Combined Antibacterial and Anti-Inflammatory Activity of a Cationic Disubstituted Dexamethasone-Spermine Conjugate

Author:

Bucki Robert1,Leszczyńska Katarzyna2,Byfield Fitzroy J.1,Fein David E.3,Won Esther1,Cruz Katrina1,Namiot Andrzej4,Kułakowska Alina5,Namiot Zbigniew6,Savage Paul B.7,Diamond Scott L.3,Janmey Paul A.1

Affiliation:

1. Department of Physiology and the Institute for Medicine and Engineering, University of Pennsylvania, 1010 Vagelos Research Laboratories, 3340 Smith Walk, Philadelphia, Pennsylvania 19104

2. Departments of Diagnostic Microbiology

3. Penn Center for Molecular Discovery, Institute for Medicine and Engineering, Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104

4. Anatomy

5. Neurology

6. Physiology, Medical University of Białystok, 15-230 Białystok, Poland

7. Department of Chemistry and Biochemistry, Brigham Young University, C-I00 BNSN, Provo, Utah 84602

Abstract

ABSTRACT The rising number of antibiotic-resistant bacterial strains represents an emerging health problem that has motivated efforts to develop new antibacterial agents. Endogenous cationic antibacterial peptides (CAPs) that are produced in tissues exposed to the external environment are one model for the design of novel antibacterial compounds. Here, we report evidence that disubstituted dexamethasone-spermine (D2S), a cationic corticosteroid derivative initially identified as a by-product of synthesis of dexamethasone-spermine (DS) for the purpose of improving cellular gene delivery, functions as an antibacterial peptide-mimicking molecule. This moiety exhibits bacterial killing activity against clinical isolates of Staphylococcus aureus , Pseudomonas aeruginosa present in cystic fibrosis (CF) sputa, and Pseudomonas aeruginosa biofilm. Although compromised in the presence of plasma, D2S antibacterial activity resists the proteolytic activity of pepsin and is maintained in ascites, cerebrospinal fluid, saliva, and bronchoalveolar lavage (BAL) fluid. D2S also enhances S. aureus susceptibility to antibiotics, such as amoxicillin (AMC), tetracycline (T), and amikacin (AN). Inhibition of interleukin-6 (IL-6) and IL-8 release from lipopolysaccharide (LPS)- or lipoteichoic acid (LTA)-treated neutrophils in the presence of D2S suggests that this molecule might also prevent systemic inflammation caused by bacterial wall products. D2S-mediated translocation of green fluorescent protein (GFP)-labeled glucocorticoid receptor (GR) in bovine aorta endothelial cells (BAECs) suggests that some of its anti-inflammatory activities involve engagement of glucocorticoid receptors. The combined antibacterial and anti-inflammatory activities of D2S suggest its potential as an alternative to natural CAPs in the prevention and treatment of some bacterial infections.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

Reference53 articles.

1. Abate, W., A. A. Alghaithy, J. Parton, K. P. Jones, and S. K. Jackson. 2009. Surfactant lipids regulate LPS-induced interleukin-8 production in A549 lung epithelial cells by inhibiting translocation of TLR4 into lipid raft domains. J. Lipid Res.51:334-344.

2. Structural Correlates of Antibacterial and Membrane-Permeabilizing Activities in Acylpolyamines

3. Beisswenger, C., and R. Bals. 2005. Functions of antimicrobial peptides in host defense and immunity. Curr. Protein Pept. Sci.6:255-264.

4. Bellini, A. M., G. Cavazzini, and G. Vertuani. 1976. Antibacterial activity of the derivatives of cholic acid. Ann. Sclavo18:461-468.

5. Bellini, A. M., G. Vertuani, M. P. Quaglio, and G. Cavazzini. 1979. Bile acid derivatives with antimicrobial activity. Farmaco Sci.34:967-978.

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