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Co-crystal nanoarchitectonics as an emerging strategy in attenuating cancer: Fundamentals and applications
Popat Kumbhar1, Kaustubh Kolekar1, Chinmayee Khot1
1Department of Pharmaceutics, Tatyasaheb Kore College of Pharmacy, Warananagar, Tal: Panhala, Dist: Kolhapur, Maharashtra 416113, India.
Abstract:
Cancer ranks as the second foremost cause of death in various corners of the globe. The clinical uses of assorted anticancer therapeutics have been limited owing to the poor physicochemical attributes, pharmacokinetic performance, and lethal toxicities. Various sorts of co-crystals or nano co-crystals or co-crystals-laden nanocarriers have presented great promise in targeting cancer via improved physicochemical attributes, pharmacokinetic performance, and reduced toxicities. These systems have also demonstrated the controlled cargo release and passive targeting via enhanced permeation and retention (EPR) effect. In addition, regional delivery of co-crystals via inhalation and transdermal route displayed remarkable potential in targeting lung and skin cancer effectively. However, more research is required on the use of co-crystals in cancer and their commercialization. The present review mainly emphasizes co-crystals as emerging avenues in the treatment of various cancers by modulating the physicochemical and pharmacokinetic attributes of approved anticancer therapeutics. The worth of co-crystals in cancer treatment, computational paths in the co-crystals screening, diverse experimental techniques of co-crystals fabrication, and sorts of co-crystals and their noteworthy applications in targeting cancer are also discussed. Besides, the game changer approaches like nano co-crystals and co-crystals-laden nanocarriers, and co-crystals in regional delivery in cancer are also explained with reported case studies. Furthermore, regulatory directives for pharmaceutical co-crystals and their scale-up, and challenges are also highlighted with concluding remarks and future initiatives. In essence, co-crystals and nano co-crystals emerge to be a promising strategy in overwhelming cancers through improving anticancer efficacy, safety, patient compliance, and reducing the cost.
Insights
Co-crystals and nano co-crystals enhance anticancer drug properties, improving efficacy and safety for better cancer treatment. These advanced formulations offer promising strategies to overcome limitations of current therapies.
Area of Science:
- Pharmaceutical Sciences
- Materials Science
- Oncology
Background:
- Cancer is a leading global cause of death, with treatments limited by poor drug properties and toxicity.
- Co-crystals and nano co-crystals offer improved physicochemical and pharmacokinetic profiles for anticancer drugs.
- These systems facilitate controlled release and passive targeting via the enhanced permeation and retention (EPR) effect.
Purpose of the Study:
- To review the potential of co-crystals in cancer treatment.
- To discuss modulation of physicochemical and pharmacokinetic attributes of anticancer therapeutics.
- To explore co-crystals, nano co-crystals, and co-crystal-laden nanocarriers for cancer therapy.
Main Methods:
- Review of existing literature on co-crystals in cancer treatment.
- Discussion of computational screening, fabrication techniques, and applications of co-crystals.
- Analysis of nano co-crystals, co-crystal-laden nanocarriers, and regional delivery systems.
Main Results:
- Co-crystals significantly improve drug properties, reduce toxicity, and enhance anticancer efficacy.
- Regional delivery via inhalation and transdermal routes shows potential for specific cancer targeting.
- Nano co-crystals and co-crystal-laden nanocarriers represent advanced strategies for cancer therapy.
Conclusions:
- Co-crystals and nano co-crystals are promising for improving anticancer efficacy, safety, and patient compliance.
- Further research and commercialization efforts are needed for pharmaceutical co-crystals.
- These formulations offer a strategy to reduce treatment costs and overcome limitations of conventional anticancer drugs.
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