钛培养容器呈现温度梯度,用于细胞耐热性评估。

IF 10.5 Q1 ENGINEERING, BIOMEDICAL Cyborg and bionic systems (Washington, D.C.) Pub Date : 2023-01-01 DOI:10.34133/cbsystems.0049
Chikahiro Imashiro, Yangyan Jin, Motoaki Hayama, Takahiro G Yamada, Akira Funahashi, Katsuhisa Sakaguchi, Shinjiro Umezu, Jun Komotori
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引用次数: 0

摘要

热疗可以诱导利用癌细胞比正常细胞更差的热不耐受,作为一种潜在的非侵入性癌症治疗。为了开发有效的热疗方法,必须全面研究细胞的热毒性。然而,要进行这样的研究,必须精确地调节培养温度。我们以前报道过一种利用金属培养容器精确调节培养温度的培养系统。然而,热疗的适当温度条件取决于细胞种类。因此,需要进行多次实验,这是诱导热疗的瓶颈。因此,我们开发了一种在金属培养表面上具有温度梯度的细胞培养系统。密歇根癌症基金会-7细胞和正常人真皮成纤维细胞分别作为癌症和正常细胞模型。正常细胞表现出较强的热耐受性;这是因为新系统立即表现出温度梯度。因此,开发的培养系统可用于研究有效热疗的最佳热条件。此外,由于目前的结果可以有效地评估培养细胞的反应,因此进一步的研究可能涉及细胞的热刺激。
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Titanium Culture Vessel Presenting Temperature Gradation for the Thermotolerance Estimation of Cells.

Hyperthermia can be induced to exploit the thermal intolerance of cancer cells, which is worse than that of normal cells, as a potential noninvasive cancer treatment. To develop an effective hyperthermia treatment, thermal cytotoxicity of cells should be comprehensively investigated. However, to conduct such investigations, the culture temperature must be accurately regulated. We previously reported a culture system in which the culture temperature could be accurately regulated by employing metallic culture vessels. However, appropriate temperature conditions for hyperthermia depend on the cell species. Consequently, several experiments need to be conducted, which is a bottleneck of inducing hyperthermia. Hence, we developed a cell culture system with temperature gradation on a metallic culture surface. Michigan Cancer Foundation-7 cells and normal human dermal fibroblasts were used as cancer and normal cell models, respectively. Normal cells showed stronger thermal tolerance; this was because the novel system immediately exhibited a temperature gradation. Thus, the developed culture system can be used to investigate the optimum thermal conditions for effective hyperthermia treatment. Furthermore, as the reactions of cultured cells can be effectively assessed with the present results, further research involving the thermal stimulation of cells is possible.

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CiteScore
7.70
自引率
0.00%
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审稿时长
21 weeks
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