Yang Yanjun, Liu Qingbai, Zhang Liwei, Fu Xuejie, Chen Jianquan, Hong Dun
Orthopedic Institute, Medical College, Soochow University, Suzhou, Jiangsu, China.
Department of Orthopedics, The First Affiliated Hospital of Soochow University, Suzhou, Jiangsu, China.
J Orthop Translat. 2020 Mar 31;26:92-100. doi: 10.1016/j.jot.2020.03.001. eCollection 2021 Jan.
BACKGROUND/OBJECTIVE: Histology-based analyses are important tools to dissect cellular and molecular mechanisms of skeletal homeostasis, diseases, and regeneration. The success of these efforts is highly dependent on rapidly obtaining high-quality sections of mineralized skeletal tissues suitable for various analyses. However, the current techniques for preparing such sections are still far from satisfactory. This study aimed to develop a new approach for preparing high-quality undecalcified bone sections applicable to various histological analyses.
Two important modifications were made to the conventional Cryojane Tape-Transfer System, including utilization of an optimized adhesive to prepare adhesive glass slides for improving the transfer efficiency, and a cheap conventional benchtop UV transilluminator for UV curing. Cryosections of undecalcified rodent bones were prepared using this modified tape transfer approach, and their tissue morphology and structural integrity were visually examined. A variety of histological analyses, including calcein labeling, Von kossa staining, immunofluorescence, and enzymatic activity staining as well as 5-Ethynyl-2'-deoxyuridine (EdU) and TUNEL assays, were performed on these sections.
We developed a modified version of tape transfer approach that can prepare cryosections of undecalcified rodent adult bones within 4 days at a low cost. Bone sections prepared by this approach exhibited good tissue morphology and structural integrity. Moreover, these sections were applicable to a variety of histological analyses, including calcein labeling, Von kossa staining, immunofluorescence, and enzymatic activity staining as well as EdU and TUNEL assays.
The tape transfer approach we developed provides a rapid, affordable, and easy learning method for preparing high-quality undecalcified bone sections valuable for bone research.
Our research provides a rapid, affordable, and easy learning method for preparing high-quality undecalcified bone sections that can be potentially used for accurate diagnosis of various bone disorders and evaluation of the efficacy of different therapies in the treatment of these diseases.
背景/目的:基于组织学的分析是剖析骨骼稳态、疾病和再生的细胞及分子机制的重要工具。这些研究的成功高度依赖于快速获取适用于各种分析的矿化骨骼组织的高质量切片。然而,目前制备此类切片的技术仍远不能令人满意。本研究旨在开发一种新方法,用于制备适用于各种组织学分析的高质量脱钙骨切片。
对传统的Cryojane胶带转移系统进行了两项重要改进,包括使用优化的粘合剂制备粘性载玻片以提高转移效率,以及使用廉价的传统台式紫外线透射仪进行紫外线固化。使用这种改良的胶带转移方法制备脱钙啮齿动物骨骼的冰冻切片,并通过肉眼检查其组织形态和结构完整性。对这些切片进行了多种组织学分析,包括钙黄绿素标记、冯·科萨染色、免疫荧光和酶活性染色,以及5-乙炔基-2'-脱氧尿苷(EdU)和TUNEL检测。
我们开发了一种改良的胶带转移方法,该方法可以在4天内低成本制备脱钙成年啮齿动物骨骼的冰冻切片。通过这种方法制备的骨切片具有良好的组织形态和结构完整性。此外,这些切片适用于多种组织学分析,包括钙黄绿素标记、冯·科萨染色、免疫荧光和酶活性染色,以及EdU和TUNEL检测。
我们开发的胶带转移方法为制备高质量脱钙骨切片提供了一种快速、经济且易于学习的方法,对骨研究具有重要价值。
我们的研究提供了一种快速、经济且易于学习的方法来制备高质量脱钙骨切片,这些切片可潜在地用于各种骨疾病的准确诊断以及评估不同疗法治疗这些疾病的疗效。