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Merck
CN

MAK047

Sigma-Aldrich

脂肪酶活性检测试剂盒 II

sufficient for 100 colorimetric tests (with TNB standard)

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About This Item

UNSPSC代码:
12161503
NACRES:
NA.84

用途

sufficient for 100 colorimetric tests (with TNB standard)

检测方法

colorimetric

相关疾病

cancer; gastrointestinal diseases; pulmonary disorders

储存温度

−20°C

一般描述

脂酶家族可催化脂质酯键裂解。在哺乳动物体内,该家族包括许多关键成员,包括胰腺、肝、内皮和脂蛋白中的脂酶。脂酶(如胰腺脂酶)对脂质的代谢至关重要。脂酶在诸如细胞信号传导和炎症等过程中也起着关键作用。脂肪酶活性测定通常用于筛查胰腺损伤或疾病,并监测诸如囊性纤维化、乳糜泻和克罗恩病等疾病。

应用

脂酶活性测定试剂盒II已用于测量脂酶活性。

特点和优势

兼容高通量操作系统。

适用性

适用于检测包括组织、细胞和血清等生物学样品中的脂肪酶活性

原理

脂肪酶活性检测试剂盒为测量各种样品中的脂肪酶活性提供了一种简单直接的方法。使用偶联酶反应测定脂肪酶活性,会导致比色 (412 nm) 产物与存在的酶活性成比例。一单位脂酶指的是在37°C下,每分钟产生1.0 μmole TNB所需的酶量。

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象形图

FlameHealth hazard

警示用语:

Danger

危险声明

危险分类

Eye Irrit. 2 - Flam. Liq. 2 - Resp. Sens. 1

储存分类代码

3 - Flammable liquids

法规信息

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Inflammatory response of disc cells against Propionibacterium acnes depends on the presence of lumbar Modic changes.
Dudli S, et al.
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The three Bacillus strains present in Norum™ were initially selected by their excellent to good relative enzyme activity (REA) production score for amylase, protease, lipase, phytase, cellulase, β-glucanase, and xylanase. Further studies confirmed that the three isolates also showed an
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Animals : an open access journal from MDPI, 11(3) (2021-04-04)
The aim of this experiment was to evaluate the effect of a phytogenic feed additive (PFA) on growth performance and nutrient digestibility of broilers fed corn and soybean meal-based diets containing two different levels of crude protein. A 2 ×
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European spine journal : official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society, 27(5), 1013-1020 (2017-09-09)
Intervertebral disc with Propionibacterium acnes (P. acnes) is suggested to be an etiology of Modic type I changes in the adjacent bone marrow. However it is unknown if disc cells can respond to P. acnes and if bone marrow cells
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In this study, hydrolytic and oxidative activities of enzymes isolated from halophilic microbes were characterized and applied for biomass utilization. First, lipase from Micrococcus luteus, and peroxidase and laccase from Pseudoalteromonas phenolica and Pseudoalteromonas peptidolytica were selected and their catalytic

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