Arsenault A L
Electron Microscopic Facility, Faculty of Health Sciences, McMaster University, Hamilton, Ontario, Canada.
Calcif Tissue Int. 1991 Jan;48(1):56-62. doi: 10.1007/BF02555796.
This study is concerned with the cryogenic preservation of intrafibrillar apatite distribution in type I collagen of turkey leg tendons. Cryogenic specimen preparations by the rapid freezing of nonfixed and noncryoprotected leg tendons were performed by two different protocols: (1) low temperature substitution, fixation and staining followed by low temperature embedment; (2) frozen hydrated and air-dried cryosections were examined with the electron microscope at -165 degrees C and normal operating temperatures, respectively. These protocols revealed the axial periodicity for mineralized collagen to have a 65-69 nm range with a mean value of 67 nm as determined by point-to-point measurements. Mineral distributions and specific apatite visualization were examined by electron microscopic imaging in bright field and selected-area dark field, respectively. Fourier filtered images and image subtraction were used to separate the axial repeating and nonrepeating intrafibrillar mineral domains of collagen. The removal of these axial repeats revealed an underlying and integrated mineral distribution, demonstrating that apatite is not confined to axial periodicities such as those of the gap zone.
本研究关注火鸡腿肌腱I型胶原蛋白中纤维内磷灰石分布的低温保存。通过两种不同方案对未固定和未添加冷冻保护剂的腿肌腱进行快速冷冻来制备低温标本:(1)低温置换、固定和染色,随后进行低温包埋;(2)分别在-165℃和正常工作温度下用电子显微镜检查冷冻水合和空气干燥的冰冻切片。这些方案显示,通过逐点测量确定,矿化胶原蛋白的轴向周期性范围为65 - 69 nm,平均值为67 nm。分别通过明场电子显微镜成像和选区暗场电子显微镜成像检查矿物质分布和特定磷灰石可视化。使用傅里叶滤波图像和图像减法来分离胶原蛋白纤维内轴向重复和非重复的矿物质区域。去除这些轴向重复后揭示了一种潜在的整体矿物质分布,表明磷灰石并不局限于诸如间隙区那样的轴向周期性分布。