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Boron- and phosphorus-containing molecular/nano platforms: exploiting pathological redox imbalance to fight cancer
Anna Wolfram1, Pablo Fuentes-Soriano1, Christel Herold-Mende2
1Faculty of Pharmacy, University of Castilla-La Mancha Calle Almansa 14 - Edif. Bioincubadora, 02008, Albacete, Spain. carlos.romero.nieto@oci.uni-heidelberg.de.
Abstract:
Cancer is currently the second leading cause of death globally. Despite multidisciplinary efforts, therapies to fight various types of cancer still remain inefficient. Reducing high recurrence rates and mortality is thus a major challenge to tackle. In this context, redox imbalance is an undervalued characteristic of cancer. However, it may be targeted by boron- and phosphorus-containing materials to selectively or systemically fight cancer. In particular, boron and phosphorus derivatives are attractive building blocks for rational drug discovery due to their unique and wide regioselective chemistry, high degree of tuneability and chemical stability. Thus, they can be meticulously employed to access tunable molecular platforms to selectively exploit the redox imbalance of cancer cells towards necrosis/apoptosis. This field of research holds a remarkable potential; nevertheless, it is still in its infancy. In this mini-review, we underline recent advances in the development of boron- or phosphorus-derivatives as molecular/nano platforms for rational anticancer drug design. Our goal is to provide comprehensive information on different methodologies that bear an outstanding potential to further develop this very promising field of research.
Insights
Boron and phosphorus compounds offer novel strategies to combat cancer by targeting cellular redox imbalance. These materials provide tunable platforms for developing innovative anticancer drugs with potential to reduce mortality.
Area of Science:
- Oncology
- Materials Science
- Medicinal Chemistry
Background:
- Cancer remains a leading global cause of death with persistent challenges in treatment efficacy and high recurrence rates.
- Redox imbalance is a key characteristic of cancer cells that presents a potential therapeutic target.
- Current anticancer therapies face limitations, necessitating the exploration of novel treatment modalities.
Purpose of the Study:
- To review recent advancements in boron- and phosphorus-containing materials for anticancer drug design.
- To highlight the potential of these materials in exploiting cancer cell redox imbalance.
- To provide insights into methodologies for developing targeted cancer therapies.
Main Methods:
- Review of recent literature on boron and phosphorus derivatives in cancer research.
- Analysis of the chemical properties and tuneability of boron and phosphorus compounds.
- Exploration of strategies for designing molecular and nano-platforms targeting cancer redox imbalance.
Main Results:
- Boron and phosphorus derivatives offer unique chemical properties for drug design, including regioselectivity, tuneability, and stability.
- These materials can be engineered into platforms to selectively target cancer cell redox imbalance, inducing necrosis or apoptosis.
- The field is nascent but shows significant promise for developing novel anticancer agents.
Conclusions:
- Boron- and phosphorus-based molecular/nano platforms represent a promising avenue for rational anticancer drug discovery.
- Targeting cancer's redox imbalance with these materials offers a selective approach to treatment.
- Further research and development in this area hold substantial potential for improving cancer therapy outcomes.
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