TY - JOUR
T1 - Stealth liposomes and long circulating nanoparticles
T2 - Critical issues in pharmacokinetics, opsonization and protein-binding properties
AU - Moghimi, S. M.
AU - Szebeni, J.
N1 - Copyright:
Copyright 2017 Elsevier B.V., All rights reserved.
PY - 2003/11
Y1 - 2003/11
N2 - This article critically examines and evaluates the likely mechanisms that contribute to prolonged circulation times of sterically protected nanoparticles and liposomes. It is generally assumed that the macrophage-resistant property of sterically protected particles is due to suppression in surface opsonization and protein adsorption. However, recent evidence shows that sterically stabilized particles are prone to opsonization particularly by the opsonic components of the complement system. We have evaluated these phenomena and discussed theories that reconcile complement activation and opsonization with prolonged circulation times. With respect to particle longevity, the physiological state of macrophages also plays a critical role. For example, stimulated or newly recruited macrophages can recognize and rapidly internalize sterically protected nanoparticles by opsonic-independent mechanisms. These concepts are also examined.
AB - This article critically examines and evaluates the likely mechanisms that contribute to prolonged circulation times of sterically protected nanoparticles and liposomes. It is generally assumed that the macrophage-resistant property of sterically protected particles is due to suppression in surface opsonization and protein adsorption. However, recent evidence shows that sterically stabilized particles are prone to opsonization particularly by the opsonic components of the complement system. We have evaluated these phenomena and discussed theories that reconcile complement activation and opsonization with prolonged circulation times. With respect to particle longevity, the physiological state of macrophages also plays a critical role. For example, stimulated or newly recruited macrophages can recognize and rapidly internalize sterically protected nanoparticles by opsonic-independent mechanisms. These concepts are also examined.
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U2 - 10.1016/S0163-7827(03)00033-X
DO - 10.1016/S0163-7827(03)00033-X
M3 - Review article
C2 - 14559067
AN - SCOPUS:0141927263
SN - 0163-7827
VL - 42
SP - 463
EP - 478
JO - Progress in Lipid Research
JF - Progress in Lipid Research
IS - 6
ER -