Department of Pathology & Laboratory Medicine, Emory University, Atlanta, GA.
Department of Pathology & Laboratory Medicine, Emory University, Atlanta, GA;
J Vis Exp. 2021 Jun 11(172). doi: 10.3791/62143.
CLARITY (Clear Lipid-exchanged Acrylamide-hybridized Rigid Imaging compatible Tissue hYdrogel) has recently evolved as a valuable technique involving acrylamide embedding to delipidate tissue (without sectioning) and to preserve the 3-D tissue structure for immunostaining. The technique is highly relevant in imaging the dynamic gut environment where different cell types interact during homeostasis and disease states. This method optimized for the mouse gut is described here, which helps to trace cell types like epithelia, enteroendocrine, neurons, glia, and the neuronal projections into the epithelia or enteroendocrine cells that mediate microbial sensing or nutrient chemo sensing respectively. The gut tissue (1-1.5 cm) is fixed in 4% paraformaldehyde (PFA) in phosphate buffered saline (PBS) at 4 °C overnight on day 1. On day 2, PFA is discarded, and the tissue is washed thrice with PBS. The tissue is hydrogel embedded to preserve its integrity by incubation in 4% hydrogel (acrylamide) solution in PBS (diluted from 30% ProtoGel) overnight at 4 °C. On day 3, the tissue-hydrogel solution is incubated at 37 °C for 1 h to allow hydrogel polymerization. Tissue is then washed thrice gently with PBS to remove excess hydrogel. The subsequent step of delipidation (clearing) involves tissue incubation in sodium dodecyl sulfate (8% SDS in PBS) at 37 °C for 2 days (days 4 & 5) on a shaker at room temperature (RT). On day 6, the cleared tissue is thoroughly washed with PBS to remove SDS. Tissue can be immunostained by incubation in primary antibodies (diluted in 0.5% normal donkey serum in PBS containing 0.3% Triton X-100), overnight at 4°C, and subsequent incubation in appropriate secondary Alexa Fluor antibodies for 1.5 h at RT, and nuclear staining with DAPI (1: 10000). The tissue is transferred onto a clean glass slide and mounted using VectaShield for confocal imaging.
CLARITY(Clear Lipid-exchanged Acrylamide-hybridized Rigid Imaging compatible Tissue hYdrogel)最近已经发展成为一种有价值的技术,涉及丙烯酰胺包埋以脱脂质组织(无需切片)并保留 3-D 组织结构进行免疫染色。该技术在成像动态肠道环境中非常相关,在该环境中,不同的细胞类型在稳态和疾病状态下相互作用。这里描述了针对小鼠肠道进行优化的方法,该方法有助于追踪细胞类型,如上皮细胞、肠内分泌细胞、神经元、神经胶质细胞,以及分别介导微生物感应或营养化学感应的神经元投射到上皮细胞或肠内分泌细胞中。肠道组织(1-1.5 厘米)在 4%多聚甲醛(PFA)在磷酸盐缓冲盐水(PBS)中于 4°C 固定过夜第 1 天。第 2 天,丢弃 PFA,并用 PBS 洗涤组织 3 次。组织通过在 PBS 中孵育 4%水凝胶(丙烯酰胺)溶液(从 30% ProtoGel 稀释)来保持其完整性,在 4°C 下孵育过夜第 3 天。第 3 天,将组织-水凝胶溶液在 37°C 下孵育 1 小时以允许水凝胶聚合。然后用 PBS 轻轻洗涤组织 3 次以去除多余的水凝胶。随后的脱脂质(透明化)步骤涉及将组织在十二烷基硫酸钠(8%SDS 在 PBS 中)中于 37°C 孵育 2 天(第 4 天和第 5 天)在室温(RT)下的振荡器上。第 6 天,用 PBS 彻底洗涤清除组织以去除 SDS。可以通过在 4°C 下孵育过夜,然后在适当的二级 Alexa Fluor 抗体中孵育 1.5 小时来对组织进行免疫染色在 RT 下,并用 DAPI(1:10000)进行核染色。将组织转移到干净的载玻片上,并用 VectaShield 进行共聚焦成像。