Literature DB >> 19902527

The functional roles of poly(ethylene glycol)-lipid and lysolipid in the drug retention and release from lysolipid-containing thermosensitive liposomes in vitro and in vivo.

Brian Banno1, Ludger M Ickenstein, Gigi N C Chiu, Marcel B Bally, Jenifer Thewalt, Elana Brief, Ellen K Wasan.   

Abstract

Triggered release of liposomal contents following tumor accumulation and mild local heating is pursued as a means of improving the therapeutic index of chemotherapeutic drugs. Lysolipid-containing thermosensitive liposomes (LTSLs) are composed of dipalmitoylphosphatidylcholine (DPPC), the lysolipid monostearoylphosphatidylcholine (MSPC), and poly(ethylene glycol)-conjugated distearoylphosphatidylethanolamine (DSPE-PEG(2000)). We investigated the roles of DSPE-PEG(2000) and lysolipid in the functional performance of the LTSL-doxorubicin formulation. Varying PEG-lipid concentration (0-5 mol%) or bilayer orientation did not affect the release; however, lysolipid (0-10 mol%) had a concentration-dependent effect on drug release at 42 degrees C in vitro. Pharmacokinetics of various LTSL formulations were compared in mice with body temperature controlled at 37 degrees C. As expected, incorporation of the PEG-lipid increased doxorubicin plasma half-life; however, PEG-lipid orientation (bilayer vs. external leaflet) did not significantly improve circulation lifetime or drug retention in LTSL. Approximately 70% of lysolipid was lost within 1 h postinjection of LTSL, which could be due to interactions with the large membrane pool of the biological milieu. Considering that the present LTSL-doxorubicin formulation exhibits significant therapeutic activity when used in conjunction with mild heating, our current study provided critical insights into how the physicochemical properties of LTSL can be tailored to achieve better therapeutic activity.

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Year:  2010        PMID: 19902527     DOI: 10.1002/jps.21988

Source DB:  PubMed          Journal:  J Pharm Sci        ISSN: 0022-3549            Impact factor:   3.534


  29 in total

1.  Localized delivery of doxorubicin in vivo from polymer-modified thermosensitive liposomes with MR-guided focused ultrasound-mediated heating.

Authors:  Terence Ta; Elizabeth Bartolak-Suki; Eun-Joo Park; Kavon Karrobi; Nathan J McDannold; Tyrone M Porter
Journal:  J Control Release       Date:  2014-08-23       Impact factor: 9.776

2.  Formulation and characterisation of magnetic resonance imageable thermally sensitive liposomes for use with magnetic resonance-guided high intensity focused ultrasound.

Authors:  Ayele H Negussie; Pavel S Yarmolenko; Ari Partanen; Ashish Ranjan; Genevieve Jacobs; David Woods; Henry Bryant; David Thomasson; Mark W Dewhirst; Bradford J Wood; Matthew R Dreher
Journal:  Int J Hyperthermia       Date:  2011       Impact factor: 3.914

3.  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.

Authors:  Chelsea D Landon; Ji-Young Park; David Needham; Mark W Dewhirst
Journal:  Open Nanomed J       Date:  2011-01-01

4.  Real-time fluorescence imaging for visualization and drug uptake prediction during drug delivery by thermosensitive liposomes.

Authors:  Anjan Motamarry; Ayele H Negussie; Christian Rossmann; James Small; A Marissa Wolfe; Bradford J Wood; Dieter Haemmerich
Journal:  Int J Hyperthermia       Date:  2019       Impact factor: 3.914

5.  Near-infrared image-guided delivery and controlled release using optimized thermosensitive liposomes.

Authors:  David C Turner; Delaram Moshkelani; Colby S Shemesh; David Luc; Hailing Zhang
Journal:  Pharm Res       Date:  2012-03-27       Impact factor: 4.200

Review 6.  Nanoplatforms for Targeted Stimuli-Responsive Drug Delivery: A Review of Platform Materials and Stimuli-Responsive Release and Targeting Mechanisms.

Authors:  Yuzhe Sun; Edward Davis
Journal:  Nanomaterials (Basel)       Date:  2021-03-16       Impact factor: 5.076

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.  Facing the truth about nanotechnology in drug delivery.

Authors:  Kinam Park
Journal:  ACS Nano       Date:  2013-09-24       Impact factor: 15.881

9.  Cyanine Dyes for Photo-Thermal Therapy: A Comparison of Synthetic Liposomes and Natural Erythrocyte-Based Carriers.

Authors:  Giulia Della Pelle; Andrea Delgado López; Marina Salord Fiol; Nina Kostevšek
Journal:  Int J Mol Sci       Date:  2021-06-27       Impact factor: 5.923

Review 10.  Clinical development of liposome-based drugs: formulation, characterization, and therapeutic efficacy.

Authors:  Hsin-I Chang; Ming-Kung Yeh
Journal:  Int J Nanomedicine       Date:  2011-12-30
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