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1.
Proc Natl Acad Sci U S A ; 110(7): 2511-6, 2013 Feb 12.
Article in English | MEDLINE | ID: mdl-23345442

ABSTRACT

New therapies that challenge existing paradigms are needed for the treatment of cancer. We report a nanoparticle-enabled therapeutic approach to B-cell lymphoma using synthetic high density lipoprotein nanoparticles (HDL-NPs). HDL-NPs are synthesized using a gold nanoparticle template to control conjugate size and ensure a spherical shape. Like natural HDLs, biomimetic HDL-NPs target scavenger receptor type B-1, a high-affinity HDL receptor expressed by lymphoma cells. Functionally, compared with natural HDL, the gold NP template enables differential manipulation of cellular cholesterol flux in lymphoma cells, promoting cellular cholesterol efflux and limiting cholesterol delivery. This combination of scavenger receptor type B-1 binding and relative cholesterol starvation selectively induces apoptosis. HDL-NP treatment of mice bearing B-cell lymphoma xenografts selectively inhibits B-cell lymphoma growth. As such, HDL-NPs are biofunctional therapeutic agents, whose mechanism of action is enabled by the presence of a synthetic nanotemplate. HDL-NPs are active in B-cell lymphomas and potentially, other malignancies or diseases of pathologic cholesterol accumulation.


Subject(s)
Biomimetics/methods , Lipoproteins, HDL/therapeutic use , Lymphoma, B-Cell/drug therapy , Metal Nanoparticles/therapeutic use , Animals , Annexin A5 , Apoptosis/physiology , Blotting, Western , Fluorescein-5-isothiocyanate , Humans , Immunoblotting , Jurkat Cells , Lipoproteins, HDL/metabolism , Mass Spectrometry , Mice , Microscopy, Electron, Transmission , Scavenger Receptors, Class B/metabolism
2.
Adv Drug Deliv Rev ; 65(5): 649-62, 2013 May.
Article in English | MEDLINE | ID: mdl-22921597

ABSTRACT

High density lipoproteins (HDLs) are dynamic natural nanoparticles best known for their role in cholesterol transport and the inverse correlation that exists between blood HDL levels and the risk of developing coronary heart disease. In addition, enhanced HDL-cholesterol uptake has been demonstrated in several human cancers. As such, the use of HDL as a therapeutic and as a vehicle for systemic delivery of drugs and as imaging agents is increasingly important. HDLs exist on a continuum from the secreted HDL-scaffolding protein, apolipoprotein A-1 (Apo A1), to complex, spherical "mature" HDLs. Aspects of HDL particles including their size, shape, and surface chemical composition are being recognized as critical to their diverse biological functions. Here we review HDL biology; strategies for synthesizing HDLs; data supporting the clinical use and benefit of directly administered HDL; a rationale for developing synthetic methods for spherical, mature HDLs; and, the potential to employ HDLs as therapies, imaging agents, and drug delivery vehicles. Importantly, methods that utilize nanoparticle templates to control synthetic HDL size, shape, and surface chemistry are highlighted.


Subject(s)
Drug Delivery Systems/methods , Lipoproteins, HDL/chemical synthesis , Molecular Targeted Therapy/methods , Nanoparticles/chemistry , Animals , Cardiovascular Diseases/drug therapy , Cardiovascular Diseases/genetics , Humans , Lipoproteins, HDL/administration & dosage , Nanoparticles/administration & dosage
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