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细胞固有生物纳米限域通过材料捕获与信号调控控制肿瘤转移

英文原题:Cellular Innate Biological Nano Confinements Control Cancer Metastasis Through Materials Seizing and Signaling Regulating.

查看英文原题

Cellular Innate Biological Nano Confinements Control Cancer Metastasis Through Materials Seizing and Signaling Regulating.

PubMed 2023/01/01(内容时间) Technol Cancer Res Treat Q3 · IF 2.7(JCR 2025)

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中文摘要

癌症是一种致残性疾病,每年在全球造成数百万人死亡。由于需要适应营养需求,癌细胞常比正常细胞消耗更多能量。为开发新的癌症治疗策略,需要了解其能量代谢的潜在机制,但目前这方面认识仍有限。近期研究显示,细胞内源性纳米域参与细胞能量代谢、合成代谢及G蛋白偶联受体(GPCR)信号调节,并直接影响细胞命运和功能。因此,利用细胞内源性纳米域可能产生显著治疗影响,并将研究重点从外源纳米材料转向细胞内源性纳米域,为开发癌症新治疗模式带来巨大潜力。基于这些观点,本文简要讨论细胞内源性纳米域的影响及其推动癌症治疗发展的潜力,并提出“内源性生物纳米限域”概念,涵盖细胞内外具有空间异质性的所有内源性结构和功能纳米域。

展开英文摘要原文

Cancer is a debilitating disease, causing millions of deaths annually throughout the world. Due to their adaptive ability to meet nutritional demands, cancer cells often utilize more energy than normal cells.

In order to develop new strategies to treat cancer, it is necessary to understand the underlying mechanisms of energy metabolism, which is yet largely unknown. Recent studies have shown that cellular innate nanodomains are involved in cellular energy metabolism and anabolism and GPCRs signaling regulation, which have a direct effect on cell fate and functions.

Therefore, harnessing cellular innate nanodomains may evoke significant therapeutic impact and shift the research focus from exogenous nanomaterials to cellular innate nanodomains, which will have great potential to develop a new treatment modality for cancer.

Keeping these points in view, we briefly discuss the impact of cellular innate nanodomains and their potential for advancing cancer therapeutics, and propose the concept of innate biological nano confinements, which include any innate structural and functional nano domains both in extracellular and intracellular with spatial heterogeneity.

论文信息

作者
Zhao Z、Deng S、Lv Z、Yang J
第一作者单位
Department of Neurosurgery of 91589Gansu Provincial People's Hospital, Lanzhou, China.China
通讯作者单位
Shanghai Tenth People's Hospital, 481875Tongji University School of Medicine, Shanghai, China.China
文献类型
非美国政府资助研究
期刊
Technology in cancer research & treatment2023 Jan-Dec
原文标识
PubMed 36802987 · DOI 10.1177/15330338231158917