Literature DB >> 15486198

Targeting tumor microvessels using doxorubicin encapsulated in a novel thermosensitive liposome.

Qing Chen1, Sheng Tong, Mark W Dewhirst, Fan Yuan.   

Abstract

Liposomal drugs accumulate only in perivascular regions in tumors after i.v. injection. Thus, they cannot kill tumor cells in deeper tissue layers. To circumvent this problem, we investigated effects of doxorubicin (DOX) encapsulated in a lysolecithin-containing thermosensitive liposome (LTSL) on tumor microcirculation because damaging microvessels would stop nutrient supply to deeper tumor cells. We used LTSL-DOX in combination with hyperthermia to treat a human squamous carcinoma xenograft (FaDu) implanted in dorsal skinfold chambers in nude mice. Before the treatment, the RBC velocity in tumors was 0.428 +/- 0.037 mm/s and the microvascular density was 3.93 +/- 0.44 mm/mm(2). At 24 hours after the treatment, they were reduced to 0.003 +/- 0.003 mm/s and 0.86 +/- 0.27 mm/mm(2), respectively. The same treatment, however, caused only 32% decrease in the RBC velocity and no apparent change in microvascular networks in normal s.c. tissues over the same period. LTSL and LTSL-DOX alone had no effect on tumor microcirculation, and LTSL plus hyperthermia caused only a transient decrease in the RBC velocity in tumors. At 24 hours after treatments, tumor microcirculation in all these control experiments was insignificantly different from that before the treatments. We also examined apoptosis of cells in tumors at different time points after LTSL-DOX plus hyperthermia treatment and observed few apoptotic cells in tumor microvessels. In conclusion, the rapid release of DOX during hyperthermia could make the drug to shutdown tumor blood flow while have only minor effects on normal microcirculation in s.c. tissues.

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Year:  2004        PMID: 15486198

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  31 in total

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Authors:  Jessica A Tashjian; Mark W Dewhirst; David Needham; Benjamin L Viglianti
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Review 5.  Novel approaches to treatment of hepatocellular carcinoma and hepatic metastases using thermal ablation and thermosensitive liposomes.

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6.  Nanoscale Drug Delivery and Hyperthermia: The Materials Design and Preclinical and Clinical Testing of Low Temperature-Sensitive Liposomes Used in Combination with Mild Hyperthermia in the Treatment of Local Cancer.

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Review 7.  Thermosensitive liposomes for localized delivery and triggered release of chemotherapy.

Authors:  Terence Ta; Tyrone M Porter
Journal:  J Control Release       Date:  2013-04-11       Impact factor: 9.776

8.  Hyperthermia and thermosensitive liposomes for improved delivery of chemotherapeutic drugs to solid tumors.

Authors:  Gerben A Koning; Alexander M M Eggermont; Lars H Lindner; Timo L M ten Hagen
Journal:  Pharm Res       Date:  2010-04-28       Impact factor: 4.200

9.  Real-time MRI-guided hyperthermia treatment using a fast adaptive algorithm.

Authors:  Vadim L Stakhursky; Omar Arabe; Kung-Shan Cheng; James Macfall; Paolo Maccarini; Oana Craciunescu; Mark Dewhirst; Paul Stauffer; Shiva K Das
Journal:  Phys Med Biol       Date:  2009-03-13       Impact factor: 3.609

10.  Micro-CT imaging of breast tumors in rodents using a liposomal, nanoparticle contrast agent.

Authors:  Ehsan Samei; Robert S Saunders; Cristian T Badea; Ketan B Ghaghada; Laurence W Hedlund; Yi Qi; Hong Yuan; Rex C Bentley; Srinivasan Mukundan
Journal:  Int J Nanomedicine       Date:  2009
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