCCNV injection activates dendritic cells and tumor-specific T cells.
- SCCNVs inhibit primary and metastatic tumor growth and recurrence, with efficacy comparable to immune checkpoint blockade (ICB) and synergistic effects with ICB.
Conclusions:
- SCCNVs represent a promising personalized TCV strategy.
- The simple preparation of SCCNVs avoids the need for exogenous adjuvants.
- SCCNV therapy demonstrates significant potential for cancer treatment, alone or in combination with ICB.
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