The purpose of this study was to investigate the effect of biaxial tensile strain on the osteogenic differentiation of rat bone marrow mesenchymal stem cells(rBMSCs)in vitro.The rBMSCs were isolated from tibia and femur of 4weeks-old Sprague-Dawley(SD)rats.The rBMSCs were cultured in DMEM-LG complete culture medium and grew to subconfluence in the cell culture device for loading tensile strain.The biaxial tensile strain was applied to the rBMSCs for periods of 2,4and 6hours every day,respectively,lasting 3days.The amplitude of biaxial tensile strain applied to the rBMSCs were 1%,2% and 5%respectively,at a frequency of 1Hz.Unstrained rBMSCs were used as blank control(control group).The rBMSCs cultured with DMEM-LG complete culture medium containing100nmol/Lβ-Estradiol(E2)were used as positive control.The mRNA expression of alkaline phosphatase(ALP),collagen typeⅠ(ColⅠ),Runt-related transcription factor 2(Runx2)and osteocalcin(OCN)was examined with real-time quantitative PCR and the protein expression of ALP,ColⅠ,Runx2 and OCN was detected with Western blot method.The results showed as follws:(1)The mRNA and protein expression of the ALP,ColⅠ,Runx2,OCN were significantly higher in rBMSCs of the E2 group than those in the control group(P<0.05).(2)The mRNA and protein expression level of the ALP,Runx2 were higher markedly in the 1% tensile strain groups than those in the control group(P<0.05),but lower than those in the E2group(P<0.05).(3)The mRNA and protein expression level of the ALP,ColⅠ,Runx2,OCN were significantly higher in the 2% tensile strain groups than those in the control group(P<0.05),and the mRNA and protein expression level of ColⅠ and Runx2 in the group applied with2% amplitude of tensile strain for 4h/d was significantly higher than those in E2group(P<0.05).(4)The mRNA and protein expression level of the ALP,ColⅠ,Runx2 were significantly higher in the groups applied with 5% amplitude of tensile strain for 2h/d or for 4h/d than those in the control group(P<0.05).In our study,E2 and mechanical stimulation played an important role in the regulation of differentiation of rBMSCs into osteoblasts,and the manner applied with the 2%amplitude of tensile strain for 4h/d,lasting 3days was an optimal stimulus for up-regulating the mRNA and protein expression of ALP,ColⅠ,Runx2,OCN of rBMSCs.
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Nanoscale
January 2025
School of Science, Jiangsu University of Science and Technology, Zhenjiang 212001, China.
Herein, we propose a new GaN/MoSiP van der Waals (vdWs) heterostructure constructed by vertically stacking GaN and MoSiP monolayers. Its electronic, optical, and photocatalytic properties are explored DFT++BSE calculations. The calculated binding energy and phonon spectrum demonstrated the material's high stabilities.
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November 2024
Department of Surgery-Transplant and Mary & Dick Holland Regenerative Medicine Program, University of Nebraska Medical Center, Omaha, NE, 68198, USA.
Taking inspiration from diverse interlocking and adhesion structures found in nature, a biaxially interlocking interface is developed in this work. This interface is formed by interconnecting two electrostatically flocked substrates and its mechanical strength is enhanced through the incorporation of enoki mushroom-shaped microfibers and deposited extracellular matrix (ECM). Tips of flocked straight fibers can be transformed into mushroom shapes through thermal treatment.
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December 2024
Chongqing Key Laboratory of Micro & Nano Structure Optoelectronics, School of Physical Science and Technology, Southwest University Chongqing 400715 China
Heterostructures can efficiently modulate the bandgap of semiconductors and enhance the separation of photocarriers, thereby enhancing the performance of optoelectronic devices. Herein, we design an InS/ZnInS van der Waals (vdW) heterostructure and investigate its electronic and photovoltaic properties using first principles calculation. Compared to its individual monolayers, the InS/ZnInS heterostructure not only possesses a smaller band gap of 2.
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December 2024
Department of Sport and Motion Science, University of Stuttgart, Stuttgart, Germany; Stuttgart Center for Simulation Science, University of Stuttgart, Stuttgart, Germany.
The urinary bladder is a hollow organ that undergoes significant deformation as it receives, stores, and releases urine. To understand the organ mechanics, it is necessary to obtain information about the material properties of the tissues involved. In displacement-controlled tensile tests, tissue samples are mounted on a device that applies stretches to the tissue in one or more directions, resulting in a specific stress response.
View Article and Find Full Text PDFACS Energy Lett
December 2024
School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
Solid-state batteries (SSBs) with silicon anodes could enable improved safety and energy density compared to lithium-ion batteries. However, degradation arising from the massive volumetric changes of silicon anodes during cycling is not well understood in solid-state systems. Here, we use X-ray computed microtomography to reveal micro- to macro-scale chemo-mechanical degradation processes of silicon anodes in SSBs.
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