α1 adrenergic receptor agonist, phenylephrine, actively contracts early rat rib fracture callus ex vivo

老茧 苯肾上腺素 哌唑嗪 兴奋剂 内分泌学 化学 内科学 敌手 特布他林 受体 离体 受体拮抗剂 医学 生物 体外 植物 生物化学 哮喘 血压
作者
Stuart J. McDonald,Philip C. Dooley,Aaron C. McDonald,Elvan Djouma,Johannes A. Schuijers,Alex R. Ward,Brian L. Grills
出处
期刊:Journal of Orthopaedic Research [Wiley]
卷期号:29 (5): 740-745 被引量:12
标识
DOI:10.1002/jor.21302
摘要

Abstract Early, soft fracture callus that links fracture ends together is smooth muscle‐like in nature. We aimed to determine if early fracture callus could be induced to contract and relax ex vivo by similar pathways to smooth muscle, that is, contraction via α 1 adrenergic receptor (α 1 AR) activation with phenylephrine (PE) and relaxation via β 2 adrenergic receptor (β 2 AR) stimulation with terbutaline. A sensitive force transducer quantified 7 day rat rib fracture callus responses in modified Krebs–Henseliet (KH) solutions. Unfractured ribs along with 7, 14, and 21 day fracture calluses were analyzed for both α 1 AR and β 2 AR gene expression using qPCR, whilst 7 day fracture callus was examined via immunohistochemistry for both α 1 AR and β 2 AR‐ immunoreactivity. In 7 day callus, PE (10 −6 M) significantly induced an increase in force that was greater than passive force generated in calcium‐free KH ( n = 8, mean 51% increase, 95% CI: 26–76%). PE‐induced contractions in calluses were attenuated by the α 1 AR antagonist, prazosin (10 −6 M; n = 7, mean 5% increase, 95% CI: 2–11%). Terbutaline did not relax callus. Gene expression of α 1 ARs was constant throughout fracture healing; however, β 2 AR expression was down‐regulated at 7 days compared to unfractured rib ( p < 0.01). Furthermore, osteoprogenitor cells of early fibrous callus displayed considerable α 1 AR‐like immunoreactivity but not β 2 AR‐like immunoreactivity. Here, we demonstrate for the first time that early fracture callus can be pharmacologically induced to contract. We propose that increased concentrations of α 1 AR agonists such as noradrenaline may tonically contract callus in vivo to promote osteogenesis. © 2010 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 29:740–745, 2011
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