火车
脉搏(音乐)
光热治疗
计算生物学
生物
生物系统
计算机科学
化学
生物物理学
细胞生物学
纳米技术
材料科学
电信
地理
地图学
探测器
作者
Ian C. Miller,Lena Gamboa,Joe Maenza,Jason P. Weis,Gabriel A. Kwong
标识
DOI:10.1021/acssynbio.7b00455
摘要
Engineered T cells are transforming broad fields in biomedicine, yet our ability to control cellular activity at specific anatomical sites remains limited. Here we engineer thermal gene switches to allow spatial and remote control of transcriptional activity using pulses of heat. These gene switches are constructed from the heat shock protein HSP70B' (HSPA6) promoter, show negligible basal transcriptional activity, and activate within an elevated temperature window of 40-45 °C. Using engineered Jurkat T cells implanted in vivo, we use plasmonic photothermal heating to trigger gene expression at specific sites to levels greater than 200-fold. We show that delivery of heat as thermal pulse trains significantly increase cellular thermal tolerance compared to continuous heating curves with identical area-under-the-curve (AUC), enabling long-term control of gene expression in Jurkat T cells. This approach expands the toolkit of remotely controlled genetic devices for basic and translational applications in synthetic immunology.
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