Savadori Paolo, Dalfino Sophia, Piazzoni Marco, Inchingolo Francesco, Del Fabbro Massimo, Tartaglia Gianluca Martino, Giardino Luciano
Department of Biomedical, Surgical and Dental Sciences, Università degli Studi di Milano, 20133 Milan, Italy.
IRCCS Fondazione Ca'Granda IRCCS Ospedale Maggiore Policlinico, 20122 Milan, Italy.
Bioengineering (Basel). 2023 Jan 6;10(1):79. doi: 10.3390/bioengineering10010079.
Decalcification of hard tissues such as bone and teeth is a complex process that requires using chemicals such as acids and chelating agents. Acids act faster than chelating agents, but they have a greater risk of damaging biological samples. Increasing the reaction speed of the chelating agent may solve this issue. There are several strategies to speed up this process, and using microwaves seems to be one of the most effective. However, lab-dedicated microwave ovens are expensive, and their purchase may seem unjustified. Therefore, a low-cost modification of a commercial microwave oven, consisting of an Arduino automation device, has been developed. The setup has proven reliable for continuous work, thanks to implementing an electronic safety circuit. In addition, it may reduce the decalcification time using a chelating agent, achieving optimal results regarding tissue preservation and quality of histological sections.
骨骼和牙齿等硬组织的脱钙是一个复杂的过程,需要使用酸和螯合剂等化学物质。酸的作用比螯合剂更快,但它们对生物样本造成损害的风险更大。提高螯合剂的反应速度可能会解决这个问题。有几种加速这一过程的策略,使用微波似乎是最有效的策略之一。然而,实验室专用微波炉价格昂贵,购买它们似乎不合理。因此,已经开发了一种由Arduino自动化设备组成的商用微波炉低成本改装装置。由于实施了电子安全电路,该装置已被证明可可靠地连续工作。此外,它可以减少使用螯合剂的脱钙时间,在组织保存和组织学切片质量方面取得最佳效果。