AI Article Synopsis

  • Antiangiogenic therapies could be effective for gliomas, but require high doses and daily administration for tumor suppression.
  • A biodegradable polymeric device was developed to provide sustained local delivery of PF-4/CTF, an antiangiogenic agent, overcoming previous administration barriers.
  • In tests on mice, the PF-4/CTF microspheres significantly reduced tumor size and angiogenesis with a single injection, indicating their potential for effective glioma treatment.

Article Abstract

The correlation between glioma grade and angiogenesis suggests that antiangiogenic therapies are potentially therapeutically effective for these tumors. However, to achieve tumor suppression, antiangiogenic therapies need to be administered daily using high systemic quantities. We designed a biodegradable polymeric device that overcomes those barriers by providing sustained local delivery of a C-terminal fragment of platelet factor 4 (PF-4/CTF), an antiangiogenic agent. Fluorescent-labeled microspheres composed of poly lactic-coglycolic acid (PLGA) were loaded with rhodamine-labeled PF-4/CTF and formulated to release their contents over time. Fluorescent labeling enabled the correlation between the in vitro to the in vivo kinetic and release studies. PF-4/CTF microspheres were injected into established intracranial human glioma tumors in nude mice. Noninvasive magnetic resonance imaging (MRI) was used to assess the therapeutic response. Tumor size, microvessel density, proliferation, and apoptosis rate were measured by histological analysis. Intracranially, the microspheres were located throughout the tumor bed and continuously released PF-4/CTF during the entire experimental period. MRI and histological studies showed that a single injection of microspheres containing PF-4/CTF caused a 65.2% and 72% reduction in tumor volume, respectively, with a significant decrease in angiogenesis and an increase in apoptosis. Our data demonstrate that polymeric microspheres are an effective therapeutic approach for delivering antiangiogenic agents that result in the inhibition of glioma tumor growth.

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http://dx.doi.org/10.1096/fj.07-8801comDOI Listing

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Article Synopsis
  • Antiangiogenic therapies could be effective for gliomas, but require high doses and daily administration for tumor suppression.
  • A biodegradable polymeric device was developed to provide sustained local delivery of PF-4/CTF, an antiangiogenic agent, overcoming previous administration barriers.
  • In tests on mice, the PF-4/CTF microspheres significantly reduced tumor size and angiogenesis with a single injection, indicating their potential for effective glioma treatment.
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Continuous delivery of endogenous inhibitors from poly(lactic-co-glycolic acid) polymeric microspheres inhibits glioma tumor growth.

Clin Cancer Res

January 2005

Laboratory of Cancer Drug Therapeutics and Mammalian Cell Technology, Faculty of Biotechnology and Food Engineering, Technion-Israel Institute of Technology, Haifa, Israel.

Purpose: There is an urgent need for modalities that can localize and prolong the administration of the antitumor agents, particularly antiangiogenic, to achieve long-term tumor inhibition. However, one of the major obstacles is designing a device in which the biological activity of sensitive endogenous inhibitors is retained. We have designed a biodegradable polymeric device, which provides a unique and practical means of localizing and continuously delivering hemopexin (PEX) or platelet factor 4 fragment (PF-4/CTF) at the tumor site while maintaining their biological activity.

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