Nectin-2 Expression on Malignant Plasma Cells Is Associated with Better Response to TIGIT Blockade in Multiple Myeloma
CLINICAL CANCER RESEARCH
Authors: Lozano, Ester; Mena, Mari-Pau; Diaz, Tania; Martin-Antonio, Beatriz; Leon, Sheila; Rodriguez-Lobato, Luis-Gerardo; Oliver-Caldes, Aina; Teresa Cibeira, Maria; Blade, Joan; Prat, Aleix; Rosinol, Laura; Fernandez de Larrea, Carlos
Abstract
Purpose: T-cell immunoreceptor with Ig and ITIM domain (TIGIT) blockade could represent an alternative therapeutic option to release the immune response in patients with multiple myeloma. Here we analyzed the expression of TIGIT and its ligands poliovirus receptor (PVR) and nectin-2 in the bone marrow (BM) of patients with monoclonal gammopathies and the efficacy of TIGIT blockade activating antimyeloma immunity. Experimental Design: Expression levels of TIGIT and its ligands were characterized by flow cytometry and ELISA. TIGIT blockade was analyzed in in vitro functional assays with peripheralT cells. BM cells were studied with NanoString technology, real-time PCR, and ex vivo patient BM cell models. Results: TIGIT and its ligands are highly expressed in the BM of patients with multiple myeloma, suggesting that may play a role in restraining immune activation. TIGIT blockade depleted FoxP3(+) Tregs while increasing proliferation of IFNg-producing CD4(+) T cells from patients with multiple myeloma. PVR ligation inhibited CD8(+) T-cell signaling and cell proliferation which could be overcome with anti-TIGIT mAb. However, BM cells showed a remarkable heterogeneity in immune signature. Accordingly, functional ex vivo BM assays revealed that only some patients respond to checkpoint blockade. Thus, response to TIGIT blockade correlated with low frequency of TIGIT(+) cells and high nectin-2 expression on malignant plasma cells. Conclusions: TIGIT blockade efficiently reinvigorated peripheral T cells from patients with multiple myeloma. However, in the BM, the efficacy of blocking anti-TIGIT mAb to achieve tumor cell death may depend on the expression of TIGIT and nectin-2, becoming potential predictive biomarkers for identifying patients who may benefit from TIGIT blockade.
TIGIT Blockade: A Multipronged Approach to Target the HIV Reservoir
FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY
Authors: Holder, Kayla A.; Grant, Michael D.
Abstract
During chronic human immunodeficiency virus type 1 (HIV-1) infection, upregulation of inhibitory molecules contributes to effector cell dysfunction and exhaustion. This, in combination with the ability of HIV-1 to reside dormant in cellular reservoirs and escape immune recognition, makes the pathway to HIV-1 cure particularly challenging. An idealized strategy to achieve HIV-1 cure proposes combined viral and immune activation by "shock"ing HIV-1 out of latency and into an immunologically visible state to be recognized and "kill"ed by immune effector cells. Here we outline the potential for blockade of the inhibitory immune checkpoint T cell immunoreceptor with immunoglobulin and ITIM domains (TIGIT) to overcome natural killer (NK) cell and T cell inhibition associated with HIV-1 infection and invigorate antiviral effector cell responses against HIV-1 reactivated from the latent cellular reservoir.