Williams J A
Cell Tissue Res. 1977 Apr 29;179(4):453-66. doi: 10.1007/BF00219848.
The effects of cytochalasin B (CB) on pancreatic structure and amylase release were studied by use of pancreatic fragments, isolated acini and isolated acinar cells. In pancreatic fragments and isolated acini CB caused the disappearance of microfilaments underlying the apical plasma membrane, loss of apical microvilli and luminal swelling, the last of which was greatly enhanced by addition of protein secretagogues. CB had no effect on basal amylase release but inhibited bethanechol-stimulated amylase in both fragments and acini. Isolated acinar cells, while retaining overall polarity, had lost most of the apical specialization including the microfilament and microvillous complex. Cells were still able to release amylase in response to bethanechol but this release was not affected by CB. The only structural effect of CB on isolated cells was margination of zymogen granules against the plasma membrane. This was, however, not accompanied by increased amylase release. It is concluded that microfilaments are important in maintaining the pancreatic acinar structure. Interference with this structure by CB leads to inhibition of bethanechol-stimulated amylase release. Microfilaments, however, may not play a direct role in secretion.
利用胰腺碎片、分离的腺泡和分离的腺泡细胞研究了细胞松弛素B(CB)对胰腺结构和淀粉酶释放的影响。在胰腺碎片和分离的腺泡中,CB导致顶端质膜下微丝消失、顶端微绒毛丧失和管腔肿胀,添加蛋白质促分泌剂后,管腔肿胀大大增强。CB对基础淀粉酶释放没有影响,但抑制了碎片和腺泡中氨甲酰甲胆碱刺激的淀粉酶释放。分离的腺泡细胞虽然保持了整体极性,但失去了大部分顶端特化结构,包括微丝和微绒毛复合体。细胞仍能对氨甲酰甲胆碱作出反应释放淀粉酶,但这种释放不受CB影响。CB对分离细胞的唯一结构影响是酶原颗粒沿质膜边缘分布。然而,这并未伴随着淀粉酶释放增加。结论是微丝在维持胰腺腺泡结构中很重要。CB对这种结构的干扰导致氨甲酰甲胆碱刺激的淀粉酶释放受到抑制。然而,微丝可能在分泌过程中不发挥直接作用。