Silva Taylon F, Hutchins Elizabeth, Zhao Wenyan, Ciani Yari, Kim Minhyung, Ko Emily, Mariscal Javier, Qiu Zhuyu, Bedier Fatima, Kittel Agnes, Zhou Bo, Wang Yang, Hall Megan, Galasso Francesca, Reiman Rebecca, Freeman Michael R, Parker Sarah, Van Eyk Jennifer, Yang Wei, Posadas Edwin, Guarnerio Jlenia, Nolan John, Théry Clotilde, Zijlstra Andries, Stott Shannon, You Sungyong, Demichelis Francesca, Boutros Paul C, Van Keuren-Jensen Kendall, Di Vizio Dolores
Department of Urology, Division of Cancer Biology and Therapeutics, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
Neurogenomics Division, Translational Genomics Research Institute (TGen), Phoenix, AZ, USA.
Cell Rep Med. 2025 Jul 15;6(7):102161. doi: 10.1016/j.xcrm.2025.102161. Epub 2025 Jun 6.
Extracellular vesicles (EVs) are heterogeneous in size, biogenesis, content, and function. Aggressive cancer cells release a distinct, poorly characterized, and particularly large EV subtype, namely large oncosomes (LOs). This study employs an optimized method to improve LO yields and integrates mass spectrometry and RNA sequencing (RNA-seq) to profile their molecular cargo. A consistent set of proteins enriched in LOs is identified across glioma, prostate, and breast cancer cell lines. These proteins are also present as mRNA in LOs from the prostate cancer model and are abundant in plasma LOs from 20 patients with metastasis. Single-LO RNA-seq confirms bulk LO cargo, demonstrating the utility of single-cell technologies for large vesicle analysis. Our patient study provides proof-of-principle evidence that we can use multiomics to delve into EV heterogeneity, biogenesis, and composition. It also suggests that plasma LOs help stratify patients, supporting their potential prognostic value for developing a multi-analyte approach for liquid biopsy.
细胞外囊泡(EVs)在大小、生物发生、内容物和功能方面具有异质性。侵袭性癌细胞会释放一种独特的、特征不明且特别大的EV亚型,即大肿瘤小体(LOs)。本研究采用一种优化方法来提高LO的产量,并整合质谱和RNA测序(RNA-seq)来分析其分子货物。在胶质瘤、前列腺癌和乳腺癌细胞系中鉴定出一组一致的富含LO的蛋白质。这些蛋白质在前列腺癌模型的LO中也以mRNA形式存在,并且在20例转移患者的血浆LO中含量丰富。单LO RNA-seq证实了大量LO的货物,证明了单细胞技术在大囊泡分析中的实用性。我们的患者研究提供了原理证明证据,表明我们可以使用多组学来深入研究EV的异质性、生物发生和组成。这也表明血浆LO有助于对患者进行分层,支持它们在开发用于液体活检的多分析物方法方面的潜在预后价值。