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Tailoring In Vivo Cytotoxicity Assays to Study Immunodominance in Tumor-specific CD8+ T Cell Responses
Published on: May 6, 2019
CD62L+ NKT cells have prolonged persistence and antitumor activity in vivo
Abstract:
Vα24-invariant natural killer T cells (NKTs) localize to tumors and have inherent antitumor properties, making them attractive chimeric antigen receptor (CAR) carriers for redirected cancer immunotherapy. However, clinical application of CAR-NKTs has been impeded, as mechanisms responsible for NKT expansion and the in vivo persistence of these cells are unknown. Here, we demonstrated that antigen-induced expansion of primary NKTs in vitro associates with the accumulation of a CD62L+ subset and exhaustion of CD62L- cells. Only CD62L+ NKTs survived and proliferated in response to secondary stimulation. When transferred to immune-deficient NSG mice, CD62L+ NKTs persisted 5 times longer than CD62L- NKTs. Moreover, CD62L+ cells transduced with a CD19-specific CAR achieved sustained tumor regression in a B cell lymphoma model. Proliferating CD62L+ cells downregulated or maintained CD62L expression when activated via T cell receptor alone or in combination with costimulatory receptors. We generated HLAnull K562 cell clones that were engineered to express CD1d and costimulatory ligands. Clone B-8-2 (HLAnullCD1dmedCD86high4-1BBLmedOX40Lhigh) induced the highest rates of NKT expansion and CD62L expression. B-8-2-expanded CAR-NKTs exhibited prolonged in vivo persistence and superior therapeutic activities in models of lymphoma and neuroblastoma. Therefore, we have identified CD62L as a marker of a distinct NKT subset endowed with high proliferative potential and have developed artificial antigen-presenting cells that generate CD62L-enriched NKTs for effective cancer immunotherapy.
Insights
Natural killer T cells (NKTs) expressing CD62L show enhanced expansion and persistence for cancer immunotherapy. Artificial antigen-presenting cells boost CD62L+ NKTs, improving CAR-NKT therapy efficacy against lymphoma and neuroblastoma.
Area of Science:
- Immunology
- Cancer Research
- Cell Therapy
Background:
- Vα24-invariant natural killer T cells (NKTs) possess antitumor properties and are promising for chimeric antigen receptor (CAR) cancer immunotherapy.
- Clinical use of CAR-NKTs is limited by unknown mechanisms of NKT cell expansion and in vivo persistence.
Purpose of the Study:
- To identify mechanisms governing NKT cell expansion and persistence for improved CAR-NKT therapy.
- To develop strategies for generating potent CAR-NKT cells for cancer treatment.
Main Methods:
- Investigated antigen-induced NKT expansion, identifying CD62L as a key marker for a proliferative subset.
- Assessed in vivo persistence and therapeutic efficacy of CD62L+ NKTs in mouse models.
- Engineered artificial antigen-presenting cells (aAPCs) to enhance CD62L+ NKT expansion and function.
Main Results:
- Antigen stimulation led to CD62L+ NKT accumulation and CD62L- cell exhaustion; CD62L+ NKTs demonstrated superior survival and proliferation.
- CD62L+ NKTs persisted significantly longer in vivo and mediated sustained tumor regression in a B cell lymphoma model.
- Engineered aAPCs, particularly clone B-8-2, effectively expanded CD62L+ NKTs, enhancing their persistence and therapeutic activity in lymphoma and neuroblastoma models.
Conclusions:
- CD62L identifies a distinct NKT subset with high proliferative potential crucial for effective CAR-NKT therapy.
- Developed aAPC-based expansion method to generate CD62L-enriched NKTs, advancing cancer immunotherapy strategies.
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