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Published on: June 9, 2023
Phytosomes Loaded with Mastoparan-M Represent a Novel Strategy for Breast Cancer Treatment
Hairong Zhao1,2, Shuangyan Bao2, Shuanglong Chen1
1Department of Breast Surgery, The First Affiliated Hospital of Xiamen University, School of Medicine, Xiamen University, Xiamen, People's Republic of China.
Purpose:
Mastoparan-M (Mast-M) has cytotoxic effects on various tumor cells in vitro, including liver cancer and colorectal cancer. However, the anti-tumor mechanism of Mast-M remains unclear and its potential for anti-tumor therapy has not been investigated. Herein, we aimed to develop a novel phytosome formulation loaded with Mast-M and evaluate its efficacy against breast cancer both in vitro and in vivo. Furthermore, we investigated the underlying anti-tumor mechanisms of Mast-M.
Methods:
The synthesis of Phy-Mast-M involved a co-solvent technique, followed by solvent evaporation. Its anti-tumor mechanism was investigated using CCK-8, clone formation, and apoptosis assays. Subsequently, the biodistribution and anti-tumor efficacy of Phy-Mast-M were assessed in vivo using the 4T1 tumor-bearing mouse model. Finally, the safety of Phy-Mast-M was evaluated in vivo.
Results:
The prepared Phy-Mast-M demonstrated an exceptional monodisperse size distribution (125.67 ± 45.79 nm), and exhibited excellent stability under different physiological conditions. Phy-Mast-M could inhibit 4T1 cells growth through multiple channels, including arresting cell growth cycle and disturbing mitochondrial membrane integrity. Phy-Mast-M proved significantly higher accumulation at tumor sites in a tumor-bearing mouse model as compared to free Mast-M. Moreover, in vivo anti-tumor studies demonstrated that Phy-Mast-M exhibited superior curative inhibitory effects on tumor growth and favorable biocompatibility.
Conclusion:
Phy-Mast-M demonstrates significant anti-tumor activity both in vitro and in vivo. Moreover, its potential for clinical translation suggests promising prospects for cancer therapy, offering more drug options for breast cancer patients.
Insights
A novel phytosome formulation of Mastoparan-M (Mast-M) effectively inhibits breast cancer growth in vitro and in vivo. This formulation shows promising potential for clinical translation, offering new therapeutic options for breast cancer patients.
Area of Science:
- Pharmacology
- Nanotechnology
- Oncology
Background:
- Mastoparan-M (Mast-M) exhibits cytotoxic effects on various cancer cells, but its anti-tumor mechanisms and therapeutic potential remain largely uninvestigated.
- Developing novel drug delivery systems is crucial for enhancing the efficacy and applicability of existing anti-cancer agents.
Purpose of the Study:
- To develop a novel phytosome formulation of Mastoparan-M (Phy-Mast-M) for breast cancer therapy.
- To evaluate the in vitro and in vivo anti-tumor efficacy of Phy-Mast-M.
- To elucidate the underlying anti-tumor mechanisms of Mast-M and its phytosome formulation.
Main Methods:
- Phy-Mast-M was synthesized using a co-solvent technique followed by solvent evaporation.
- In vitro anti-tumor activity was assessed through cell viability (CCK-8), colony formation, and apoptosis assays.
- In vivo studies involved evaluating biodistribution, anti-tumor efficacy in a 4T1 tumor-bearing mouse model, and safety.
Main Results:
- The synthesized Phy-Mast-M exhibited a monodisperse size distribution and excellent stability.
- Phy-Mast-M inhibited 4T1 cell growth by arresting the cell cycle and disrupting mitochondrial membrane integrity.
- In vivo, Phy-Mast-M showed enhanced tumor site accumulation, superior tumor growth inhibition, and favorable biocompatibility compared to free Mast-M.
Conclusions:
- Phy-Mast-M demonstrates significant anti-tumor activity against breast cancer both in vitro and in vivo.
- The novel phytosome formulation holds promise for clinical translation, potentially expanding therapeutic options for breast cancer patients.
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