产品名称
羟乙基哌嗪乙硫磺酸 溶液, 1 M, sterile-filtered, BioReagent
SMILES string
OCCN1CCN(CCS(=O)(O)=O)CC1
InChI
1S/C8H18N2O4S/c11-7-5-9-1-3-10(4-2-9)6-8-15(12,13)14/h11H,1-8H2,(H,12,13,14)
InChI key
JKMHFZQWWAIEOD-UHFFFAOYSA-N
sterility
sterile-filtered
product line
BioReagent, BioXtra
assay
0.9—1.1 M
form
liquid
storage condition
(Tightly closed. Dry), dry at room temperature
concentration
1 M
Quality Level
impurities
endotoxin, tested
color
colorless
useful pH range
6.8-8.2
7.5
density
1.1 g/cm3
suitability
suitable for component for culture media, suitable for electrophoresis
application(s)
cell analysis
life science and biopharma
sample preparation
storage temp.
2-8°C
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General description
1M的HEPES缓冲液(4-羟乙基哌嗪乙磺酸)经过无菌过滤处理,适于用作细胞生物学、生物化学和生物学研究中重要的生物缓冲液。HEPES是一种两性离子缓冲液,在pH 6.8-8.2范围内有效,适合丰富的研究领域。HEPES可用作细胞培养基的缓冲剂,相较Tris和磷酸盐有多项优势。尤其是它的细胞毒性更低,可在实验过程中维持最佳的细胞健康和活力。
此外,它可维持细胞生理pH,保护细胞免受呼吸引起的二氧化碳波动的影响,保证细胞稳态。这项能力更胜碳酸氢盐缓冲液(NaHCO3)。除了这些适合细胞培养的优异特性,HEPES也适于各种生物学和生物化学研究。也可用于免疫沉淀、细胞裂解、活细胞成像等技术,提供稳定受控的实验环境。功能多样、pH缓冲能力出色、与其他分子的互作力低,HEPES是多个研究领域中不可或缺的工具。
此外,它可维持细胞生理pH,保护细胞免受呼吸引起的二氧化碳波动的影响,保证细胞稳态。这项能力更胜碳酸氢盐缓冲液(NaHCO3)。除了这些适合细胞培养的优异特性,HEPES也适于各种生物学和生物化学研究。也可用于免疫沉淀、细胞裂解、活细胞成像等技术,提供稳定受控的实验环境。功能多样、pH缓冲能力出色、与其他分子的互作力低,HEPES是多个研究领域中不可或缺的工具。
它在细胞培养中常用的浓度为5mM到30mM。HEPES已被广泛用于各种应用,包括组织培养。它通常用于缓冲与空气接触的细胞培养基。HEPES可用于Mg的 体外 实验。
Application
HEPES可作为组分:
- 配制Hank’平衡盐溶液、Dulbecco’改良eagle’培养基和无糖DMEM,用于制备组织切片
- 配制缓冲液,用于细胞培养小室底侧的局部电导测量,以检测阳离子选择性
- 配制细胞培养基,提供缓冲能力维持细胞株pH
- 配制缓冲液,用于猪髓核的脱细胞反应
Features and Benefits
- 高纯度产品,适合生化和生物学研究
- 除菌过滤处理,并通过细胞培养测试
- 即用型溶液
- 适用pH范围:6.8 - 8.2,pKa 7.5(25 °C)
- 即用型溶液,无需配制,节省时间
Preparation Note
由HEPES游离酸和细胞培养级水制备。
Disclaimer
浓度超过40mM的HEPES对某些细胞类型可能会有毒性。
存储类别
10 - Combustible liquids
flash_point_f
Not applicable
flash_point_c
Not applicable
wgk
WGK 3
Kaixi Tang et al.
PLoS computational biology, 14(7), e1006303-e1006303 (2018-07-06)
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Kirkland Nt
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Nature, 543(7647), 681-686 (2017-03-23)
Post-mitotic, differentiated cells exhibit a variety of characteristics that contrast with those of actively growing neoplastic cells, such as the expression of cell-cycle inhibitors and differentiation factors. We hypothesized that the gene expression profiles of these differentiated cells could reveal
The role of the endocrine system in feeding-induced tissue-specific circadian entrainment.
Sato M, et al.
Cell Reports, 8(2), 393-401 (2014)
Stereological monitoring of mouse lung alveolarization from the early postnatal period to adulthood.
Agnieszka Pozarska et al.
American journal of physiology. Lung cellular and molecular physiology, 312(6), L882-L895 (2017-03-21)
Postnatal lung maturation generates a large number of small alveoli, with concomitant thinning of alveolar septal walls, generating a large gas exchange surface area but minimizing the distance traversed by the gases. This demand for a large and thin gas
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