2023
DOI: 10.1016/j.bioadv.2022.213203
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Synthesized bioactive lignin nanoparticles/polycaprolactone nanofibers: A novel nanobiocomposite for bone tissue engineering

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Cited by 34 publications
(16 citation statements)
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“…They developed PCL nanofiber scaffolds with lignin nanoparticles and observed a significant improvement in osteogenic cell differentiation versus pure PCL scaffolds. They integrated the antibacterial and osteostimulative capacities of nanoparticles with the mechanical properties of PCL nanofibers, demonstrating the potential of this type of hybrid nanodevice for bone tissue engineering [ 63 ].…”
Section: Hybrid Systems For Control Of Reactive Oxygen Species For Ti...mentioning
confidence: 99%
“…They developed PCL nanofiber scaffolds with lignin nanoparticles and observed a significant improvement in osteogenic cell differentiation versus pure PCL scaffolds. They integrated the antibacterial and osteostimulative capacities of nanoparticles with the mechanical properties of PCL nanofibers, demonstrating the potential of this type of hybrid nanodevice for bone tissue engineering [ 63 ].…”
Section: Hybrid Systems For Control Of Reactive Oxygen Species For Ti...mentioning
confidence: 99%
“…A lactate dehydrogenase (LDH) assay using fibroblast cells (NIH3T3) was used to evaluate cell proliferation, following the procedures of previous study. 34 The NIH3T3 cells were cultured and incubated in a 5% CO 2 environment at 37 C for 30 min. Round disks made of nanofibrous mats were cut to a diameter of 6 mm and sterilized by immersion in 70% ethanol for 30 min.…”
Section: Nanofiber Characterizationmentioning
confidence: 99%
“…Cells and nanofibrous mats were incubated at 37 C with 5% CO 2 in a humidified incubator for 24 h. Based on the reported protocols, an LDH assay kit was used to measure cell proliferation at 490 nm using a microplate reader. 34 Cell proliferation was measured at intervals of 1, 3, 5, and 7 days.…”
Section: Nanofiber Characterizationmentioning
confidence: 99%
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“…However, they are thermodynamically immiscible, resulting in a multiphase structure with poor dispersion and interfacial adhesion phase separation [ 9 ]. Up to now, various methods have been studied to improve the compatibility between phases in PLA/PCL blends, such as the addition of multi-block copolymers, reactive polymers, multi-functional polymeric compatibilizers, and fillers [ 18 , 19 , 20 , 21 ]. In this context, the use of natural reinforcements to improve the mechanical properties of biodegradable polymers for food packaging applications represents a promising method [ 22 ].…”
Section: Introductionmentioning
confidence: 99%