Akisaka T, Miyaji T, Yoshida H, Inoue M
Department of Anatomy, Asahi University School of Dentistry, Gifu, Japan.
J Anat. 1997 Apr;190 ( Pt 3)(Pt 3):433-45. doi: 10.1046/j.1469-7580.1997.19030433.x.
For comparison with chemically fixed osteoclasts, we prepared chick osteoclasts by quick freezing followed by freeze-substitution. In spite of technical difficulties this demonstrated that osteoclasts can be satisfactorily frozen in situ by the metal contact method. Ultrastructural differences were revealed between conventional fixation and quick freezing. Compared with conventional fixation, the quick freezing method appeared to improve preservation: (1) a discrete trilaminar plasma membrane and other intracellular membranes showed a smooth profile without undulation or rupture; (2) cytoskeletal components appeared to be clearer, straighter, and more numerous; (3) the interior of the ruffled finger contained interconnected lattice structures whereas highly organised microfilaments were seen in the clear zone; (4) well developed tubulovesicular structures (TVSs) that branched or anastomosed with each other were revealed in the cytoplasm; (5) the contents of intracellular membrane systems including the nuclear envelope, endoplasmic reticulum, and Golgi complex were stained to a various extent; (6) vesicles and vacuoles were much smaller, round and well-defined with electron-dense contents; (7) crystalline structures were seen at the extracellular channels of the ruffled border, in the lumen of TVSs, and in vesicles; (8) in some instances mitochondrial granules were visible; (9) within the resorptive lacuna, osteoclasts adhered to the degraded bone matrix without any intervening empty space.
为了与化学固定的破骨细胞进行比较,我们通过快速冷冻随后进行冷冻置换的方法制备了鸡破骨细胞。尽管存在技术困难,但这表明通过金属接触法可以在原位令人满意地冷冻破骨细胞。常规固定和快速冷冻之间显示出超微结构差异。与常规固定相比,快速冷冻方法似乎改善了保存效果:(1)离散的三层质膜和其他细胞内膜呈现出光滑的轮廓,没有起伏或破裂;(2)细胞骨架成分似乎更清晰、更直且数量更多;(3)皱褶缘内部包含相互连接的晶格结构,而在透明区可见高度组织化的微丝;(4)在细胞质中发现了发育良好的相互分支或吻合的管状小泡结构(TVS);(5)包括核膜、内质网和高尔基体复合体在内的细胞内膜系统的内容物有不同程度的染色;(6)囊泡和液泡小得多,呈圆形且界限清晰,内容物电子密度高;(7)在皱褶缘的细胞外通道、TVS的管腔和囊泡中可见晶体结构;(8)在某些情况下可见线粒体颗粒;(9)在吸收陷窝内,破骨细胞粘附于降解的骨基质,没有任何中间空隙。