Targeted and heat-triggered doxorubicin delivery to tumors by dual targeted cationic thermosensitive liposomes

Journal of Controlled Release - Tập 195 - Trang 37-48 - 2014
Bilyana M. Dicheva1, Timo L.M. ten Hagen1, Debby Schipper1, Ann L.B. Seynhaeve1, Gerard C. van Rhoon2, Alexander M.M. Eggermont1,3, Gerben A. Koning1
1Laboratory Experimental Surgical Oncology, Section Surgical Oncology, Department of Surgery, Erasmus MC Cancer Institute, Rotterdam, The Netherlands
2Unit Hyperthermia, Department Radiotherapy, Erasmus MC Cancer Institute, Rotterdam, The Netherlands
3Institut Gustave Roussy, Villejuif, France

Tài liệu tham khảo

Allen, 1991, Liposomes containing synthetic lipid derivatives of poly(ethylene glycol) show prolonged circulation half-lives in vivo, Biochim. Biophys. Acta, 1066, 29, 10.1016/0005-2736(91)90246-5

Gabizon, 2003, Pharmacokinetics of pegylated liposomal doxorubicin: review of animal and human studies, Clin. Pharmacokinet., 42, 419, 10.2165/00003088-200342050-00002

Koning, 2007, Targeted multifunctional lipid-based nanocarriers for image-guided drug delivery, Anticancer Agents Med. Chem., 7, 425, 10.2174/187152007781058613

Allen, 2004, Drug delivery systems: entering the mainstream, Science, 303, 1818, 10.1126/science.1095833

Judson, 2001, Randomised phase II trial of pegylated liposomal doxorubicin (DOXIL/CAELYX) versus doxorubicin in the treatment of advanced or metastatic soft tissue sarcoma: a study by the EORTC Soft Tissue and Bone Sarcoma Group, Eur. J. Cancer, 37, 870, 10.1016/S0959-8049(01)00050-8

Northfelt, 1998, Pegylated-liposomal doxorubicin versus doxorubicin, bleomycin, and vincristine in the treatment of AIDS-related Kaposi's sarcoma: results of a randomized phase III clinical trial, J. Clin. Oncol., 16, 2445, 10.1200/JCO.1998.16.7.2445

Seynhaeve, 2013, Intact Doxil is taken up intracellularly and released doxorubicin sequesters in the lysosome: evaluated by in vitro/in vivo live cell imaging, J. Control. Release, 172, 330, 10.1016/j.jconrel.2013.08.034

Seynhaeve, 2007, Tumor necrosis factor alpha mediates homogeneous distribution of liposomes in murine melanoma that contributes to a better tumor response, Cancer Res., 67, 9455, 10.1158/0008-5472.CAN-07-1599

Laginha, 2005, Determination of doxorubicin levels in whole tumor and tumor nuclei in murine breast cancer tumors, Clin. Cancer Res., 11, 6944, 10.1158/1078-0432.CCR-05-0343

Campbell, 2009, Fighting cancer: from the bench to bedside using second generation cationic liposomal therapeutics, J. Pharm. Sci., 98, 411, 10.1002/jps.21458

Thurston, 1998, Cationic liposomes target angiogenic endothelial cells in tumors and chronic inflammation in mice, J. Clin. Invest., 101, 1401, 10.1172/JCI965

Al-Jamal, 2013, Cationic poly-l-lysine dendrimer complexes doxorubicin and delays tumor growth in vitro and in vivo, ACS Nano, 7, 1905, 10.1021/nn305860k

Krasnici, 2003, Effect of the surface charge of liposomes on their uptake by angiogenic tumor vessels, Int. J. Cancer, 105, 561, 10.1002/ijc.11108

Dicheva, 2013, Cationic thermosensitive liposomes: a novel dual targeted heat-triggered drug delivery approach for endothelial and tumor cells, Nano Lett., 13, 2324, 10.1021/nl3014154

Dreher, 2007, Thermal cycling enhances the accumulation of a temperature-sensitive biopolymer in solid tumors, Cancer Res., 67, 4418, 10.1158/0008-5472.CAN-06-4444

Li, 2013, Improved intratumoral nanoparticle extravasation and penetration by mild hyperthermia, J. Control. Release, 167, 130, 10.1016/j.jconrel.2013.01.026

Dewhirst, 2013, Novel approaches to treatment of hepatocellular carcinoma and hepatic metastases using thermal ablation and thermosensitive liposomes, Surg. Oncol. Clin. N. Am., 22, 545, 10.1016/j.soc.2013.02.009

Grull, 2013, Hyperthermia-triggered drug delivery from temperature-sensitive liposomes using MRI-guided high intensity focused ultrasound, J. Control. Release, 161, 317, 10.1016/j.jconrel.2012.04.041

Al-Ahmady, 2012, Lipid–peptide vesicle nanoscale hybrids for triggered drug release by mild hyperthermia in vitro and in vivo, ACS Nano, 6, 9335, 10.1021/nn302148p

Yatvin, 1978, Design of liposomes for enhanced local release of drugs by hyperthermia, Science, 202, 1290, 10.1126/science.364652

Hossann, 2007, In vitro stability and content release properties of phosphatidylglyceroglycerol containing thermosensitive liposomes, Biochim. Biophys. Acta, 1768, 2491, 10.1016/j.bbamem.2007.05.021

Haran, 1993, Transmembrane ammonium sulfate gradients in liposomes produce efficient and stable entrapment of amphipathic weak bases, Biochim. Biophys. Acta, 1151, 201, 10.1016/0005-2736(93)90105-9

Allen, 2013, Liposomal drug delivery systems: from concept to clinical applications, Adv. Drug Deliv. Rev., 65, 36, 10.1016/j.addr.2012.09.037

Manzoor, 2012, Overcoming limitations in nanoparticle drug delivery: triggered, intravascular release to improve drug penetration into tumors, Cancer Res., 72, 5566, 10.1158/0008-5472.CAN-12-1683

Poon, 2009, Lyso-thermosensitive liposomal doxorubicin: a novel approach to enhance efficacy of thermal ablation of liver cancer, Expert. Opin. Pharmacother., 10, 333, 10.1517/14656560802677874

Koning, 2010, Hyperthermia and thermosensitive liposomes for improved delivery of chemotherapeutic drugs to solid tumors, Pharm. Res., 27, 1750, 10.1007/s11095-010-0154-2

Swietach, 2012, Importance of intracellular pH in determining the uptake and efficacy of the weakly basic chemotherapeutic drug, doxorubicin, PLoS ONE, 7, e35949, 10.1371/journal.pone.0035949

Kirchmeier, 2001, Correlations between the rate of intracellular release of endocytosed liposomal doxorubicin and cytotoxicity as determined by a new assay, J. Liposome Res., 11, 15, 10.1081/LPR-100103167

Adrian, 2010, Targeted SAINT-O-Somes for improved intracellular delivery of siRNA and cytotoxic drugs into endothelial cells, J. Control. Release, 144, 341, 10.1016/j.jconrel.2010.03.003

Simoes, 2004, On the formulation of pH-sensitive liposomes with long circulation times, Adv. Drug Deliv. Rev., 56, 947, 10.1016/j.addr.2003.10.038

Dicheva, 2014, Targeted thermosensitive liposomes: an attractive novel approach for increased drug delivery to solid tumors, Expert Opin. Drug Deliv., 11, 83, 10.1517/17425247.2014.866650

Eichhorn, 2010, Vascular targeting by EndoTAG-1 enhances therapeutic efficacy of conventional chemotherapy in lung and pancreatic cancer, Int. J. Cancer, 126, 1235, 10.1002/ijc.24846

Dicheva, 2013, Cationic thermosensitive liposomes: a novel dual targeted heat-triggered drug delivery approach for endothelial and tumor cells, Nano Lett., 13, 2324, 10.1021/nl3014154