RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor therapeutic response monitored by telemetric temperature sensing, a preclinical study on immunotherapy and chemotherapy.
Tumor therapeutic response monitored by telemetric temperature sensing, a preclinical study on immunotherapy and chemotherapy.
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体内的温度和肿瘤温度反映了生理和病理状况。一种可靠、非接触且简便的测量系统可用于长期监测疾病进展和治疗反应。在本研究中,将小型化无电池无线芯片植入小动物正在生长的肿瘤中,以捕获基础体温和肿瘤温度动态。三种临床前模型:黑色素瘤(B16)、乳腺癌(4T1)和结肠癌(MC-38),分别接受过继性T细胞转移、AC-T化疗和抗PD-1免疫治疗。每个模型呈现出独特的温度历史模式,取决于肿瘤特征并受所施治疗的影响。某些特征与阳性治疗反应相关,例如过继性T细胞转移后体温和肿瘤温度的短暂降低,化疗后肿瘤温度的升高,以及抗PD-1治疗后体温的持续下降。通过成本效益高的遥测传感追踪体内热活动,有可能在无需复杂成像或实验室检测的情况下为患者提供更早的治疗评估。通过永久植入物对肿瘤微环境进行多参数按需监测,并将其整合到健康信息系统中,可进一步推进癌症管理并减轻患者负担。
Temperature in the body and the tumor reflects physiological and pathological conditions. A reliable, contactless, and simplistic measurement system can be used for long-term monitoring of disease progression and therapy response. In this study, miniaturized battery-free wireless chips implanted into growing tumors on small animals were used to capture both basal and tumor temperature dynamics. Three preclinical models: melanoma (B16), breast cancer (4T1), and colon cancer (MC-38), were treated with adoptive T cell transfer, AC-T chemotherapy, and anti-PD-1 immunotherapy respectively. Each model presents a distinctive pattern of temperature history dependent on the tumor characteristic and influenced by the administered therapy.
Certain features are associated with positive therapeutic response, for instance the transient reduction of body and tumor temperature following adaptive T cell transfer, the elevation of tumor temperature following chemotherapy, and a steady decline of body temperature following anti-PD-1 therapy.
Tracking in vivo thermal activity by cost-effective telemetric sensing has the potential of offering earlier treatment assessment to patients without requiring complex imaging or lab testing. Multi-parametric on-demand monitoring of tumor microenvironment by permanent implants and its integration into health information systems could further advance cancer management and reduce patient burden.
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