Skip to content
Open access

β2-Adrenergic receptor antagonists are not protective against spinal cord injury-induced bone loss.

Aug 2026 · Bone · Vol 213, pp. 118049 · 0 citations · 121 references
Medicine

TL;DR

It is demonstrated that while blocking β2-ARs is sufficient to reduce NE-driven osteoclastogenesis, excessive NE does not fully explain SCI-induced bone loss.

Abstract

Bone loss is an underestimated consequence of spinal cord injury (SCI), that manifests rapidly and is resistant to currently available treatments including exercise, functional electrical stimulation, anabolic agents, and bisphosphonates. While changes in adrenergic signaling have been linked to bone loss, it remains unclear whether maladaptive sympathetic signaling drives SCI-induced bone loss. We evaluated the effects of sympathetic blockade on SCI-induced bone loss using primary bone marrow osteoclast cultures and an in vivo rat model of a moderate T11 spinal contusion injury using young (300-350 g) male Sprague Dawley rats. In vitro, pre-osteoclast formation was significantly elevated in SCI cultures compared to shams, and exogenous norepinephrine (NE) robustly enhanced this effect. Concomitant administration of adrenergic receptor (AR) antagonists, with varying α- and β-AR selectivity, completely attenuated this NE-driven osteoclastogenesis. Moving in vivo, we utilized a novel intraosseous catheter for targeted delivery of labetalol (mixed α- and β-AR antagonist) and butoxamine (selective β-AR antagonist) directly into the sublesional (below the level of injury) bone marrow space for 28 consecutive day, beginning 24 h post-injury. Analysis of the femur microarchitecture from both legs revealed that blocking local sympathetic signaling failed to protect trabecular bone after SCI. Furthermore, while both labetalol and butoxamine had no effect on locomotor recovery, post-injury weight loss was increased compared to saline-treated SCI controls. These findings demonstrate that while blocking β2-ARs is sufficient to reduce NE-driven osteoclastogenesis, excessive NE does not fully explain SCI-induced bone loss. Local AR antagonists do not appear to be a viable therapeutic strategy to mitigate SCI-induced osteoporosis.

Read PDF

Similar papers

Aug 2026

Targeting A3 adenosine receptor signaling to enhance analgesia in nonresponders to spinal cord stimulation in male nerve-injured rats.

ABSTRACT Spinal cord stimulation (SCS) is a clinically approved therapy for neuropathic pain (NP), yet a substantial subset of patients fails to respond or shows minimal efficacy, so-called nonresponders. It remains unclear how to resolve this SCS nonresponsiveness. Using a NP model induced by tibial-sparing nerve inju...

Zhao-Li Luo, Jing Liu, Xiang Cui et al. · 0 citations
Open access Aug 2026

The NE-adrenergic receptor axis drives osteoarthritis progression via neurovascular cross-talk: a dual-responsive hydrogel strategy.

Osteoarthritis (OA) progression is strongly driven by the dysregulated interplay between the sympathetic nerve and abnormal vascularization, severely affecting patients' physical and mental well-being. In this study, temporomandibular joint osteoarthritis (TMJ-OA) was induced in mice using a unilateral anterior crossbi...

Haoyan Zhao, Jia-Lu Gao, Weiwei Zhu et al. · 0 citations
Open access Sep 2026

Therapeutic Effects of Prostaglandin E2 Receptor Subtype 3 Blockade on Spinal Cord Injury-Induced Detrusor Overactivity

Objective: Detrusor overactivity (DO) is a severe urological disorder in spinal cord injury (SCI) patients. Conventional pharmacological interventions, such as antimuscarinic agents, show limited therapeutic efficacy and are often associated with adverse effects. Emerging evidence indicates that prostaglandin E2 (PGE2)...

Lin-Chen Lv, Xiao-Jian Xu, Dong-Yue Guo et al. · 0 citations
Open access Sep 2026

Orthodontic Root Resorption in Spontaneously Hypertensive Rats: Modulation by β2-Adrenergic Receptor Blockade

Background/Objectives: Hypertension is associated with abnormal bone metabolism and enhanced bone resorption, and altered sympathetic/adrenergic signaling has been proposed as one contributing mechanism. Orthodontically induced inflammatory root resorption (OIRR) involves periodontal ligament inflammation, odontoclast...

Tomoma Yoshida, Takuma Sato, Mifumi Takahashi et al. · 0 citations
Review Open access Aug 2026

Peripheral Nerve Injury and Denervation-Induced Sarcopenia with a Focus on Pharmacological Dual-Target Strategies

Peripheral nerve injury (PNI) causes rapid disruption of neuromuscular connectivity, leading to sarcopenia characterized by muscle wasting, mitochondrial dysfunction, and metabolic imbalance. Although calcium dysregulation and aberrant AMPK/mTOR signaling are known contributors, the molecular cascade linking nerve inju...

Chawon Yun, J. Won, So-Young Lee et al. · 0 citations
Open access Sep 2026

Kainate-induced ATP release contributes to spinal excitotoxicity that is attenuated by purinergic blockade.

Introduction Severe spinal cord injury (SCI) is characterized by irreversible neuronal loss and permanent motor/sensory dysfunction with very limited treatment. This study aimed to assess the role of purinergic signalling at a very early stage of SCI following focal chemical injury induced by kainate (KA). Methods Ma...

Benjamín A. Zylberberg, M. F. Coronel, G. L. Mazzone · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.