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No evidence for loss of short-wavelength sensitive cone photoreceptors in normal ageing of the primate retina

机译:没有证据表明在灵长类视网膜正常衰老过程中短波敏感视锥感光细胞会丢失

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摘要

In old world primates including humans, cone photoreceptors are classified according to their maximal sensitivity at either short (S, blue), middle (M, green) or long (L, red) wavelengths. Colour discrimination studies show that the S-cone pathway is selectively affected by age and disease, and psychophysical models implicate their loss. Photoreceptors have high metabolic demand and are susceptible to age or disease-related losses in oxygen and nutrient supply. Hence 30% of rods are lost over life. While comparable losses are not seen in cones, S-cones comprise less than 10% of the cone population, so significant loss would be undetected in total counts. Here we examine young and aged primate retinae stained to distinguish S from M/L-cones. We show there is no age-related cone loss in either cone type and that S-cones are as regularly distributed in old as young primates. We propose that S-cone metabolism is less flexible than in their M/L counterparts, making them more susceptible to deficits in normal cellular function. Hypoxia is a feature of the ageing retina as extracellular debris accumulates between photoreceptors and their blood supply which likely impacts S-cone function. However, that these cells remain in the ageing retina suggests the potential for functional restoration.
机译:在包括人在内的旧世界灵长类动物中,视锥细胞感光器是根据它们在短(S,蓝色),中(M,绿色)或长(L,红色)波长下的最大灵敏度进行分类的。颜色辨别研究表明,S-锥途径受年龄和疾病的影响,而心理物理模型暗示了它们的损失。光感受器具有很高的新陈代谢需求,并且容易受到与年龄或疾病相关的氧气和营养供应损失的影响。因此,有30%的鱼竿会在一生中丢失。尽管在视锥细胞中看不到可比的损失,但S锥占视锥细胞总数的不到10%,因此在总计数中将不会检测到明显的损失。在这里,我们检查了染色的幼龄和老年灵长类动物视网膜,以区分S与M / L锥。我们显示,在任何一种圆锥体中,都没有与年龄相关的圆锥体丢失,并且S-锥在年龄上与年轻的灵长类动物一样有规律地分布。我们建议S-锥体代谢不如其M / L同行灵活,使他们更容易受到正常细胞功能缺陷的影响。缺氧是视网膜老化的一个特征,因为细胞外碎片在感光器及其血液供应之间积聚,这可能会影响S-锥体的功能。然而,这些细胞保留在老化的视网膜中表明功能恢复的潜力。

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