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Selective Anticancer Effects of a P-I Metalloproteinase from Bothrops Moojeni Snake Venom (BthMP) on Lung Cancer
Vinícius Queiroz Oliveira1,2, Luísa Carregosa Santos1, Leonardo Oliveira Silva Bastos Andrade1
1Institute Multidisciplinary in Health, Universidade Federal da Bahia (UFBA), Vitória da Conquista 45029-094, BA, Brazil.
Abstract:
Background: Lung cancer remains a leading cause of mortality, mainly due to aggressive metastasis and therapeutic resistance. Snake venom metalloproteinases (svMPs), particularly the P-I class, are promising sources for novel antitumor agents. Objectives: This study investigated the impacts of BthMP, a P-I svMPs from Bothrops moojeni venom, on human lung carcinoma (A549) cells in comparison to non-cancerous human bronchial epithelial cells (BEAS-2B). Methods and Results: BthMP demonstrated potent and selective anti-cancer activity. It significantly inhibited key metastatic processes in A549 cells, including adhesion, migration, and invasion, while suppressing long-term proliferation, as shown by reduced colony formation and increased lactate dehydrogenase (LDH) release. Mechanistically, BthMP induced a massive increase in intracellular reactive oxygen species (ROS) by over 2000% and elevated nitric oxide (NO) by 35% in A549 cells, driving a state of lethal oxidative stress. Crucially, these cytotoxic and anti-metastatic effects were minimal in BEAS-2B cells; BthMP even suppressed basal ROS and NO levels in this non-cancerous line. The anti-migratory effects of BthMP were completely dependent on its zinc-based catalytic activity, as they were abolished by pretreatment with ethylenediaminetetraacetic acid. By simultaneously disrupting cell-matrix interactions and inducing selective, catastrophic oxidative stress in cancer cells, BthMP presents a dual-pronged anti-metastatic mechanism. Conclusions: These findings establish BthMP as a promising therapeutic scaffold for developing novel treatments against lung cancer progression.
Insights
Snake venom metalloproteinases (svMPs) like BthMP show potent anti-lung cancer activity by selectively inducing oxidative stress and inhibiting metastasis. This research highlights BthMP as a promising therapeutic candidate for lung cancer treatment.
Area of Science:
- Biochemistry
- Pharmacology
- Oncology
Background:
- Lung cancer is a leading cause of death, driven by metastasis and treatment resistance.
- Snake venom metalloproteinases (svMPs) are explored as potential anticancer agents.
- P-I class svMPs, like BthMP from *Bothrops moojeni*, show promise.
Purpose of the Study:
- Investigate BthMP's effects on human lung carcinoma (A549) cells.
- Compare BthMP's activity on cancer cells versus non-cancerous bronchial epithelial cells (BEAS-2B).
- Elucidate the mechanisms behind BthMP's anti-cancer effects.
Main Methods:
- Assessed BthMP's impact on A549 cell adhesion, migration, invasion, and proliferation.
- Measured intracellular reactive oxygen species (ROS) and nitric oxide (NO) levels.
- Evaluated the role of catalytic activity using ethylenediaminetetraacetic acid (EDTA).
Main Results:
- BthMP selectively inhibited metastasis and proliferation in A549 cells.
- Induced over 2000% increase in ROS and 35% increase in NO in A549 cells, causing oxidative stress.
- Anti-metastatic effects were dependent on zinc-based catalytic activity and minimal in BEAS-2B cells.
Conclusions:
- BthMP exhibits potent, selective anti-cancer activity against lung carcinoma.
- BthMP employs a dual mechanism: disrupting cell-matrix interactions and inducing selective oxidative stress.
- BthMP is a promising therapeutic scaffold for novel lung cancer treatments.
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