The movement of mitochondria in breast cancer: internal motility and intercellular transfer of mitochondria DOI Creative Commons
Sarah Libring, Emily D. Berestesky, Cynthia A. Reinhart‐King

et al.

Clinical & Experimental Metastasis, Journal Year: 2024, Volume and Issue: 41(5), P. 567 - 587

Published: March 15, 2024

Abstract As a major energy source for cells, mitochondria are involved in cell growth and proliferation, as well migration, fate decisions, many other aspects of cellular function. Once thought to be irreparably defective, mitochondrial function cancer cells has found renewed interest, from suggested potential clinical biomarkers mitochondria-targeting therapies. Here, we will focus on the effect movement breast progression. Mitochondria move both within cell, such localize areas high energetic need, between where stroma have been shown donate their via multiple methods including tunneling nanotubes. The donation seen increase aggressiveness chemoresistance which increased recent efforts uncover mechanisms transfer. metabolism energetics gaining attention targets, better understanding implications required developing effective, targeted therapeutics patients.

Language: Английский

Exosomes as a modulator of immune resistance in human cancers DOI

Lanzhou Li,

Chunyue Wang, Qiucheng Li

et al.

Cytokine & Growth Factor Reviews, Journal Year: 2023, Volume and Issue: 73, P. 135 - 149

Published: Aug. 2, 2023

Language: Английский

Citations

12

Exosomes as a drug delivery tool for cancer therapy: a new era for existing drugs and oncolytic viruses DOI
Yoshihiko Kakiuchi, Shinji Kuroda, Nobuhiko Kanaya

et al.

Expert Opinion on Therapeutic Targets, Journal Year: 2023, Volume and Issue: 27(9), P. 807 - 816

Published: Sept. 2, 2023

Introduction Exosomes are cell-derived nanovesicles involved in cell-to-cell communications. These generally considered to contain important carriers of information such as DNA and RNA, show specific tropism.

Language: Английский

Citations

11

Unraveling the Multifaceted Roles of Extracellular Vesicles: Insights into Biology, Pharmacology, and Pharmaceutical Applications for Drug Delivery DOI Open Access
Ali Al-Jipouri, Àuria Eritja, Milica Božić

et al.

International Journal of Molecular Sciences, Journal Year: 2023, Volume and Issue: 25(1), P. 485 - 485

Published: Dec. 29, 2023

Extracellular vesicles (EVs) are nanoparticles released from various cell types that have emerged as powerful new therapeutic option for a variety of diseases. EVs involved in the transmission biological signals between cells and regulation processes, highlighting them potential novel targets/platforms therapeutics intervention and/or delivery. Therefore, it is necessary to investigate aspects EVs' biogenesis, biodistribution, metabolism, excretion well safety/compatibility both unmodified engineered upon administration different pharmaceutical dosage forms delivery systems. In this review, we summarize current knowledge essential physiological pathological roles organs organ We provide an overview regarding application targets, therapeutics, drug platforms. also explore approaches implemented over years improve specific EV products routes.

Language: Английский

Citations

11

Targeting the breast tumor microenvironment by plant-derived products and their nanoformulations DOI
Hongpeng Zhang, Yanshu Li

Journal of Drug Delivery Science and Technology, Journal Year: 2024, Volume and Issue: 93, P. 105432 - 105432

Published: Feb. 5, 2024

Language: Английский

Citations

4

The movement of mitochondria in breast cancer: internal motility and intercellular transfer of mitochondria DOI Creative Commons
Sarah Libring, Emily D. Berestesky, Cynthia A. Reinhart‐King

et al.

Clinical & Experimental Metastasis, Journal Year: 2024, Volume and Issue: 41(5), P. 567 - 587

Published: March 15, 2024

Abstract As a major energy source for cells, mitochondria are involved in cell growth and proliferation, as well migration, fate decisions, many other aspects of cellular function. Once thought to be irreparably defective, mitochondrial function cancer cells has found renewed interest, from suggested potential clinical biomarkers mitochondria-targeting therapies. Here, we will focus on the effect movement breast progression. Mitochondria move both within cell, such localize areas high energetic need, between where stroma have been shown donate their via multiple methods including tunneling nanotubes. The donation seen increase aggressiveness chemoresistance which increased recent efforts uncover mechanisms transfer. metabolism energetics gaining attention targets, better understanding implications required developing effective, targeted therapeutics patients.

Language: Английский

Citations

4