Platinum (II)-coordinated Portulaca oleracea polysaccharides as metal-drug based polymers for anticancer study.
暂无分享,去创建一个
Fang Wang | Fei Li | Yanqing Wang | Shixin Sun | Hongmei Zhang | Ying Wang | Qianqian Han | Ligen Chen | Lirong Huang | Hao Huang
[1] Le He,et al. Hybrid micelles based on Pt (IV) polymeric prodrug and TPGS for the enhanced cytotoxicity in drug-resistant lung cancer cells. , 2020, Colloids and surfaces. B, Biointerfaces.
[2] Xinli Guo,et al. Tumor microenvironment-induced structure changing drug/gene delivery system for overcoming delivery-associated challenges. , 2020, Journal of controlled release : official journal of the Controlled Release Society.
[3] M. Hsieh,et al. Recent Advances in Theranostic Polymeric Nanoparticles for Cancer Treatment: A Review. , 2020, International journal of pharmaceutics.
[4] Yanqing Wang,et al. The assembly and antitumor activity of lycium barbarum polysaccharide-platinum-based conjugates. , 2020, Journal of inorganic biochemistry.
[5] M. Skonieczna,et al. Platinum(II) coordination compounds with 4'-pyridyl functionalized 2,2':6',2″-terpyridines as an alternative to enhanced chemotherapy efficacy and reduced side-effects. , 2019, Journal of inorganic biochemistry.
[6] Gangliang Huang,et al. Extraction, derivatization and antioxidant activity of bitter gourd polysaccharide. , 2019, International journal of biological macromolecules.
[7] Gangliang Huang,et al. Application of glycosylation in targeted drug delivery. , 2019, European journal of medicinal chemistry.
[8] Dapeng Liu,et al. Recent advances in ruthenium and platinum based supramolecular coordination complexes for antitumor therapy. , 2019, Colloids and surfaces. B, Biointerfaces.
[9] Gareth R. Williams,et al. Dual-responsive nanoparticles based on chitosan for enhanced breast cancer therapy. , 2019, Carbohydrate polymers.
[10] Zijian Guo,et al. Enhancing Cytotoxicity of a Monofunctional Platinum Complex via a Dual-DNA-Damage Approach. , 2019, Inorganic chemistry.
[11] V. Labas,et al. Polymer "ruthenium-cyclopentadienyl" conjugates - New emerging anti-cancer drugs. , 2019, European journal of medicinal chemistry.
[12] Qi Zhou,et al. ABHD5 blunts the sensitivity of colorectal cancer to fluorouracil via promoting autophagic uracil yield , 2019, Nature Communications.
[13] Yanqing Wang,et al. Engineering of pectin-dopamine nano-conjugates for carrying ruthenium complex: A potential tool for biomedical applications. , 2019, Journal of inorganic biochemistry.
[14] Xuesi Chen,et al. Recent progress in polymer-based platinum drug delivery systems , 2018, Progress in Polymer Science.
[15] Zijian Guo,et al. Towards rational design of RAD51-targeting prodrugs: platinumIV-artesunate conjugates with enhanced cytotoxicity against BRCA-proficient ovarian and breast cancer cells. , 2018, Chemical communications.
[16] Zhenfeng Chen,et al. Organometallic Gold(III) Complexes Similar to Tetrahydroisoquinoline Induce ER-Stress-Mediated Apoptosis and Pro-Death Autophagy in A549 Cancer Cells. , 2018, Journal of medicinal chemistry.
[17] C. Solans,et al. Hyaluronan based materials with catanionic sugar-derived surfactants as drug delivery systems. , 2018, Colloids and surfaces. B, Biointerfaces.
[18] C. Boyer,et al. Water Soluble Antioxidant Dextran-Quercetin Conjugate with Potential Anticancer Properties. , 2018, Macromolecular bioscience.
[19] P. Denev,et al. Acidic polysaccharide complexes from purslane, silver linden and lavender stimulate Peyer's patch immune cells through innate and adaptive mechanisms. , 2017, International journal of biological macromolecules.
[20] Gareth R. Williams,et al. A thermosensitive drug delivery system prepared by blend electrospinning. , 2017, Colloids and surfaces. B, Biointerfaces.
[21] J. Philip,et al. Magnetic nanoparticle-loaded alginate beads for local micro-actuation of in vitro tissue constructs. , 2017, Colloids and surfaces. B, Biointerfaces.
[22] Yanjuan Huang,et al. Coordination self-assembly of platinum-bisphosphonate polymer-metal complex nanoparticles for cisplatin delivery and effective cancer therapy. , 2017, Nanoscale.
[23] Jianxun Ding,et al. Schiff base bond-linked polysaccharide-doxorubicin conjugate for upregulated cancer therapy. , 2017, Materials science & engineering. C, Materials for biological applications.
[24] M. Zhang,et al. Phosphorylation and antiaging activity of polysaccharide from Trichosanthes peel , 2017, Journal of food and drug analysis.
[25] André R. Fajardo,et al. Orange waste: A valuable carbohydrate source for the development of beads with enhanced adsorption properties for cationic dyes. , 2017, Carbohydrate polymers.
[26] M. Jayakannan,et al. Cisplatin-Stitched Polysaccharide Vesicles for Synergistic Cancer Therapy of Triple Antagonistic Drugs. , 2017, Biomacromolecules.
[27] I. Donati,et al. Hyaluronan delivery by polymer demixing in polysaccharide-based hydrogels and membranes for biomedical applications. , 2016, Carbohydrate polymers.
[28] Li Chen,et al. Drug binding rate regulates the properties of polysaccharide prodrugs. , 2016, Journal of materials chemistry. B.
[29] Deepak Mudgil,et al. Structural, thermal and rheological characterization of modified Dalbergia sissoo gum--A medicinal gum. , 2016, International journal of biological macromolecules.
[30] S. Lippard,et al. The Next Generation of Platinum Drugs: Targeted Pt(II) Agents, Nanoparticle Delivery, and Pt(IV) Prodrugs. , 2016, Chemical reviews.
[31] P. T. Perumal,et al. DNA/protein binding, DNA cleavage, cytotoxicity, superoxide radical scavenging and molecular docking studies of copper(II) complexes containing N-benzyl-N′-aryl-N′′-benzoylguanidine ligands , 2015 .
[32] Jason Bugno,et al. Recent advances in targeted drug delivery approaches using dendritic polymers. , 2015, Biomaterials science.
[33] Xuesi Chen,et al. Pharmacokinetics, biodistribution and in vivo efficacy of cisplatin loaded poly(L-glutamic acid)-g-methoxy poly(ethylene glycol) complex nanoparticles for tumor therapy. , 2015, Journal of controlled release : official journal of the Controlled Release Society.
[34] Ming Ye,et al. Preparation, characterization and bioactivities of derivatives of an exopolysaccharide from Lachnum. , 2015, Carbohydrate polymers.
[35] Y. Gong,et al. Antioxidant activities of novel small-molecule polysaccharide fractions purified from Portulaca oleracea L. , 2014, Food Science and Biotechnology.
[36] H. Lee,et al. Synthesis and properties of a new micellar polyphosphazene-platinum(II) conjugate drug. , 2014, Journal of inorganic biochemistry.
[37] P. Liu,et al. Biocompatible graphene oxide nanoparticle-based drug delivery platform for tumor microenvironment-responsive triggered release of doxorubicin. , 2014, Langmuir : the ACS journal of surfaces and colloids.
[38] X. Wang,et al. Delivery of platinum(IV) drug to subcutaneous tumor and lung metastasis using bradykinin-potentiating peptide-decorated chitosan nanoparticles. , 2014, Biomaterials.
[39] S. Shi,et al. Evaluation of antioxidant and immuno-enhancing activities of Purslane polysaccharides in gastric cancer rats. , 2014, International journal of biological macromolecules.
[40] Joseph H. Gorman,et al. Injectable and bioresponsive hydrogels for on-demand matrix metalloproteinase inhibition , 2014, Nature materials.
[41] Ming Ye,et al. Purification, structure, lipid lowering and liver protecting effects of polysaccharide from Lachnum YM281. , 2013, Carbohydrate polymers.
[42] Xu Gao,et al. Antitumor activity of Portulaca oleracea L. polysaccharides against cervical carcinoma in vitro and in vivo. , 2013, Carbohydrate polymers.
[43] Hongcheng Liu,et al. Purification and characterization of an antitumor polysaccharide from Portulaca oleracea L. , 2013, Carbohydrate polymers.
[44] Yechezkel Barenholz,et al. Development and characterization of a novel drug nanocarrier for oral delivery, based on self-assembled β-casein micelles. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[45] J. Church,et al. Reconstitution properties of micellar casein powder: Effects of composition and storage , 2011 .
[46] M. H. Gil,et al. Insight on the periodate oxidation of dextran and its structural vicissitudes , 2011 .
[47] K. Hayashi,et al. Characterization of structures and antiviral effects of polysaccharides from Portulaca oleracea L. , 2010, Chemical & pharmaceutical bulletin.
[48] N. Margiotta,et al. Synthesis, characterization, and cytotoxicity of dinuclear platinum-bisphosphonate complexes to be used as prodrugs in the local treatment of bone tumours. , 2009, Dalton transactions.
[49] Zongji Shen,et al. Evaluation of free radicals scavenging and immunity-modulatory activities of Purslane polysaccharides. , 2009, International journal of biological macromolecules.
[50] M. Aziz,et al. Portulene, a new diterpene from Portulaca oleracea L. , 2008, Journal of Asian natural products research.
[51] L. Zitvogel,et al. Immunogenic cancer cell death: a key-lock paradigm. , 2008, Current opinion in immunology.
[52] L. Kèlland,et al. The resurgence of platinum-based cancer chemotherapy , 2007, Nature Reviews Cancer.
[53] Surangkhana Martwiset,et al. Nonfouling characteristics of dextran-containing surfaces. , 2006, Langmuir : the ACS journal of surfaces and colloids.
[54] M. Michalak,et al. The ins and outs of calreticulin: from the ER lumen to the extracellular space. , 2001, Trends in cell biology.
[55] K. Oh,et al. Detection of antifungal activity in Portulaca oleracea by a single‐cell bioassay system , 2000, Phytotherapy research : PTR.
[56] C. Rice-Evans,et al. Antioxidant activity applying an improved ABTS radical cation decolorization assay. , 1999, Free radical biology & medicine.
[57] S. Ralph,et al. Reactions of platinum(II) aqua complexes. 2. Platinum-195 NMR study of reactions between the tetraaquaplatinum(II) cation and chloride, hydroxide, perchlorate, nitrate, sulfate, phosphate, and acetate , 1985 .