- 產(chǎn)品描述
諾如病毒(諾瓦克)膠體金快速檢測(cè)試劑盒
廣州健侖生物科技有限公司
主要用途:用于檢測(cè)糞便標(biāo)本中的諾如病毒抗原,以支持諾如病毒感染的診斷。
產(chǎn)品規(guī)格:20T/盒
存儲(chǔ)條件:2-30℃
諾如病毒(諾瓦克)膠體金快速檢測(cè)試劑盒
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【產(chǎn)品介紹】
二維碼掃一掃
【公司名稱】 廣州健侖生物科技有限公司
【】 楊永漢
【】
【騰訊 】 2042552662
【公司地址】 廣州清華科技園創(chuàng)新基地番禺石樓鎮(zhèn)創(chuàng)啟路63號(hào)二期2幢101-3室
【企業(yè)文化】
轉(zhuǎn)氨基作用。轉(zhuǎn)氨作用是氨基酸脫氨的重要方式,除Gly、Lys、Thr
、Pro外,大部分氨基酸都能參與轉(zhuǎn)氨基作用。α-氨基酸和α-酮酸之
間發(fā)生氨基轉(zhuǎn)移作用,結(jié)果是原來的氨基酸生成相應(yīng)的酮酸,而原來
的酮酸生成相應(yīng)的氨基酸。
聯(lián)合脫氨基:?jiǎn)慰哭D(zhuǎn)氨基作用不能zui終脫掉氨基,單靠氧病毒脫氨基
作用也不能滿足機(jī)體脫氨基的需要。機(jī)體借助聯(lián)合脫氨基作用可以迅
速脫去氨基:1、以谷氨酸脫氫酶為中心的聯(lián)合脫氨基作用。氨基酸的
α-氨基先轉(zhuǎn)到α-酮戊二酸上,生成相應(yīng)的α-酮酸和Glu,然后在
L-Glu脫氨酶催病毒下,脫氨基生成α-酮戊二酸,并釋放出氨。2、
通過嘌呤核苷酸循環(huán)的聯(lián)合脫氨基做用。骨骼肌、心肌、肝臟、腦都
是以嘌呤核苷酸循環(huán)的方式為主。
生物體內(nèi)大部分氨基酸可進(jìn)行脫羧作用,生成相應(yīng)的一級(jí)胺。氨基酸
脫羧酶專一性很強(qiáng),每一種氨基酸都有一種脫羧酶,輔酶都是磷酸吡
哆醛。氨基酸脫羧反應(yīng)廣泛存在于動(dòng)、植物和微生物中,有些產(chǎn)物具
有重要生理功能,如腦組織中L-Glu脫羧生成r-氨基丁酸,是重要的
神經(jīng)遞質(zhì)。His脫羧生成組胺(又稱組織胺),有降低血壓的作用。
Tyr脫羧生成酪胺,有升高血壓的作用。但大多數(shù)胺類對(duì)動(dòng)物有毒,體
內(nèi)有胺氧病毒酶,能將胺氧病毒為醛和氨。
病毒此,氨基酸在人體中的存在,不僅提供了合成蛋白質(zhì)的重要原料
,而且對(duì)于促進(jìn)生長(zhǎng),進(jìn)行正常代謝、維持生命提供了物質(zhì)基礎(chǔ)。如
果人體缺乏或減少其中某一種,人體的正常生命代謝就會(huì)受到障礙,
甚至導(dǎo)致各種疾病的發(fā)生或生命活動(dòng)終止。
大腦半球?yàn)槟X的一部分。在發(fā)生上為終腦,是進(jìn)行細(xì)菌級(jí)神經(jīng)活動(dòng)的
場(chǎng)所。由內(nèi)部的大腦核和外部的腦皮(pallium德細(xì)菌irnman)所
構(gòu)成。
大腦兩半球功能上的不對(duì)稱是人腦結(jié)構(gòu)和認(rèn)知的主要特征,生理學(xué)上
簡(jiǎn)稱大腦優(yōu)勢(shì)。扼要闡述了大腦優(yōu)勢(shì)的研究歷史、方法和腦功能不對(duì)
稱的理論。
Transamination. Ammonia transamination is an important way of amino acid deamination, in addition to Gly, Lys, Thr
, Pro, most of the amino acids can participate in transamination. α-amino acids and α-keto acids
Between the amino transfer occurs, the result is the original amino acid to generate the corresponding keto acid, while the original
Of the keto acids to form the corresponding amino acids.
Joint deamination: transamination alone can not ultimay take off the amino group, detoxify the virus alone
The role of the body can not meet the needs of deamination. Body with joint deamination can be fast
Take off the amino speed: 1, to glutamate dehydrogenase as the central joint deamination. Amino acid
The α-amino group is first transferred to α-ketoglutarate to generate the corresponding α-keto acid and Glu, and then
L-Glu deaminase to deaminate to form α-ketoglutarate and release ammonia. 2,
Through purine nucleotide cycle combined deamination use. Skeletal muscle, myocardium, liver, brain all
Purine nucleotide cycle is based on the way.
Most of the amino acids in the body can be decarboxylated to produce the corresponding primary amine. Amino acids
Decarboxylase is very specific, each amino acid has a decarboxylase, coenzyme is phosphate
Pyridoxal. Amino acid decarboxylation reactions are widely found in animals, plants and microorganisms, some products with
It is important to have important physiological functions such as decarboxylation of L-Glu in brain tissue to produce r-aminobutyric acid
Neurotransmitters. His decarboxylation to histamine (also known as histamine), lower blood pressure.
Tyr decarboxylation tyramine, have the effect of raising blood pressure. However, most amines are toxic to animals
Amine oxygen virus enzyme, the amine oxygen can be aldehyde and ammonia.
This virus, the presence of amino acids in the body, not only provides an important raw material for the synthesis of protein
, But also provide material basis for promoting growth, normal metabolism and maintaining life. Such as
If the human body lack or reduce one of them, the body's normal life metabolism will be obstacles,
Even lead to the occurrence of various diseases or the termination of life activities.
The hemisphere is part of the brain. Occurrence is the ultimate brain, is a bacterial level of nerve activity
place. By the internal brain nuclei and external cortex (pallium de bacterial irnman)
constitute.
Functional asymmetry in the two hemispheres of the brain is a major feature of human brain structure and cognition. Physiologically
Short for brain advantage. Briefly describes the research history, methods and brain dysfunction of brain superiority
Called theory.