Atomic force microscopic studies on erythrocytes from an evolutionary perspective.

Kajal Bhattacharyya, Tapan Guha, Radhaballav Bhar, V Ganesan, Manoranjan Khan, Ratan Lal Brahmachary
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Abstract

We examined atomic force microscopy (AFM) and lateral force microscopy (LFM) images of human, avian, reptilian, amphibian, and piscine erythrocytes to determine whether the general pattern of erythrocyte membrane architecture has been largely conserved in the course of phylogenetic evolution or relatively minor modifications have taken place. The general pattern of the cell surface structure is indeed very similar among the phyla examined. The surface features include a number of blebs or globular structures and hole-like depressions. Such features are particularly clear in fish (Heteropneustes sp.), in which globular blebs are arranged in tiers around the depressions. The same pattern is found in the other phyla, although the sizes of the blebs and depressions vary. The depressions are approximately 340 and approximately 100 nm in diameter in chickens and fish, respectively, and are smaller in other phyla. The images of human erythrocytes presented here show holes more clearly than the images obtained by Zhang et al. (Scanning Electron Microsc., 1995; 9:981-989), who showed for the first time the highly uneven surface of these cells. The globules range in size from approximately 50-150 nm in diameter. These nanostructures have a width of approximately 333-1,000 atoms, assuming that the average dimension of an atom is 1.5 A. The size range of the holes is approximately 40-432 nm (equivalent to a width of approximately 266-2880 atoms). LFM images, which take into account the lateral component of the force, represent the variation of surface friction (roughness) on the erythrocyte surface. This is very clear in the toad images, which show well-ordered strata that have not been revealed in ordinary AFM images.

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从进化的角度看红细胞的原子力显微镜研究。
我们检查了人类、鸟类、爬行动物、两栖动物和鱼类红细胞的原子力显微镜(AFM)和侧向力显微镜(LFM)图像,以确定红细胞膜结构的一般模式在系统进化过程中是否在很大程度上保持不变,或者发生了相对较小的改变。在所研究的门中,细胞表面结构的一般模式确实非常相似。其表面特征包括许多气泡或球状结构和空洞状凹陷。这种特征在鱼类(Heteropneustes sp.)中特别明显,它们的球状泡在凹陷周围分层排列。在其他门中也发现了同样的模式,尽管水泡和凹陷的大小不同。鸡和鱼的凹陷直径分别约为340 nm和100 nm,其他门的凹陷较小。此处呈现的人类红细胞图像比Zhang等人(扫描电镜)获得的图像更清楚地显示出孔洞。, 1995;9:981-989),他首次展示了这些细胞的高度不均匀的表面。这些小球的直径大约在50-150纳米之间。假设原子的平均尺寸为1.5 a,这些纳米结构的宽度约为333- 1000个原子。孔的尺寸范围约为40-432 nm(相当于大约266-2880个原子的宽度)。LFM图像考虑了力的横向分量,代表了红细胞表面摩擦(粗糙度)的变化。这在蟾蜍的图像中非常清楚,它显示了在普通AFM图像中没有显示的有序地层。
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