94640
DL-缬氨酸
ReagentPlus®, ≥99.0% (NT)
别名:
(±)-α-氨基异戊酸, DL-2-氨基-3-甲基丁酸
质量水平
产品线
ReagentPlus®
方案
≥99.0% (NT)
表单
powder
反应适用性
reaction type: solution phase peptide synthesis
mp
295 °C (dec.) (lit.)
应用
peptide synthesis
SMILES字符串
CC(C)C(N)C(O)=O
InChI
1S/C5H11NO2/c1-3(2)4(6)5(7)8/h3-4H,6H2,1-2H3,(H,7,8)
InChI key
KZSNJWFQEVHDMF-UHFFFAOYSA-N
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法律信息
ReagentPlus is a registered trademark of Merck KGaA, Darmstadt, Germany
储存分类代码
11 - Combustible Solids
WGK
WGK 1
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
Eyeshields, Gloves, type N95 (US)
Aleksander Hinek et al.
Journal of dermatological science, 75(3), 173-182 (2014-07-13)
Vitamin C (L-ascorbic acid), a known enhancer of collagen deposition, has also been identified as an inhibitor of elastogenesis. Present studies explored whether and how the L-ascorbic acid derivative (+) sodium L-ascorbate (SA) would affect production of collagen and elastic
Yan-Mei Ma et al.
Fish & shellfish immunology, 45(2), 414-421 (2015-05-11)
Streptococcus iniae seriously affects the intensive farming of tilapias. Much work has been conducted on prevention and control of S. iniae infection, but little published information on the metabolic response is available in tilapias against the bacterial infection, and no metabolic
K Aaboe et al.
Diabetes, obesity & metabolism, 17(1), 74-81 (2014-09-23)
To examine whether 12 weeks of treatment with a dipeptidyl peptidase-4 (DPP-4) inhibitor, sitagliptin, influences the insulin secretion induced by glucose, glucose-dependent insulinotropic polypeptide (GIP) and glucagon-like peptide-1 (GLP-1) during a hyperglycaemic clamp in patients with type 2 diabetes (T2DM).
Yuka Kamei et al.
The Journal of biological chemistry, 289(46), 32081-32093 (2014-10-09)
Age-related damage accumulates and a variety of biological activities and functions deteriorate in senescent cells. However, little is known about when cellular aging behaviors begin and what cellular aging processes change. Previous research demonstrated age-related mRNA changes in budding yeast
Thomas Rydzak et al.
Journal of industrial microbiology & biotechnology, 42(9), 1263-1272 (2015-07-15)
The ability of Clostridium thermocellum to rapidly degrade cellulose and ferment resulting hydrolysis products into ethanol makes it a promising platform organism for cellulosic biofuel production via consolidated bioprocessing. Currently, however, ethanol yield is far below theoretical maximum due to
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