PO.TB10.15 · 肿瘤生物学

环境对肿瘤来源外泌体分泌的影响

Environmental impact on the secretion of tumor-derived exosomes

海报缩略图:环境对肿瘤来源外泌体分泌的影响
编号 3360 展板 21 时间 4/20 02:00–05:00 区域 Section 26 主讲 Haylie Pullan, BS
分会场 Extracellular Vesicles and Long-Range Tumor-Host Communication
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作者与单位 Authors & Affiliations

Haylie Pullan

Brigham Young University, Provo, UT

摘要 Abstract

中文摘要
癌症仍然是世界上最突出、最具破坏性的健康问题之一。仅在2024年,估计美国就将诊断出2,001,140例新发癌症病例。在这200多万例病例中,将有611,720人死于该疾病(美国国家癌症研究所)。我们的目标是利用癌症肿瘤的基本进展和解剖结构,帮助应对这一夺去众多生命的可怕疾病。外泌体研究是一个新兴领域,它利用分泌的细胞外囊泡中的蛋白质、DNA和RNA来确定肿瘤特征并优化治疗策略。虽然这项创新技术前景广阔,但外泌体与其相关亲本细胞之间的关系仍未被充分理解。本研究旨在通过探究亲本细胞的环境条件与分泌外泌体特征之间的关系来弥补知识空白。这些特征包括蛋白质含量、类型以及外泌体与细胞的比值。以往文献指出,处于更具压力环境条件(如血清饥饿和缺氧)下的细胞将分泌更多外泌体。然而,我们认为外泌体的分泌取决于细胞系和环境。培养了构成胃肠道肿瘤的多种细胞系,包括Jurkat、THP-1、MRC5、HUVEC和AGS细胞,并将其置于这些条件下以分析其相关外泌体。这一方法使我们能够研究血清饥饿和缺氧的影响,结果表明培养基低营养导致外泌体数量减少,而缺氧条件增强则导致分泌增加。这一知识对癌症诊断和创新治疗策略可能具有广泛意义。我们的研究有望揭示外泌体与癌症之间复杂相互作用的洞见,为更有效的治疗方法作出贡献。
查看英文原文 English abstract
Cancer continues to be one of the most prominent and devastating health issues in the world. In the year 2024, an estimated 2,001,140 new cases of cancer were be diagnosed in the United States alone. Of those over 2 million cases, 611,720 people will die from the disease (National Cancer Institute). Our goal is to utilize the basic progression and anatomy of a cancer tumor to help address this horrible disease that takes the lives of so many. Exosomal research is a new field that utilizes proteins, DNA, and RNA from secreted extracellular vesicles to determine tumor characteristics and optimize treatment strategies. While this innovative technique holds promise, the relationship between exosomes and their associated parent cells remains inadequately understood. This research intends to bridge the gap in knowledge by investigating the relationship between the environmental conditions of the parent cell and the secreted exosome characteristics. These characteristics include protein content, types, and the exosome-to-cell ratio. It has been stated in previous literature that cells under more stressful environmental conditions, such as serum starvation and hypoxia, will secrete more exosomes. However, we believe the secretion of exosomes is dependent on cell line and environment. A variety of cell lines that make up a gastrointestinal tumor, including Jurkat, THP-1, MRC5, HUVEC, and AGS cells, were grown and put under these conditions to have their associated exosomes analyzed. This approach enabled us to investigate the impact of serum starvation and hypoxia, showing that low nutrition from media led to a decrease in the number of exosomes, while increased hypoxic conditions led to an increase in secretion. This knowledge can have broad implications for cancer diagnosis and innovative treatment strategies. Our research holds the potential to unveil insights into the intricate interplay between exosomes and cancer, contributing to more effective therapeutic approaches.
利益披露 Disclosure
H. Pullan, None.

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