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Original

Studies on paclitaxel-loaded glyceryl monostearate nanoparticles

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Pages 471-478 | Received 31 Jul 2007, Accepted 30 Jul 2008, Published online: 21 Aug 2009

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Khadijeh Khezri, Majid Saeedi, Katayoun Morteza-Semnani, Jafar Akbari & Seyyed Sohrab Rostamkalaei. (2020) An emerging technology in lipid research for targeting hydrophilic drugs to the skin in the treatment of hyperpigmentation disorders: kojic acid-solid lipid nanoparticles. Artificial Cells, Nanomedicine, and Biotechnology 48:1, pages 841-853.
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Bao Ngoc Tran, Hanh Thuy Nguyen, Jong Oh Kim, Chul Soon Yong & Chien Ngoc Nguyen. (2017) Developing combination of artesunate with paclitaxel loaded into poly-d,l-lactic-co-glycolic acid nanoparticle for systemic delivery to exhibit synergic chemotherapeutic response. Drug Development and Industrial Pharmacy 43:12, pages 1952-1962.
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Ghulam Mustafa, Dilawar Hassan, Gustavo Ruiz-Pulido, Mehrab Pourmadadi, Mohammad Mahdi Eshaghi, Razieh Behzadmehr, Fatemeh Soltani Tehrani, Abbas Rahdar, Dora Iliana Medina & Sadanand Pandey. (2023) Nanoscale drug delivery systems for cancer therapy using paclitaxel— A review of challenges and latest progressions. Journal of Drug Delivery Science and Technology 84, pages 104494.
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Shaveta AhalwatD. C. BhattSurbhi Rohilla. (2022) Fabrication of Lipid Combination for Bioavailability Enhancement of Isoniazid. Research Journal of Pharmacy and Technology, pages 5589-5596.
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Hiren Khatri, Nimitt Chokshi, Shruti Rawal & Mayur M Patel. (2019) Fabrication, characterization and optimization of artemether loaded PEGylated solid lipid nanoparticles for the treatment of lung cancer. Materials Research Express 6:4, pages 045014.
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Megha Marwah, Aniket Magarkar, Debes Ray, Vinod Aswal, Alex Bunker & Mangal Nagarsenker. (2018) Glyceryl Monostearate: Probing the Self Assembly of a Lipid Amenable To Surface Modification for Hepatic Targeting. The Journal of Physical Chemistry C 122:38, pages 22160-22169.
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Jong-Suep Baek, Bo-Sik Kim, Anu Puri, K. Kumar & Cheong-Weon Cho. (2016) Stability of paclitaxel-loaded solid lipid nanoparticles in the presence of 2-hydoxypropyl-β-cyclodextrin. Archives of Pharmacal Research 39:6, pages 785-793.
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Pooja Singh, Malti Arya, Jovita Kanoujia, Mahendra Singh, Krishna P. Gupta & Shubhini A. Saraf. (2016) Design of topical nanostructured lipid carrier of silymarin and its effect on 7,12-dimethylbenz[a]anthracene (DMBA) induced cellular differentiation in mouse skin. RSC Advances 6:88, pages 84965-84977.
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Jong-Suep Baek & Cheong-Weon Cho. (2015) Controlled release and reversal of multidrug resistance by co-encapsulation of paclitaxel and verapamil in solid lipid nanoparticles. International Journal of Pharmaceutics 478:2, pages 617-624.
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Ehsan Aboutaleb, Fatemeh Atyabi, Mohammad Reza Khoshayand, Ali Reza Vatanara, Seyed Nasser Ostad, Farzad Kobarfard & Rassoul Dinarvand. (2014) Improved brain delivery of vincristine using dextran sulfate complex solid lipid nanoparticles: Optimization and in vivo evaluation . Journal of Biomedical Materials Research Part A 102:7, pages 2125-2136.
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Lan Feng & Russell J. Mumper. (2013) A critical review of lipid-based nanoparticles for taxane delivery. Cancer Letters 334:2, pages 157-175.
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Jong-Suep Baek & Cheong-Weon Cho. (2013) 2-Hydroxypropyl- β -cyclodextrin-modified SLN of paclitaxel for overcoming p-glycoprotein function in multidrug-resistant breast cancer cells . Journal of Pharmacy and Pharmacology 65:1, pages 72-78.
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JONG-SUEP BAEK, JAE-WOO SO, SANG-CHUL SHIN & CHEONG-WEON CHO. (2012) Solid lipid nanoparticles of paclitaxel strengthened by hydroxypropyl-β-cyclodextrin as an oral delivery system. International Journal of Molecular Medicine 30:4, pages 953-959.
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RANJITH K AVERINENI, GOPAL V SHAVI, ARAVIND K GURRAM, PRAFUL B DESHPANDE, KARTHIK ARUMUGAM, NASEER MALIYAKKAL, SREENIVASA R MEKA & UDUPA NAYANABHIRAMA. (2012) PLGA 50:50 nanoparticles of paclitaxel: Development, in vitro anti-tumor activity in BT-549 cells and in vivo evaluation. Bulletin of Materials Science 35:3, pages 319-326.
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E Gonzalez-Mira, M A Egea, E B Souto, A C Calpena & M L García. (2011) Optimizing flurbiprofen-loaded NLC by central composite factorial design for ocular delivery. Nanotechnology 22:4, pages 045101.
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