Osterlin S, Fritz K
Department of Ophthalmology, University of Lund, Malmö General Hospital, Sweden.
Graefes Arch Clin Exp Ophthalmol. 1994 Jul;232(7):426-31. doi: 10.1007/BF00186585.
It has long been held that pilocarpine-induced ciliary muscle contraction causes a mechanical change in the configuration of the trabecular meshwork, thereby increasing its fluid conductance. Though the results of many studies are consistent with this theory, other findings suggest a direct action of pilocarpine on the meshwork. We used cultured bovine trabecular meshwork (BTM) cells to study the cell biological effects of pilocarpine, chemically a weak base, and demonstrated increased vacuolization of the BTM cells after incubation with pilocarpine, reflecting a trapping of the protonated base inside the lysosomes. We also showed that pilocarpine enhanced the release of lysosomal hydrolases into the medium. We hypothesize that this is clinically relevant and that the pilocarpine-induced release of hydrolases modifies the extracellular matrix of the trabecular meshwork, thereby increasing its fluid conductance.
长期以来,人们一直认为毛果芸香碱诱导的睫状肌收缩会导致小梁网结构发生机械性变化,从而增加其液体传导率。尽管许多研究结果与该理论一致,但其他发现表明毛果芸香碱对小梁网有直接作用。我们使用培养的牛小梁网(BTM)细胞来研究毛果芸香碱(化学上是一种弱碱)的细胞生物学效应,并证明在与毛果芸香碱孵育后BTM细胞空泡化增加,这反映了质子化碱被困在溶酶体内。我们还表明,毛果芸香碱增强了溶酶体水解酶向培养基中的释放。我们推测这在临床上具有相关性,并且毛果芸香碱诱导的水解酶释放会改变小梁网的细胞外基质,从而增加其液体传导率。