Modulation of NKG2D-ligand cell surface expression enhances immune cell therapy of cancer
Baocheng Huang1, Rachel Sikorski, Padma Sampath
1Department of Surgery, University of Pittsburgh Cancer Institute, University of Pittsburgh, PA, USA.
Abstract:
A variety of immune cell therapies proposed for use in the treatment of cancer, including both autologous cells (Lymphokine Activated Killer, Cytokine Induced Killer) or cell lines (TALL-104, NK-92), rely on recognition of NKG2D ligands on malignant cells for targeting. These ligands, such as MICA and MICB in humans are stress response ligands and are commonly, but not ubiquitously expressed within tumors. Several tumor escape mechanisms have been reported, including ligand downregulation and internalization, or proteolytic cleavage and shedding of their exposed portions (releasing soluble MICA and MICB; sMICA, sMICB). Therefore, an ability to prescreen patients for the level of tumor cell surface expression and shedding of these ligands would prevent needless treatment of patients that are unable to respond, whereas targeted pretreatment of patients to increase surface expression and/or block shedding would enhance the subsequent effectiveness of these therapies. Here, we report that serum tests of sMICA and sMICB in conjunction with tumor measurements might be used to determine rates of shedding from a tumor and that treatment with a selected combination of histone deacetylase inhibitors (to upregulate cell surface MICA/B in some tumors), and metalloproteinase inhibitors (to block MICA/B shedding in others) can be incorporated to regulate cell surface MICA/B levels before immune cell therapy, significantly enhancing their effectiveness (either used alone or as carrier vehicles for oncolytic viruses). Ultimately prescreening patients undergoing such immune cell therapies might be used to personalize cancer treatment regimens based on the NKG2D-ligand status of the tumor.
Insights
Immune cell therapies targeting cancer rely on NKG2D ligands. Prescreening patients and using targeted therapies to modulate these ligands can significantly enhance treatment effectiveness for better cancer care.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Immune cell therapies utilize NKG2D ligands on malignant cells for targeting.
- NKG2D ligands (MICA, MICB) are stress-induced but can be downregulated or shed by tumors, limiting therapy efficacy.
- Tumor escape mechanisms include ligand downregulation, internalization, and shedding, leading to soluble MICA/MICB (sMICA/sMICB).
Purpose of the Study:
- To investigate methods for prescreening patients for NKG2D ligand status.
- To explore therapeutic strategies to enhance immune cell therapy effectiveness by modulating NKG2D ligand levels.
- To personalize cancer treatment based on tumor NKG2D ligand expression and shedding.
Main Methods:
- Serum testing for sMICA and sMICB to assess ligand shedding rates.
- Utilizing histone deacetylase inhibitors to upregulate cell surface MICA/B.
- Employing metalloproteinase inhibitors to block MICA/B shedding.
Main Results:
- Serum tests combined with tumor measurements can determine MICA/B shedding rates.
- Targeted pretreatment with specific inhibitors can effectively regulate cell surface MICA/B levels.
- Pretreatment significantly enhances the effectiveness of immune cell therapies.
Conclusions:
- Prescreening patients for NKG2D ligand status is crucial for optimizing immune cell therapy.
- Modulating MICA/B levels via inhibitor combinations can overcome tumor escape mechanisms.
- Personalized cancer treatment strategies based on NKG2D ligand status can improve patient outcomes.
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