Related Experiment Video
Updated: Jun 9, 2026

Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
Published on: May 14, 2016
Sustained reduction of in-stent neointimal growth with the use of a novel systemic nanoparticle paclitaxel
Frank D Kolodgie1, Michael John, Charanjit Khurana
1Department of Cardiovascular Pathology, Armed Forces Institute of Pathology, Washington, DC 20306, USA.
Background:
Paclitaxel (PXL)-eluting stents in animals cause incomplete healing and, in some instances, a lack of sustained suppression of neointimal growth. The present study tested the efficacy of a novel systemic delivery nanoparticle PXL for reducing in-stent restenosis.
Methods And Results:
A saline-reconstituted formulation of PXL stabilized by albumin nanoparticles (nPXL) was tested in 38 New Zealand White rabbits receiving bilateral iliac artery stents. Doses of nPXL (1.0 to 5.0 mg/kg) were administered as a 10-minute intra-arterial infusion; control animals received vehicle (0.9% normal saline). In a follow-up chronic experiment, nPXL 5.0 mg/kg was given at stenting with or without an intravenous 3.5-mg/kg repeat nPXL dose at 28 days; these studies were terminated at 3 months. At 28 days, mean neointimal thickness was reduced (P< or =0.02) by doses of nPXL > or =2.5 mg/kg with evidence of delayed healing. The efficacy of a single dose of nPXL 5.0 mg/kg, however, was lost by 90 days. In contrast, a second repeat dose of nPXL 3.5 mg/kg given 28 days after stenting resulted in sustained suppression of neointimal thickness at 90 days (P< or =0.009 versus single dose nPXL 5.0 mg/kg and controls) with nearly complete neointimal healing.
Conclusions:
Although systemic nPXL reduces neointimal growth at 28 days, a single repeat dose was required for sustained neointimal suppression. Thus, this novel systemic formulation of PXL may allow adjustment of dose at the stent treatment site and prove to be a useful adjunct for the clinical prevention of in-stent restenosis.
Insights
A novel nanoparticle formulation of paclitaxel (nPXL) reduced in-stent restenosis in rabbits. A repeat dose of nPXL was necessary for sustained suppression of neointimal growth, indicating potential for clinical use.
Area of Science:
- Cardiovascular Research
- Nanomedicine
- Pharmacology
Background:
- Paclitaxel (PXL)-eluting stents can cause incomplete healing and insufficient neointimal growth suppression in animal models.
- A novel systemic nanoparticle PXL formulation was developed to address these limitations.
Purpose of the Study:
- To evaluate the efficacy of a systemically delivered nanoparticle paclitaxel (nPXL) formulation in reducing in-stent restenosis.
- To determine the optimal dosing regimen for sustained neointimal suppression.
Main Methods:
- New Zealand White rabbits received bilateral iliac artery stents.
- Doses of nanoparticle paclitaxel (nPXL) (1.0–5.0 mg/kg) were administered via intra-arterial infusion.
- Chronic studies involved single or repeat intravenous doses of nPXL at stenting and 28 days post-stenting, with analysis at 90 days.
Main Results:
- Systemic nPXL doses ≥2.5 mg/kg reduced neointimal thickness at 28 days but showed delayed healing.
- The efficacy of a single 5.0 mg/kg nPXL dose was lost by 90 days.
- A repeat dose of 3.5 mg/kg nPXL at 28 days resulted in sustained neointimal suppression and near-complete healing at 90 days.
Conclusions:
- Systemic nPXL effectively reduces neointimal growth in the short term.
- A single repeat dose is crucial for achieving sustained neointimal suppression at 90 days.
- This novel systemic nPXL formulation offers potential for clinical application in preventing in-stent restenosis.
Related Concept Videos
Drugs that Stabilize Microtubules
Drugs that Destabilize Microtubules

