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Open AccessJournal ArticleDOI

Exosome-mediated breast cancer chemoresistance via miR-155 transfer

TLDR
The results suggest that exosomes may intermediate resistance and migration capacity to sensitive cells partly through exosome transfer of miR-155, with implications for targeting miR -155 signaling as a possible therapeutic strategy.
Abstract
Breast cancer remains the most prevalent cause of cancer mortality in woman worldwide due to the metastatic process and therapy resistance. Resistance against cancer therapy is partially attributed to cancer stem cells (CSCs). These cells arise from epithelial cells undergoing epithelial-to-mesenchymal transition (EMT) and might be responsible for tumor recurrence. In this study, we reported the relevance of miR-155 upregulation in chemoresistant cells associated with EMT. Notably, we found miR-155 induction in exosomes isolated from CSCs and resistant cells, followed by resistant cells' exosome transfer to the recipient sensitive cells. Functionally, miR-155 mimic assay showed an enrichment in miR-155 from exosome concomitant with miR-155 exosome transfer to breast cancer cells. In parallel to these effects, we also observed EMT change in miR-155 transfected cells. The chemoresistance phenotype transfer to sensitive cells and the migration capability was analyzed by MTT and scratch assays and our results suggest that exosomes may intermediate resistance and migration capacity to sensitive cells partly through exosome transfer of miR-155. Taken together, our findings establish the significance of exosome-mediate miR-155 chemoresistance in breast cancer cells, with implications for targeting miR-155 signaling as a possible therapeutic strategy.

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Exosomes: composition, biogenesis, and mechanisms in cancer metastasis and drug resistance

TL;DR: Understanding exosome biogenesis, their contents and the molecular mechanisms and signaling pathways that are responsible for metastasis and drug-resistance mediated by TDEs may help to devise novel therapeutic approaches for cancer progression particularly to overcome therapy-res resistance and preventing metastasis as major factors of cancer mortality.
Journal ArticleDOI

LncRNA BCRT1 promotes breast cancer progression by targeting miR-1303/PTBP3 axis

TL;DR: Results reveal a novel HIF-1α/lnc RNA BCRT1/miR-1303/PTBP3 pathway for breast cancer progression and suggest that lncRNA B CRT1 might be a potential biomarker and therapeutic target for breast cancers.
Journal ArticleDOI

Extracellular vesicles-mediated intercellular communication: roles in the tumor microenvironment and anti-cancer drug resistance.

TL;DR: The role of extracellular vesicles in modulating the tumor microenvironment is addressed by addressing different aspects of the bidirectional interactions among tumor and tumor-associated cells.
Journal ArticleDOI

Exosome Biochemistry and Advanced Nanotechnology for Next-Generation Theranostic Platforms.

TL;DR: It is highly expected that the better and clearer elucidation of the fundamental principles for advanced nanotechnology in constructing exosome‐based theranostic nanoplatforms, as well as integrating the intrinsic advantages of exosomes as endogenous cell‐derived nanocarriers with the advanced design methodology of traditional nanomedicine, will help to unlock the innate powers ofExosomes for the establishment of next‐generation theranostics.
Journal ArticleDOI

Possibility of Exosome-Based Therapeutics and Challenges in Production of Exosomes Eligible for Therapeutic Application.

TL;DR: Current knowledge about therapeutic application of exosomes is summarized and some challenges in their successful use are discussed.
References
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Journal ArticleDOI

Exosome-mediated transfer of mRNAs and microRNAs is a novel mechanism of genetic exchange between cells

TL;DR: It is shown that exosomes contain both mRNA and microRNA, which can be delivered to another cell, and can be functional in this new location, and it is proposed that this RNA is called “exosomal shuttle RNA” (esRNA).
Journal ArticleDOI

In vitro scratch assay: a convenient and inexpensive method for analysis of cell migration in vitro

TL;DR: The in vitro scratch assay is particularly suitable for studies on the effects of cell–matrix and cell–cell interactions on cell migration, mimic cell migration during wound healing in vivo and are compatible with imaging of live cells during migration to monitor intracellular events if desired.
Journal ArticleDOI

Mechanisms of cancer drug resistance

TL;DR: The most common reason for acquisition of resistance to a broad range of anticancer drugs is expression of one or more energy-dependent transporters that detect and eject anti-cancer drugs from cells, but other mechanisms of resistance including insensitivity to drug-induced apoptosis and induction of drug-detoxifying mechanisms probably play an important role in acquired anticancer drug resistance as mentioned in this paper.
Journal ArticleDOI

In vitro propagation and transcriptional profiling of human mammary stem/progenitor cells

TL;DR: It is demonstrated that nonadherent mammospheres are enriched in early progenitor/stem cells and able to differentiate along all three mammary epithelial lineages and to clonally generate complex functional structures in reconstituted 3D culture systems.
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