Self-micellizing solid dispersion of tacrolimus: Physicochemical and pharmacokinetic characterization

IF 2 4区 医学 Q3 PHARMACOLOGY & PHARMACY Biopharmaceutics & Drug Disposition Pub Date : 2023-08-01 DOI:10.1002/bdd.2373
Keisuke Makino, Ryota Tsukada, Atsushi Kambayashi, Kohei Yamada, Hideyuki Sato, Satomi Onoue
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Abstract

The present study was undertaken to develop a self-micellizing solid dispersion (SMSD) of tacrolimus (TAC) to improve the biopharmaceutical properties of TAC. An SMSD formulation of TAC (SMSD/TAC) and amorphous solid dispersion formulation of TAC (ASD/TAC) were prepared with Soluplus®, an amphiphilic copolymer, and hydroxypropyl cellulose, respectively. Physicochemical properties were characterized in terms of morphology, crystallinity, storage stability, interaction of TAC with Soluplus®, and micelle-forming potency; pharmacokinetic behavior was also evaluated in rats. Tacrolimus in both formulations was in an amorphous state. After storage at 40°C/75% relativity humidity for 4 weeks, there were no significant changes in the crystallinity of TAC between nonaged and aged SMSD/TAC, whereas slight recrystallization was observed in aged ASD/TAC. The results of circular dichroism (CD) and infrared spectroscopic analyses were indicative of the potent drug–polymer interaction in SMSD/TAC, possibly leading to the prevention of recrystallization. Compared with other TAC samples, SMSD/TAC exhibited significant improvement in the dissolution behavior of TAC through the immediate formation of fine micelles. After the oral administration of TAC samples (10 mg TAC/kg) to rats, there was marked enhancement in systemic exposure to TAC with both formulations; in particular, SMSD/TAC achieved an increase in bioavailability ca. 20-fold higher than crystalline TAC. The SMSD approach might provide an effective dosage form for TAC with enhanced physicochemical stability and oral absorption.

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他克莫司的自胶化固体分散体:物理化学和药代动力学表征。
为了提高他克莫司(TAC)的生物制药性能,研究了他克莫司的自胶化固体分散体(SMSD)。用两亲性共聚物Soluplus®和羟丙基纤维素分别制备了TAC的SMSD配方(SMSD/TAC)和TAC的非晶固体分散配方(ASD/TAC)。从形貌、结晶度、储存稳定性、TAC与Soluplus®的相互作用和胶束形成能力等方面表征了TAC的理化性质;对大鼠的药代动力学行为也进行了评价。两种剂型中的他克莫司均处于无定形状态。在40°C/75%相对湿度下保存4周后,未老化的SMSD/TAC与老化的SMSD/TAC结晶度无明显变化,而老化的ASD/TAC有轻微的再结晶。圆二色性(CD)和红外光谱分析结果表明SMSD/TAC中药物-聚合物相互作用强,可能导致再结晶的阻止。与其他TAC样品相比,SMSD/TAC通过立即形成细胶束,显著改善了TAC的溶解行为。在给大鼠口服TAC样品(10 mg TAC/kg)后,两种剂型的TAC系统暴露均显著增加;特别是,SMSD/TAC的生物利用度比结晶TAC高约20倍。SMSD方法可能为TAC提供一种有效的剂型,具有增强的物理化学稳定性和口服吸收。
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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
35
审稿时长
6-12 weeks
期刊介绍: Biopharmaceutics & Drug Dispositionpublishes original review articles, short communications, and reports in biopharmaceutics, drug disposition, pharmacokinetics and pharmacodynamics, especially those that have a direct relation to the drug discovery/development and the therapeutic use of drugs. These includes: - animal and human pharmacological studies that focus on therapeutic response. pharmacodynamics, and toxicity related to plasma and tissue concentrations of drugs and their metabolites, - in vitro and in vivo drug absorption, distribution, metabolism, transport, and excretion studies that facilitate investigations related to the use of drugs in man - studies on membrane transport and enzymes, including their regulation and the impact of pharmacogenomics on drug absorption and disposition, - simulation and modeling in drug discovery and development - theoretical treatises - includes themed issues and reviews and exclude manuscripts on - bioavailability studies reporting only on simple PK parameters such as Cmax, tmax and t1/2 without mechanistic interpretation - analytical methods
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