Related Experiment Video
Updated: Jun 21, 2026

Live Imaging to Study Microtubule Dynamic Instability in Taxane-resistant Breast Cancers
Published on: February 20, 2017
Recent patents reveal microtubules as persistent promising target for novel drug development for cancers
Usha Bughani1, Shiwang Li, Harish C Joshi
1Department of Cell Biology, Emory University School of Medicine, Atlanta, GA 30322, USA.
Abstract:
Conventionally, the successful targets for the drug development in cancer range from the DNA damage, replication, signal transduction pathways, hormones, cytokines, anti-angiogenic agents, and radio/photo-sensitizers. They dominate the therapeutic arena after the initial debulking surgery. More recently, tubulin, the primary constituent of microtubules (MTs), has made a fairly successful debut in the therapeutic armamentarium. Tubulin binding drugs come in two classes: that depolymerize microtubules and that over-polymerize and bundle them. Microtubule (MT) binding drugs are in some ways superior in nature primarily because of their less debilitating side effects when compared to the generalized DNA metabolism targeting agents, and many new promising patents are being funneled into the drug development pipeline. Nevertheless, many of these relatively new agents still face challenges relating to their delivery methods, bioavailability, toxicities, and the inevitable resistance shared by all chemotherapeutics. Finally, we disclose a new genre of anti-MT drugs, noscapinoids that have just begun climbing the clinical trials ladder. The lead compound, noscapine, is a plant derived, orally available, minimally-toxic (if at all) agent that has shown phenomenal promise in the preclinical experimentation and Phase-I clinical trial. A rational approach based upon the precise molecular model of the tubulin-noscapine complex is bound to inspire novel and better therapeutic analogs in future.
Insights
Tubulin-binding drugs offer a promising cancer therapy with fewer side effects than traditional agents. Novel noscapinoids show potential as orally available, minimally toxic treatments, advancing cancer drug development.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Conventional cancer drug development targets DNA damage, signaling pathways, hormones, and angiogenesis.
- Microtubule (MT)-binding agents represent a more recent therapeutic class with potentially fewer side effects.
- Existing MT-binding drugs face challenges in delivery, bioavailability, toxicity, and resistance.
Purpose of the Study:
- To introduce a novel class of anti-microtubule (MT) drugs, noscapinoids.
- To highlight the potential of noscapine as a lead compound for cancer therapy.
- To emphasize the importance of molecular modeling in developing new therapeutic analogs.
Main Methods:
- Review of conventional and emerging cancer therapeutic targets.
- Analysis of tubulin as a drug target and the mechanisms of tubulin-binding agents.
- Preclinical and Phase-I clinical trial data for noscapine.
Main Results:
- Tubulin-binding drugs, categorized by their effect on microtubule polymerization, are emerging as effective cancer therapies.
- Noscapine, a plant-derived compound, demonstrates oral availability and minimal toxicity in early trials.
- Noscapine shows significant promise in preclinical studies and initial human trials.
Conclusions:
- Noscapinoids represent a new frontier in anti-MT cancer drug development.
- The oral availability and low toxicity of noscapine make it a highly promising therapeutic candidate.
- Understanding the tubulin-noscapine molecular complex can guide the design of future, improved cancer therapeutics.
More Related Videos
06:00Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
Published on: May 14, 2016
08:13Spatiotemporal Subcellular Manipulation of the Microtubule Cytoskeleton in the Living Preimplantation Mouse Embryo using Photostatins
Published on: November 30, 2021
Related Concept Videos
Drugs that Stabilize Microtubules
Drugs that Destabilize Microtubules
Destabilization of Microtubules
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
Microtubule Formation