Literature DB >> 28945434

Polyester-Solid Lipid Mixed Nanoparticles with Improved Stability in Gastro-Intestinal Tract Facilitated Oral Delivery of Larotaxel.

Jingxin Gou1, Shuangshuang Feng1, Yuheng Liang1, Guihua Fang2, Haotian Zhang3, Tian Yin4, Yu Zhang1, Haibing He1, Yanjiao Wang1, Xing Tang1.   

Abstract

The objective of this study was to investigate the role of core stability of nanoparticles on their performances in oral drug delivery. Solid lipids (Geleol Mono and Diglycerides Nf) were incorporated into nanoparticles composed of mPEG-b-PCL by the dialysis method. The prepared solid lipid loaded nanoparticles were found to be spherical nanoparticles with a core state and size distribution dependent on the amount of solid lipid incorporated. The critical aggregation concentrations of lipid-loaded nanoparticles were determined using pyrene fluorescence. Then, the stability of block copolymer in nanoparticles with different solid lipid contents was studied in simulated gastric fluid and simulated intestinal fluid. Solid lipids were found to stabilize nanoparticle cores by improving not only the thermodynamic stability (lowered CAC) of the nanoparticle but also the chemical stability of the block copolymer in the gastrointestinal environment. The stability of the loaded drug (larotaxel, LTX) in nanoparticles with different solid lipid contents was challenged by intestinal homogenate and rat liver microsome, and solid lipid loaded nanoparticles showed superior drug-protecting capability. Solid lipid incorporation exhibited limited influence on the cytotoxicity and cellular uptake but improved the transcytosis of nanoparticles in Caco-2 monolayers. The results of pharmacokinetic study indicated that core stabilization was helpful in promoting oral larotaxel absorption as the absolute bioavailability of LTX delivered by solid lipid loaded nanoparticles was found to be 13.17%, compared with that by the lipid-free nanoparticles (6.264%) and LTX solution (2.435%). Additionally, the results of biodistribution study indicated relatively higher particle integrity of solid lipid loaded nanoparticles, shown by slower liver and spleen accumulation rate, compared with its lipid-free counterpart. Overall, incorporation of solid lipids made the nanoparticles more suitable for oral drug delivery.

Entities:  

Keywords:  core stability; larotaxel; mixed nanoparticles; oral drug delivery

Mesh:

Substances:

Year:  2017        PMID: 28945434     DOI: 10.1021/acs.molpharmaceut.7b00503

Source DB:  PubMed          Journal:  Mol Pharm        ISSN: 1543-8384            Impact factor:   4.939


  3 in total

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Authors:  Ivana Fenoglio; Chiara Riganti; Giulia Antonello; Arianna Marucco; Elena Gazzano; Panagiotis Kainourgios; Costanza Ravagli; Ana Gonzalez-Paredes; Simone Sprio; Esperanza Padín-González; Mahmoud G Soliman; David Beal; Francesco Barbero; Paolo Gasco; Giovanni Baldi; Marie Carriere; Marco P Monopoli; Costas A Charitidis; Enrico Bergamaschi
Journal:  Part Fibre Toxicol       Date:  2022-07-19       Impact factor: 9.112

2.  Optimization, and in vitro and in vivo evaluation of etomidate intravenous lipid emulsion.

Authors:  Dandan Geng; Yan Li; Chunyan Wang; Bo Ren; Heping Wang; Chensi Wu; Yirong Zhang; Linlin Zhao; Ligang Zhao
Journal:  Drug Deliv       Date:  2021-12       Impact factor: 6.819

3.  VE-Albumin Core-Shell Nanoparticles for Paclitaxel Delivery to Treat MDR Breast Cancer.

Authors:  Bo Tang; Yu Qian; Yi Gou; Gang Cheng; Guihua Fang
Journal:  Molecules       Date:  2018-10-25       Impact factor: 4.411

  3 in total

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