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September 22, 2025Frontiers in Pharmacology7 citationsOpen Access

Paclitaxel-induced cognitive impairment: mechanistic insights

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AAAhmad Alhowail

Key Points

  • Paclitaxel, a chemotherapy drug, is linked to long-lasting cognitive impairment known as chemobrain.
  • Key mechanisms identified include neuroinflammation and oxidative stress, impacting neural health and memory.
  • This review synthesizes data on various pathways leading to neuronal apoptosis and dysfunction following paclitaxel treatment.
  • Emerging molecular targets for experimental therapeutics signify potential ways to address paclitaxel-induced cognitive deficits.

Abstract

Paclitaxel, a cornerstone taxane for solid-tumor chemotherapy, frequently precipitates long-lasting cognitive deficits, which are collectively termed chemotherapy-related cognitive impairment and often referred to as chemobrain or chemofog. Although the precise mechanisms are still being fully elucidated, a growing body of evidence from preclinical and clinical studies points to several key pathways and cellular targets. Evidence suggests that paclitaxel exerts potential neurotoxic effects through various mechanisms of action that stabilize microtubules and reduce their dynamicity, promoting mitotic halt and cell death. In this review, the major mechanisms and effects of paclitaxel are concisely summarized; these include neuroinflammation, oxidative stress, impaired neurogenesis and synaptic plasticity, neuronal apoptosis, hormonal imbalance, calcium dysregulation, altered white matter integrity, and mitochondrial dysfunction. By synthesizing published mechanistic data, this review highlights emerging molecular targets and experimental therapeutics to help prevent and mitigate paclitaxel-induced cognitive impairment.

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Ahmad Alhowail (2025) studied this question.

synapsesocial.com/papers/68d46fdc31b076d99fa6a4cchttps://doi.org/10.3389/fphar.2025.1684006
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