Application
ハンクス′平衡塩は、以下の用途に使用されています:
- ラットの初代海馬神経細胞の培養
- ラット脳の収集
- ラット初代肝細胞の培養
General description
平衡塩溶液(BSS)は、正常な細胞代謝と生理的範囲(pH 7.2~7.6)が保たれるよう、細胞に水、大量の無機イオン、および緩衝系をそれぞれ提供します。また、洗浄剤、希釈剤、輸送剤として作用し、細胞内外の浸透圧の平衡を保ちます。BSSは、グルコースなどの細胞代謝のエネルギー源にもなります。
Other Notes
pHは、炭酸水素ナトリウム添加後に調整されています。
Preparation Note
0.35 g/L 炭酸水素ナトリウムを添加してください。
培地1Lあたり粉末9.5 gが含まれる組成になっています。
保管分類
13 - Non Combustible Solids
wgk
WGK 1
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
Abdelrahman I Rezk et al.
Scientific reports, 9(1), 117-117 (2019-01-16)
Magnesium (Mg) and its alloys have attracted much attention as a promising candidate for degradable implant applications however the rapid corrosion of magnesium inside the human body greatly limits its use as an implant material. Therefore, coating the alloy surface
Yu Bai et al.
Journal of materials science. Materials in medicine, 27(2), 31-31 (2015-12-26)
Au nanoparticles (AuNPs) are successfully assembled on TiO2 nanotube (TN) arrays through electrochemical deposition technology to improve the surface characteristics of TN arrays as an implant material. The loading amount of AuNPs can be controlled by adjusting the deposition time
Seo Yeon Lee et al.
Polymers, 12(2) (2020-02-20)
Herein, we describe precisely a covalent modification of pure magnesium (Mg) surface and its application to induce in vitro osteogenic differentiation. The new concept of a chemical bonding method is proposed for developing stable chemical bonds on the Mg surface
Bikendra Maharjan et al.
Materials science & engineering. C, Materials for biological applications, 114, 111056-111056 (2020-10-01)
Despite intensive attempts to fabricate polypyrrole nanoparticles (PPy-NPs) incorporated nanofibrous scaffolds, a low-cost facile strategy is still demanded. Herein, we developed a novel strategy- in-situ polymerization of PPy-NPs and immobilized them into the PCL polymeric matrix in a single step.
Xiaojun Huang et al.
Progress in biophysics and molecular biology, 156, 3-13 (2020-08-08)
Cryo-electron microscopy (cryoEM) has become one of the most important approach for structural biology. However, barriers are still there for an increased successful rate, a better resolution and improved efficiency from sample preparation, data collection to image processing. CryoEM sample
ライフサイエンス、有機合成、材料科学、クロマトグラフィー、分析など、あらゆる分野の研究に経験のあるメンバーがおります。.
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