Therapeutic Effects of Engineered Exosomes from RAW264.7 Cells Overexpressing hsa-let-7i-5p against Sepsis in Mice—A Comparative Study with Human Placenta-Derived Mesenchymal Stem Cell Exosomes

Author:

Le Van Long12ORCID,Chang Chao-Yuan34ORCID,Chuang Ching-Wei4567ORCID,Syu Syuan-Hao4589,Shih Hung-Jen1011,Nguyen Vo Hong-Phuc112ORCID,Van Minh Nguyen2,Huang Chun-Jen4567

Affiliation:

1. International Ph.D. Program in Medicine, College of Medicine, Taipei Medical University, Taipei 110, Taiwan

2. Department of Anesthesiology and Intensive Care & Emergency Medicine, Hue University of Medicine and Pharmacy, Hue City 52000, Vietnam

3. Department of Medical Research, Wan Fang Hospital, Taipei Medical University, Taipei 116, Taiwan

4. Integrative Research Center for Critical Care, Wan Fang Hospital, Taipei Medical University, Taipei 116, Taiwan

5. Graduate Institute of Clinical Medicine, College of Medicine, Taipei Medical University, Taipei 110, Taiwan

6. Department of Anesthesiology, Wan Fang Hospital, Taipei Medical University, Taipei 116, Taiwan

7. Department of Anesthesiology, School of Medicine, College of Medicine, Taipei Medical University, Taipei 110, Taiwan

8. Department of Urology, School of Medicine, College of Medicine, Taipei Medical University, Taipei 110, Taiwan

9. Department of Urology, Wan Fang Hospital, Taipei Medical University, Taipei 116, Taiwan

10. Division of Urology, Department of Surgery, Changhua Christian Hospital, Changhua 500, Taiwan

11. Department of Post-Baccalaureate Medicine, College of Medicine, National Chung Hsing University, Taichung 402, Taiwan

12. Department of Anesthesiology, College of Medicine, Can Tho University of Medicine and Pharmacy, Can Tho City 900000, Vietnam

Abstract

This study compared the therapeutic effects of engineered exosomes derived from RAW264.7 cells overexpressing hsa-let-7i-5p (engineered exosomes) to exosomes from human placenta-derived mesenchymal stem cells (hpMSC exosomes) against sepsis-induced acute lung injury. Adult male C57BL/6 mice were divided into lipopolysaccharide (LPS), LPS plus engineered exosome (LEExo), or LPS plus hpMSC exosome (LMExo) groups, alongside control groups. The results showed that lung injury scores (based on pathohistological characteristics) and the levels of lung function alterations, tissue edema, and leukocyte infiltration in LEExo and LMExo groups were comparable and significantly lower than in the LPS group (all p < 0.05). Furthermore, the levels of inflammation (nuclear factor-κB activation, cytokine upregulation), macrophage activation (hypoxia-inducible factor-1α activation, M1 phase polarization), oxidation, and apoptosis were diminished in LEExo and LMExo groups compared to the LPS group (all p < 0.05). Inhibition of hsa-let-7i-5p attenuated the therapeutic effects of both engineered and hpMSC exosomes. These findings underscore the potent therapeutic capacity of engineered exosomes enriched with hsa-let-7i-5p and their potential as an alternative to hpMSC exosomes for sepsis treatment. Continued research into the mechanisms of action and optimization of engineered exosomes could pave the way for their future clinical application.

Funder

Taiwan Ministry of Science and Technology

Wan Fang Hospital

Publisher

MDPI AG

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