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Research Articles

Transdermal administration of ibuprofen-loaded hexagonal liquid crystal gel for enhancement of drug concentration in the uterus: in vitro and in vivo evaluation

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Pages 2021-2039 | Received 22 Feb 2023, Accepted 08 Apr 2023, Published online: 26 Apr 2023

References

  • Ferries-Rowe E, Corey E, Archer JS. Primary dysmenorrhea: diagnosis and therapy. Obstet Gynecol. 2020;136(5):1047–1058.
  • Kho KA, Shields JK. Diagnosis and management of primary dysmenorrhea. JAMA. 2020;323(3):268–269.
  • Tu F, Hellman K. Primary dysmenorrhea: diagnosis and therapy. Obstet Gynecol. 2021;137(4):752.
  • Elkamshoushi AA, Hassaan P, Nabil I, et al. Regular use of ibuprofen reduces rat penile prostaglandins and induces cavernosal fibrosis. Drug Chem Toxicol. 2022;45(3):1339–1344.
  • Mahmood S, Almurisi SH, Al-Japairai K, et al. Ibuprofen-Loaded Chitosan-Lipid nanoconjugate hydrogel with gum arabic: green synthesis, characterisation, in vitro kinetics mechanistic release study and PGE2 production test. Gels. 2021;7(4):254.
  • Nie W, Xu P, Hao C, et al. Efficacy and safety of over-the-counter analgesics for primary dysmenorrhea: a network meta-analysis. Medicine (Baltimore). 2020;99(19):e19881.
  • Xu Y, Cai Y, Meng Y, et al. Liposome and microemulsion loaded with ibuprofen: from preparation to mechanism of drug transport. J Microencapsul. 2022;39(6):539–551.
  • Ossowicz-Rupniewska P, Bednarczyk P, Nowak M, et al. Evaluation of the structural modification of ibuprofen on the penetration release of ibuprofen from a drug-in-Adhesive matrix type transdermal patch. Int J Mol Sci. 2022;23(14):7752.
  • Janus E, Ossowicz P, Klebeko J, et al. Enhancement of ibuprofen solubility and skin permeation by conjugation with l-valine alkyl esters. RSC Adv. 2020;10(13):7570–7584.
  • Hyldahl RD, Keadle J, Rouzier PA, et al. Effects of ibuprofen topical gel on muscle soreness. Med Sci Sports Exerc. 2010;42(3):614–621.
  • Khan D, Qindeel M, Ahmed N, et al. Development of an intelligent, stimuli-responsive transdermal system for efficient delivery of ibuprofen against rheumatoid arthritis. Int J Pharm. 2021;610:121242.
  • Lima AF, Pegorin GS, Miranda MCR, et al. Ibuprofen-loaded biocompatible latex membrane for drug release: characterization and molecular modeling. J Appl Biomater Funct Mater. 2021;19:22808000211005383.
  • Predel HG, Giannetti B, Connolly MP, et al. Efficacy and tolerability of a new ibuprofen 200mg plaster in patients with acute sports-related traumatic blunt soft tissue injury/contusion. Postgrad Med. 2018;130(1):24–31.
  • Manoukian MAC, Migdal CW, Tembhekar AR, et al. Topical administration of ibuprofen for injured athletes: considerations, formulations, and comparison to oral delivery. Sports Med Open. 2017;3(1):36.
  • Mikusova V, Ferkova J, Zigrayova D, et al. Comparative study of Polysaccharide-Based hydrogels: rheological and texture properties and ibuprofen release. Gels. 2022;8(3):168.
  • Shumilov M, Bercovich R, Duchi S, et al. Ibuprofen transdermal ethosomal gel: characterization and efficiency in animal models. J Biomed Nanotechnol. 2010;6(5):569–576.
  • Ossowicz-Rupniewska P, Nowak A, Klebeko J, et al. Assessment of the effect of structural modification of ibuprofen on the penetration of ibuprofen from pentravan((R)) (semisolid) formulation using human skin and a transdermal diffusion test model. Materials (Basel). 2021;14(22):6808.
  • Chen J, Jiang QD, Wu YM, et al. Potential of essential oils as penetration enhancers for transdermal administration of ibuprofen to treat dysmenorrhoea. Molecules. 2015;20(10):18219–18236.
  • Shi C, Ye Z, Shao Z, et al. Multidisciplinary guidelines for the rational use of topical Non-Steroidal anti-Inflammatory drugs for musculoskeletal pain (2022). J Clin Med. 2023;12(4):1544.
  • Chavda VP, Dawre S, Pandya A, et al. Lyotropic liquid crystals for parenteral drug delivery. J Control Release. 2022;349:533–549.
  • Blanco-Fernandez G, Blanco-Fernandez B, Fernandez-Ferreiro A, et al. Lipidic lyotropic liquid crystals: insights on biomedical applications. Adv Colloid Interface Sci. 2023;313:102867.
  • Abourehab MAS, Ansari MJ, Singh A, et al. Cubosomes as an emerging platform for drug delivery: a review of the state of the art. J Mater Chem B. 2022;10(15):2781–2819.
  • Kozaka S, Wakabayashi R, Kamiya N, et al. Lyotropic liquid crystal-based transcutaneous peptide delivery system: evaluation of skin permeability and potential for transcutaneous vaccination. Acta Biomater. 2022;138:273–284.
  • Porras-Gomez M, Leal C. Lipid-based liquid crystalline films and solutions for the delivery of cargo to cells. Liq Cryst Rev. 2019;7(2):167–182.
  • Zhai J, Fong C, Tran N, et al. Non-Lamellar lyotropic liquid crystalline lipid nanoparticles for the next generation of nanomedicine. ACS Nano. 2019;13(6):6178–6206.
  • Patil SS, Venugopal E, Bhat S, et al. Exploring microstructural changes in structural analogues of Ibuprofen-Hosted in situ gelling system and its influence on pharmaceutical performance. AAPS PharmSciTech. 2015;16(5):1153–1159.
  • Wang X, Zhang Y, Huang J, et al. Self-assembled hexagonal liquid crystalline gels as novel ocular formulation with enhanced topical delivery of pilocarpine nitrate. Int J Pharm. 2019;562:31–41.
  • Kadhum WR, Sekiguchi S, Hijikuro I, et al. A novel chemical enhancer approach for transdermal drug delivery with C(17)-monoglycerol ester liquid crystal-forming lipid. J Oleo Sci. 2017;66(5):443–454.
  • Chu XQ, Zhang Y, Huang J, et al. The effect of prescription on the framework of lipid matrix and in vitro properties. Curr Drug Deliv. 2019;16(8):737–750.
  • Mei L, Huang X, Xie Y, et al. An injectable in situ gel with cubic and hexagonal nanostructures for local treatment of chronic periodontitis. Drug Deliv. 2017;24(1):1148–1158.
  • Fonseca-Santos B, Bonifacio BV, Baub TM, et al. In-Situ gelling liquid crystal mucoadhesive vehicle for curcumin buccal administration and its potential application in the treatment of oral candidiasis. J Biomed Nanotechnol. 2019;15(6):1334–1344.
  • Wang X, Zhang Y, Gui S, et al. Characterization of Lipid-Based lyotropic liquid crystal and effects of guest molecules on its microstructure: a systematic review. AAPS PharmSciTech. 2018;19(5):2023–2040.
  • Milak S, Chemelli A, Glatter O, et al. Vancomycin loaded glycerol monooleate liquid crystalline phases modified with surfactants. Pharmaceutics. 2020;12(6):521.
  • Chountoulesi M, Perinelli DR, Forys A, et al. Development of stimuli-responsive lyotropic liquid crystalline nanoparticles targeting lysosomes: physicochemical, morphological and drug release studies. Int J Pharm. 2023;630:122440.
  • Mei L, Xie Y, Huang Y, et al. Injectable in situ forming gel based on lyotropic liquid crystal for persistent postoperative analgesia. Acta Biomater. 2018;67:99–110.
  • Esposito E, Carducci F, Mariani P, et al. Monoolein liquid crystalline phases for topical delivery of crocetin. Colloids Surf B Biointerfaces. 2018;171:67–74.
  • Freise KJ, Newbound GC, Tudan C, et al. Pharmacokinetics and the effect of application site on a novel, long-acting transdermal fentanyl solution in healthy laboratory beagles. J Vet Pharmacol Ther. 2012;35 Suppl 2(Suppl 2):27–33.
  • Sikora K, Lyndin M, Hyriavenko N, et al. Morphological features of the rat uterus. Pol Merkur Lekarski. 2021;49(294):420–425.
  • Dong Y, He H, Sheng W, et al. A quantitative and non-contact technique to characterise microstructural variations of skin tissues during photo-damaging process based on mueller matrix polarimetry. Sci Rep. 2017;7(1):14702.
  • Kuga K, Yasuno H, Sakai Y, et al. The abdominal skin of female Sprague-Dawley rats is more sensitive than the back skin to drug-induced phototoxicity. J Pharmacol Toxicol Methods. 2017;88(Pt 1):46–55.
  • Jameel BM, Huynh A, Chadha A, et al. Computer-based formulation design and optimization using hansen solubility parameters to enhance the delivery of ibuprofen through the skin. Int J Pharm. 2019;569:118549.
  • Ossowicz-Rupniewska P, Szczepkowska K, Bednarczyk P, et al. New amino acid propyl ester ibuprofenates from synthesis to use in drug delivery systems. RSC Adv. 2022;12(55):35779–35792.
  • Lewis F, Connolly MP, Bhatt A. A pharmacokinetic study of an ibuprofen topical patch in healthy male and female adult volunteers. Clin Pharmacol Drug Dev. 2018;7(7):684–691.

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