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Magnetic Separation: Industrial and Lab Scale Applications

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delivery system (Rosengart 2005 JMMM), <strong>and</strong> a new method for locally targeted<br />

drug delivery with magnetic implants in the cardiovascular system (Yellen 2005<br />

JMMM). Regardless, anti-cancer drug delivery via magnetic carriers increases drug<br />

concentration at the tumor site <strong>and</strong> limits the systemic drug concentration, by which<br />

it enhances the drug activity to multiples of magnitude (Neuberger 2005 JMMM).<br />

Recent treatments with magnetic drug targeting involved using of MTCs (<strong>Magnetic</strong><br />

Targeted Carriers) in liver <strong>and</strong> lung (Goodwin 1999 JMMM), treatment of squamous<br />

cell carcinoma in rabbits with FFs (ferrofluids) bound to mitoxantrone (FF-MTX)<br />

that was concentrated with a magnetic field (Alexiou 2000 Cancer Res, Alexiou<br />

2005 JMMM), preparation of magnetic liposomes containing submicron-sized<br />

ferromagnetic particles encapsulating the muscle relaxant drugs, diadony or<br />

diperony, for local anesthesia (Kuznetsov 2001 JMMM), an improved method for<br />

the physical delivery of rAAV vectors in vivo in which virion particles are<br />

conjugated to microsphere supports (Mah 2002 Mol Therapy), thrombosis treatment<br />

using a composition of ferrofluid with fibrinolytic enzyme (Rusetski 1990 JMMM),<br />

nucleic acid delivery with magnetically labeled non-viral vectors (Schillinger 2005<br />

JMMM)<br />

e. Biocatalysis<br />

This newly developing field is strictly bound to the control of the magnetic beads<br />

that can immobilize several bio-catalysts, mainly enzymes, such as β-lactamase

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