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P<font color='red'>NAS</font>:低糖飲食能夠延緩眼部衰老疾病的發生
最近一項小鼠水平的研究指出,低糖飲食可以緩解衰老導致的視覺退化(AMD)的癥狀。在總體卡路里水平相當的前提下,高血糖飲食釋放到血液中的糖分的速率明顯要高于低糖飲食。[查看]
http://m.baichuan365.com/Article/pnasdtysngyhybsljbdf_1.html
P<font color='red'>NAS</font>:躁郁癥的內在分子機制
最近,一項由多個研究所的合作研究結果揭示了鋰元素在治療躁郁癥患者中的分子機制。這項研究發表在《PNAS》雜志上,他們利用人源的誘導多能性干細胞追蹤了鋰元素反應的信號通路,并對躁郁癥的發病機制有了更進一步的理解。[查看]
http://m.baichuan365.com/Article/pnaszyzdnzfzjz_1.html
Cell:古老的酶AMCase保護哺乳動物免受肺部疾病
幾丁質廣泛地存在于幾乎所有生物體內,如螃蟹腿、蝦殼、真菌細胞壁等。酸性哺乳動物幾丁質酶(acidic mammalian chitinase, AMCase)是一種古老的能分解幾丁質的酶。在一項新的研究中,來自美國加州大學舊金山分校的研究人員發現幾丁質促進肺部疾病產生,同時還發現AMCase可以延緩/預防這些疾病的發生,從而潛在地有助人們開發一系列治療肺部疾病的藥物。[查看]
http://m.baichuan365.com/Article/cellgldmamcasebhbrdw_1.html
P<font color='red'>NAS</font>:揭示記憶T細胞產生之謎
如今,在一項新的研究中,來自美國密蘇里大學醫學院的研究人員鑒定出在記憶T細胞中運行的一種分子機制,經操縱后,這種機制可能在體內產生和維持更多的記憶T細胞。[查看]
http://m.baichuan365.com/Article/pnasjsjytxbcszm_1.html
P<font color='red'>NAS</font>:首次利用CRISPR-Cas9對古生菌進行基因組編輯
在一項新的研究中,來自美國伊利諾伊大學厄巴納-香檳分校的微生物學教授Bill Metcalf和博士后研究員Dipti Nayak首次記錄了在古生菌(Archaea,也譯作古細菌,或古菌)中使用CRISPR-Cas9介導的基因組編輯。他們的突破性工作有潛力在未來極大地加快研究這類有機體,包括對全球氣候變化的影響。[查看]
http://m.baichuan365.com/Article/pnassclycrisprcas9dg_1.html
P<font color='red'>NAS</font>:如何利用簡單的血液檢測來診斷癌癥?
最近,一項發表在國際雜志Proceedings of the National Academy of Sciences上的研究報告中,來自普渡大學的研究人員通過研究表示,醫生們未來或有望利用簡單的血液檢測來診斷和監測患者的癌癥,從而或許就能夠降低或消除一些侵入性手段的使用,文章中,研究者在血漿中鑒別出了一系列蛋白質,當這些蛋白水平升高時就意味著患者會患上癌癥。[查看]
http://m.baichuan365.com/Article/pnasrhlyjddxyjclzdaz_1.html
人類被太空輻射后基因會產生變化
據《自然》雜志官方網站報道,美國宇航局NASA對一對雙胞胎宇航員進行了長達一年的身體研究,結果表明,太空旅行會導致人類基因表達發生異常變化,染色體端粒將會變長。[查看]
http://m.baichuan365.com/Article/rlbtkfshjyhcsbh_1.html
P<font color='red'>NAS</font>:海螺毒液成分或可成為代替鴉片的止痛藥
最近一項研究發現:海螺分泌的毒液中有一種成分能夠緩解疼痛,而且該化合物的作用機制與傳統的鴉片類止痛劑并不相同。[查看]
http://m.baichuan365.com/Article/pnashldycfhkcwdtypdz_1.html
膠原酶-組織消化必備利器
 膠原酶,英文名collagenase,是組織消化中常用的酶。西寶生物提供Worthington的膠原酶,詳情致電400-021-8158![查看]
http://m.baichuan365.com/Article/jymzzxhbblq_1.html
P<font color='red'>NAS</font>:單分子成像:結構生物學的未來
自從解析出DNA的三維結構后,結構生物學幫助科學家們解析出了更多的生物大分子的結構,解決了很多生物學的根基上的問題。然而,結構生物學的發展受到了技術層面上的重大瓶頸。新技術的出現,將對結構生物學的發展帶了跨越式的進展。[查看]
http://m.baichuan365.com/Article/pnasdfzcxjgswxdwl_1.html
P<font color='red'>NAS</font>:科學家證實:誘導多能干細胞并不會增加遺傳突變發生的概率
10多年前,日本科學家山中伸彌和其學生通過研究開發出了一種突破性的技術,能夠將任何一種成體細胞轉化成為多能干細胞,隨后再使得這種新生的多能干細胞分化成為機體中不同類型的細胞。近日,一項刊登在國際雜志Proceedings of the National Academy of Sciences上的研究報告中,來自美國國家基因組研究所的研究人員通過研究表示,相比亞克隆復制的細胞而言,iPSCs似乎并不太會產生過多突變[查看]
http://m.baichuan365.com/Article/pnaskxjzsyddngxbbbhz_1.html
P<font color='red'>NAS</font>:突破!科學家發現抗癌新方法!
日前,來自南安普敦大學的研究人員通過研究發現了機體免疫系統能夠識別并且有效抵御癌癥的重要途徑,相關研究刊登于國際雜志Proceedings of the National Academy of Sciences上。 文章中,研究者發現了一種名為Akt的關鍵蛋白,該蛋白對于機體識別癌癥的途徑非常關鍵,機體的免疫系統中包括毒性T細胞,這種類型的T細胞能夠主動尋找并且摧毀機體感染或者癌癥,當毒性T細胞處理機體面臨的危險時,大部分細胞都會死亡,剩下的T細胞就會轉化成為記憶細胞,當相同危險再次襲擊機體時這些記憶細胞[查看]
http://m.baichuan365.com/Article/pnastpkxjfxkaxff_1.html
P<font color='red'>NAS</font>:持續感染如何為機體提供長期免疫保護?新研究揭示其中原因
來自華盛頓大學醫學院的研究人員通過對利什曼病進行研究,為長期感染與長期免疫之間存在的看似矛盾的聯系找到了一個解釋。這種熱帶疾病每年殺死數萬人。通過持續提醒免疫系統引起利什曼病的寄生蟲長什么樣子,持續感染能夠讓免疫系統保持警覺,對抗新的入侵者[查看]
http://m.baichuan365.com/Article/pnascxgrrhwjttgcqmyb_1.html
Science & P<font color='red'>NAS</font>:重大突破!科學家首次在細菌中發現朊病毒樣蛋白
朊病毒(Prions)是一種被認為能夠引發諸如瘋牛病等大腦退行性疾病的感染性因子,如今研究人員在細菌中或許也發現了朊病毒的蹤跡。[查看]
http://m.baichuan365.com/Article/sciencepnaszdtpkxjsc_1.html
P<font color='red'>NAS</font>:科學家開發出制造高效流感疫苗的新型有效方法
日前,一項發表在國際雜志PNAS上的研究報告中,來自威斯康星-麥迪遜大學獸醫學院的研究人員通過研究開發了一種新技術,該技術能夠改善保護機體免于B型流感病毒感染的疫苗的開發。這項最新技術利用了B型流感疫苗病毒的“骨干”(backbone),其能夠幫助疫苗制造者利用哺乳動物細胞培養液制造出較高水平的病毒疫苗,這明顯優于利用雞胚制造出的疫苗。同時研究者還能夠利用這種病毒“骨干”作為模板添加疫苗-病毒-特殊的組分,從而就能夠為人體提供抵御所有B型流感病毒譜系的保護作用。[查看]
http://m.baichuan365.com/Article/pnaskxjkfczzgxlgymdx_1.html
記錄總數:297 | 頁數:20  <...11121314151617181920  
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Glucose Dehydrogenase (NAD Dependent)
Glucose Dehydrogenase (NAD Dependent)
Glucose-6-Phosphate Dehydrogenase
Glucose-6-Phosphate Dehydrogenase
Hexokinase
Hexokinase
Proteinase K
Proteinase K
Glycerol Kinase Amano2
Glycerol Kinase Amano2
Cholesterol Dehydrogenase Amano 5
Cholesterol Dehydrogenase Amano 5
Glucose Dehydrogenase Amano 2
Glucose Dehydrogenase Amano 2
Lactate Dehydrogenase Amano 3
Lactate Dehydrogenase Amano 3
Malate Dehydrogenase Amano 3
Malate Dehydrogenase Amano 3
Penicillinase
Penicillinase
Penicillinase Bulk Powder
Penicillinase Bulk Powder
Lactate 2-Monooxygenase (Lactate oxidase), Grade I,from Aerococcus viridans, expressed in E. coli, lyophilizate
Lactate 2-Monooxygenase (Lactate oxidase), Grade I,from Aerococcus viridans, expressed in E. coli, lyophilizate
Lactate 2-Monooxygenase (Lactate oxidase), Grade II,from Aerococcus viridans, expressed in E. coli, lyophilizate
Lactate 2-Monooxygenase (Lactate oxidase), Grade II,from Aerococcus viridans, expressed in E. coli, lyophilizate
Lactate 2-Monooxygenase (Lactateoxidase),from Pediococcus species, lyophilizate
Lactate 2-Monooxygenase (Lactateoxidase),from Pediococcus species, lyophilizate
Mab<CK-MM> Mix creatinine kinase isoenzyme MM
Mab Mix creatinine kinase isoenzyme MM
Creatine Kinase-MM Monoclonal Antibody (14.15)
Creatine Kinase-MM Monoclonal Antibody (14.15)
Creatine Kinase-MM Monoclonal Antibody (14.5)
Creatine Kinase-MM Monoclonal Antibody (14.5)
Creatine Kinase-MM Monoclonal Antibody (14.52)
Creatine Kinase-MM Monoclonal Antibody (14.52)