305
Views
27
CrossRef citations to date
0
Altmetric
Research Articles

Nano-carrier mediated co-delivery of methyl prednisolone and minocycline for improved post-traumatic spinal cord injury conditions in rats

, , , , &
Pages 1033-1041 | Received 09 Aug 2016, Accepted 24 Jan 2017, Published online: 14 Mar 2017

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

Read on this site (1)

Chen Yang, Zhu Daoping, Xiong Xiaoping, Liu Jing & Zhang Chenglong. (2020) Magnesium oil enriched transdermal nanogel of methotrexate for improved arthritic joint mobility, repair, and reduced inflammation. Journal of Microencapsulation 37:1, pages 77-90.
Read now

Articles from other publishers (26)

Victor Martin, Ana Francisca Bettencourt, Catarina Santos & Pedro Sousa Gomes. (2024) Reviewing particulate delivery systems loaded with repurposed tetracyclines – From micro to nanoparticles. International Journal of Pharmaceutics 649, pages 123642.
Crossref
Kristen D. RaueBrian T. DavidRichard G. Fessler. (2023) Spinal Cord–Gut–Immune Axis and Its Implications Regarding Therapeutic Development for Spinal Cord Injury. Journal of Neurotrauma 40:9-10, pages 793-806.
Crossref
Soheila Pourkhodadad, Hessam Hosseinkazemi, Shahin Bonakdar & Houra Nekounam. (2022) Biomimetic engineered approaches for neural tissue engineering: Spinal cord injury. Journal of Biomedical Materials Research Part B: Applied Biomaterials 111:3, pages 701-716.
Crossref
Weiquan Gong, Tianhui Zhang, Mingxue Che, Yongjie Wang, Chuanyu He, Lidi Liu, Zhenshan Lv, Chunsheng Xiao, Hao Wang & Shaokun Zhang. (2023) Recent advances in nanomaterials for the treatment of spinal cord injury. Materials Today Bio 18, pages 100524.
Crossref
Melika Hosseini, Mahnaz Amiri, Mojgan Ghanbari, Makarim A. Mahdi, Waleed K. Abdulsahib & Masoud Salavati-Niasari. (2022) Drug delivery based on chitosan, β-cyclodextrin and sodium carboxymethyl cellulose as well as nanocarriers for advanced leukemia treatment. Biomedicine & Pharmacotherapy 153, pages 113369.
Crossref
Mahdieh Rahmani, Sofía Elisa Negro Álvarez & Emilia Barcia Hernández. (2022) The potential use of tetracyclines in neurodegenerative diseases and the role of nano-based drug delivery systems. European Journal of Pharmaceutical Sciences 175, pages 106237.
Crossref
Jamileh Saremi, Narges Mahmoodi, Mehdi Rasouli, Faezeh Esmaeili Ranjbar, Elham Lak Mazaheri, Marziyeh Akbari, Elham Hasanzadeh & Mahmoud Azami. (2022) Advanced approaches to regenerate spinal cord injury: The development of cell and tissue engineering therapy and combinational treatments. Biomedicine & Pharmacotherapy 146, pages 112529.
Crossref
Adrian Dervan, Antonio Franchi, Francisco R. Almeida-Gonzalez, Jennifer K. Dowling, Ohemaa B. Kwakyi, Claire E. McCoy, Fergal J. O’Brien & Alan Hibbitts. (2021) Biomaterial and Therapeutic Approaches for the Manipulation of Macrophage Phenotype in Peripheral and Central Nerve Repair. Pharmaceutics 13:12, pages 2161.
Crossref
Shengyu Cui, Xinhui Zhu, Dawei Xu, Wei Liu, Hong Yi & Jun Yan. (2021) Novel design and combination strategy of minocycline and OECs-loaded CeO 2 nanoparticles with SF for the treatment of spinal cord injury: In vitro and in vivo evaluations . Green Processing and Synthesis 10:1, pages 614-627.
Crossref
Jun Gao, Minkyung Khang, Zhen Liao, Megan Detloff & Jeoung Soo Lee. (2021) Therapeutic targets and nanomaterial-based therapies for mitigation of secondary injury after spinal cord injury. Nanomedicine 16:22, pages 2013-2028.
Crossref
Inés Maldonado-Lasunción, Agnes E. Haggerty, Akinori Okuda, Tokumitsu Mihara, Natalia de la Oliva, Joost Verhaagen & Martin Oudega. (2021) The Effect of Inflammatory Priming on the Therapeutic Potential of Mesenchymal Stromal Cells for Spinal Cord Repair. Cells 10:6, pages 1316.
Crossref
Khashayar Afshari, Nazanin Momeni Roudsari, Naser‐Aldin Lashgari, Nazgol‐Sadat Haddadi, Arvin Haj‐Mirzaian, Malihe Hassan Nejad, Hamed Shafaroodi, Mehdi Ghasemi, Ahmad Reza Dehpour & Amir Hossein Abdolghaffari. (2020) Antibiotics with therapeutic effects on spinal cord injury: a review. Fundamental & Clinical Pharmacology 35:2, pages 277-304.
Crossref
Ahmed Hafez Mousa, Salwa Agha Mohammad, Hassan Mohammed Rezk, Khadijah Hassan Muzaffar, Asim Muhammed Alshanberi & Shakeel Ahmed Ansari. (2021) Nanoparticles in traumatic spinal cord injury: therapy and diagnosis. F1000Research 10, pages 850.
Crossref
Martin Oudega & Inés Maldonado-Lasunción. 2021. Immunomodulatory Biomaterials. Immunomodulatory Biomaterials 119 138 .
Tasneem Ismail Khan, S. Hemalatha & Mohammad Waseem. (2020) Promising Role of Nano-Encapsulated Drugs for Spinal Cord Injury. Molecular Neurobiology 57:4, pages 1978-1985.
Crossref
Nicolas N. Madigan & Anthony J. Windebank. 2020. Principles of Tissue Engineering. Principles of Tissue Engineering 1047 1091 .
Silviya Petrova Zustiak, Saahil Sheth & Mozhdeh Imaninezhad. 2020. Spinal Cord Injury (SCI) Repair Strategies. Spinal Cord Injury (SCI) Repair Strategies 223 248 .
Emanuele Mauri & Maurizio Masi. 2020. Spinal Cord Injury (SCI) Repair Strategies. Spinal Cord Injury (SCI) Repair Strategies 129 155 .
Weijian Kong, Zhiping Qi, Peng Xia, Yuxin Chang, Hongru Li, Yunpeng Qu, Su Pan & Xiaoyu Yang. (2019) Local delivery of FTY720 and NSCs on electrospun PLGA scaffolds improves functional recovery after spinal cord injury. RSC Advances 9:31, pages 17801-17811.
Crossref
Xiaowu Wang, Gang Li, Peng Zhang, Wei Li & Xijing He. (2019) Surface engineering of resveratrol to improve neuro-protection and functional recovery after spinal cord injury in rat. Journal of Drug Delivery Science and Technology 49, pages 89-96.
Crossref
R.C. Assunção-Silva, E.D. Gomes, N.A. Silva & A.J. Salgado. 2019. Nanoengineered Biomaterials for Regenerative Medicine. Nanoengineered Biomaterials for Regenerative Medicine 167 185 .
Raj Putatunda, John R. Bethea & Wen-Hui Hu. (2018) Potential immunotherapies for traumatic brain and spinal cord injury. Chinese Journal of Traumatology 21:3, pages 125-136.
Crossref
Agnes E Haggerty, Inés Maldonado-Lasunción & Martin Oudega. (2018) Biomaterials for revascularization and immunomodulation after spinal cord injury. Biomedical Materials 13:4, pages 044105.
Crossref
Xiao-Gang Chen, Fu Hua, Shou-Guo Wang & Hong-Hui Tang. (2017) Albumin-Conjugated Lipid-Based Multilayered Nanoemulsion Improves Drug Specificity and Anti-Inflammatory Potential at the Spinal Cord Injury gSite after Intravenous Administration. AAPS PharmSciTech 19:2, pages 590-598.
Crossref
Sergio Martín-Saldaña, Raquel Palao-Suay, María Rosa Aguilar, Luis García-Fernández, Humberto Arévalo, Almudena Trinidad, Rafael Ramírez-Camacho & Julio San Román. (2018) pH-sensitive polymeric nanoparticles with antioxidant and anti-inflammatory properties against cisplatin-induced hearing loss. Journal of Controlled Release 270, pages 53-64.
Crossref
Yue-min Ding, Yu-ying Li, Chu Wang, Hao Huang, Chen-chen Zheng, Shao-han Huang, Yang Xuan, Xiao-yi Sun & Xiong Zhang. (2017) Nischarin-siRNA delivered by polyethylenimine-alginate nanoparticles accelerates motor function recovery after spinal cord injury. Neural Regeneration Research 12:10, pages 1687.
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.