Imaging of homeostatic, neoplastic, and injured tissues by HA-based probes.

Imaging of homeostatic, neoplastic, and injured tissues by HA-based probes.
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DOI:
10.1021/bm201143c
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发表时间:
2012-01-09
期刊:
影响因子:
6.2
通讯作者:
Turley EA
Turley EA
中科院分区:
化学2区
文献类型:
--
作者:
Veiseh M;Breadner D;Ma J;Akentieva N;Savani RC;Harrison R;Mikilus D;Collis L;Gustafson S;Lee TY;Koropatnick J;Luyt LG;Bissell MJ;Turley EA

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An increase in hyaluronan (HA) synthesis, cellular uptake, and metabolism occurs during the remodeling of tissue microenvironments following injury and during disease processes such as cancer. We hypothesized that multimodality HA-based probes selectively target and detectably accumulate at sites of high HA metabolism, thus providing a flexible imaging strategy for monitoring disease and repair processes. Kinetic analyses confirmed favorable available serum levels of the probe following intravenous (i.v.) or subcutaneous (s.c.) injection. Nuclear (technetium-HA, 99mTc-HA, and iodine-HA, 125I-HA), optical (fluorescent Texas Red-HA, TR-HA), and magnetic resonance (gadolinium-HA, Gd-HA) probes imaged liver (99mTc-HA), breast cancer cells/xenografts (TR-HA, Gd-HA), and vascular injury (125I-HA, TR-HA). Targeting of HA probes to these sites appeared to result from selective HA receptor-dependent localization. Our results suggest that HA-based probes, which do not require polysaccharide backbone modification to achieve favorable half-life and distribution, can detect elevated HA metabolism in homeostatic, injured, and diseased tissues.
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