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Plasma-derived mitochondria as a minimal manipulation alternative for attenuating inflammatory immune responses
Seong-Hoon Kim1, Eun-Seo Back2, Ikhyun Lim1
1Department of Bio-Convergence Science, Graduate School, CHA University, Seongnam 13488, Republic of Korea.
Abstract:
Platelet-rich plasma (PRP) has long been used to promote tissue repair through its content of cytokines, growth factors and platelet-derived mitochondria (PLT-mito). While effective, PRP often triggers an early M1-type inflammatory response that may worsen symptoms in chronic inflammatory conditions and limit its clinical utility. Harvesting functional PLT-mito usually requires platelet activation or mechanical disruption, which can exceed minimal manipulation thresholds under regulatory guidelines. In contrast, plasma-derived mitochondria (p-mito) provide an alternative, as they are naturally present in circulating plasma and can be obtained by simple centrifugation without activation or cell disruption. In this study, we compared the effects of platelets, PLT-mito, platelet releasate and p-mito on macrophage polarization and fibroblast repair assays using THP-1 and HDF models. Macrophage polarization was quantified at the RNA level by PCR of M1-associated (CD80, CD86) and M2-associated (CD163, CD206) surface-marker transcripts after each treatment. Platelets and platelet releasate predominantly induced M1-like polarization, whereas both PLT-mito and p-mito promoted an M2 phenotype. Notably, p-mito achieved M2 induction comparable to PLT-mito without requiring prior activation or manipulation. In a fibroblast scratch migration assay, p-mito enhanced cell migration and proliferation, replicating the pro-reparative effects of platelets. These findings suggest that p-mito are a functionally competent, cell-free therapeutic modality capable of modulating macrophage phenotypes without triggering early inflammatory priming. This minimally manipulated, clinically accessible mitochondrial therapeutic can be prepared and applied in a manner similar to PRP, with the potential to reduce early pro-inflammatory responses.
Insights
Plasma-derived mitochondria (p-mito) promote tissue repair by inducing M2 macrophage polarization, offering a minimally manipulated alternative to platelet-rich plasma (PRP). These p-mito enhance fibroblast repair without triggering early inflammation.
Area of Science:
- Mitochondrial biology
- Regenerative medicine
- Immunomodulation
Background:
- Platelet-rich plasma (PRP) utilizes platelet-derived mitochondria (PLT-mito) for tissue repair but can induce pro-inflammatory M1 macrophage responses.
- Current methods for obtaining functional PLT-mito often involve activation or disruption, potentially exceeding regulatory thresholds.
- Plasma-derived mitochondria (p-mito) are naturally circulating and can be isolated via simple centrifugation, avoiding activation or disruption.
Purpose of the Study:
- To compare the effects of platelets, PLT-mito, platelet releasate, and p-mito on macrophage polarization and fibroblast repair.
- To evaluate p-mito as a cell-free therapeutic for modulating immune responses and promoting tissue regeneration.
- To assess if p-mito can achieve therapeutic benefits without inducing early inflammatory priming.
Main Methods:
- Macrophage polarization was assessed using THP-1 cells, quantifying M1 and M2 surface marker gene expression via PCR.
- Fibroblast repair was evaluated using a scratch migration assay with human dermal fibroblasts (HDFs).
- Treatments included platelets, PLT-mito, platelet releasate, and p-mito.
Main Results:
- Platelets and platelet releasate primarily induced M1-like macrophage polarization.
- Both PLT-mito and p-mito promoted an M2 macrophage phenotype.
- p-mito demonstrated M2 induction comparable to PLT-mito, without prior activation, and enhanced fibroblast migration and proliferation.
Conclusions:
- Plasma-derived mitochondria (p-mito) are a functionally competent, cell-free therapeutic.
- p-mito can modulate macrophage phenotypes towards an M2 (pro-reparative) state without early inflammatory priming.
- This minimally manipulated mitochondrial therapeutic offers a clinically accessible alternative to PRP with reduced pro-inflammatory potential.
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