Pharmacological Evaluation of Bioisosterically Replaced and Triazole- Tethered Derivatives for Anticancer Therapy

Dipesh Kumar1, Salahuddin1, Avijit Mazumder1

  • 1Department of Pharmaceutical Chemistry, Noida Institute of Engineering and Technology (Pharmacy Institute), Plot no. 19, Knowledge Park-2, Greater Noida, 201306, Uttar Pradesh, India.

Insights

This review explores triazole-based compounds as novel anticancer agents. These hybrid drugs show potential for reduced toxicity and increased potency compared to current cancer therapies.

Area of Science:

  • Medicinal Chemistry
  • Pharmacology
  • Organic Chemistry

Background:

  • Cancer remains a leading cause of mortality globally, with current therapies facing challenges like toxicity and drug resistance.
  • There is a critical need for novel anticancer agents with improved efficacy and safety profiles.
  • Triazole moieties offer a promising scaffold for developing new hybrid anticancer drugs.

Purpose of the Study:

  • To review recent advancements in triazole-based anticancer agents.
  • To analyze the chemical structures, mechanisms of action, and structure-activity relationships of these compounds.
  • To highlight clinical and nonclinical trials of triazole-derived hybrid drugs.

Main Methods:

  • Literature review of articles published from the early 2000s to the 2020s.
  • Analysis of chemical structures and integration strategies of triazole moieties.
  • Examination of target receptors/enzymes and mechanisms of action.
  • Evaluation of structure-activity relationships and clinical trial data.

Main Results:

  • Triazole incorporation via bioisosteric replacement, click chemistry, and organocatalysis yields potent anticancer pharmacophores.
  • Numerous triazole-based derivatives exhibit promising anticancer activity against various cancer types.
  • Several hybrid drugs are progressing through clinical and nonclinical trials, demonstrating therapeutic potential.

Conclusions:

  • Triazole-based hybrid drugs represent a significant advancement in anticancer therapy development.
  • These novel agents offer a promising strategy to overcome limitations of existing treatments, including reduced toxicity and enhanced potency.
  • Continued research into triazole derivatives is crucial for developing next-generation cancer therapeutics.

Related Concept Videos

Targeted Cancer Therapies02:57

Targeted Cancer Therapies

The targeted cancer therapies, also known as “molecular targeted therapies,” take advantage of the molecular and genetic differences between the cancer cells and the normal cells. It needs a thorough understanding of the cancer cells to develop drugs that can target specific molecular aspects that drive the growth, progression, and spread of cancer cells without affecting the growth and survival of other normal cells in the body.
There are several types of targeted therapies against...
7.4K
Drugs that Stabilize Microtubules01:15

Drugs that Stabilize Microtubules

Microtubules are dynamic structures that undergo cycles of catastrophe and rescue. The microtubules play a central role in cell division by forming the spindle apparatus for segregating the chromosomes. This makes them ideal targets for regulating dividing cells in tumors and malignant cancer cells. Microtubule stabilizing drugs help stabilize the microtubule formation and promote its polymerization. Paclitaxel was the first microtubule stabilizing agent used as anticancer drug in chemotherapy...
1.9K
Combination Therapies and Personalized Medicine02:50

Combination Therapies and Personalized Medicine

Combining two or more treatment methods increases the life span of cancer patients while reducing damage to vital organs or tissue from the overuse of a single treatment. Combination therapy also targets different cancer-inducing pathways, thus reducing the chances of developing resistance to treatment.
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...
4.8K
Drugs that Destabilize Microtubules01:10

Drugs that Destabilize Microtubules

Microtubules are dynamic structures and can be regulated by microtubule targeting agents (MTAs). Microtubule destabilizing drugs are a class of MTAs that destabilize and prevent microtubules' polymerization. Both natural and synthetic chemicals can be found under this class of drugs. Vincristine and vinblastine, two vinca alkaloids, and colchicine were among the first to be discovered. These drugs can affect cells in various ways, either by inducing a change in cell morphology, preventing...
1.9K
Cancer Therapies02:49

Cancer Therapies

Cancer therapies are various modes of treatment, such as surgery, radiation therapy, and chemotherapy that are administered to cancer patients.
However, cancer treatments can pose several challenges, as therapies used to kill cancer cells are generally also toxic to normal cells. Moreover, cancer cells mutate rapidly and can develop resistance to chemical agents or radiation therapy. Besides, all types of cancer cells may not respond to the same therapy. Some cancer cells respond to one...
7.4K