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- 保存条件:
常温
- 保质期:
根据瓶身LOT号查询
- 英文名:
Urethane
- 库存:
有现货
- 供应商:
浙江羽翔生物科技有限公司
- CAS号:
51-79-6
- 规格:
50G
属性
蒸汽密度
3.07 (vs air)
蒸汽压
10 mmHg ( 77.8 °C)
方案
≥99.0% (GC)
表单
crystals
沸点
182-184 °C (lit.)
mp
46-49 °C
48-50 °C (lit.)
官能团
amine
SMILES字符串
CCOC(N)=O
InChI
1S/C3H7NO2/c1-2-6-3(4)5/h2H2,1H3,(H2,4,5)
InChI key
JOYRKODLDBILNP-UHFFFAOYSA-N
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文献和实验The sensitivity of cartilage contact pressures in the knee joint to the size and shape of an anatomically shaped meniscal implant.
Since meniscal geometry affects the cartilage contact pressures, it is essential to carefully define the geometry of the synthetic meniscal implant that we developed. Recently, six independent modes of size- and shape-related geometry variation were identified through 3D statistical shape modeling (SSM) of the medial meniscus. However, this model did not provide information on the functional importance of these geometry characteristics. Therefore, in this study finite element simulations were performed to determine the influence of anatomically-based meniscal implant size and shape variations on knee cartilage contact pressures. Finite element simulations of the knee joint were performed for a total medial meniscectomy, an allograft, the average implant geometry, six implant sizes and ten shape variations. The geometries of the allograft and all implant variations were based on the meniscus SSM. Cartilage contact pressures and implant tensile strains were evaluated in full extension under 1200N of axial compression. The average implant induced cartilage peak pressures intermediate between the allograft and meniscectomy and also reduced the cartilage area subjected to pressures >5MPa compared to the meniscectomy. The smaller implant sizes resulted in lower cartilage peak pressures and compressive strains than the allograft, yet high implant tensile strains were observed. Shape modes 2, 3 and 6 affected the cartilage contact stresses but to a lesser extent than the size variations. Shape modes 4 and 5 did not result in changes of the cartilage stress levels. The present study indicates that cartilage contact mechanics are more sensitive to implant size than to implant shape. Down-sizing the implant resulted in more favorable contact mechanics, but caused excessive material strains. Further evaluations are necessary to balance cartilage contact pressures and material strains to ensure cartilage protection and longevity of the implant.
、靶细胞分别收集1×106 Panc1以及从6例肿瘤组织中分离获得的胰腺癌细胞(编号S1-S6), 重悬于0.5mL不含碳酸氢钠的完全培养液. 加入3.7 MBq 51Cr铬酸钠, 37℃水浴中标记1 h, 洗涤细胞三次, 调整细胞浓度为5×104/mL.3、细胞毒效应向96孔板加入靶细胞, 每孔100 μL. 按效应细胞:靶细胞= 50:1的比例向各孔加入100 μL不同效应细胞. 每组均设3个复孔, 阴性对照孔(自发释放)只加100 μL完全培养液, 阳性对照孔(最大释放)加100 μL 1
according to the formula: 100 x (test 51Cr release � spontaneous 51Cr release) / (maximum 51Cr release � spontaneous 51Cr release), where maximum and spontaneous counts are calculated from triplicates of target cells incubated with 2% Triton X (Sigma) and in plain medium
manifold (Sigma) ,3~5 g/L phytagel, pH 5.8。 所有的培养基需 121℃ 高压蒸汽灭菌 20 min。激素、除草剂和抗生素在培养基灭菌后添加(40~50°C ) 。 2.4 其他材料 ( 1 ) Clorox 漂白剂 (Clorox Professional Products Company, Oak- land, CA 94612) ( 2 ) 塑料植物盆(8 cm 方格,Griffin Green House and
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