Abstract

Most solid tumors possess unique pathophysiological characteristics that are not observed in normal tissues or organs, such as extensive angiogenesis and hence hypervasculature, defective vascular architecture, impaired lymphatic drainage/recovery system, and greatly increased production of a number of permeability mediators. The phenomenon now known as the enhanced permeability and retention (EPR) effect for lipid and macromolecular agents has been observed to be universal in solid tumors. Primarily, enhanced vascular permeability will sustain an adequate supply of nutrients and oxygen for rapid tumor growth. The EPR effect also provides a great opportunity for more selective targeting of lipid- or polymer-conjugated anticancer drugs, such as SMANCS and PK-1, to the tumor. In the present review, the basic characteristics of the EPR effect, particularly the factors involved, are described, as well as its modulation for improving delivery of macromolecular drugs to the tumor. Tumor-specific vascular physiology is also described.

Keywords

Vascular permeabilityElectron paramagnetic resonanceAngiogenesisChemistryPermeability (electromagnetism)Cancer researchBiophysicsMedicinePharmacologyBiologyBiochemistryPathologyNuclear magnetic resonance

MeSH Terms

AnimalsAntineoplastic AgentsCapillary PermeabilityHumansNeoplasmsRegional Blood Flow

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Publication Info

Year
2000
Type
review
Volume
65
Issue
1-2
Pages
271-284
Citations
6373
Access
Closed

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Citation Metrics

6373
OpenAlex
89
Influential
5583
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Cite This

Hiroshi Maeda, Jun Wu, Tomohiro Sawa et al. (2000). Tumor vascular permeability and the EPR effect in macromolecular therapeutics: a review. Journal of Controlled Release , 65 (1-2) , 271-284. https://doi.org/10.1016/s0168-3659(99)00248-5

Identifiers

DOI
10.1016/s0168-3659(99)00248-5
PMID
10699287

Data Quality

Data completeness: 81%