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胚胎运动的早期影响:“黑暗中的一击”

Early effects of embryonic movement: 'a shot out of the dark'.

作者信息

Pitsillides Andrew A

机构信息

Department of Veterinary Basic Sciences, Royal Veterinary College, London, UK.

出版信息

J Anat. 2006 Apr;208(4):417-31. doi: 10.1111/j.1469-7580.2006.00556.x.

Abstract

It has long been appreciated that studying the embryonic chick in ovo provides a variety of advantages, including the potential to control the embryo's environment and its movement independently of maternal influences. This allowed early workers to identify movement as a pivotal factor in the development of the locomotor apparatus. With an increasing focus on the earliest detectable movements, we have exploited this system by developing novel models and schemes to examine the influence of defined periods of movement during musculoskeletal development. Utilizing drugs with known neuromuscular actions to provoke hyperactivity (4-aminopyridine, AP) and either rigid (decamethonium bromide, DMB) or flaccid (pancuronium bromide, PB) paralysis, we have examined the role of movement in joint, osteochondral and muscle development. Our initial studies focusing on the joint showed that AP-induced hyperactivity had little, if any, effect on the timing or scope of joint cavity elaboration, suggesting that endogenous activity levels provide sufficient stimulus, and additional mobilization is without effect. By contrast, imposition of either rigid or flaccid paralysis prior to cavity formation completely blocked this process and, with time, produced fusion of cartilaginous elements and formation of continuous single cartilaginous rods across locations where joints would ordinarily form. The effect of these distinct forms of paralysis differed, however, when treatment was initiated after formation of an overt cavity; rigid, but not flaccid, paralysis partly conserved precavitated joints. This observation suggests that 'static' loading derived from 'spastic' rigidity can act to preserve joint cavities. Another facet of these studies was the observation that DMB-induced rigid paralysis produces a uniform and specific pattern of limb deformity whereas PB generated a diverse range of fixed positional deformities. Both also reduced limb growth, with different developmental periods preferentially modifying specific osteochondral components. Changes in cartilage and bone growth induced by 3-day periods of flaccid immobilization, imposed at distinct developmental phases, provides support for a diminution in cartilage elaboration at an early phase and for a relatively delayed influence of movement on osteogenesis, invoking critical periods during which the developing skeleton becomes receptive to the impact of movement. Immobilization also exerts differential impact along the proximo-distal axis of the limb. Finally, our preliminary results support the possibility that embryonic hyperactivity influences the potential for postnatal muscle growth.

摘要

长期以来,人们认识到在鸡胚内研究鸡胚具有多种优势,包括能够独立于母体影响来控制胚胎的环境及其运动。这使得早期的研究人员能够确定运动是运动器官发育的关键因素。随着对最早可检测到的运动的关注度不断提高,我们通过开发新的模型和方案来利用这个系统,以研究肌肉骨骼发育过程中特定运动时期的影响。利用具有已知神经肌肉作用的药物来引发多动(4-氨基吡啶,AP)以及强直(溴化十烃季铵,DMB)或弛缓(泮库溴铵,PB)性麻痹,我们研究了运动在关节、骨软骨和肌肉发育中的作用。我们最初关注关节的研究表明,AP诱导的多动对关节腔形成的时间或范围几乎没有影响,这表明内源性活动水平提供了足够的刺激,额外的活动没有作用。相比之下,在腔形成之前施加强直或弛缓性麻痹完全阻断了这个过程,并且随着时间的推移,导致软骨成分融合,并在通常会形成关节的部位形成连续的单一软骨棒。然而,当在明显的腔形成后开始治疗时,这些不同形式的麻痹的效果有所不同;强直但不是弛缓性麻痹部分保留了预腔化的关节。这一观察结果表明,源自“痉挛性”强直的“静态”负荷可以起到保留关节腔的作用。这些研究的另一个方面是观察到DMB诱导的强直麻痹会产生均匀且特定的肢体畸形模式,而PB会产生各种不同的固定位置畸形。两者还都会减少肢体生长,不同的发育时期会优先改变特定的骨软骨成分。在不同发育阶段施加3天的弛缓性固定所诱导的软骨和骨骼生长变化,支持了在早期阶段软骨形成减少以及运动对骨生成的影响相对延迟的观点,这引出了发育中的骨骼对运动影响变得敏感的关键时期。固定还会沿着肢体的近端 - 远端轴产生不同的影响。最后,我们的初步结果支持胚胎多动会影响出生后肌肉生长潜力的可能性。

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