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首页> 外文期刊>Acta astronautica >The effect of hypergravity on the lens, cornea and tail regeneration in Urodela
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The effect of hypergravity on the lens, cornea and tail regeneration in Urodela

机译:超重力对Urodela晶状体,角膜和尾巴再生的影响

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摘要

In previous experiments onboard Russian Bion/Foton satellites it was found that exposure to microgravity causes changes in eye lens regeneration of Urodela. The changes included higher rate of regeneration, increased cell proliferation in lens anlage, and synchronization of lens restoration. Similar changes were observed regarding tail regeneration. Recently, investigations were performed to find out whether exposure to hypergravity could also alter lens, cornea and tail regeneration in the newt P. mild. Nine days prior to exposure the left lens was surgically removed through corneal incision and distal 1/3 of the tail was amputated, thus initiating regeneration. The experimental animals were allowed to recover for 9 days at 1 g and then exposed to 2 g for 12 days in an 8 ft diameter centrifuge at NASA Ames Research Center. The experimental animals were divided into 1 g controls, 2 g centrifugation animals, basal controls, and aquarium controls. Lens and corneal regeneration appeared to be inhibited in 2 g group compared to 1 g animals. In all 1 g controls, lens regeneration reached stages VII-IX in a synchronous fashion and corneal regeneration was nearly complete. In the 2 g newts, neural retinal detachment from the pigmented epithelium was seen in most operated eyes. It was also observed in the non-operated (right) eyes of the animals exposed to 2 g. The level of retinal detachment varied and could have been caused by hypergravity-induced high intraocular pressure. Regeneration (when it could be assessed) proceeded asynchronously, reaching stages from II to IX. Corneal restoration was also noticeably delayed and corneal morphology changed. Cell proliferation was measured using BrdU; the results were not comparable to the 1 g data because of retinal detachment. Previous investigations demonstrated that lens regeneration was controlled by the neural retina; therefore, lower regeneration rate at 2 g was, at least in part, associated with retinal detachment. FGF2 release by the neural retina and FGFR2 expression in the iris and other tissues could accelerate lens proliferation whereas its delay could be caused by retinal detachment, which may explain compromised regeneration at 2 g. Hypergravity (both 1 g and 2 g) increased tissue growth compared to aquarium control (as measured by regenerate volume) and altered the shape of tail regenerates they became curved downwards. The experimental results emphasize the important and versatile role gravity plays in tissue regeneration. They also suggest that, when considering hypergravity as a countermeasure that can be used in future space missions, its potential impact on the eye should not be ignored.
机译:在先前的俄罗斯Bion / Foton卫星上的实验中,发现暴露于微重力会导致Urodela的晶状体再生发生变化。这些变化包括更高的再生率,晶状体损伤时细胞增殖的增加以及晶状体修复的同步性。关于尾巴再生,观察到类似的变化。最近,进行了调查以发现过度重力是否还会改变轻度mild的晶状体,角膜和尾巴的再生。暴露前九天,通过角膜切口手术切除左晶状体,并截断尾巴的1/3,从而开始再生。使实验动物以1 g恢复9天,然后在NASA Ames研究中心的8英尺直径离心机中暴露于2 g 12天。将实验动物分为1g对照,2g离心动物,基础对照和水族馆对照。与1 g动物相比,在2 g组中晶状体和角膜再生似乎受到抑制。在所有1 g对照中,晶状体再生以同步方式达到阶段VII-IX,并且角膜再生几乎完成。在2 g new中,在大多数手术眼睛中都可见到色素上皮神经视网膜脱离。在暴露于2 g的动物的非手术(右)眼中也观察到了这一现象。视网膜脱离的程度各不相同,可能是由超重力引起的高眼压引起的。再生(可以评估时)异步进行,从II到IX达到阶段。角膜修复也明显延迟并且角膜形态改变。使用BrdU测量细胞增殖;由于视网膜脱离,结果与1 g数据不具有可比性。先前的研究表明晶状体再生是由神经视网膜控制的。因此,2 g的较低再生速率至少部分与视网膜脱离有关。神经视网膜释放的FGF2和虹膜及其他组织中的FGFR2表达可加速晶状体增殖,而其延迟可能是由视网膜脱离引起的,这可能解释了2 g时再生受损。与水族箱对照组相比,超重力(分别为1 g和2 g)增加了组织的生长(通过再生体积测量),并且改变了尾部再生的形状,使它们向下弯曲。实验结果强调了重力在组织再生中的重要作用。他们还建议,在将超重力视为可以在未来太空飞行中使用的对策时,不应忽略其对眼睛的潜在影响。

著录项

  • 来源
    《Acta astronautica》 |2017年第9期|423-433|共11页
  • 作者单位

    Koltzov Inst Dev Biol RAS IDB RAS, 26 Vavilova St, Moscow 119334, Russia;

    NASA, Ames Res Ctr, Moffett Field, CA 94035 USA;

    Koltzov Inst Dev Biol RAS IDB RAS, 26 Vavilova St, Moscow 119334, Russia;

    NASA, Ames Res Ctr, Moffett Field, CA 94035 USA;

    Koltzov Inst Dev Biol RAS IDB RAS, 26 Vavilova St, Moscow 119334, Russia;

    NASA, Ames Res Ctr, Moffett Field, CA 94035 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Newt; Hypergravity; Regeneration; Lens; Cornea; Tail;

    机译:纽特;超重力;再生;镜片;角膜;尾巴;

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