Mühlfeld Christian, Richter Joachim
Division of Electron Microscopy, Department of Anatomy, University of Göttingen, Göttingen, Germany.
Anat Rec A Discov Mol Cell Evol Biol. 2006 Oct;288(10):1059-67. doi: 10.1002/ar.a.20380.
The value of high-pressure freezing (HPF) and freeze substitution (FS) for immunoelectron microscopy (immuno-EM) of the heart was investigated in bioptic specimens taken from isolated hearts of 0-, 5-, and 14-day-old rats at baseline and at 15, 30, 45, and 60 min after induction of ischemia. The target antigen chosen here was the gap junction protein connexin 43 (Cx43). After HPF and FS, immunogold labeling was applied for detection of Cx43. Gold particles associated with gap junction areas, free plasma membrane, and annular gap junctions (AGJs) were counted and distributions compared by contingency table analysis. HPF and FS resulted in excellent preservation of antigenicity for Cx43. The mostly good preservation of the ultrastructure was limited by mechanical damage at the border and by ice crystal formation in the center of the tissue blocks. In normal myocardium of newborns, gold particles associated with free plasma membrane were frequently observed, with AGJs only seldom. In older rats, the opposite relation was found. During ischemia, no distribution changes occurred in newborn or 14-day-old rats. In 5-day-old rats, however, ischemia induced a shift of Cx43 from gap junction plaques to AGJs. In conclusion, HPF and FS are an ideal alternative to chemical fixation for immuno-EM as the excellent preservation of antigenicity is combined with a well-preserved ultrastructure. The results indicate that the process of degradation of gap junctions via AGJs gradually increases during postnatal rat heart development, a process that may be accelerated by ischemia in an early developmental state.
在取自0日龄、5日龄和14日龄大鼠离体心脏的活检标本中,研究了高压冷冻(HPF)和冷冻置换(FS)在心脏免疫电子显微镜(免疫电镜)中的应用价值,这些标本分别处于基线状态以及缺血诱导后15、30、45和60分钟。此处选择的靶抗原是缝隙连接蛋白连接蛋白43(Cx43)。经过HPF和FS处理后,采用免疫金标记法检测Cx43。对与缝隙连接区域、游离质膜和环形缝隙连接(AGJ)相关的金颗粒进行计数,并通过列联表分析比较分布情况。HPF和FS能出色地保存Cx43的抗原性。超微结构的保存大多良好,但受组织块边缘的机械损伤以及组织块中心冰晶形成的限制。在新生大鼠的正常心肌中,经常观察到与游离质膜相关的金颗粒,而AGJ则很少见。在成年大鼠中,情况则相反。在缺血过程中,新生大鼠或14日龄大鼠未出现分布变化。然而,在5日龄大鼠中,缺血导致Cx43从缝隙连接斑转移至AGJ。总之,HPF和FS是免疫电镜化学固定的理想替代方法,因为其出色地保存了抗原性,同时超微结构也保存良好。结果表明,在出生后大鼠心脏发育过程中,通过AGJ降解缝隙连接的过程逐渐增加,在早期发育状态下,缺血可能会加速这一过程。