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Merck
CN

G1145

酸洗玻璃珠

150-212 μm (70-100 U.S. sieve)

别名:

玻璃珠

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关于此项目

UNSPSC代码:
41102422
NACRES:
NB.22
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粒径

150-212 μm (70-100 U.S. sieve)

相关类别

应用

酸洗玻璃珠已用于:

  • 酵母菌落分解,用于酵母双杂交筛选
  • 娄地青霉(Penicillium roqueforti)菌丝样本的DNA提取
  • 破碎嗜热链球菌(Streptococcus thermophilus)和德氏乳杆菌保加利亚亚种(Lactobacillus delbrueckii subsp. Bulgaricus ),以测定酶活性

储存分类代码

11 - Combustible Solids

WGK

nwg

闪点(°F)

Not applicable

闪点(°C)

Not applicable

个人防护装备

Eyeshields, Gloves, type N95 (US)


历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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Kim I Sørensen et al.
Applied and environmental microbiology, 82(12), 3683-3692 (2016-04-24)
Streptococcus thermophilus and Lactobacillus delbrueckii subsp. bulgaricus are used in the fermentation of milk to produce yoghurt. These species normally metabolize only the glucose moiety of lactose, secreting galactose and producing lactic acid as the main metabolic end product. We
Haojie Jin et al.
Frontiers in microbiology, 9, 1662-1662 (2018-08-09)
To advance synthetic biology in the photosynthetic cyanobacterium Synechocystis sp. PCC6803 (Syn6803), we constructed a shuttle vector with some versatile features. This shuttle vector, pSCB-YFP, consists of a putative replicon identified on the plasmid pCC5.2, the origin of replication of
Julie S Do et al.
PloS one, 9(1), e86433-e86433 (2014-01-28)
Molecular viability testing (MVT) was previously reported to specifically detect viable bacterial cells in complex samples. In MVT, brief nutritional stimulation induces viable cells, but not non-viable cells, to produce abundant amounts of species-specific ribosomal RNA precursors (pre-rRNA). Quantitative polymerase
Dylan Dodd et al.
Nature, 551(7682), 648-652 (2017-11-24)
The human gut microbiota produces dozens of metabolites that accumulate in the bloodstream, where they can have systemic effects on the host. Although these small molecules commonly reach concentrations similar to those achieved by pharmaceutical agents, remarkably little is known
Timo Birkenstock et al.
The Journal of biological chemistry, 287(4), 2887-2895 (2011-12-07)
The desperate need for new therapeutics against notoriously antibiotic-resistant bacteria has led to a quest for novel antibacterial target structures and compounds. Moreover, defining targets and modes of action of new antimicrobial compounds remains a major challenge with standard technologies.

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