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September 12, 2025Cancers4 citationsOpen Access

Pirtobrutinib in Chronic Lymphocytic Leukemia: Navigating Resistance and the Personalisation of BTK-Targeted Therapy

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SMStefano MolicaDADavid Allsup

Key Points

  • Pirtobrutinib shows notable efficacy, with a 62% overall response rate in patients with chronic lymphocytic leukemia complications.
  • In the BRUIN CLL-321 trial, median progression-free survival reached 20 months, indicating potential long-term benefits of pirtobrutinib.
  • Data highlight resistance mechanisms may remain problematic, necessitating future studies to refine treatment approaches in CLL.
  • Ongoing trials will provide essential insights to integrate pirtobrutinib within standard treatment pathways in CLL.

Abstract

Background/Objectives: Covalent Bruton’s tyrosine kinase (BTK) inhibitors (ibrutinib, acalabrutinib, zanubrutinib) improve outcomes in advanced chronic lymphocytic leukemia (CLL) but resistance, largely driven by BTK C481 mutations, and adverse events limit long-term benefit. Noncovalent BTK inhibitors (e.g., pirtobrutinib) reversibly inhibit the BTK ATP-binding pocket independent of C481, potentially overcoming resistance and reducing toxicity. This review summarizes clinical evidence for pirtobrutinib in CLL. Methods: A PubMed search of articles through July 2025 was conducted, focusing on clinical trials of pirtobrutinib. We extracted efficacy, safety, and resistance data, emphasizing the BRUIN CLL-321 phase 3 trial and related studies. Results: Pirtobrutinib demonstrates activity against BTK resistance mutations with a favorable safety profile, partly due to high kinase selectivity. In BRUIN CLL-321, pirtobrutinib achieved an overall response rate (ORR) of 62% and a median progression-free survival (PFS) of 20 months in heavily pretreated patients, including those with resistance mutations. Yet, resistance mechanisms—such as alternative pathway activation and additional BTK mutations—emerge in a subset. Baseline genetic features, including BTK mutation status and cytogenetics, influence response durability and outcomes. Ongoing phase 3 trials comparing pirtobrutinib with covalent BTK inhibitors will clarify its potential as a first-line option and its integration into treatment algorithms. In relapsed/refractory CLL, noncovalent BTK inhibitors may be incorporated into personalized pathways, including bridging to CAR-T therapy, to optimize long-term disease control. Conclusions: Pirtobrutinib offers a promising strategy to address resistance and potentially improve durable disease control in CLL. Definitive trials will define its role relative to covalent BTK inhibitors and its utility across treatment lines within personalized, multimodal regimens.

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Cite This Study

Molica et al. (2025) studied this question.

synapsesocial.com/papers/68d44a4031b076d99fa538cchttps://doi.org/10.3390/cancers17182974
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Final analysis of the RESONATE-2 study: up to 10 years of follow-up of first-line ibrutinib treatment for CLL/SLL2025 · 40 citations
  2. 2Genomic Evolution and Resistance during Pirtobrutinib Therapy in Covalent BTK-Inhibitor (cBTKi) Pre-Treated Chronic Lymphocytic Leukemia Patients: Updated Analysis from the BRUIN Study2023 · 26 citations
  3. 3Pharmacological profiling in CLL patients during pirtobrutinib therapy and disease progression2025 · 2 citations
  4. 4Covalent and Non-Covalent BTK Inhibition in Chronic Lymphocytic Leukemia Treatment2025 · 4 citations
  5. 5Pirtobrutinib inhibits wild-type and mutant Bruton’s tyrosine kinase-mediated signaling in chronic lymphocytic leukemia2022 · 60 citations