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Published on: June 26, 2018
Hybrid curcumin compounds: a new strategy for cancer treatment
Marie-Hélène Teiten1, Mario Dicato2, Marc Diederich3
1Laboratory of Molecular and Cellular Biology of Cancer (LBMCC), Hôpital Kirchberg, 9, Rue Edward Steichen, Luxembourg L-2540, Luxembourg. marie_helene.teiten@lbmcc.lu.
Abstract:
Cancer is a multifactorial disease that requires treatments able to target multiple intracellular components and signaling pathways. The natural compound, curcumin, was already described as a promising anticancer agent due to its multipotent properties and huge amount of molecular targets in vitro. Its translation to the clinic is, however, limited by its reduced solubility and bioavailability in patients. In order to overcome these pharmacokinetic deficits of curcumin, several strategies, such as the design of synthetic analogs, the combination with specific adjuvants or nano-formulations, have been developed. By taking into account the risk-benefit profile of drug combinations, as well as the knowledge about curcumin's structure-activity relationship, a new concept for the combination of curcumin with scaffolds from different natural products or components has emerged. The concept of a hybrid curcumin molecule is based on the incorporation or combination of curcumin with specific antibodies, adjuvants or other natural products already used or not in conventional chemotherapy, in one single molecule. The high diversity of such conjugations enhances the selectivity and inherent biological activities and properties, as well as the efficacy of the parental compound, with particular emphasis on improving the efficacy of curcumin for future clinical treatments.
Insights
Hybrid curcumin molecules offer a novel approach to cancer treatment by combining curcumin with other compounds. This strategy aims to improve solubility, bioavailability, and efficacy for enhanced clinical outcomes.
Area of Science:
- Oncology
- Pharmacology
- Natural Products Chemistry
Background:
- Cancer necessitates multi-target treatments.
- Curcumin shows promise as an anticancer agent but has poor solubility and bioavailability.
- Existing strategies to improve curcumin's pharmacokinetics include synthetic analogs, adjuvants, and nano-formulations.
Purpose of the Study:
- To introduce a novel concept of hybrid curcumin molecules for improved cancer therapy.
- To enhance curcumin's selectivity, biological activity, and clinical efficacy through conjugation.
Main Methods:
- Designing hybrid curcumin molecules by incorporating curcumin with antibodies, adjuvants, or other natural products.
- Leveraging knowledge of curcumin's structure-activity relationship and risk-benefit profiles of drug combinations.
Main Results:
- The development of hybrid curcumin molecules offers a strategy to overcome pharmacokinetic limitations.
- Conjugation enhances selectivity and biological properties of curcumin.
- This approach aims to improve the overall efficacy of curcumin for clinical applications.
Conclusions:
- Hybrid curcumin molecules represent a promising strategy to improve cancer treatment efficacy.
- This innovative approach addresses curcumin's bioavailability and solubility issues.
- Further research into hybrid curcumin molecules could lead to more effective clinical cancer therapies.
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