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LL-37, the master antimicrobial peptide, its multifaceted role from combating infections to cancer immunity
Anand K Keshri1, Suraj S Rawat1, Anubha Chaudhary1
1School of Biosciences and Bioengineering, Indian Institute of Technology Mandi, Mandi, Himachal Pradesh, India.
Abstract:
Antimicrobial peptides (AMPs) represent a unique group of naturally occurring molecules having diverse biological activities, including potent antimicrobial properties. Among them, LL-37 has emerged as a significant player, demonstrating its multifaceted roles during bacterial, fungal, and viral infections, as well as exhibiting intriguing implications in cancer. This review delves into the versatile functions of LL-37, elucidating its mechanisms of action against microbial pathogens and its potential to modulate immune responses. We explored the efficacy of LL-37 in disrupting bacterial membranes, inhibiting fungal growth, and interfering with viral replication, highlighting its potential as a therapeutic agent against a wide array of infectious diseases. Furthermore, we discussed the emerging role of LL-37 in cancer immunity, where its immunomodulatory effects and direct cytotoxicity towards cancer cells offer novel avenues for cancer therapy in the near future. We provided a comprehensive overview of the activities of LL-37 across various diseases and underscored the importance of further research into harnessing the therapeutic potential of this potential antimicrobial peptide along with other suitable candidates.
Insights
Antimicrobial peptides (AMPs), like LL-37, show potent antimicrobial activity and immune modulation. Research highlights LL-37
Area of Science:
- Biochemistry
- Immunology
- Molecular Biology
Background:
- Antimicrobial peptides (AMPs) are natural molecules with broad biological activities.
- LL-37 is a prominent AMP with roles in infections and cancer.
Purpose of the Study:
- To review the diverse functions and mechanisms of LL-37.
- To explore LL-37's therapeutic potential in infectious diseases and cancer immunity.
Main Methods:
- Literature review of studies on LL-37's antimicrobial and immunomodulatory effects.
- Analysis of LL-37's mechanisms against bacteria, fungi, viruses, and cancer cells.
Main Results:
- LL-37 effectively disrupts microbial membranes, inhibits fungal growth, and interferes with viral replication.
- LL-37 exhibits immunomodulatory effects and direct cytotoxicity against cancer cells.
Conclusions:
- LL-37 demonstrates significant therapeutic potential against a wide range of infectious diseases.
- LL-37 offers novel avenues for cancer therapy through its immunomodulatory and cytotoxic properties.
- Further research is crucial to fully harness LL-37's therapeutic capabilities.
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