Extracellular Proteins Isolated from L. acidophilus as an Osteomicrobiological Therapeutic Agent to Reduce Pathogenic Biofilm Formation, Regulate Chronic Inflammation, and Augment Bone Formation In Vitro

Author:

Pugazhendhi Abinaya Sindu1,Seal Anouska1,Hughes Megan2,Kumar Udit3,Kolanthai Elayaraja3,Wei Fei1,Schwartzman Jonathan D.4,Coathup Melanie J.14ORCID

Affiliation:

1. Biionix Cluster University of Central Florida Orlando FL 32827 USA

2. Cardiff University Cardiff WA CF10 3AT UK

3. Advanced Materials Processing and Analysis Centre Nanoscience Technology Center (NSTC) University of Central Florida Orlando FL 32826 USA

4. College of Medicine University of Central Florida Orlando FL 32827 USA

Abstract

AbstractPeriprosthetic joint infection (PJI) is a challenging complication that can occur following joint replacement surgery. Efficacious strategies to prevent and treat PJI and its recurrence remain elusive. Commensal bacteria within the gut convey beneficial effects through a defense strategy named “colonization resistance” thereby preventing pathogenic infection along the intestinal surface. This blueprint may be applicable to PJI. The aim is to investigate Lactobacillus acidophilus spp. and their isolated extracellular‐derived proteins (LaEPs) on PJI‐relevant Staphylococcus aureus, methicillin‐resistant S. aureus, and Escherichia coli planktonic growth and biofilm formation in vitro. The effect of LaEPs on cultured macrophages and osteogenic, and adipogenic human bone marrow‐derived mesenchymal stem cell differentiation is analyzed. Data show electrostatically‐induced probiotic‐pathogen species co‐aggregation and pathogenic growth inhibition together with LaEP‐induced biofilm prevention. LaEPs prime macrophages for enhanced microbial phagocytosis via cathepsin K, reduce lipopolysaccharide‐induced DNA damage and receptor activator nuclear factor‐kappa B ligand expression, and promote a reparative M2 macrophage morphology under chronic inflammatory conditions. LaEPs also significantly augment bone deposition while abating adipogenesis thus holding promise as a potential multimodal therapeutic strategy. Proteomic analyses highlight high abundance of lysyl endopeptidase, and urocanate reductase. Further, in vivo analyses are warranted to elucidate their role in the prevention and treatment of PJIs.

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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