葡萄糖剥夺的肿瘤微环境激活 AMP 活化蛋白激酶驱动过继转移的 T 辅助 9 细胞衰老
Glucose-deprived tumor microenvironment activates AMP-activated protein kinase to drive adoptively transferred T helper 9 cell senescence.
辅助性T细胞9(Th9)细胞在针对实体瘤的过继细胞治疗(ACT)中显示出前景。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Viability variation of T-cells under ultrasound exposure according to adhesion condition with bubbles.
Viability variation of T-cells under ultrasound exposure according to adhesion condition with bubbles.
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为了使细胞保留在血管壁上,确定适当的超声条件(包括声压和波形)对于维持细胞活力至关重要。
尽管细胞免疫疗法有望成为新的癌症治疗方法,但其在实体瘤中的治疗效率有限,因为大多数细胞会返回血流中,而不是粘附在目标部位。因此,我们受到启发,开发一种技术,利用超声暴露下对气泡包裹细胞的主动控制,在血流中浓缩细胞,同时考虑细胞可控性和活力两个方面。
我们制备了一种脂质气泡偶联配体,以粘附于T细胞表面。首先,我们通过持续超声暴露将细胞保留在人工血管壁上,评估了细胞可控性。接下来,我们研究了在不同气泡浓度的悬浮液中超声暴露下的细胞活力。
我们估算了当细胞表面黏附达到饱和时的气泡浓度。随后,我们评估了不同超声暴露条件和气泡浓度下的细胞活力。然而,已证实细胞损伤发生在实现对细胞适当控制的条件下。因此,我们将细胞暴露于 burst 波以降低所施加的超声强度。结果,细胞活力的显著增加被证实与占空比成反比。
Although cellular immunotherapy is expected as a new cancer treatment, its therapeutic efficiency is limited in solid tumors, because most cells return to the bloodstream rather than adhere to the target site. Therefore, we are motivated to develop a technique to concentrate the cells in the blood flow using active control of bubble-surrounded cells under ultrasound exposure considering both aspects of cell controllability and viability.
We prepared a lipid bubble conjugating ligand to adhere to the surface of the T-cells. First, we evaluated the cell controllability by retaining the cells on a wall of an artificial blood vessel through continuous ultrasound exposure. Next, we investigated the cell viability under ultrasound exposure in a suspension with various bubble concentrations.
We estimated the concentration of bubbles when the adhesion to the cell surface was saturated. Then, we evaluated the cell viability with various conditions of ultrasound exposure and bubble concentrations. However, it was confirmed that cell damage occurred under conditions that achieved proper control of the cells. Therefore, we exposed the cells to burst waves to reduce the applied ultrasound intensity. Consequently, the significant increase in cell viability was confirmed to be inversely proportional to the duty ratio.
To retain cells on a vessel wall, determining the appropriate ultrasound condition including sound pressure and waveform is important to maintain cell viability.
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