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Published on: August 11, 2018
Exploring the Antimicrobial and Antiviral Properties of Cryptic Peptides from Human Fibrinogen
Andrea Bosso1, Antonio Masino1,2,3, Ilaria Di Nardo1
1Department of Biology, University of Naples Federico II, Via Vicinale Cupa Cintia, 26, 80126 Naples, Italy.
Abstract:
Fibrinogen (FIB), a key component of the coagulation cascade, is traditionally recognized for its role in hemostasis and tissue repair. However, due to its high plasma abundance and susceptibility to proteolytic cleavage during inflammation, it may also represent a previously unrecognized source of bioactive peptides. This study presents, for the first time, a comprehensive analysis of the antimicrobial, anti-inflammatory, and antiviral properties of six cationic antimicrobial peptides (AMPs) deriving from the C-terminal extremities of the three subunits of human fibrinogen (FIBα, FIBβ, and FIBγ), identified using a scoring function developed by our group. Antibacterial assays against Gram-positive and Gram-negative pathogens revealed different antimicrobial activity profile depending on their parent protein. Selected peptides displayed additive or synergistic effects when combined with conventional antibiotics or the thrombin-derived peptide (P)GKY20, highlighting their potential for combination therapies. Hemolytic assay confirmed the biocompatibility of fibrinogen-derived cryptic peptides with erythrocytes. Furthermore, the peptides significantly reduced LPS-induced nitric oxide release in murine macrophages Raw 264.7 cells, indicating anti-inflammatory activity. Notably, antiviral activity was observed against enveloped viruses (HCoV-229E and HSV-1) under various treatment conditions, while no activity was detected against the non-enveloped virus CVB3. Overall, these findings reveal human fibrinogen as a source of multifunctional cryptic peptides with broad-spectrum antimicrobial, antiviral, and immunomodulatory activities, supporting their potential as part of the innate immune system.
Insights
Human fibrinogen yields novel peptides with potent antimicrobial, anti-inflammatory, and antiviral functions. These fibrinogen-derived peptides show promise for combination therapies and as part of the innate immune system.
Area of Science:
- Biochemistry
- Immunology
- Molecular Biology
Background:
- Fibrinogen (FIB) is crucial for hemostasis and tissue repair.
- Inflammation can lead to proteolytic cleavage of FIB, releasing bioactive peptides.
- These cryptic peptides may possess uncharacterized immune functions.
Purpose of the Study:
- To identify and characterize cationic antimicrobial peptides (AMPs) from human fibrinogen subunits (FIBα, FIBβ, FIBγ).
- To evaluate the antimicrobial, anti-inflammatory, and antiviral properties of these novel peptides.
- To assess their potential for therapeutic applications, including combination therapies.
Main Methods:
- Identification of six cationic AMPs from FIB C-terminal regions using a proprietary scoring function.
- Antibacterial assays against Gram-positive and Gram-negative pathogens.
- Assays for synergistic effects with antibiotics, hemolytic activity, anti-inflammatory effects (LPS-induced nitric oxide in macrophages), and antiviral activity against enveloped and non-enveloped viruses.
Main Results:
- Fibrinogen-derived peptides exhibited varied antimicrobial activity profiles.
- Synergistic effects were observed when combined with conventional antibiotics or PGKY20.
- Peptides demonstrated anti-inflammatory and antiviral activity against enveloped viruses (HCoV-229E, HSV-1) but not against CVB3.
- Hemolytic assays confirmed biocompatibility.
Conclusions:
- Human fibrinogen is a source of multifunctional cryptic peptides with broad-spectrum antimicrobial, antiviral, and immunomodulatory activities.
- These peptides represent a novel component of the innate immune system.
- Fibrinogen-derived peptides hold potential for development into novel therapeutic agents.
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