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When sequencing bispecific antibodies after a BCMA-targeted agent fails, clinicians prefer the FCRH5-targeting Cevostamab over the GPRC5D-targeting Talquetamab. This choice is driven primarily by Cevostamab's more manageable toxicity profile and lower infection signal.
For third-line follicular lymphoma, where both CAR-T and bispecifics are approved, experts are leaning towards CAR-T. The long-term follow-up data for CAR-T suggests a potential for cure, making it a more compelling option for eligible patients despite logistical challenges.
Administering tocilizumab before the first bispecific antibody dose significantly reduces Cytokine Release Syndrome (CRS) risk. This proactive strategy enables safer outpatient treatment, lowering hospital admissions and improving patient access, especially in community settings.
Drugs like cervatimig are engineered for improved safety. They feature a silenced Fc portion to prevent prolonged toxicity and a low-affinity CD3 binder that engages T-cells more physiologically. This design reduces the likelihood of high-grade cytokine release syndrome (CRS) and neurotoxicity.
In a crowded multiple myeloma market, treatment sequencing is critical. The International Myeloma Working Group (IMWG) recommends using BCMA CAR-T therapies like Carvykti before BCMA bispecifics. This guidance helps defend Carvykti's position, as prior bispecific use may reduce CAR-T efficacy.
Next-generation bispecific antibodies are engineered with a silenced Fc portion. This design feature intentionally limits the molecule's circulation time, allowing it to clear rapidly. This helps manage toxicity if it occurs and prevents overstimulation of the immune system via Fc gamma receptors, improving the safety profile.
In follicular lymphoma, the treatment goal is durable remission with manageable toxicity, not necessarily a cure. Therefore, clinicians frequently prefer using a bispecific antibody first, reserving the more complex and toxic CAR-T cell therapy for transformed disease or after a bispecific fails.
To manage infection risk and improve quality of life, experts are quickly reducing bispecific antibody dosing frequency (e.g., to monthly) once a response is achieved. This real-world practice deviates from rigid trial schedules to optimize patient outcomes.
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.
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.
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.