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Fangyong Wang

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Review Open access Aug 2026

Comparative pharmacotherapeutic efficacy and dose-related safety profiles of intrathecal baclofen: a systematic review and meta-analysis in neurological spasticity

Intrathecal baclofen (ITB) acts as a selective GABA B receptor agonist to modulate spinal inhibitory pathways. While effective for severe spasticity, the pharmacotherapeutic efficacy and safety profile across distinct neurological etiologies—cerebral palsy (CP), spinal cord injury (SCI), and brain injury (BI)—remain poorly characterized from a comparative pharmacological perspective. We systematically searched five global databases (up to August 2025) for trials evaluating ITB therapy. Random-effects models were employed to synthesize efficacy data, focusing on dose-response relationships and clinical outcomes. 15 studies (6 RCTs, 9 observational) were analyzed. Our results demonstrate that ITB significantly reduced Ashworth Scale scores across all subgroups, but with marked etiology-specific variations in effective dosage requirements. Specifically, SCI patients exhibited the most significant reduction in spasm frequency. Safety pharmacology analysis revealed that pharmacological adverse events (AEs), such as somnolence and respiratory depression, were dose-dependent and more prevalent in BI populations. In contrast, hardware-related complications (e.g., catheter malfunction) were idiosyncratic but clinically severe. ITB therapy provides robust anti-spasticity effects mediated through its targeted action on spinal inhibitory circuits. However, the heterogeneity in dosage efficacy suggests etiology-driven differences in GABA B receptor sensitivity or drug distribution. These findings underscore the necessity for precision titration strategies based on patient-specific pathophysiology and highlight the importance of differentiating between pharmacodynamic side effects and mechanical complications to optimize the therapeutic index of ITB. https://www.crd.york.ac.uk/PROSPERO/view/CRD420251112388 , identifier CRD420251112388.

Haoyuan Chen, Hong-Hui Lei, Yang Yu et al. · 0 citations
Open access Aug 2026

Early high-frequency spinal cord stimulation modulates the ROS/p38 MAPK/NF-κB and CXCL10/CXCR3 pathways to alleviate neuropathic pain and promote spinal cord injury repair

High-frequency spinal cord stimulation (HF-SCS) is an effective method for treating neuropathic pain (NP), but its specific mechanism of action in treating spinal cord injury (SCI) remains unclear. The present study aimed to explore the therapeutic effect of early HF-SCS in a rat model of SCI and its potential molecular mechanism. A Sprague-Dawley rat model of T10 spinal cord contusion was established and stimulation electrodes were implanted epidurally, which was followed by HF-SCS treatment (40% movement threshold at a frequency of 10 kHz). Through behavioral assessments, histopathological analysis and immunofluorescence staining, the present study demonstrated that HF-SCS markedly alleviated post-SCI NP, facilitated functional recovery and accelerated axonal regeneration and myelin repair. Mechanistic studies employing RNA sequencing, western blotting and immunofluorescence further revealed that HF-SCS exerted its neuroprotective effect by downregulating the reactive oxygen species/p38 MAPK/NF-κB signaling pathway to reduce microglial activation and decrease the release of proinflammatory factors; simultaneously, it inhibited the activation of the C-X-C motif chemokine ligand 10/C-X-C motif chemokine receptor 3 axis to alleviate central sensitization. These findings suggest that early HF-SCS intervention can improve the functional prognosis after SCI by suppressing neuroinflammation and reducing central sensitization, thereby providing a theoretical basis for the treatment of SCI with HF-SCS.

Sitong Su, Tao Liu, Hong-Hui Lei et al. · 0 citations