Paclitaxel

Paclitaxel is a taxane chemotherapy drug that treats several cancers by disrupting the microtubule dynamics required for cell division. It binds to tubulin within microtubules and stabilizes these structures, preventing their normal breakdown and producing mitotic arrest followed by cancer cell death. In cancer research, paclitaxel serves as both a therapeutic agent and a model compound for studying cell-cycle regulation, drug resistance, and targeted delivery. Investigators also examine its formulation, combination with other treatments, and effects across tumor types to improve response while reducing toxicity.

Paclitaxel - Related Videos

Research

JoVE Journal - Cancer Research

Long-term Live-cell Imaging to Assess Cell Fate in Response to Paclitaxel

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Cited by 9 •

2018

Live-cell imaging provides a wealth of information on single cells or whole populations that is unattainable by fixed cell imaging alone. Here, live-cell imaging protocols to assess cell fate decisions following treatment with the anti-mitotic drug paclitaxel are described.

Anticancer Efficacy of Photodynamic Therapy with Lung Cancer-Targeted Nanoparticles

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Cited by 7 •

2016

Photodynamic therapy (PDT) is an alternative choice for lung cancer treatment. To increase the therapeutic effect of PDT, lung cancer-targeted nanoparticles combined with chemotherapy were developed. Both in vitro and in vivo anticancer efficacies of PDT with prepared nanoparticles were evaluated.

Flexural Rigidity Measurements of Biopolymers Using Gliding Assays

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Cited by 2 •

2012

A method to measure the persistence length or flexural rigidity of biopolymers is described. The method uses a kinesin-driven microtubule gliding assay to experimentally determine the persistence length of individual microtubules and is adaptable to actin-based gliding assays.

Formulation of Diblock Polymeric Nanoparticles through Nanoprecipitation Technique

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Cited by 16 •

2011

This article describes a nanoprecipitation method to synthesize polymer-based nanoparticles using diblock co-polymers. We will discuss the synthesis of diblock co-polymers, the nanoprecipitation technique, and potential applications.

Research

JoVE Journal - Biology
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MISSION LentiPlex Pooled shRNA Library Screening in Mammalian Cells

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Cited by 11 •

2011

Here we use a human LentiPlex pooled library and traditional sequencing methods to identify gene targets promoting cell survival. We demonstrate how to set up and deconvolute a LentiPlex screen and validate the results.

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