Reham Mokhtar Aman , Randa Ahmed Zaghloul , Noha Mohamed Saleh
{"title":"Propolis-loaded/dextrose˗coated bilosomes for enhanced protection against CCl4-induced liver injury: In vitro and in vivo assessments","authors":"Reham Mokhtar Aman , Randa Ahmed Zaghloul , Noha Mohamed Saleh","doi":"10.1016/j.jddst.2025.106756","DOIUrl":null,"url":null,"abstract":"<div><div>Hepatoprotection against issues like alcohol, chemicals, infections, and drugs can terminate the progression into chronic deterioration. We planned to fabricate lectin receptors-targeted bilosomes (BLs), maximizing the hepatoprotective benefits of the nature-derived honey-glue; propolis (ProE). The thin film hydration approach ensnared ProE in different BLs that were evaluated regarding encapsulation efficiency percent (EE %), vesicular diameter (D<sub>v</sub>), polydispersity index (PI), and zeta potential (ζ-potential). A selected formulation (F2) was decorated with dextrose (DEX) to create ProE-loaded/DEX-coated BLs which were thoroughly appraised concerning D<sub>v</sub>, PI, ζ-potential, morphology, opsonization, physical stability, stability in biological fluids, <em>in vitro</em> release, and ultimately <em>in vivo</em> hepatoprotective effectiveness against CCl<sub>4</sub>-induced hepatotoxicity in mice. F2 was selected as the preferred formulation based on its maximum EE% (92.70 ± 5.05 %), ζ-potential (−58.54 ± 7.73 mV), small D<sub>v</sub> (91.96 ± 5.37 nm), and acceptable PI (0.408 ± 0.06). The DEX˗coating yielded homogeneous nanosized spherical BLs (116.23 ± 11.69 nm) manifesting an avoidance of opsonization. The configuration of ProE-loaded/DEX˗coated BLs was not disrupted by storage at 4 °C. The oral administration is recommended to be on an empty stomach. ProE-loaded/DEX˗coated BLs illustrated controlled release (64.35 ± 15.36 %). Among the pretreated groups, ProE-loaded/DEX˗coated BLs could hinder the rise in the hepatic (ALT, AST, and ALP) and inflammatory (CRP) markers. In the hepatic environment, the balance of oxidative stress markers (MDA, GSH, NOx, and Nrf-2/HO-1) and p53 expression level could be recovered via the pretreatment with ProE-loaded/DEX˗coated BLs. Thus, the ProE-loaded/DEX-coated BLs should be given as much attention as a promising hepatoprotective remedy.</div></div>","PeriodicalId":15600,"journal":{"name":"Journal of Drug Delivery Science and Technology","volume":"107 ","pages":"Article 106756"},"PeriodicalIF":4.5000,"publicationDate":"2025-02-26","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Drug Delivery Science and Technology","FirstCategoryId":"3","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S1773224725001595","RegionNum":3,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"PHARMACOLOGY & PHARMACY","Score":null,"Total":0}
引用次数: 0
Abstract
Hepatoprotection against issues like alcohol, chemicals, infections, and drugs can terminate the progression into chronic deterioration. We planned to fabricate lectin receptors-targeted bilosomes (BLs), maximizing the hepatoprotective benefits of the nature-derived honey-glue; propolis (ProE). The thin film hydration approach ensnared ProE in different BLs that were evaluated regarding encapsulation efficiency percent (EE %), vesicular diameter (Dv), polydispersity index (PI), and zeta potential (ζ-potential). A selected formulation (F2) was decorated with dextrose (DEX) to create ProE-loaded/DEX-coated BLs which were thoroughly appraised concerning Dv, PI, ζ-potential, morphology, opsonization, physical stability, stability in biological fluids, in vitro release, and ultimately in vivo hepatoprotective effectiveness against CCl4-induced hepatotoxicity in mice. F2 was selected as the preferred formulation based on its maximum EE% (92.70 ± 5.05 %), ζ-potential (−58.54 ± 7.73 mV), small Dv (91.96 ± 5.37 nm), and acceptable PI (0.408 ± 0.06). The DEX˗coating yielded homogeneous nanosized spherical BLs (116.23 ± 11.69 nm) manifesting an avoidance of opsonization. The configuration of ProE-loaded/DEX˗coated BLs was not disrupted by storage at 4 °C. The oral administration is recommended to be on an empty stomach. ProE-loaded/DEX˗coated BLs illustrated controlled release (64.35 ± 15.36 %). Among the pretreated groups, ProE-loaded/DEX˗coated BLs could hinder the rise in the hepatic (ALT, AST, and ALP) and inflammatory (CRP) markers. In the hepatic environment, the balance of oxidative stress markers (MDA, GSH, NOx, and Nrf-2/HO-1) and p53 expression level could be recovered via the pretreatment with ProE-loaded/DEX˗coated BLs. Thus, the ProE-loaded/DEX-coated BLs should be given as much attention as a promising hepatoprotective remedy.
期刊介绍:
The Journal of Drug Delivery Science and Technology is an international journal devoted to drug delivery and pharmaceutical technology. The journal covers all innovative aspects of all pharmaceutical dosage forms and the most advanced research on controlled release, bioavailability and drug absorption, nanomedicines, gene delivery, tissue engineering, etc. Hot topics, related to manufacturing processes and quality control, are also welcomed.