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The Ex Vivo Colon Organ Culture and Its Use in Antimicrobial Host Defense Studies
Published on: February 13, 2017
Structural insights, immunomodulatory functions, and therapeutic potential of host defense peptides in avoiding
Gisele Regina Rodrigues1, Michel Lopes Leite2, Octavio Luiz Franco2
1Centro de Análises Proteômicas e Bioquímicas, Pós-Graduação em Ciências Genômicas e Biotecnologia, Universidade Católica de Brasília, DF, Brasília, Brazil.
Abstract:
Antimicrobial resistance (AMR) undermines the effectiveness of antibiotic treatment, and due to this, it now worldwide health concern. In general, antibiotics are used to control or combat bacteria, their widespread and irresponsible has contributed to the development bacterial resistance to some microbial drug. Due to this, treating patients identified with resistant bacteria is burdensome and, expensive, and success rates are low. Among the more successful tools are host defense peptides (HDPs), which represent a beneficial alternative due to their unique mechanisms of action and low toxicity toward host cells. HDPs are crucial innate immune system components, exhibiting antibacterial, antifungal, antiviral, and anti-inflammatory activities. Some peptides, such as human cathelicidin LL-37, exhibit direct pathogen-killing activity and the ability to modulate innate immune responses. HDPs also interact with various pattern recognition receptors (PRRs), such as Toll-like receptors (TLRs), NOD-like receptors (NLRs), and C-type lectin receptors (CLRs), influencing downstream pathways essential for microbial clearance and inflammation regulation. These interactions damage the microbial membrane, stimulating cytokine production and immune cell recruitment. Furthermore, HDPs can modulate chemokine receptor signaling to coordinate leukocyte migration and enhance host protection. Despite these promising aspects, there are challenges to overcome, such as potential immunotoxicity, proteolytic instability, and low receptor specificity, which hinder clinical application. This review highlights the complex interaction between HDPs and immune receptors, which can be used to overcome AMR and inform next-generation anti-infective therapy development.
Insights
Host defense peptides (HDPs) offer a promising alternative to antibiotics for combating antimicrobial resistance (AMR). Their unique mechanisms and interactions with immune receptors provide new avenues for developing effective anti-infective therapies.
Area of Science:
- Immunology
- Microbiology
- Pharmacology
Background:
- Antimicrobial resistance (AMR) is a growing global health crisis, rendering conventional antibiotics less effective.
- Treating infections caused by resistant bacteria is challenging, costly, and often unsuccessful.
- Host defense peptides (HDPs) are key components of the innate immune system with broad antimicrobial and immunomodulatory activities.
Purpose of the Study:
- To review the complex interactions between HDPs and immune receptors.
- To explore the potential of HDPs as an alternative therapeutic strategy against AMR.
- To inform the development of next-generation anti-infective therapies.
Main Methods:
- Literature review focusing on HDPs, immune receptors (PRRs like TLRs, NLRs, CLRs), and their roles in combating microbial infections.
- Analysis of HDP mechanisms, including direct pathogen killing and modulation of immune responses.
- Examination of challenges and opportunities for clinical application of HDPs.
Main Results:
- HDPs exhibit direct antimicrobial effects and modulate innate immunity by interacting with pattern recognition receptors (PRRs).
- These interactions lead to microbial membrane damage, cytokine production, immune cell recruitment, and leukocyte migration.
- Human cathelicidin LL-37 serves as an example of an HDP with pathogen-killing and immune-modulating capabilities.
Conclusions:
- HDPs represent a viable alternative to antibiotics for addressing AMR due to their unique mechanisms.
- Understanding HDP-immune receptor interactions is crucial for overcoming AMR.
- Further research into HDPs can guide the development of novel anti-infective treatments.
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