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Current Applied Polymer Science最新文献

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Difference in Cell Adhesion on Three Biodegradable Aliphatic Polyesters 三种可生物降解脂肪族聚酯的细胞粘附差异
Pub Date : 2018-10-02 DOI: 10.2174/2452271602666180530075844
C. Lee, Y. Kimura, Kazunari Masutani
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引用次数: 1
The Structure of Propoxylated p-Toluidine, Used as a Polymerization Accelerator or in Unsaturated Polyester Resin Curing 聚合促进剂和不饱和聚酯树脂固化用丙酰基化对甲苯胺的结构
Pub Date : 2018-10-02 DOI: 10.2174/2452271602666180516101556
Antoni Zoltanski, J. Grzesiak, P. Bielecki
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引用次数: 0
Microwave Controlled the Green Synthesis of Acrylamide Graft Copolymers of Azadirachita indica Gum for the Wastewater Management 微波控制绿色合成印楝胶丙烯酰胺接枝共聚物及其废水处理
Pub Date : 2018-10-02 DOI: 10.2174/2452271602666180517093813
R. Malviya, P. Sharma, S. Dubey
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引用次数: 4
Microwave Assisted Poly-condensation Synthesis of Optically Active Novel Co-polyamide-imides (co-PAIs): Its Property Investigation 微波辅助缩聚合成具有光学活性的新型共聚酰胺酰亚胺(co-PAIs)的性质研究
Pub Date : 2018-10-02 DOI: 10.2174/2452271602666180516095259
Milind Shashikant Tamore, Sarika A. Rasal, N. Shimpi
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引用次数: 0
Preparation of Molecularly Imprinted SPR Nanosensor for Myoglobin Detection 用于肌红蛋白检测的分子印迹SPR纳米传感器制备
Pub Date : 2018-10-02 DOI: 10.2174/2452271602666180828103017
N. Ö. Atay, B. Osman, S. Akgöl, A. Karagozler, A. Denizli
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引用次数: 3
Meet Our Co-Editor 认识我们的联合编辑
Pub Date : 2018-05-29 DOI: 10.2174/245227160201180529112210
E. Guibal
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引用次数: 1
Structure of Hybrid Interpolymeric Complexes of Zinc Halides with Polyvinyl Alcohol 卤化锌与聚乙烯醇杂化聚合间配合物的结构
Pub Date : 2018-05-29 DOI: 10.2174/2452271602666180102145500
I. Y. Prosanov, E. Benassi, N. Bulina
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引用次数: 1
Radiolabeling Methods and Nuclear Imaging Techniques in the Design of New Polymeric Carriers for Cancer Therapy 放射性标记方法和核成像技术在癌症治疗新聚合物载体设计中的应用
Pub Date : 2018-05-29 DOI: 10.2174/2452271602666180102150733
R. D. Kruijff, A. Arranja, A. Denkova
P3-10-04: A open-label, randomized, parallel, phase III trial to evaluate the efficacy and safety of Genexol ® -PM compared to Genexol ® (conventional paclitaxel with cremorphor EL) in recurrent or metastatic breast cancer patients. Cancer Research 2015; 75 (9 Supplement): P3-10-04-P3-10-04. Varela-Moreira A, Shi Y, Fens MH, Lammers T, Hennink WE, [17] Schiffelers RM. Clinical application of polymeric micelles for the Radiolabeling Methods and Nuclear Imaging Techniques Current Applied Polymer Science, 2018, Vol. 2, No. 1 15 treatment of cancer. Materials Chemistry Frontiers 2017; 1(8): 1485-501. Subbiah V, Combest A, Griley-Olsen J, Sharma N, Andrews E, [18] Bobe I, et al. Phase Ib/II trial of NC-6004 (nanoparticle cisplatin) plus gemcitabine (G) in pts with advanced solid tumors. Ann Oncol 2016; 27(suppl_6): 398P-P. Saeki T, Mukai H, Ro J, et al. 250PA Global phase III clinical [19] study comparing NK105 and paclitaxel in metastatic or recurrent breast cancer patients. Ann Oncol 2017; 28(suppl_5): mdx365.013-. Von Hoff DD, Mita MM, Ramanathan RK, et al. Phase I study of [20] PSMA-targeted docetaxel-containing nanoparticle BIND-014 in patients with advanced solid tumors. Clin Cancer Res 2016; 22(13): 3157-63. Hu Q, Rijcken CJ, Bansal R, Hennink WE, Storm G, Prakash J. [21] Complete regression of breast tumour with a single dose of docetaxel-entrapped core-cross-linked polymeric micelles. Biomaterials 2015; 53: 370-8. Burris HA, Wang JS-Z, Johnson ML, Falchook GS, Jones SF, [22] Strickland DK, et al. A phase I, open-label, first-time-in-patient dose escalation and expansion study to assess the safety, tolerability, and pharmacokinetics of nanoparticle encapsulated Aurora B kinase inhibitor AZD2811 in patients with advanced solid tumours. J Clin Oncol 2017; 15_suppl: TPS2608-. Smits ML, Nijsen JF, van den Bosch MA, et al. Holmium-166 [23] radioembolization for the treatment of patients with liver metastases: Design of the phase I HEPAR trial. J Exp Clin Cancer Res 2010; 29(1): 70. Smits ML, Nijsen JF, van den Bosch MA, et al. Holmium-166 [24] radioembolisation in patients with unresectable, chemorefractory liver metastases (HEPAR trial): A phase 1, dose-escalation study. Lancet Oncol 2012; 13(10): 1025-34. Feasibility of Holmium-166 Micro Brachytherapy in Head and [25] Neck Tumors (HIT) 2016 [Available from: https: //clinicaltrials.gov/ct2/show/NCT02975739]. Holmium-166-radioembolization in NET After Lutetium-177[26] dotatate: An Efficacy Study (HEPAR_Plus) 2016 [Available from: https: //clinicaltrials.gov/ct2/show/NCT02067988]. Eppard E, Allmeroth M, Zentel R, Roesch F. Labeling of HPMA[27] based, functionalized polymer-systems using metallic radionuclides. J Nucl Med 2013; 54 (Suppl. 2): 501. Yuan J, Zhang H, Kaur H, Oupicky D, Peng F. Synthesis and [28] characterization of theranostic poly(HPMA)-c(RGDyK)DOTA-64Cu copolymer targeting tumor angiogenesis: Tumor localization visualized by positron emission tomography. Mol Imaging 2013; 12(3): 203-1
P3-10-04:一项开放标签、随机、平行、III期试验,评估Genexol®-PM与Genexol®(常规紫杉醇加cremorphor EL)治疗复发或转移性乳腺癌患者的疗效和安全性。癌症研究2015;75(增刊9):P3-10-04-P3-10-04。李建军,李建军,李建军,等。[17]高分子胶束在放射性标记方法和核成像技术中的临床应用。应用高分子科学,2018,Vol. 2, No. 15材料化学前沿2017;1(8): 1485 - 501。[18]张建军,李建军,李建军,等。NC-6004(纳米颗粒顺铂)联合吉西他滨(G)治疗晚期实体瘤患者的Ib/II期临床试验。Ann Oncol 2016;27 (suppl_6): 398 p p。王晓明,王晓明,王晓明,等。NK105与紫杉醇治疗乳腺癌的临床疗效对比研究[19]。Ann Oncol 2017;28 (suppl_5): mdx365.013 -。Von Hoff DD, Mita MM, Ramanathan RK,等。[20] psma靶向含多西他赛纳米颗粒BIND-014在晚期实体瘤患者中的I期研究。clinical Cancer Res 2016;22日(13):3157 - 63。[21]张晓明,李晓明,李晓明,等。多西他赛核交联胶束对乳腺肿瘤的影响。生物材料2015;53: 370 - 8。王建忠,王建忠,刘建军,等[22]。一项I期、开放标签、首次住院的剂量递增和扩展研究,评估纳米颗粒封装的Aurora B激酶抑制剂AZD2811在晚期实体瘤患者中的安全性、耐受性和药代动力学。中华临床杂志2017;15 _suppl: TPS2608 -。Smits ML, Nijsen JF, van den Bosch MA,等。钬-166[23]放射栓塞治疗肝转移患者:I期HEPAR试验设计。中华医学杂志2010;29(1): 70。Smits ML, Nijsen JF, van den Bosch MA,等。钬-166[24]放射栓塞治疗不可切除、化疗难治性肝转移(HEPAR试验):一项剂量递增的1期研究。柳叶刀肿瘤学2012;13(10): 1025 - 34。钬-166微近距离治疗头颈部肿瘤[25]的可行性[来源:https: //clinicaltrials.gov/ct2/show/NCT02975739]HEPAR_Plus (HEPAR_Plus) 2016[来源:https: //clinicaltrials.gov/ct2/show/NCT02067988]。李建军,李建军,李建军,等。基于聚甲基丙烯酸甲酯(HPMA)的有机高分子体系的研究[27]。中华核医学杂志2013;54(增刊2):501。袁军,张辉,Kaur H, ou挑剔D,彭峰。靶向肿瘤血管生成的治疗性聚(HPMA)-c(RGDyK)DOTA-64Cu共聚物的合成及表征[28]。Mol Imaging 2013;12(3): 203 - 12。Herth MM, Barz M, Moderegger D,等。[29]使用[18F] feto进行体内正电子发射断层成像,对基于hpma的聚合物结构进行放射性标记[29]。《2009年;(7): 1697 - 703。Allmeroth M, Moderegger D, Biesalski B,等。通过分子量和聚集体形成改变hpma基共聚物的体分布[30]。《2011年;12(7): 2841 - 9。王晓明,王晓明,王晓明,等。基于聚丙烯酸甲基苯丙胺的PET成像研究进展[31]。生物医学化学快报2010;20(18): 5454 - 8。Arranja A, Ivashchenko O, Denkova AG等。具有不同聚环氧乙烷块长度和聚集状态的多离子纳米载体的SPECT/CT[32]成像。Mol Pharm 2016;13(3): 1158 - 65。陈晓明,王晓明,王晓明,等。树突状大分子靶向递送药物的研究进展[33]。Adv Drug delivery Rev 2005;57(15): 2203 - 14所示。乔志,石霞。基于树突分子成像造影剂[34]。高分子科学2015;44: 1-27。明策尔硕士,格林斯塔夫硕士。树突状大分子的生物医学应用[35]。化学Soc Rev 2011;40(1): 173 - 90。李建军,李建军,李建军,等。树突状分子在肿瘤放疗中的应用[36]。《2016年;17(10): 3103 - 14所示。李建军,李建军,李建军,等。基于树突聚合物的分子显影剂的研究进展[37]。contemporary medical Chem 2008;8(14): 1180 - 6。张建军,李建军,李建军,等。[38]具有小树突的大分子MRI造影剂:大小和核心之间的药代动力学差异。生物偶联化学2003;14(2): 388 - 94。Kobayashi H, Brechbiel MW。具有树状核的纳米级MRI造影剂[39]。Adv Drug delivery Rev 2005;57(15): 2271 - 86。[40]张建军,张建军,张建军,等。
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引用次数: 5
Potential CO2 Sensor Application of GO Embedding and Conductive Polymer Containing p(4-VP) Cryogel Composites 氧化石墨烯包埋和p(4-VP)低温凝胶复合材料导电聚合物的潜在CO2传感器应用
Pub Date : 2018-05-29 DOI: 10.2174/2452271602666180412125043
Nurettin Sahiner and Sahin Demirci
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引用次数: 1
Nanostructured Polyaniline: Synthesis and Application for Photothermal Cancer Therapy 纳米聚苯胺的合成及其在光热癌症治疗中的应用
Pub Date : 2018-05-29 DOI: 10.2174/2452271601666171102165455
Jin-Ye Wang, R. Vivek, Liping Wang
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引用次数: 1
期刊
Current Applied Polymer Science
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