Core Shell Lipid-Polymer Hybrid Nanoparticles for Oral Bioavailability Enhancement of Ibrutinib via Lymphatic Uptake

被引:10
作者
Patel, Mitali [1 ]
Desai, Ayushi [1 ]
Kansara, Vrushti [1 ]
Vyas, Bhavin [1 ]
机构
[1] Uka Tarsadia Univ, Maliba Pharm Coll, Bardoli 394350, Gujarat, India
关键词
Bioavailability; Hybrid nanoparticles; Intestinal lymphatic uptake; Peyer's patch; DRUG-DELIVERY; DOXORUBICIN; THERAPY;
D O I
10.1208/s12249-023-02586-9
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The purpose of this research was to develop ibrutinib (IBR)-loaded lipid-polymer hybrid nanoparticles (IBR-LPHNPs) to improve oral absorption by intestinal lymphatic uptake. IBR-LPHNPs were fabricated by nanoprecipitation method using poly(lactic-co-glycolic acid), lipoid S 100, and DSPE-MPEG 2000. The IBR-LPHNPs showed particle size of 85.27 & PLUSMN;3.82 nm, entrapment efficiency of 97.70 & PLUSMN;3.85%, and zeta potential of -24.9 & PLUSMN;3.08 mV respectively. Fourier transform infrared spectroscopy and differential scanning calorimetry study revealed compatibility between IBR and excipients. X-ray diffraction study showed the conversion of IBR into amorphous form. High-resolution transmission electron microscopic image displayed spherical-shaped, discrete layered polymeric core and lipid shell structure. The drug release from IBR-LPHNPs exhibited prolong release profile up to 48 h and was best fitted to Korsmeyer-Peppas model. Higher fluorescence intensity at the end of 2 h in the intestinal tissue confirmed the uptake of LPHNPs by Peyer's patches. The oral bioavailability of IBR was improved 22.52-fold with LPHNPs as compared to free IBR. The intestinal lymphatic uptake study in rats pretreated with cycloheximide confirmed the intestinal lymphatic uptake of IBR-LPHNPs. All the results conclusively showed that LPHNPs could be a promising approach to improve oral bioavailability of IBR.
引用
收藏
页数:11
相关论文
共 36 条
[31]   PEG-lipid-PLGA hybrid nanoparticles loaded with berberine-phospholipid complex to facilitate the oral delivery efficiency [J].
Yu, Fei ;
Ao, Mingtao ;
Zheng, Xiao ;
Li, Nini ;
Xia, Junjie ;
Li, Yang ;
Li, Donghui ;
Hou, Zhenqing ;
Qi, Zhongquan ;
Chen, Xiao Dong .
DRUG DELIVERY, 2017, 24 (01) :825-833
[32]   Fabrication of psoralen-loaded lipid-polymer hybrid nanoparticles and their reversal effect on drug resistance of cancer cells [J].
Yuan, Yueling ;
Chiba, Peter ;
Cai, Tiange ;
Callaghan, Richard ;
Bai, Li ;
Cole, Susan P. C. ;
Cai, Yu .
ONCOLOGY REPORTS, 2018, 40 (02) :1055-1063
[33]   Improved oral delivery of tilianin through lipid-polymer hybrid nanoparticles to enhance bioavailability [J].
Zeng, Cheng ;
Zheng, Ruifang ;
Yang, Xiaoyi ;
Du, Yanwen ;
Xing, Jianguo ;
Lan, Wei .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2019, 519 (02) :316-322
[34]   Lipid-polymer hybrid nanoparticles for synergistic drug delivery to overcome cancer drug resistance [J].
Zeng, Shao-Qi ;
Chen, Yi-Zhen ;
Chen, Yong ;
Liu, Hong .
NEW JOURNAL OF CHEMISTRY, 2017, 41 (04) :1518-1525
[35]   Nanoparticulate Drug Delivery Strategies to Address Intestinal Cytochrome P450 CYP3A4 Metabolism towards Personalized Medicine [J].
Zhang, Rui Xue ;
Dong, Ken ;
Wang, Zhigao ;
Miao, Ruimin ;
Lu, Weijia ;
Wu, Xiao Yu .
PHARMACEUTICS, 2021, 13 (08)
[36]   An update on oral drug delivery via intestinal lymphatic transport [J].
Zhang, Zichen ;
Lu, Yi ;
Qi, Jianping ;
Wu, Wei .
ACTA PHARMACEUTICA SINICA B, 2021, 11 (08) :2449-2468