Interactions of Cyclodextrins and their Hydroxyl Derivatives with Etodolac: Solubility and Dissolution Enhancement.

IF 2.8 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Wesam W Mustafa, Mouhamad Khoder, Hamdy Abdelkader, Richard Singer, Raid G Alany
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Abstract

Background: Poor solubility and dissolution rate of drugs are largely responsible for erratic drug absorption and limited oral bioavailability. Etodolac (ETO) is a non-steroidal anti-inflammatory drug (NSAID) that is classified as BCS class II (dissolution rate-dependent absorption). ETO has high safety and efficacy in pain relief and control of inflammation. ETO is commercially available as (400- 600 mg) tablets; poor solubility and dissolution rate of ETO could result in variable oral absorption and inconsistent analgesic responses. The aim of this study was to improve solubility and dissolution rates of ETO by complexation with cyclodextrins (CDs).

Methods: Four different CDs namely β-, γ-, HP β-CDs, and HP γ-CDs were prepared using three different methods; solvent evaporation (CO), freeze-drying (FD), and physical mixing (PM). The prepared drug: excipient mixtures were investigated for aqueous solubility, as well as via DSC, XRD, FTIR, SEM, dissolution, and docking.

Results: The results revealed a solubility phase diagram of the AL type, indicating a 1:1 complexation of ETO: CD. These results agreed with our molecular docking calculations. DSC, FTIR, XRD, and SEM results confirmed the formation of an inclusion complex. The complexation efficiency, solubility, and dissolution enhancement were in the order of HPγ-CD > γ -CD > HPβ-CD > β-CD. FD method was superior to both CO and PM.

Conclusion: Superior dissolution enhancements of ETO were recorded for the FD mixture (up to 90% dissolved in less than 10 min). In conclusion, γ- and hydroxypropyl γ-derivative of cyclodextrins can be considered a promising excipient for enhancement of dissolution rates concerned for ETO.

环糊精及其羟基衍生物与乙酸乙dolac的相互作用:溶解度和溶解增强。
背景:药物的溶解性和溶出率差是导致药物吸收不稳定和口服生物利用度有限的主要原因。依托痛(ETO)是一种非甾体抗炎药(NSAID),属于BCS II类(溶出速率依赖性吸收)。ETO在止痛和控制炎症方面具有很高的安全性和有效性。ETO可作为(400-600 mg)片剂在市场上买到;ETO的溶解性和溶解速率差可能导致口服吸收变化和镇痛反应不一致。本研究的目的是通过与环糊精(CDs)络合来提高ETO的溶解度和溶解速率。方法:用三种不同的方法制备了四种不同的CDs,即β-、γ-、HPβ-CDs和HPγ-CDs;溶剂蒸发(CO)、冷冻干燥(FD)和物理混合(PM)。通过DSC、XRD、FTIR、SEM、溶解和对接,研究了制备的药物-赋形剂混合物的水溶性。结果:结果显示了AL型的溶解度相图,表明ETO:CD为1:1络合。这些结果与我们的分子对接计算一致。DSC、FTIR、XRD和SEM结果证实了包合物的形成。络合效率、溶解度和溶解增强程度依次为HPγ-CD>γ-CD>HPβ-CD>β-CD。FD法优于CO和PM。总之,环糊精的γ-和羟丙基γ-衍生物可以被认为是一种很有前途的赋形剂,可以提高ETO的溶出率。
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来源期刊
Current drug delivery
Current drug delivery PHARMACOLOGY & PHARMACY-
CiteScore
5.10
自引率
4.20%
发文量
170
期刊介绍: Current Drug Delivery aims to publish peer-reviewed articles, research articles, short and in-depth reviews, and drug clinical trials studies in the rapidly developing field of drug delivery. Modern drug research aims to build delivery properties of a drug at the design phase, however in many cases this idea cannot be met and the development of delivery systems becomes as important as the development of the drugs themselves. The journal aims to cover the latest outstanding developments in drug and vaccine delivery employing physical, physico-chemical and chemical methods. The drugs include a wide range of bioactive compounds from simple pharmaceuticals to peptides, proteins, nucleotides, nucleosides and sugars. The journal will also report progress in the fields of transport routes and mechanisms including efflux proteins and multi-drug resistance. The journal is essential for all pharmaceutical scientists involved in drug design, development and delivery.
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