Polymeric Particle BAM15 Targeting Macrophages Attenuates the Severity of LPS-Induced Sepsis: A Proof of Concept for Specific Immune Cell-Targeted Therapy

Author:

Udompornpitak Kanyarat12ORCID,Bhunyakarnjanarat Thansita12,Saisorn Wilasinee23ORCID,Manipuntee Chonnavee45,Plengplang Kittawat2,Sittichaitaweekul Samarch2,Jenphatanapong Panisa2,Udomkarnjananun Suwasin6ORCID,Kaewduangduen Warerat5,Ariya-anandech Kasirapat5,Samaeng Amanee5,Insin Numpon45,Ritprajak Patcharee57ORCID,Leelahavanichkul Asada12

Affiliation:

1. Department of Microbiology, Faculty of Medicine, Chulalongkorn University, Bangkok 10330, Thailand

2. Center of Excellence in Translational Research on Immunology and Immune-Mediated Diseases (CETRII), Department of Microbiology, Faculty of Medicine, Bangkok 10330, Thailand

3. Interdisciplinary Program of Biomedical Sciences, Graduate School, Chulalongkorn University, Bangkok 10330, Thailand

4. Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand

5. Research Unit in Integrative Immuno-Microbial Biochemistry and Bioresponsive Nanomaterials, Faculty of Dentistry, Chulalongkorn University, Bangkok 10330, Thailand

6. Division of Nephrology, Department of Medicine, Faculty of Medicine, Chulalongkorn University and King Chulalongkorn Memorial Hospital, Bangkok 10330, Thailand

7. Department of Microbiology, Faculty of Dentistry, Chulalongkorn University, Bangkok 10330, Thailand

Abstract

Macrophage polarization requires different energy sources and metabolic processes. Therefore, cell energy interference to alter macrophage functions has been proposed as a treatment for severe inflammatory diseases, including sepsis. In this study, targeting cell energy using BAM15 (a mitochondrial uncoupling agent) in human THP-1 and mouse RAW264.7 macrophages prominently interfered with M1 but not M2 polarization. Free BAM15 (BAM15) and BAM15-loaded PLGA particles (BAM15 particles) reduced the inflammatory response of M1 macrophages and enhanced the expression of M2 signature genes with the restoration of mitochondrial activity (extracellular flux analysis) in RAW264.7 cells. Furthermore, BAM15 particles but not BAM15 showed specific effects on the inflammatory response of macrophages but not neutrophils, and the particles were actively captured by splenic and liver macrophages in vivo. Administration of BAM15 and BAM15 particles attenuated the severity of sepsis in LPS-induced sepsis mice. Interestingly, BAM15 particles but not BAM15 alleviated LPS-induced liver injury by reducing hepatic inflammation. Our findings substantiate the superior efficacy of macrophage-targeted therapy using a BAM15 particle-delivery system and provide further support for clinical development as a potential therapy for severe inflammatory diseases.

Funder

NSRF

Thailand Science research and Innovation Fund Chulalongkorn University

Rachadapisek Sompote

Rachadapisek Sompote Matching Fund

Publisher

MDPI AG

Subject

Pharmaceutical Science

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