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体内异常(RCS)和正常白化大鼠视紫红质的漂白和再生动力学。

Kinetics of bleaching and regeneration of rhodopsin in abnormal (RCS) and normal albino rats in vivo.

作者信息

Perlman I

出版信息

J Physiol. 1978 May;278:141-59. doi: 10.1113/jphysiol.1978.sp012297.

Abstract
  1. Rhodopsin concentration has been measured by the method of densitometry in retinae of rats with inherited retinal dystrophy (RCS) raised in darkness and compared with that of normal rats similarly reared. 2. In both RCS and normal rats the fraction of rhodopsin bleached is always directly proportional to the photon content of the light, I.t, where I is the light intensity in effective quanta (500 nm) cm-2 sec-1 and t is the duration of the bleaching exposure in seconds. 3. Rhodopsin photosensitivity for bleaching is slightly higher in RCS rats than in normals (2.3 (10)-16 cm2 chromophore-1 compared with 1.3 (10)-16 cm2 chromophore-1). 4. Rhodopsin regeneration in the dark in both RCS and normal rats cannot be described by the kinetics of a simple monomolecular chemical reaction. 5. Following 5 min bleaches, the regeneration rate becomes slower as the preceding bleach is made stronger. Regeneration in the dark is significantly faster in the RCS rats than in the normal ones. 6. In normal rats, after a full bleach, rhodopsin regenerates back to the dark-adapted level within 3--4 hr. In RCS rats rhodopsin regenerates to reach a plateau level, below the previous dark-adapted level, that lasts for several hours. 7. The faction of total rhodopsin that can regenerate gradually declines with age until in 70 days old RCS rats no rhodopsin regeneration can be measured by the ensitometer. However, total rhodopsin density (fully bleached-dark-adapted) is still close to normal.
摘要
  1. 采用密度测定法测量了在黑暗环境中饲养的遗传性视网膜营养不良(RCS)大鼠视网膜中的视紫红质浓度,并与同样饲养的正常大鼠进行了比较。2. 在RCS大鼠和正常大鼠中,视紫红质漂白的比例始终与光的光子含量I.t成正比,其中I是有效量子(500 nm)下的光强度,单位为cm-2 sec-1,t是漂白曝光的持续时间,单位为秒。3. RCS大鼠中视紫红质漂白的光敏性略高于正常大鼠(分别为2.3×10-16 cm2发色团-1和1.3×10-16 cm2发色团-1)。4. RCS大鼠和正常大鼠在黑暗中的视紫红质再生不能用简单单分子化学反应的动力学来描述。5. 在进行5分钟漂白后,随着前一次漂白强度的增加,再生速率会变慢。RCS大鼠在黑暗中的再生明显快于正常大鼠。6. 在正常大鼠中,完全漂白后,视紫红质在3 - 4小时内再生回暗适应水平。在RCS大鼠中,视紫红质再生达到一个稳定水平,低于之前的暗适应水平,并持续数小时。7. 可再生的视紫红质总量的比例会随着年龄逐渐下降,直到70天大的RCS大鼠中,用密度计无法测量到视紫红质的再生。然而,视紫红质的总密度(完全漂白 - 暗适应)仍接近正常。

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引用本文的文献

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J Gen Physiol. 1981 Mar;77(3):317-34. doi: 10.1085/jgp.77.3.317.

本文引用的文献

1
HEREDITARY DEGENERATION OF THE RAT RETINA.大鼠视网膜的遗传性退化
Br J Ophthalmol. 1938 Oct;22(10):613-23. doi: 10.1136/bjo.22.10.613.
5
QUANTUM RELATIONS OF THE RAT ELECTRORETINOGRAM.大鼠视网膜电图的量子关系
J Gen Physiol. 1963 Jul;46(6):1267-86. doi: 10.1085/jgp.46.6.1267.
6
Inherited retinal dystrophy in the rat.大鼠遗传性视网膜营养不良
J Cell Biol. 1962 Jul;14(1):73-109. doi: 10.1083/jcb.14.1.73.
8
Chemistry of visual adaptation in the rat.大鼠视觉适应的化学过程
Nature. 1960 Oct 8;188:114-8. doi: 10.1038/188114a0.
10
Regeneration of rhodopsin in the albino rat.白化大鼠视紫红质的再生
J Physiol. 1957 May 23;136(3):624-31. doi: 10.1113/jphysiol.1957.sp005787.

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