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Potentiation of Anticancer Antibody Efficacy by Antineoplastic Drugs: Detection of Antibody-drug Synergism Using the Combination Index Equation
Published on: January 19, 2019
Promise and challenges in drug discovery and development of hybrid anticancer drugs
Lalji K Gediya1, Vincent Co Njar
1Research Instructor, Thomas Jefferson University, Jefferson School of Pharmacy, Department of Pharmaceutical Sciences, 130 South 9th Street, Edison Building, Suite 1510 F, Philadelphia, PA 19107, USA.
Background:
Because cancer is a complex disease, it is unlikely that a single mono functional 'targeted' drug will be effective for treating this most advanced disease. Combined drugs that impact multiple targets simultaneously are better at controlling complex disease systems, are less prone to drug resistance and are the standard of care in cancer treatment. In order to improve the efficiency of using a two-drug cocktail, one approach involves the use of the so-called hybrid drugs, which comprises the incorporation of two drugs in a single molecule with the intention of exerting dual drug action.
Objective:
In the present article, we discuss the design, synthesis and various applications of anticancer hybrid agents and the developments in this field during the last few decades. Additionally, we describe different types of linkers and their role in contributing towards biological effects and the in vivo mechanism of drug release. We also depict some challenges from scientific and regulatory perspectives in the hybrid drug development process.
Conclusion:
In the era of increasing drug resistance in cancer patients, the discovery of hybrid drugs could provide an effective strategy to create chemical entities likely to be more efficacious and less prone to resistance. However, some technical and regulatory challenges will have to be surmounted before hybrid drugs succeed in the clinical settings and justify the considerable promise of this novel concept.
Insights
Hybrid drugs, combining two anticancer agents into one molecule, offer a promising strategy to overcome drug resistance and improve treatment efficacy. Further research and regulatory advancements are needed for clinical success.
Area of Science:
- Oncology
- Medicinal Chemistry
- Drug Discovery
Background:
- Cancer's complexity necessitates multi-targeted therapies over single-agent drugs.
- Combination chemotherapy is standard but can be inefficient.
- Hybrid drugs, a single molecule with dual action, enhance drug cocktail efficiency.
Purpose of the Study:
- Discuss the design, synthesis, and applications of anticancer hybrid agents.
- Review developments in hybrid drug research over recent decades.
- Explore linker types, biological effects, and in vivo drug release mechanisms.
Main Methods:
- Literature review of hybrid anticancer agents.
- Analysis of linker chemistry and drug release kinetics.
- Discussion of scientific and regulatory challenges in hybrid drug development.
Main Results:
- Hybrid drugs present a strategy to combat increasing cancer drug resistance.
- Dual-action chemical entities show potential for greater efficacy.
- Overcoming technical and regulatory hurdles is crucial for clinical translation.
Conclusions:
- Hybrid drugs offer a promising approach to enhance anticancer efficacy and circumvent resistance.
- Further development is required to address technical and regulatory challenges for clinical application.
- The novel concept of hybrid drugs holds considerable promise for future cancer treatment.
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