Literature DB >> 25957699

Nasal delivery of analgesic ketorolac tromethamine thermo- and ion-sensitive in situ hydrogels.

Xin Li1, Lina Du2, Xu Chen3, Pingju Ge4, Yu Wang2, Yangmu Fu1, Haiyan Sun5, Qingwei Jiang6, Yiguang Jin7.   

Abstract

Ketorolac tromethamine (KT) was potent to treat moderate to moderately severe pains. However, KT solutions for nasal delivery lost quickly from the nasal route. Thermo- and ion-sensitive in-situ hydrogels (ISGs) are appropriate for nasal drug delivery because the intranasal temperature maintains ∼37 °C and nasal fluids consist of plentiful cations. In this study, a novel nasal thermo- and ion-sensitive ISG of KT was prepared with thermo-sensitive poloxamer 407 (P407) and ion-sensitive deacetylated gellan gum (DGG). The optimal formulation of the KT ISG consisted of 3% (w/v) DGG and 18% (w/v) P407 and its viscosity was up to 7.63 Pas at 37 °C. Furthermore, penetration enhancers and bacterial inhibitors were added and their fractions in the ISG were optimized based on transmucosal efficiencies and toxicity on toad pili. Sulfobutyl ether-β-cyclodextrin of 2.5% (w/v) and chlorobutanol of 0.5% (w/v) were chosen as the penetration enhancer and the bacterial inhibitor, respectively. The Fick's diffusion and dissolution of KT could drive it continuous release from the dually sensitive ISG according to the in vitro investigation. Two methods, writhing frequencies induced by acetic acid and latency time of tails retracting from hot water, were used to evaluate the pharmacodynamics of the KT ISG on the mouse models. The writhing frequencies significantly decreased and the latency time of tail retracting was obviously prolonged (p<0.05) for the KT ISG compared to the control. The thermo- and ion-sensitive KT ISG had appropriate gelation temperature, sustained drug release, improved intranasal absorption, obvious pharmacodynamic effect, and negligible nasal ciliotoxicity. It is a promising intranasal analgesic formulation.
Copyright © 2015. Published by Elsevier B.V.

Entities:  

Keywords:  In situ hydrogels; Ion-sensitive; Ketorolac tromethamine (PubChem CID: 84003); Nasal delivery; Penetration enhancers; Thermo-sensitive

Mesh:

Substances:

Year:  2015        PMID: 25957699     DOI: 10.1016/j.ijpharm.2015.05.009

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  7 in total

1.  Nanostructured SBA-15 host applied in ketorolac tromethamine release system.

Authors:  Jorgelina Cussa; Juliana M Juárez; Marcos B Gómez Costa; Oscar A Anunziata
Journal:  J Mater Sci Mater Med       Date:  2017-06-17       Impact factor: 3.896

2.  Nose-to-Brain Delivery by Nanosuspensions-Based in situ Gel for Breviscapine.

Authors:  Yingchong Chen; Yuling Liu; Jin Xie; Qin Zheng; Pengfei Yue; Liru Chen; Pengyi Hu; Ming Yang
Journal:  Int J Nanomedicine       Date:  2020-12-23

Review 3.  Emerging Fabrication Strategies of Hydrogels and Its Applications.

Authors:  Fayaz Ali; Imran Khan; Jianmin Chen; Kalsoom Akhtar; Esraa M Bakhsh; Sher Bahadar Khan
Journal:  Gels       Date:  2022-03-24

4.  A novel ocular delivery of brinzolamide based on gellan gum: in vitro and in vivo evaluation.

Authors:  Jingfen Sun; Zhengshen Zhou
Journal:  Drug Des Devel Ther       Date:  2018-02-23       Impact factor: 4.162

5.  Investigation of Absorption Routes of Meloxicam and Its Salt Form from Intranasal Delivery Systems.

Authors:  Csilla Bartos; Rita Ambrus; Anita Kovács; Róbert Gáspár; Anita Sztojkov-Ivanov; Árpád Márki; Tamás Janáky; Ferenc Tömösi; Gábor Kecskeméti; Piroska Szabó-Révész
Journal:  Molecules       Date:  2018-03-28       Impact factor: 4.411

Review 6.  Brain-derived neurotrophic factor in Alzheimer's disease and its pharmaceutical potential.

Authors:  Lina Gao; Yun Zhang; Keenan Sterling; Weihong Song
Journal:  Transl Neurodegener       Date:  2022-01-28       Impact factor: 8.014

7.  Nasal Delivery of Cinnarizine Thermo- and Ion-Sensitive In Situ Hydrogels for Treatment of Microwave-Induced Brain Injury.

Authors:  Yuanyuan Zhang; Qian Li; Jinglu Hu; Chunqing Wang; Delian Wan; Qi Li; Qingwei Jiang; Lina Du; Yiguang Jin
Journal:  Gels       Date:  2022-02-10
  7 in total

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