Harnessing Hybrid Niosomes for Improved Oral Bioavailability of an Anticoagulant: Design, Optimization and In-Vivo Pharmacokinetics and Pharmacodynamics Evaluations

IF 5.1 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Remonda Raafat Ragheb, Rodayana Atef, Kareem Abdou, Sadek Ahmed, Ahmed M. Fatouh
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Abstract

Venous thromboembolism (VTE) and pulmonary embolism (PE), remains a major global health burden, necessitating prolonged and reliable anticoagulant therapy. Although Apixaban (APX) is a cornerstone oral anticoagulant for VTE management, its therapeutic performance is limited by poor aqueous solubility and low oral bioavailability. To overcome these challenges, this study introduces a hybrid niosomal delivery system designed to enhance the absorption and systemic persistence of APX. The system was engineered by integrating hybrid of surfactants together with cholesterol to form a stable, vesicular matrix. Formulations were prepared via the ethanol injection method and systematically optimized using a 23 factorial design, assessing the influence of Span 60 concentration (Factor-A), cholesterol: drug ratio (Factor-B), and Tween 80 amount (Factor-C). The optimized formulation achieved a desirability score of 0.738, demonstrating high entrapment efficiency (72.82%), nanoscale particle size (160.05 nm) and a distinctly stable potential (–47.15 mV). TEM imaging confirmed spherical vesicles, and in-vitro release studies revealed a biphasic pattern characterized by an initial burst followed by sustained diffusion. Pharmacodynamics evaluations showed that the optimized formula produced a 1.55-fold increase in cuticle bleeding time (CBT) and a 1.65-fold prolongation in prothrombin time (PT) relative to the APX suspension. Pharmacokinetics assessments further demonstrated enhanced oral bioavailability, evidenced by increased AUC and Cmax, along with reduced terminal elimination rate constant (λz) and extended systemic retention. Overall, the developed hybrid niosomes present a promising oral platform for APX delivery, offering improved absorption, and sustained therapeutic action.

Graphical Abstract

利用杂交溶酶体改善抗凝血剂的口服生物利用度:设计、优化和体内药代动力学和药效学评估。
静脉血栓栓塞(VTE)和肺栓塞(PE)仍然是全球主要的健康负担,需要长期和可靠的抗凝治疗。尽管阿哌沙班(APX)是静脉血栓栓塞治疗的基础口服抗凝剂,但其水溶性差和口服生物利用度低限制了其治疗效果。为了克服这些挑战,本研究引入了一种混合niosomal递送系统,旨在增强APX的吸收和全身持久性。该系统通过将混合表面活性剂与胆固醇结合形成稳定的囊泡基质而设计。采用乙醇注射法制备制剂,并采用23因子设计对其进行系统优化,考察Span 60浓度(Factor-A)、胆固醇与药物比(Factor-B)、Tween 80用量(Factor-C)的影响。优化后的配方具有较高的包封效率(72.82%)、纳米级粒径(160.05 nm)和明显稳定的电势(-47.15 mV)。透射电镜成像证实了球形囊泡,体外释放研究显示了一种双相模式,其特征是最初的破裂,然后是持续的扩散。药效学评估显示,优化后的配方使角质层出血时间(CBT)比APX悬浮液增加1.55倍,凝血酶原时间(PT)延长1.65倍。药代动力学评估进一步表明,口服生物利用度增强,AUC和Cmax增加,终端消除速率常数(λz)降低,全身滞留时间延长。总的来说,开发的混合纳米体为APX的口服递送提供了一个有前途的平台,提供了更好的吸收和持续的治疗作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
AAPS PharmSciTech
AAPS PharmSciTech 医学-药学
CiteScore
6.80
自引率
3.00%
发文量
264
审稿时长
2.4 months
期刊介绍: AAPS PharmSciTech is a peer-reviewed, online-only journal committed to serving those pharmaceutical scientists and engineers interested in the research, development, and evaluation of pharmaceutical dosage forms and delivery systems, including drugs derived from biotechnology and the manufacturing science pertaining to the commercialization of such dosage forms. Because of its electronic nature, AAPS PharmSciTech aspires to utilize evolving electronic technology to enable faster and diverse mechanisms of information delivery to its readership. Submission of uninvited expert reviews and research articles are welcomed.
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