激光杂志
激光雜誌
격광잡지
LASER JOURNAL
2014年
6期
74-77
,共4页
红细胞%细胞年龄%表面电荷%Percoll密度梯度离心法
紅細胞%細胞年齡%錶麵電荷%Percoll密度梯度離心法
홍세포%세포년령%표면전하%Percoll밀도제도리심법
Erythrocyte%cell age%surface charge%Percoll density gradient separation method
红细胞衰老过程中膜表面电荷的变化情况与其结构功能密切相关。针对以往研究对轻老龄红细胞膜表面电荷的差异性不确定的问题,本文从不同的细胞分离方法分离轻老龄红细胞的效果不同的角度,通过比较分离出的轻老龄红细胞表面唾液酸的含量和细胞膜的弯曲弹性模量Kc值,提出高速离心法和Percoll密度梯度离心法分离出的轻老龄红细胞间的细胞年龄差距不同,Percoll法分离出的细胞年龄差距更大。利用Percoll密度梯度离心法,进一步分离出四种不同细胞年龄的红细胞,由红细胞表面唾液酸的含量和表面Zeta电位值检验轻老龄红细胞膜表面带电状态的差异性,结果显示,轻老龄红细胞的膜表面电荷存在明显差别,且随着细胞年龄的增长,红细胞的膜表面负电荷逐渐减少。研究结果对红细胞的衰老机制及体内清除老化红细胞的途径等研究具有重要意义。
紅細胞衰老過程中膜錶麵電荷的變化情況與其結構功能密切相關。針對以往研究對輕老齡紅細胞膜錶麵電荷的差異性不確定的問題,本文從不同的細胞分離方法分離輕老齡紅細胞的效果不同的角度,通過比較分離齣的輕老齡紅細胞錶麵唾液痠的含量和細胞膜的彎麯彈性模量Kc值,提齣高速離心法和Percoll密度梯度離心法分離齣的輕老齡紅細胞間的細胞年齡差距不同,Percoll法分離齣的細胞年齡差距更大。利用Percoll密度梯度離心法,進一步分離齣四種不同細胞年齡的紅細胞,由紅細胞錶麵唾液痠的含量和錶麵Zeta電位值檢驗輕老齡紅細胞膜錶麵帶電狀態的差異性,結果顯示,輕老齡紅細胞的膜錶麵電荷存在明顯差彆,且隨著細胞年齡的增長,紅細胞的膜錶麵負電荷逐漸減少。研究結果對紅細胞的衰老機製及體內清除老化紅細胞的途徑等研究具有重要意義。
홍세포쇠로과정중막표면전하적변화정황여기결구공능밀절상관。침대이왕연구대경노령홍세포막표면전하적차이성불학정적문제,본문종불동적세포분리방법분리경노령홍세포적효과불동적각도,통과비교분리출적경노령홍세포표면타액산적함량화세포막적만곡탄성모량Kc치,제출고속리심법화Percoll밀도제도리심법분리출적경노령홍세포간적세포년령차거불동,Percoll법분리출적세포년령차거경대。이용Percoll밀도제도리심법,진일보분리출사충불동세포년령적홍세포,유홍세포표면타액산적함량화표면Zeta전위치검험경노령홍세포막표면대전상태적차이성,결과현시,경노령홍세포적막표면전하존재명현차별,차수착세포년령적증장,홍세포적막표면부전하축점감소。연구결과대홍세포적쇠로궤제급체내청제노화홍세포적도경등연구구유중요의의。
The surface electrical characteristics of aging erythrocytes are closely related to its structural func-tions. Owing to the uncertainty of the difference between young and old RBC’s membrane surface charge, in this study, we compared the separated results of young and old erythrocytes by the methods of high speed centrifugation and Percoll density gradient separation. With the results of membrane surface sialic acid content and membrane elas-tic modulus Kc, it was found that using Percoll density gradient separation method to separate young and old erythro-cytes is better than using high speed centrifugation, and the cell age gap between young and old erythrocytes is more greater. Further, four kinds of erythrocytes with different cell ages were separated by Percoll. Their surface membrane Zeta potential and sialic acid content are obviously different, indicating that the membrane surface negative charge of young RBC is different from the old one, which would get lower and lower with the increased cell age. The result is benefit to solve the mechanism of aging erythrocytes and the clearance pathways of aging erythrocytes in vivo.