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Belantamab's primary mechanism, immunogenic cell death, does not exhaust T-cells. This unique quality allows clinicians to use it as a first BCMA-targeted agent without compromising the efficacy of subsequent T-cell redirecting therapies like CAR T or bispecifics.
Moving CAR T-cell therapy to earlier treatment lines is crucial. This approach targets cancer before it develops resistance and, more importantly, utilizes patient T-cells that are healthier and more effective, not having been damaged by extensive prior chemotherapy regimens.
Unlike therapies that can deplete the immune system, mezigdomide enhances T-cell number and function. This unique immune-enhancing property makes it a promising agent to use before, or in combination with, immunotherapies like CAR-T to overcome resistance and improve outcomes in highly refractory patients.
Clinicians must weigh the immediate benefit of using community-accessible belantumab against the risk of reducing the efficacy of future BCMA-targeted therapies like CAR-T or bispecifics. This decision hinges on a patient's ability to travel and access advanced care, creating a complex treatment sequencing challenge.
The manufacturing process for Brexicel CAR-T in ALL differs from other products like Axicel. It isolates T-cells first to avoid contamination from circulating leukemia blasts. This crucial step prevents the T-cells from becoming over-activated or exhausted before they are even reinfused into the patient, preserving their potency.
Despite the individual high efficacy of both BCMA-directed therapies and anti-CD38 antibodies, there is significant clinical concern about combining them. The potential for compounded immunosuppression and severe infection risk is a major barrier shaping clinical trial design and favoring sequential use over concurrent combination.
Unlike CAR-T therapies that rely on a limited number of engineered cells, T-cell engagers activate the body's entire T-cell repertoire. This vast pool of effector cells makes exhaustion a negligible issue, as only a small fraction is engaged at any time, ensuring a sustained attack on cancer cells.
Unlike older IMiDs where T-cell effects are secondary, CELMoDs have a powerful, independent pro-T-cell mechanism. This dual action is so significant that in the future, CELMoDs will be prescribed not just for their direct anti-myeloma effects, but specifically to enhance the efficacy of T-cell therapies like CAR-T and bispecific antibodies.
Using a BCMA bispecific antibody first can exhaust a patient's T-cells or cause tumors to lose the BCMA target, rendering a subsequent BCMA-targeted CAR-T therapy ineffective. The optimal sequence is CAR-T first, which preserves T-cell function and BCMA expression, leaving bispecifics as a viable later-line option.
Beyond their direct anti-myeloma effects, CELMoDs potently activate the immune system. This positions them as ideal partners for immunotherapies like CAR T and bispecifics, with the potential to restore immune function and overcome resistance to T-cell redirecting therapies.
Clinicians report significant and durable responses using Belantamab in patients who have relapsed after BCMA-targeted CAR-T. This success may be due to Belantamab's immunogenic mechanism, which doesn't rely on endogenous T-cells and may favorably interact with the post-CAR immune environment.