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美國Seracare熱滅活大腸桿菌O145:H2陽性對照
廣州健侖生物科技有限公司
廣州健侖長期供應各種生物原料,主要代理品牌:美國Seracare、西班牙Certest、美國Fuller等等。
主要產品包括各種標準品、陽性對照品、陽性質控品、單克隆抗原抗體。
其中常見的有:弓形蟲病、西尼羅河病毒、類風濕因子、瘧疾、麻疹、萊姆病、百日咳桿菌、大腸桿菌、鼠傷寒沙門氏菌、李斯特菌等陽性對照品。
美國Seracare熱滅活大腸桿菌O145:H2陽性對照
我司還提供其它進口或國產試劑盒:登革熱、瘧疾、流感、A鏈球菌、合胞病毒、腮病毒、乙腦、寨卡、黃熱病、基孔肯雅熱、克錐蟲病、違禁品濫用、肺炎球菌、軍團菌、化妝品檢測、食品安全檢測等試劑盒以及日本生研細菌分型診斷血清、德國SiFin診斷血清、丹麥SSI診斷血清等產品。
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【Seracare產品介紹】
貨號 | 中文名稱 | 英文名稱 |
JL-SC001 | 鼠傷寒沙門氏菌陽性對照 | Salmonella typhimurium Positive Control |
JL-SC002 | 志賀氏菌屬陽性對照 | Shigella Species Positive Control |
JL-SC003 | 弧菌屬陽性對照 | Vibrio Species Positive Control |
JL-SC004 | 軍團菌嗜肺軍團菌陽性對照 | Legionella pneumophila Positive Control |
JL-SC005 | BacTrace®金黃色葡萄球菌陽性對照 | BacTrace® Staphylococcus aureus Positive Control |
JL-SC006 | Bactrace®化膿性鏈球菌陽性對照 | BacTrace® Streptococcus pyogenes Positive Control |
JL-SC007 | bactrace®無乳鏈球菌陽性對照 | BacTrace® Streptococcus agalactiae Positive Control |
JL-SC008 | 李斯特菌屬特異性陽性對照 | Listeria, Genus-Specific Positive Control |
JL-SC009 | 彎曲菌屬特異性陽性對照 | Campylobacter, Genus-Specific Positive Control |
JL-SC010 | 幽門螺旋桿菌陽性對照 | Helicobacter pylori Positive Control |
JL-SC011 | 大腸桿菌O157:H7陽性對照 | Escherichia coli O157:H7 Positive Control |
JL-SC012 | BacTrace®大腸桿菌O111:H8物種陽性對照 | BacTrace® Escherichia coli O111:H8 Species Positive Control |
JL-SC013 | BacTrace®大腸桿菌O26:H11物種陽性對照 | BacTrace® Escherichia coli O26:H11 Species Positive Control |
JL-SC014 | Bactrace®大腸桿菌O103:H8的陽性對照,熱滅活 | BacTrace® E.coli O103:H8 Positive Control, Heat-Killed |
JL-SC015 | Bactrace®大腸桿菌O145:H2的陽性對照,熱滅活 | BacTrace® E.coli O145:H2 Positive Control, Heat-Killed |
JL-SC016 | Bactrace®大腸桿菌O121:H19的陽性對照,熱滅活 | BacTrace® E.coli O121:H19 Positive Control, Heat-Killed |
JL-SC017 | Bactrace®大腸桿菌O45:H2的陽性對照,熱滅活 | BacTrace® E.coli O45:H2 Positive Control, Heat-Killed |
JL-SC018 | BacTrace®大腸桿菌O104:H12陽性對照 | BacTrace® Escherichia coli O104:H12 Positive Control |
JL-SC019 | BacTrace®大腸桿菌O91陽性對照 | BacTrace® Escherichia coli O91 Positive Control |
JL-SC020 | 鮭腎桿菌陽性對照 | Renibacterium salmoninarum Positive Control |
美國Seracare
數十年前,科學家們就已經學會了將一連串的DNA堿基轉變為蛋白質氨基酸的基本遺傳密碼讀取細胞。但是十多年來,他們還在試圖破譯嵌入在生物體基因組中更為復雜的密碼:組蛋白密碼。組蛋白是指在染色體中DNA纏繞的一類特殊蛋白。采用化學方法以各種方式調整組蛋白就可以調節(上調或是下調)基因的活性。
例如,細胞通過將三個甲基附著到H3組蛋白的一個特異位點上就可以關閉一些基因。而將三個甲基附著到另一個H3位點上,這種稱之為H3K4me3的修飾則可對基因表達發揮正調控效應。細胞通常將H3K4me3標記添加到基因組小段區域的組蛋白上,然而現在研究人員注意到這種標記有時可以遍布于更大的區域,修飾大量的組蛋白。
為了查明這些大H3K4me3標記區域是否在組蛋白密碼中傳送了一種信息,斯坦福大學的分子遺傳學家Anne Brunet和同事們在20多種不同的細胞類型中追蹤了它們的存在。他們發現在不同的細胞類型中廣大的H3K4me3區域標記了不同的基因。由此,研究人員認識到根據廣大H3K4me3區域的染色質定位,他們就可以將肝細胞與肌肉細胞或腎細胞區分開來。此外,他們還注意到這些H3K4me3區域往往標記的是對細胞功能至關重要,或是幫助細胞確立*身份的一些基因。例如,在胚胎干細胞中它們出現在控制細胞特化能力的一些基因上。
研究人員在成體神經祖細胞中利用rnai技術,進一步證實這些標記表明了細胞的身份。當他們利用RNAi來下調攜帶大塊H3K4me3標記的一些基因時,發現損害了細胞增殖和生成神經元的能力。而當研究人員沉默只有短H3K4me3標記區域或根本沒有H3K4me3區域的基因時,祖細胞仍然正常分裂。換句話說,大H3K4me3標記區域的存在有可能幫助了細胞終身維持身份。盡管細胞利用了幾種方法來確立它們的身份,“我們發現了一種新的標記,”Brunet說。
凱斯西儲大學表觀基因組學家Peter Scacheri對這篇論文給予了高度的評價:“我認為它將震動研究團體。盡管許多其他的科學家們一直在研究H3K4me3標記,認為這一標記可以區分所有的細胞類型這一觀點真是令人震驚。檢測這些標記非常容易,因此這一研究發現使得人們能夠快速地鑒別一些細胞類型,在諸如癌癥診斷等情況下它將派上用場。”
美國Seracare
我司還提供其它進口或國產試劑盒:登革熱、瘧疾、流感、A鏈球菌、合胞病毒、腮病毒、乙腦、寨卡、黃熱病、基孔肯雅熱、克錐蟲病、違禁品濫用、肺炎球菌、軍團菌、食品安全、化妝品檢測、藥物濫用檢測等試劑盒以及日本生研細菌分型診斷血清、德國SiFin診斷血清、丹麥SSI診斷血清等產品。
想了解更多的產品及服務請掃描下方二維碼:
【公司名稱】 廣州健侖生物科技有限公司
【市場部】 楊永漢
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【騰訊 】 2042552662
【公司地址】 廣州清華科技園創新基地番禺石樓鎮創啟路63號二期2幢101-103室
Decades ago, scientists learned to read cells from the basic genetic code that transforms a series of DNA bases into protein amino acids. But for more than a decade, they are still trying to decipher the more complex passwords embedded in the genome of the organism: the histone code. Histone is a type of special protein that is entangled in the DNA of a chromosome. The chemical regulation of histones in a variety of ways can regulate (up-regulate or down-regulate) the activity of a gene.
For example, cells can turn off some genes by attaching three methyls to a specific site on H3 histones. While attaching three methyls to another H3 site, this modification, called H3K4me3, can exert a positive regulatory effect on gene expression. Cells typically add the H3K4me3 marker to histones in small regions of the genome, but now researchers have noticed that such markers can sometimes modify large quantities of histones throughout a larger area.
To see if these large H3K4me3 marker regions send a message in histone codes, Anne Brunet, a molecular geneticist at Stanford University, and colleagues track their presence in more than 20 different cell types. They found that a wide range of H3K4me3 regions marked different genes in different cell types. As a result, the researchers realized that based on the chromatin localization of the vast H3K4me3 region, they could distinguish hepatocytes from muscle cells or kidney cells. In addition, they also noted that these H3K4me3 regions often tagged genes that are crucial to cellular function or help cells establish unique identities. For example, in embryonic stem cells they appear on a few genes that control the cell's specialized ability.
Using rnai technology in adult neural progenitors, the researchers further confirmed that these markers indicate cellular identity. When they used RNAi to down-regulate a few genes that carry large H3K4me3 markers, they were found to impair the ability of cells to proliferate and produce neurons. When researchers silenced only the short H3K4me3-tagged region or no H3K4me3 region, the progenitor cells normally split. In other words, the presence of a large H3K4me3 tagged region may have helped the cell stay alive for life. Although the cells utilize several ways to establish their identity, "we found a new marker," Brunet said.
Peter Scacheri, an epigenomologist at Case Western Reserve University, commented highly on the paper: "I think it will shake the research community, and while many other scientists have been studying the H3K4me3 marker, they think the marker distinguishes all Of the cell types are so alarming.The detection of these markers is so easy that the study found that it enabled people to quickly identify a few cell types that would be useful in cases such as cancer diagnosis.
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