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Published on: June 10, 2016
Myofibroblast-derived exosomes enhance macrophages to myofibroblasts transition and kidney fibrosis
Wenqiang Yu1, Jinfang Song2, Shuangquan Chen1
1Department of Anesthesiology, Foshan Women and Children Hospital, Foshan, China.
Abstract:
A critical event in the pathogenesis of kidney fibrosis is the transition of macrophages into myofibroblasts (MMT). Exosomes play an important role in crosstalk among cells in the kidney and the development of renal fibrosis. However, the role of myofibroblast-derived exosomes in the process of MMT and renal fibrosis progression remains unknown. Here, we examined the role of myofibroblast-derived exosomes in MMT and kidney fibrogenesis. In vitro, transforming growth factor-β1 stimulated the differentiation of kidney fibroblasts into myofibroblasts and promoted exosome release from myofibroblasts. RAW264.7 cells were treated with exosomes derived from myofibroblasts. We found purified exosomes from myofibroblasts trigger the MMT. By contrast, inhibition of exosome production with GW4869 or exosome depletion from the conditioned media abolished the ability of myofibroblasts to induce MMT. Mice treatment with myofibroblast-derived exosomes (Myo-Exo) exhibited severe fibrotic lesion and more abundant MMT cells in kidneys with folic acid (FA) injury, which was negated by TANK-banding kinase-1 inhibitor. Furthermore, suppression of exosome production reduced collagen deposition, extracellular matrix protein accumulation, and MMT in FA nephropathy. Collectively, Myo-Exo enhances the MMT and kidney fibrosis. Blockade of exosomes mediated myofibroblasts-macrophages communication may provide a novel therapeutic target for kidney fibrosis.
Insights
Myofibroblast-derived exosomes promote kidney fibrosis by triggering macrophage to myofibroblast transition. Inhibiting exosome production offers a potential therapeutic strategy for kidney fibrosis.
Area of Science:
- Nephrology
- Cell Biology
- Biochemistry
Background:
- Kidney fibrosis pathogenesis involves macrophage to myofibroblast transition (MMT).
- Exosomes mediate cellular communication in renal fibrosis.
- The role of myofibroblast-derived exosomes in MMT and fibrosis is unclear.
Purpose of the Study:
- To investigate the role of myofibroblast-derived exosomes in MMT and kidney fibrosis progression.
- To determine if exosomes from myofibroblasts can induce MMT and exacerbate kidney fibrosis.
Main Methods:
- In vitro differentiation of fibroblasts into myofibroblasts and exosome isolation.
- Treatment of RAW264.7 cells with myofibroblast-derived exosomes.
- Inhibition of exosome production using GW4869.
- In vivo folic acid (FA)-induced nephropathy model in mice treated with myofibroblast-derived exosomes and TANK-binding kinase-1 inhibitor.
Main Results:
- Myofibroblast-derived exosomes induced MMT in vitro.
- Exosome production inhibition or depletion abolished myofibroblast-induced MMT.
- Myofibroblast-derived exosomes exacerbated kidney fibrosis and MMT in vivo.
- Suppression of exosome production reduced fibrosis markers in FA nephropathy.
Conclusions:
- Myofibroblast-derived exosomes enhance MMT and kidney fibrosis.
- Blocking exosome-mediated communication between myofibroblasts and macrophages is a potential therapeutic target for kidney fibrosis.
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