Preclinical pharmacokinetic, biodistribution, and anti-cancer efficacy studies of a docetaxel-carboxymethylcellulose nanoparticle in mouse models

Biomaterials. 2012 Feb;33(5):1445-54. doi: 10.1016/j.biomaterials.2011.10.061. Epub 2011 Nov 9.

Abstract

We have developed a polymer conjugate (Cellax) composed of acetylated carboxymethylcellulose (CMC), docetaxel (DTX), and PEG, designed to enhance the pharmacokinetics (PK) and antitumor efficacy of DTX. Our design placed an emphasis on nanoparticle self-assembly to protect DTX during blood transport, stability of the nanoparticle, and PEGylation to enhance PK. Compared to Taxotere, Cellax exhibited a 38.6 times greater area under the curve (AUC), and significantly lower clearance (2.5%) in PK. Less than 10% of DTX was released from Cellax in the blood circulation, indicating that Cellax were stable during blood transport. Cellax reduced non-specific distribution of DTX to the heart, lung and kidney by 48, 90, and 90%, respectively, at 3 h, compared to Taxotere. The uptake of Cellax at 3 h in the liver and spleen was high (15-45 μg DTX/g) but declined rapidly to <10 μg DTX/g in 24 h, and induced no measurable toxicity at 170 mg DTX/kg. Taxotere, on the other hand, displayed non-specific uptake in all the examined normal tissues and induced significant apoptosis in the lung and kidney at 40 mg DTX/kg. The tumor uptake of Cellax was 5.5-fold more than that by Taxotere and the uptake occurred within 3 h after injection and persisted for 10 days. The conjugate exhibited enhanced efficacy in a panel of primary and metastatic mouse tumor models. These results clearly demonstrated that Cellax improved the pharmacokinetics, biodistribution and efficacy of DTX compared to Taxotere with reduced toxicity.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Antineoplastic Agents / pharmacokinetics
  • Antineoplastic Agents / therapeutic use*
  • Carboxymethylcellulose Sodium / chemistry*
  • Disease Models, Animal
  • Docetaxel
  • Drug Screening Assays, Antitumor
  • Intracellular Space / drug effects
  • Intracellular Space / metabolism
  • Mice
  • Mice, Inbred BALB C
  • Nanoparticles / chemistry*
  • Neoplasm Metastasis
  • Neoplasms / drug therapy*
  • Neoplasms / pathology
  • Polyethylene Glycols / chemistry
  • Polymers / chemical synthesis
  • Polymers / chemistry
  • Taxoids / blood
  • Taxoids / pharmacokinetics*
  • Taxoids / therapeutic use*
  • Tissue Distribution / drug effects
  • Treatment Outcome

Substances

  • Antineoplastic Agents
  • Polymers
  • Taxoids
  • Docetaxel
  • Polyethylene Glycols
  • Carboxymethylcellulose Sodium