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RESEARCH PAPER ANALYSIS

Daraxonrasib (RMC-6236) is an effective targeted therapy for RAS -mutant neuroblastoma.

The preprint reports that daraxonrasib suppresses MAPK signaling, reduces viability and tumor growth, and extends survival in preclinical RAS-mutant neuroblastoma models, with venetoclax further enhancing cell killing through disruption of BIM:BCL-2 complexes.

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PMID41756844
JournalbioRxiv : the preprint server for biology
Publication Date2026-02-20
Ingested2026-08-02 12:06 AM
EXECUTIVE SUMMARY

What the AI sees

The preprint reports that daraxonrasib suppresses MAPK signaling, reduces viability and tumor growth, and extends survival in preclinical RAS-mutant neuroblastoma models, with venetoclax further enhancing cell killing through disruption of BIM:BCL-2 complexes.

WHY IT MATTERS

Research significance

The supplied evidence supports preclinical sensitivity of RAS- and NF1-mutant neuroblastoma models to daraxonrasib; it further suggests—but does not clinically establish—that combining daraxonrasib with venetoclax could overcome BCL-2-mediated buffering of BIM and improve activity in selected relapsed or refractory neuroblastoma.

ABSTRACT

Source abstract

Neuroblastoma (NB) is the most common extracranial solid tumor in children. Relapsed or refractory (R/R) high-risk (HR) NB tumors continue to exhibit poor outcomes despite intensive and protractive multimodal therapy. Activating mutations in the RAS- mitogen-activated protein kinase (MAPK) pathway are frequently observed in R/R HRNB. The early promise of ALK inhibitors to treat ALK -mutant NB underscores the ability of appropriate targeted therapies to improve outcomes for HRNB patients. While MAPK pathway activation is prominent in HRNB, FDA-approved MEK inhibitors and KRAS G12C inhibitors have failed to demonstrate significant preclinical single-agent activity. Daraxonrasib (RMC-6236), a potent and selective RAS(ON) inhibitor, has demonstrated activity in both preclinical models and early phase clinical trials of RAS -mutant adult cancers. A subset of R/R HRNB tumors is noteworthy for containing diverse RAS- mutations, providing rationale for RMC-6236 investigation. In this study, we evaluated the therapeutic efficacy and oncogenic signaling modulation of RMC-6236 across NB models harboring RAS pathway activation. RMC-6236 as a single-agent treatment led to a significant decrease in cell viability, suppression of downstream MAPK signaling, upregulation of the MAPK pathway effector protein BIM, and increased cell death in RAS -mutant NB models as well as in NF1 -mutant NB models. In vivo studies evidenced that RMC-6236 had on-target activity that significantly reduced tumor growth and extended survival in RAS -mutant HRNB mouse models. Furthermore, RMC-6236-induced both BCL-2 and BIM upregulation and enhancement of BIM:BCL-2 complexes in RAS -mutant NB. As such, the BCL-2 inhibitor venetoclax further enhanced RMC-6236-mediated killing by disrupting RMC-6236 enhanced BIM:BCL-2 complexes. These findings demonstrate that RMC-6236 is a rationale targeted therapy for RAS -mutant NB, a subset of NB that is progressively understood as conferring particularly poor outcomes. RMC-6236 is a clinically relevant drug that can successfully target the MAPK pathway in these cancers. This study supports expanded clinical testing of this novel therapy to this important subset of neuroblastoma.

SUPPORTING PAPER SET

32 more papers to review

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PATIENT-FRIENDLY SUMMARY

Daraxonrasib (RMC-6236) is an effective targeted therapy for RAS -mutant neuroblastoma.

For education only—not personal medical advice.

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