Identification of a novel lytic peptide for the treatment of solid tumours
Claudia Szczepanski1, Olav Tenstad2, Anne Baumann3
1NorLux Neuro-Oncology, Dept. of Biomedicine, University of Bergen, Norway.
Abstract:
Originally known as host defence peptides for their substantial bacteriotoxic effects, many cationic antimicrobial peptides also exhibit a potent cytotoxic activity against cancer cells. Their mode of action is characterized mostly by electrostatic interactions with the plasma membrane, leading to membrane disruption and rapid necrotic cell death. In this work, we have designed a novel cationic peptide of 27 amino acids (Cypep-1), which shows efficacy against a number of cancer cell types, both in vitro and in vivo, while normal human fibroblasts were significantly less affected. Surface plasmon resonance experiments as well as liposome leakage assays monitored by fluorescence spectroscopy revealed a substantial binding affinity of Cypep-1 to negatively charged liposomes and induced significant leakage of liposome content after exposure to the peptide. The observed membranolytic effect of Cypep-1 was confirmed by scanning electron microscopy (SEM) as well as by time-lapse confocal microscopy. Pharmacokinetic profiling of Cypep-1 in rats showed a short plasma half-life after i.v. injection, followed mainly by retention in the liver, spleen and kidneys. Extremely low concentrations within the organs of the central nervous system indicated that Cypep-1 did not pass the blood-brain-barrier. Local treatment of 4T1 murine mammary carcinoma allografts by means of a single local bolus injection of Cypep-1 led to a significant reduction of tumour growth in the following weeks and prolonged survival. Detailed histological analysis of the treated tumours revealed large areas of necrosis. In sum, our findings show that the novel cationic peptide Cypep-1 displays a strong cytolytic activity against cancer cells both in vitro and in vivo and thus holds a substantial therapeutic potential.
Insights
A novel cationic peptide, Cypep-1, effectively targets and destroys cancer cells in vitro and in vivo through membrane disruption. This peptide shows significant therapeutic potential with minimal impact on normal cells and limited central nervous system penetration.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Cationic antimicrobial peptides (CAMPs) possess bactericidal and cytotoxic properties.
- CAMPs interact electrostatically with cell membranes, causing disruption and cell death.
Purpose of the Study:
- To design and evaluate a novel cationic peptide, Cypep-1, for its efficacy against cancer cells.
- To investigate the mechanism of action and pharmacokinetic profile of Cypep-1.
Main Methods:
- Surface plasmon resonance and liposome leakage assays to assess membrane binding and disruption.
- Scanning electron microscopy and confocal microscopy to visualize membranolytic effects.
- Pharmacokinetic studies in rats and in vivo tumor treatment models.
Main Results:
- Cypep-1 demonstrated selective cytotoxicity against various cancer cell types in vitro and in vivo.
- The peptide exhibited strong binding to negatively charged liposomes, inducing significant content leakage.
- Pharmacokinetic profiling revealed rapid clearance and limited blood-brain barrier penetration.
- Local administration of Cypep-1 significantly reduced tumor growth and prolonged survival in a murine model.
Conclusions:
- Cypep-1 is a novel cationic peptide with potent cytolytic activity against cancer cells.
- Its mechanism involves membrane disruption, leading to necrotic cell death.
- Cypep-1 shows promising therapeutic potential for cancer treatment with a favorable safety profile.
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