Li Z, Terada N, Ohno N, Ohno S
Department of Anatomy, Interdisciplinary Graduate School of Medicine and Engineering, University of Yamanashi, 1110 Shimokato, Tamaho, Yamanashi 409-3898, Japan.
Histol Histopathol. 2005 Jul;20(3):807-16. doi: 10.14670/HH-20.807.
The purpose of this study is to visualize topographical changes of serum proteins, albumin and immunoglobulin, passing through mouse glomerular capillary loops and their reabsorption in renal proximal tubules by immunohistochemistry in combination with our "in vivo cryotechnique". The "in vivo cryotechnique" was performed on left mouse kidneys under normotensive, experimentally acute hypertensive and heart-arrest conditions. The cryofixed tissues by the technique were routinely processed for freeze-substitution. Serial deparaffinized sections were stained with hematoxylin-eosine and immunostained with anti-mouse albumin, immunoglobulin G (IgG), kappa or lambda light chain and IgG1 heavy chain antibodies. Under the normotensive and heart-arrest conditions, albumin and IgG were clearly immunolocalized in blood vessels and slightly in apical cytoplasmic parts of some proximal tubules. Under the acute hypertensive condition, the albumin and kappa or lambda light chains, but not IgG1 heavy chain, were strongly immunolocalized in the apical cytoplasm of almost all proximal tubules. This study is the first in vivo visualization for glomerular passage of serum proteins and their transtubular absorption. Thus, the "in vivo cryotechnique" with freeze-substitution can be used for clarifying not only the functional morphology of living animal cells, but also in situ immunohistochemical localization of their components.
本研究的目的是通过免疫组织化学结合我们的“体内冷冻技术”,观察血清蛋白、白蛋白和免疫球蛋白通过小鼠肾小球毛细血管袢的形态变化及其在近端肾小管中的重吸收情况。“体内冷冻技术”在正常血压、实验性急性高血压和心脏骤停条件下对小鼠左肾进行。通过该技术冷冻固定的组织常规进行冷冻置换处理。连续脱蜡切片用苏木精-伊红染色,并用抗小鼠白蛋白、免疫球蛋白G(IgG)、κ或λ轻链以及IgG1重链抗体进行免疫染色。在正常血压和心脏骤停条件下,白蛋白和IgG在血管中免疫定位清晰,在一些近端小管顶端细胞质部分免疫定位较弱。在急性高血压条件下,白蛋白和κ或λ轻链而非IgG1重链在几乎所有近端小管顶端细胞质中免疫定位强烈。本研究首次在体内观察到血清蛋白的肾小球滤过及其跨肾小管吸收。因此,结合冷冻置换的“体内冷冻技术”不仅可用于阐明活体动物细胞的功能形态,还可用于其成分的原位免疫组织化学定位。