521
Views
36
CrossRef citations to date
0
Altmetric
Research Article

Gadolinium-conjugated PLA-PEG nanoparticles as liver targeted molecular MRI contrast agent

, , , , , , & show all
Pages 657-665 | Received 23 Jun 2010, Accepted 11 Oct 2010, Published online: 23 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

ZhongQian Hu, JiaLe Qin, TianKuan Li & JinHe Guo. (2019) Thyroid cancer MR molecular imaging via SHP2-targeted nanoparticles. International Journal of Nanomedicine 14, pages 7365-7373.
Read now
Bingjie Wang, Wei Zhang, Xiudi Zhou, Mengna Liu, Xiaoya Hou, Ziting Cheng & Daquan Chen. (2019) Development of dual-targeted nano-dandelion based on an oligomeric hyaluronic acid polymer targeting tumor-associated macrophages for combination therapy of non-small cell lung cancer. Drug Delivery 26:1, pages 1265-1279.
Read now
Hongkee Sah, Laura A Thoma, Hari R Desu, Edel Sah & George C Wood. (2013) Concepts and practices used to develop functional PLGA-based nanoparticulate systems. International Journal of Nanomedicine 8, pages 747-765.
Read now
Mengjie Rui, Wei Guo, Qian Ding, Xiaohui Wei, Jianrong Xu & Yuhong Xu. (2012) Recombinant high-density lipoprotein nanoparticles containing gadolinium-labeled cholesterol for morphologic and functional magnetic resonance imaging of the liver. International Journal of Nanomedicine 7, pages 3751-3768.
Read now

Articles from other publishers (32)

Dmitry V. Korolev, Galina A. Shulmeyster, Maria S. Istomina, Natalia V. Evreinova, Ilia V. Aleksandrov, Aleksandr S. Krasichkov, Viktor N. Postnov & Michael M. Galagudza. (2022) Fluorescently Labeled Gadolinium Ferrate/Trigadolinium Pentairon(III) Oxide Nanoparticles: Synthesis, Characterization, In Vivo Biodistribution, and Application for Visualization of Myocardial Ischemia–Reperfusion Injury. Materials 15:11, pages 3832.
Crossref
Iris Sonia Weitz, Or Perlman, Haim Azhari & Sarit Sara Sivan. (2020) In vitro evaluation of copper release from MRI-visible, PLGA-based nanospheres. Journal of Materials Science 56:1, pages 718-730.
Crossref
Alessio Smeraldo, Paolo A. Netti & Enza Torino. (2020) New Strategies in the Design of Paramagnetic CAs. Contrast Media & Molecular Imaging 2020, pages 1-10.
Crossref
Bin Wu, Tan Yang, Dengchao Zou, Ling Jin, Xuehua Liang, Ting Li, Ganhui Huang & Jinsheng Zhang. (2020) Nuclear magnetic resonance biosensor based on streptavidin–biotin system and poly-l-lysine macromolecular targeted gadolinium probe for rapid detection of Salmonella in milk. International Dairy Journal 102, pages 104594.
Crossref
Khoa Anh Ton, Yu-Wei Syu, Jun-Jia Xu & Toyoko Imae. (2019) Preparation of Sm, Gd and Fe Oxide Nanoparticle-Polydopamine Multicomponent Nanocomposites. Bulletin of the Chemical Society of Japan 92:8, pages 1280-1288.
Crossref
Volodymyr Malytskyi, Juliette Moreau, Maité Callewaert, Guillaume Rigaux, Cyril Cadiou, Sophie Laurent & Françoise Chuburu. 2019. Materials for Biomedical Engineering. Materials for Biomedical Engineering 425 476 .
Nan-nan Zhang, Ri-sheng Yu, Min Xu, Xing-yao Cheng, Chun-miao Chen, Xiao-ling Xu, Chen-ying Lu, Kong-jun Lu, Min-jiang Chen, Meng-lu Zhu, Qiao-you Weng, Jun-guo Hui, Qian Zhang, Yong-Zhong Du & Jian-song Ji. (2018) Visual targeted therapy of hepatic cancer using homing peptide modified calcium phosphate nanoparticles loading doxorubicin guided by T1 weighted MRI. Nanomedicine: Nanotechnology, Biology and Medicine 14:7, pages 2167-2178.
Crossref
Hao Wang, Ting-Ting Dai, Bo-Lun Lu, Sheng-Li Li, Qing Lu, Vincent Mukwaya & Hong-Jing Dou. (2017) Hybrid Dextran-gadolinium Nano-suitcases as High-relaxivity MRI Contrast Agents. Chinese Journal of Polymer Science 36:3, pages 391-398.
Crossref
Cecilia Virginia Gheran, Sorina Nicoleta Voicu, Guillaume Rigaux, Maite Callewaert, Francoise Chuburu & Anca Dinischiotu. (2017) Biological effects induced by Gadolinium nanoparticles on Lymphocyte A20 cell line. The EuroBiotech Journal 1:1, pages 57-64.
Crossref
Oleksandr Zagorodko, Juan José Arroyo-Crespo, Vicent J. Nebot & María J. Vicent. (2017) Polypeptide-Based Conjugates as Therapeutics: Opportunities and Challenges. Macromolecular Bioscience 17:1, pages 1600316.
Crossref
Harivardhan Reddy Lakkireddy & Didier Bazile. (2016) Building the design, translation and development principles of polymeric nanomedicines using the case of clinically advanced poly(lactide(glycolide))–poly(ethylene glycol) nanotechnology as a model: An industrial viewpoint. Advanced Drug Delivery Reviews 107, pages 289-332.
Crossref
Meng Gao, Hong Xu, Xu Bao, Chenghong Zhang, Xin Guan, Hongyan Liu, Li Lv, Sa Deng, Dongyan Gao, Changyuan Wang & Yan Tian. (2016) Oleanolic acid-loaded PLGA-TPGS nanoparticles combined with heparin sodium-loaded PLGA-TPGS nanoparticles for enhancing chemotherapy to liver cancer. Life Sciences 165, pages 63-74.
Crossref
Hongyan Liu, Hong Xu, Chenghong Zhang, Meng Gao, Xiaoguang Gao, Chuchu Ma, Li Lv, Dongyan Gao, Sa Deng, Changyuan Wang & Yan Tian. (2016) Emodin-Loaded PLGA-TPGS Nanoparticles Combined with Heparin Sodium-Loaded PLGA-TPGS Nanoparticles to Enhance Chemotherapeutic Efficacy Against Liver Cancer. Pharmaceutical Research 33:11, pages 2828-2843.
Crossref
Erika L. Y. Nasution, Atika Ahab, Bebeh W. Nuryadin, Freddy Haryanto, Idam Arif & Ferry Iskandar. Synthesis of gadolinium carbonate-conjugated-poly(ethylene)glycol (Gd2(CO3)3@PEG) particles via a modified solvothermal method. Synthesis of gadolinium carbonate-conjugated-poly(ethylene)glycol (Gd2(CO3)3@PEG) particles via a modified solvothermal method.
Junping Ma, Haiqing Dong, Haiyan Zhu, Cheuk-wing Li, Yongyong Li & Donglu shi. (2016) Deposition of gadolinium onto the shell structure of micelles for integrated magnetic resonance imaging and robust drug delivery systems. J. Mater. Chem. B 4:36, pages 6094-6102.
Crossref
Hongyan Liu, Meng Gao, Hong Xu, Xin Guan, Li Lv, Sa Deng, Chenghong Zhang & Yan Tian. (2015) A Promising Emodin-Loaded Poly (Lactic-Co-Glycolic Acid)-d-α-Tocopheryl Polyethylene Glycol 1000 Succinate Nanoparticles for Liver Cancer Therapy. Pharmaceutical Research 33:1, pages 217-236.
Crossref
Benjamin Nottelet, Vincent Darcos & Jean Coudane. (2015) Aliphatic polyesters for medical imaging and theranostic applications. European Journal of Pharmaceutics and Biopharmaceutics 97, pages 350-370.
Crossref
Li Zhang, Tingxian Liu, Yanan Xiao, Dexin Yu & Na Zhang. (2015) Hyaluronic Acid-Chitosan Nanoparticles to Deliver Gd-DTPA for MR Cancer Imaging. Nanomaterials 5:3, pages 1379-1396.
Crossref
Abedul Haque, Mohammad A. Rahman, James R. Fuchs, Zhuo Georgia Chen, Fadlo R. Khuri, Dong M. Shin & A.R.M. Ruhul Amin. (2015) FLLL12 induces apoptosis in lung cancer cells through a p53/p73-independent but death receptor 5-dependent pathway. Cancer Letters 363:2, pages 166-175.
Crossref
Patricia Coutinho de Souza, Ashish Ranjan & Rheal A Towner. (2015) Nanoformulations for therapy of pancreatic and liver cancers. Nanomedicine 10:9, pages 1515-1534.
Crossref
Anisha A. D’Souza, Vishvesh M. Joshi & Padma V. Devarajan. 2015. Targeted Drug Delivery : Concepts and Design. Targeted Drug Delivery : Concepts and Design 197 238 .
G Rigaux, V G Roullin, C Cadiou, C Portefaix, L Van Gulick, G Bœuf, M C Andry, C Hoeffel, L Vander Elst, S Laurent, R Muller, M Molinari & F Chuburu. (2014) A new magnetic resonance imaging contrast agent loaded into poly(lacide-co-glycolide) nanoparticles for long-term detection of tumors. Nanotechnology 25:44, pages 445103.
Crossref
Waralee Watcharin, Christian Schmithals, Thomas Pleli, Verena Köberle, Hüdayi Korkusuz, Frank Huebner, Stefan Zeuzem, Hans W. Korf, Thomas J. Vogl, Claudia Rittmeyer, Andreas Terfort, Albrecht Piiper, Svetlana Gelperina & Jörg Kreuter. (2014) Biodegradable human serum albumin nanoparticles as contrast agents for the detection of hepatocellular carcinoma by magnetic resonance imaging. European Journal of Pharmaceutics and Biopharmaceutics 87:1, pages 132-141.
Crossref
Montri Ratanajanchai, Don Haeng Lee, Panya Sunintaboon & Su-Geun Yang. (2014) Photo-cured PMMA/PEI core/shell nanoparticles surface-modified with Gd–DTPA for T1 MR imaging. Journal of Colloid and Interface Science 415, pages 70-76.
Crossref
Yongjun Liu, Lixia Feng, Tingxian Liu, Li Zhang, Yao Yao, Dexin Yu, Linlin Wang & Na Zhang. (2014) Multifunctional pH-sensitive polymeric nanoparticles for theranostics evaluated experimentally in cancer. Nanoscale 6:6, pages 3231.
Crossref
Mengxin Zhang, Yuhua Cao, Yu Chong, Yufei Ma, Hailu Zhang, Zongwu Deng, Chunhong Hu & Zhijun Zhang. (2013) Graphene Oxide Based Theranostic Platform for T 1 -Weighted Magnetic Resonance Imaging and Drug Delivery . ACS Applied Materials & Interfaces 5:24, pages 13325-13332.
Crossref
Lijia Jing, Xiaolong Liang, Xiaoda Li, Yongbo Yang & Zhifei Dai. (2013) Covalent attachment of Mn-porphyrin onto doxorubicin-loaded poly(lactic acid) nanoparticles for potential magnetic resonance imaging and pH-sensitive drug delivery. Acta Biomaterialia 9:12, pages 9434-9441.
Crossref
Stanislav Rangelov & Asterios Pispas. 2013. Polymer and Polymer-Hybrid Nanoparticles. Polymer and Polymer-Hybrid Nanoparticles 369 466 .
Le Bu, Liang-Chun Gan, Xiao-Qiang Guo, Feng-Zheng Chen, Qin Song, Qi-Zhao, Xiao-Jun Gou, Shi-Xiang Hou & Qian Yao. (2013) Trans-resveratrol loaded chitosan nanoparticles modified with biotin and avidin to target hepatic carcinoma. International Journal of Pharmaceutics 452:1-2, pages 355-362.
Crossref
Christelle Zandanel & Christine Vauthier. (2012) Characterization of fluorescent poly(isobutylcyanoacrylate) nanoparticles obtained by copolymerization of a fluorescent probe during Redox Radical Emulsion Polymerization (RREP). European Journal of Pharmaceutics and Biopharmaceutics 82:1, pages 66-75.
Crossref
Yongjun Liu & Na Zhang. (2012) Gadolinium loaded nanoparticles in theranostic magnetic resonance imaging. Biomaterials 33:21, pages 5363-5375.
Crossref
Nathan R. B. Boase, Idriss Blakey & Kristofer J. Thurecht. (2012) Molecular imaging with polymers. Polymer Chemistry 3:6, pages 1384.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.