Enhancing oral bioavailability of Ca-DTPA by self double emulsifying drug delivery system (SDEDDS).

IF 2.2 4区 医学 Q3 CHEMISTRY, MEDICINAL Drug Development and Industrial Pharmacy Pub Date : 2024-01-01 Epub Date: 2024-01-30 DOI:10.1080/03639045.2023.2298881
Vaishali Agrawal, Anjali Priyadarshani, Dharam Pal Pathak, Nidhi Sandal
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Abstract

Objective: BCS class III drug (highly soluble, poorly permeable) possesses low oral bioavailability. The research work highlights the utility of self-double emulsifying drug delivery system (SDEDDS) which are stable isotropic mixture of w/o primary emulsion and hydrophilic surfactants for improving oral bioavailability of Ca-DTPA (Calcium diethylenetriamine pentaacetate). Upon oral administration, SDEDDS rapidly emulsifies into w/o/w double emulsions in the aqueous gastrointestinal environment, with hydrophilic drugs entrapped inside oil reservoirs.

Methods: SDEDDS formulation was successfully developed using excipients, that is, medium chain triglycerides, oleic acid, phospholipids, Span 80, Tween 80 using double emulsification technique.

Results: The optimized formulation F4 (Aq. phase: 11.6%w,w; MCT & oleic acid: 70.9%w/w; Span 80:17.5%w/w; Lecithin:16%w/w and Tween 80 (10%w/w)) appeared bright yellow liquid which upon dilution appeared milky white within 2 min, droplet size (501.7 nm), pdi value (0.044), zeta potential (-52 mV), entrapment efficiency (79.6 ± 1.63), viscosity (72.2 ± 1.8 mpA.s), significant high cumulative in vitro drug permeation (CDP) and 2.17-fold increase in apparent permeability coefficient. Pharmacokinetic studies in rats showed 1.17-fold increases in AUC of F4 and comparatively higher plasma levels (Cmax) compared with pure drug administered orally. The Absolute (OF4, OD) and Relative bioavailability was found to be 14.52%, 12.35%, and 117.47%, respectively.

Conclusion: The present studies have clearly demonstrated that SDEDDS could readily form w/o/w double emulsions in vivo with enhanced in vitro and in vivo oral bioavailability. Therefore, considerable augmentation in the rate and extent of oral drug absorption ratified the better performance of the SDEDDS in enhancing the bioavailability of Ca-DTPA.

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利用自双向乳化给药系统(SDEDDS)提高 Ca-DTPA 的口服生物利用度。
目的:BCS III 类药物(高溶解度、低渗透性)的口服生物利用度较低。自双向乳化给药系统(SDEDDS)是一种稳定的各向同性混合物,由不含水原乳液和亲水性表面活性剂组成,可提高二乙烯三胺五乙酸钙(Ca-DTPA)的口服生物利用度。口服 SDEDDS 后,SDEDDS 在水性胃肠道环境中迅速乳化成 w/o/w 双乳液,亲水性药物被包裹在储油层中:方法:采用双乳化技术,使用中链甘油三酯、油酸、磷脂、Span 80 和 Tween 80 等辅料,成功研制出 SDEDDS 配方:优化配方 F4(Aq:11.6%w,w; MCT & oleic acid: 70.9%w/w; Span 80:17.5%w/w; Lecithin:16%w/w and Tween 80 (10%w/w)) 呈亮黄色液体,稀释后 2 分钟内呈乳白色,液滴大小(501.7 nm),pdi 值(0.044)、zeta 电位(-52 mV)、夹带效率(79.6 ± 1.63)、粘度(72.2 ± 1.8 mpA.s)、体外药物渗透累积值(CDP)显著增高,表观渗透系数增加了 2.17 倍。大鼠药代动力学研究表明,与口服纯药物相比,F4 的 AUC 增加了 1.17 倍,血浆浓度(Cmax)也相对较高。绝对生物利用度(OF4、OD)和相对生物利用度分别为 14.52%、12.35% 和 117.47%:本研究清楚地表明,SDEDDS 易于在体内形成 w/o/w 双乳剂,并能提高体外和体内口服生物利用度。因此,口服药物吸收率和吸收程度的显著提高证实了 SDEDDS 在提高 Ca-DTPA 的生物利用度方面具有更好的性能。
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来源期刊
CiteScore
6.80
自引率
0.00%
发文量
82
审稿时长
4.5 months
期刊介绍: The aim of Drug Development and Industrial Pharmacy is to publish novel, original, peer-reviewed research manuscripts within relevant topics and research methods related to pharmaceutical research and development, and industrial pharmacy. Research papers must be hypothesis driven and emphasize innovative breakthrough topics in pharmaceutics and drug delivery. The journal will also consider timely critical review papers.
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