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Updated: Nov 4, 2025

Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
Dinaciclib induces immunogenic cell death and enhances anti-PD1-mediated tumor suppression
Abstract:
Blockade of the checkpoint inhibitor programmed death 1 (PD1) has demonstrated remarkable success in the clinic for the treatment of cancer; however, a majority of tumors are resistant to anti-PD1 monotherapy. Numerous ongoing clinical combination therapy studies will likely reveal additional therapeutics that complement anti-PD1 blockade. Recent studies found that immunogenic cell death (ICD) improves T cell responses against different tumors, thus indicating that ICD may further augment antitumor immunity elicited by anti-PD1. Here, we observed antitumor activity following combinatorial therapy with anti-PD1 Ab and the cyclin-dependent kinase inhibitor dinaciclib in immunocompetent mouse tumor models. Dinaciclib induced a type I IFN gene signature within the tumor, leading us to hypothesize that dinaciclib potentiates the effects of anti-PD1 by eliciting ICD. Indeed, tumor cells treated with dinaciclib showed the hallmarks of ICD including surface calreticulin expression and release of high mobility group box 1 (HMGB1) and ATP. Mice treated with both anti-PD1 and dinaciclib showed increased T cell infiltration and DC activation within the tumor, indicating that this combination improves the overall quality of the immune response generated. These findings identify a potential mechanism for the observed benefit of combining dinaciclib and anti-PD1, in which dinaciclib induces ICD, thereby converting the tumor cell into an endogenous vaccine and boosting the effects of anti-PD1.
Insights
Combining dinaciclib with anti-PD1 antibody therapy shows promise for cancer treatment. Dinaciclib induces immunogenic cell death, enhancing T cell responses and boosting anti-PD1 efficacy in preclinical models.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Anti-PD1 therapy is effective for cancer but faces resistance in many tumors.
- Immunogenic cell death (ICD) can enhance T cell responses and augment anti-PD1 efficacy.
- Combination therapies are being explored to overcome resistance to anti-PD1 monotherapy.
Purpose of the Study:
- To investigate the antitumor activity of combining anti-PD1 antibody with dinaciclib.
- To determine if dinaciclib potentiates anti-PD1 therapy by inducing ICD.
- To elucidate the mechanism by which this combination enhances antitumor immunity.
Main Methods:
- Administered combination therapy of anti-PD1 antibody and dinaciclib in immunocompetent mouse tumor models.
- Assessed tumor cell ICD hallmarks (surface calreticulin, HMGB1, ATP release).
- Analyzed T cell infiltration and dendritic cell (DC) activation within tumors.
Main Results:
- Combination therapy demonstrated antitumor activity in preclinical models.
- Dinaciclib induced a type I IFN gene signature and hallmarks of ICD in tumor cells.
- The combination therapy increased T cell infiltration and DC activation in tumors.
Conclusions:
- Dinaciclib potentiates anti-PD1 therapy by inducing ICD, converting tumor cells into an endogenous vaccine.
- This combination enhances overall antitumor immunity by improving T cell responses and DC activation.
- The findings support the development of dinaciclib and anti-PD1 combination therapy for cancer treatment.
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