98%
921
2 minutes
20
In this study, lutein-loaded zein nanoparticles (Lu-NPs) were firstly prepared using the antisolvent precipitation method, and the obtained nanoparticles had a spherical shape with an average hydrodynamic diameter of 78.13 nm, a monodispersed distribution and relatively high encapsulation efficiency of 89.11 %. Then, Lu-NPs were added to anthocyanin-loaded arabinoxylan/casein hydrogel (ACN-gel) to fabricate Lu-NPs incorporated nanocomposite hydrogels (Lu-NPs/ACN-gel), which emphasized on the effect of Lu-NPs addition amount (10 %, 20 % and 40 %) on the structure, physico-chemical and delivery properties of nanocomposite hydrogels. It was found that the 10 % or 20 % Lu-NPs addition could not obviously influence the microstructure and gel strength of Lu-NPs/ACN-gel. Meanwhile, hydrophobic and hydrogen bonding interactions were formed between Lu-NPs and the gel matrix. However, with increasing Lu-NPs addition amount to 40 %, the porosity of Lu-NPs/ACN-gel was significantly increased to 48.48 % and the collapsed appearance was observed, which might be due to the formation of Lu-NPs aggregates in the gel network structure. Moreover, 10 % or 20 %Lu-NPs/ACN-gels were found to greatly improve the light and thermal stability of anthocyanin and lutein, and exhibited colon-specific release behavior. These data suggested a possible utilization of Lu-NPs/ACN-gel in gel-related eye care foods.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.ijbiomac.2025.142967 | DOI Listing |
RSC Adv
September 2025
Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, Saveetha University Chennai Tamil Nadu 602105 India.
A free radical polymerization approach was applied to synthesize different carboxymethyl cellulose-grafted poly(acrylamide) hydrogels (Hyd) composited with biochar, magnetic biochar, and magnetic biochar decorated with ZIF-67 to decontaminate methylene blue (MB) from water media. Biochar was obtained from walnut shells (WS) by a pyrolysis method, and magnetic biochar (WS/CoFeO) and biochar-decorated ZIF-67 (WS/CoFeO/ZIF-67) were prepared by chemical co-precipitation and hydrothermal methods, respectively. An increase in the amount of these particles by up to 10 wt% enhanced the removal performance.
View Article and Find Full Text PDFACS Appl Mater Interfaces
September 2025
State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy, and Tianjin Key Laboratory of Molecular Drug Research, Nankai University, Tianjin 300350, People's Republic of China.
In this study, we successfully developed a diselenide-based, triple-responsive intelligent nanogel, IR780@BEAP, for lung cancer therapy. Exploiting the elevated levels of reactive oxygen species (ROS) and glutathione (GSH) in the tumor microenvironment (TME), a ROS/GSH dual-responsive diselenide cross-linker (DSe5) was synthesized and used to cross-link betulin (BE) with polysaccharide (AP) while coloading the photosensitizer IR780. The resulting nanogel, IR780@BEAP, exhibited an appropriate particle size (137.
View Article and Find Full Text PDFAdv Sci (Weinh)
September 2025
Department of Bioengineering, Yildiz Technical University, Istanbul, 34722, Turkey.
Conductive nanocomposite hydrogels (CNHs) represent a promising tool in neural tissue engineering, offering tailored electroactive microenvironments to address the complex challenges of neural repair. This systematic scoping review, conducted in accordance with PRISMA-ScR guidelines, synthesizes recent advancements in CNH design, functionality, and therapeutic efficacy for central and peripheral nervous system (CNS and PNS) applications. The analysis of 125 studies reveals a growing emphasis on multifunctional materials, with carbon-based nanomaterials (CNTs, graphene derivatives; 36.
View Article and Find Full Text PDFRSC Adv
September 2025
Department of Nanobiochemistry, Frontiers of Innovative Research in Science and Technology (FIRST), Konan University 7-1-20 Minatojima-minamimachi, Chuo-ku Kobe 650-0047 Japan
The application of nanoscale metal-organic frameworks (MOFs) in tissue engineering is receiving increased attention. As three-dimensional scaffolding materials that provide an appropriate extracellular microenvironment supporting the survival, proliferation, and organization of cells play a key role tissue engineering, hybridization of nanoscale MOFs with bulk hydrogels has led to the development of nanoscale MOF-combined hydrogels. However, development of nanoscale MOF-combined hydrogel scaffolds remains challenging.
View Article and Find Full Text PDFPhys Chem Chem Phys
September 2025
Institute of Physical Chemistry, RWTH Aachen University, 52056 Aachen, Germany.
Correction for 'Harnessing the polymer-particle duality of ultra-soft nanogels to stabilise smart emulsions' by Alexander V. Petrunin , , 2023, , 2810-2820, https://doi.org/10.
View Article and Find Full Text PDF