Biomedical Engineering Reference
In-Depth Information
[103] buxton Db. Current status of nanotechnology approaches for cardiovascular disease: a
personal perspective. Wiley Interdiscip Rev Nanomed Nanobiotechnol 2009; 1 :149-155.
[104] Nahrendorf m, Sosnovik De, french bA, Swirski fK, bengel f, Sadeghi mm, Lindner
JR, Wu JC, Kraitchman DL, fayad ZA, Sinusas AJ. multimodality cardiovascular
molecular imaging, part II. Circ Cardiovasc Imaging 2009; 2 :56-70.
[105] Nahrendorf m, Zhang H, Hembrador S, panizzi p, Sosnovik De, Aikawa e, Libby p,
Swirski fK, Weissleder R. Nanoparticle peT-CT imaging of macrophages in inflammatory
atherosclerosis. Circulation 2008; 117 :379-387.
[106] Sinusas AJ, bengel f, Nahrendorf m, epstein fH, Wu JC, Villanueva fS, fayad ZA,
gropler RJ. multimodality cardiovascular molecular imaging, part I. Circ Cardiovasc
Imaging 2008; 1 :244-256.
[107] gaucher g, Dufresne mH, Sant Vp, Kang N, maysinger D, Leroux JC. block copol-
ymer micelles: preparation, characterization and application in drug delivery. J Control
Release 2005; 109 :169-188.
[108] Nishiyama N, Kataoka K. Current state, achievements, and future prospects of polymeric
micelles as nanocarriers for drug and gene delivery. pharmacol Ther 2006; 112 :630-648.
[109] Sun g, Hagooly A, Xu J, Nystrom Am, Li Z, Rossin R, moore DA, Wooley KL, Welch
mJ. facile, efficient approach to accomplish tunable chemistries and variable biodistri-
butions for shell cross-linked nanoparticles. biomacromolecules 2008; 9 :1997-2006.
[110] Xu J, Sun g, Rossin R, Hagooly A, Li Z, fukukawa KI, messmore bW, moore DA,
Welch mJ, Hawker CJ, Wooley KL. Labeling of polymer nanostructures for medical
imaging: importance of crosslinking extent, spacer length, and charge density.
macromolecules 2007; 40 :2971-2973.
[111] Sun g, Xu J, Hagooly A, Rossin R, Li Z, moore DA, Hawker CJ, Welch mJ,
Wooley KL. Strategies for optimized radiolabeling of nanoparticles for in vivo
peT imaging. Adv mater 2007; 19 :3157-3162.
[112] Zeng D, Lee NS, Liu Y, Zhou D, Dence CS, Wooley KL, Katzenellenbogen JA,
Welch mJ. (64)Cu core-labeled nanoparticles with high specific activity via metal-
free click chemistry. ACS Nano 2012; 6 :5209-5219.
[113] fukukawa K, Rossin R, Hagooly A, pressly eD, Hunt JN, messmore bW, Wooley KL,
Welch mJ, Hawker CJ. Synthesis and characterization of core-shell star copolymers for
in vivo peT imaging applications. biomacromolecules 2008; 9 :1329-1339.
[114] pressly eD, Rossin R, Hagooly A, fukukawa K, messmore bW, Welch mJ, Wooley
KL, Lamm mS, Hule RA, pochan DJ, Hawker CJ. Structural effects on the biodistribu-
tion and positron emission tomography (peT) imaging of well-defined (64)Cu-labeled
nanoparticles comprised of amphiphilic block graft copolymers. biomacromolecules
2007; 8 :3126-3134.
[115] Shokeen m, pressly eD, Hagooly A, Zheleznyak A, Ramos N, fiamengo AL, Welch
mJ, Hawker CJ, Anderson CJ. evaluation of multivalent, functional polymeric nanopar-
ticles for imaging applications. ACS Nano 2011; 5 :738-747.
[116] Liu Y, pressly eD, Abendschein D, Hawker CJ, Woodard ge, Woodard pK, Welch mJ.
Targeting angiogenesis using a C-type atrial natriuretic factor conjugated nanoprobe
and positron emission tomography. J Nucl med 2011; 52 :1956-1963.
[117] gan CW, Chien S, feng SS. Nanomedicine: enhancement of chemotherapeutical effi-
cacy of docetaxel by using a biodegradable nanoparticle formulation. Curr pharm Des
2010; 16 :2308-2320.
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