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miRNA-221 of exosomes originating from bone marrow mesenchymal stem cells promotes oncogenic activity in gastric cancer

TLDR
Extracted exosomes from BM-MSCs transfected with miR-221 oligonucleotides can act as high-efficiency nanocarriers, which can provide sufficientmiR- 221 oligon nucleotides to influence the tumor microenvironment and tumor aggressiveness effectively.
Abstract
Worldwide, gastric cancer (GC) is one of the deadliest malignant tumors of the digestive system. Moreover, microRNAs (miRNAs) of exosomes harbored within cancer cells have been determined to induce inflammatory conditions that accelerate tumor growth and metastasis. Interestingly, the oncogenic role of bone marrow mesenchymal stem cells (BM-MSCs) in the modulation of immunosuppression, tumor invasion, and metastasis was discovered to be partly mediated through the secretion of exosomes. In this article, high expression of miRNA-221 (miR-221) in exosomes of the peripheral blood was determined to be positively correlated with the poor clinical prognosis of GC, especially with respect to tumor, node, and metastases stage. Therefore, the expression of miR-221 in exosomes of the peripheral blood may be an important detection index for GC. Proliferation, migration, invasion, and adhesion to the matrix of GC BGC-823 and SGC-7901 cells were significantly enhanced by exosomes that originated from BM-MSCs that were transfected with miR-221 mimics. In conclusion, extracted exosomes from BM-MSCs transfected with miR-221 oligonucleotides can act as high-efficiency nanocarriers, which can provide sufficient miR-221 oligonucleotides to influence the tumor microenvironment and tumor aggressiveness effectively. Notably, the use of a miR-221 inhibitor with an excellent restraining effect in exosomes provides therapeutic potential for GC in future clinical medicine.

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Exosome-Mediated Metastasis: Communication from a Distance.

TL;DR: Work on the contribution of exosome cargo to cancer progression, the role ofExosomes in PMN establishment, and the function of exOSomes in organotropic metastasis are reviewed.
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Exosome-Based Cell-Cell Communication in the Tumor Microenvironment.

TL;DR: The role of exosomes in the communication between tumor and tumor-associated cells is highlighted, highlighting the role of this process in the setup of tumor microenvironments that modulate tumor initiation and metastasis.
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Enhancement of therapeutic potential of mesenchymal stem cell-derived extracellular vesicles

TL;DR: A clear perspective on the state of the art of EVs in cell therapy focusing on MSCs is provided, and pertinent questions and suggestions for knowledge gaps to be filled are raised.
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Exosomes in gastric cancer: roles, mechanisms, and applications

TL;DR: The current understanding of exosomes in gastric cancer is summarized with an emphasis on the biological roles of exOSomes in Gastric cancer and their potential as biomarkers for gastriccancer diagnosis as well as potential targets for gastrics cancer therapy.
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lncRNA GAS5 Reverses EMT and Tumor Stem Cell-Mediated Gemcitabine Resistance and Metastasis by Targeting miR-221/SOCS3 in Pancreatic Cancer.

TL;DR: In this article, the authors explored the potential functions and mechanisms of GAS5 in pancreatic cancer (PC) gemcitabine resistance and metastasis, and showed that overexpression of growth arrest-specific 5 suppressed the proliferation, migration and stem cell-like properties of PC cells by directly binding to and suppressing miR-221 expression.
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