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军团菌病菌检测试纸(破坏消化系统)

军团菌病菌检测试纸(破坏消化系统)

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军团菌病菌检测试纸(破坏消化系统)

广州健仑生物科技有限公司

广州健仑生物科技有限公司是集研制开发、销售、服务于一体的优良企业,公司产品涉及临床快速诊断试剂、食品安全检测试剂,违禁品快速检测,动物疾病防疫检测试剂,免疫诊断试剂、临床血液学和体液学检验试剂、微生物检验试剂、分子生物学检验试剂、临床生化试剂、有机试剂等众多领域,同时核心代理Panbio、FOCUS、Qiagen、IBL、CORTEZ、Fuller、Inbios、BinaxNOW、LumuQuick、日本富士、日本生研等多家有名诊断产品集团公司产品,致力于为商检单位、疾病预防控制中心、海关出入境检疫局、卫生防疫单位,缉毒系统,戒毒中心,检验检疫单位、生化企业、科研院所、医疗机构等机构与行业提供*、高品质的产品服务。此外,本公司还开展食品、卫生、环境、药品等多方面的第三方检测服务。

主要用途:用于检测尿样中嗜肺军团菌血清型1抗原,以支持军团菌感染的诊断。

产品规格:20T/盒

存储条件:2-30℃

军团菌病菌检测试纸(破坏消化系统)

我司还提供其它进口或国产试剂盒:登革热、疟疾、西尼罗河、立克次体、无形体、蜱虫、恙虫、利什曼原虫、RK39、汉坦病毒、深林脑炎流感、A链球菌、合胞病毒、腮病毒、乙脑、寨卡、黄热病、基孔肯雅热、克锥虫病、违禁品滥用、肺炎球菌、军团菌、化妆品检测、食品安全检测等试剂盒以及日本生研细菌分型诊断血清、德国SiFin诊断血清、丹麦SSI诊断血清等产品。

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【产品介绍】

货号产品名称产品描述产品规格保存条件
JL-ET01免疫捕获诺如病毒检测试剂盒用于检测粪便标本中的诺如病毒抗原,以支持诺如病毒感染的诊断。20T/盒2-30℃
JL-ET02免疫捕获军团菌检测试剂盒用于检测尿样中嗜肺军团菌血清型1抗原,以支持军团菌感染的诊断。20T/盒2-30℃
JL-ET03免疫捕获肺炎链球菌检测试剂盒用于检测尿标本中的肺炎链球菌抗原,以支持肺炎链球菌感染的诊断。20T/盒2-30℃

 

军团菌病菌检测试纸(破坏消化系统)

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【公司名称】 广州健仑生物科技有限公司
【】    杨永汉 
【】 
【腾讯 】 2042552662
【公司地址】 广州清华科技园创新基地番禺石楼镇创启路63号二期2幢101-3室

【企业文化】

轴突成分代谢更新以及突触小泡内神经递质,均在胞体内合成,通过轴突内微管、神经丝流向轴突末端。
神经元树突的末端可以接受其他神经传来的信号,并把信号传给神经元,病毒此是传入神经的末梢。而轴突的分枝可以把神经传给其他神经元或效应器,病毒此是传出神经的末梢。
电镜下,从轴丘到轴突全长可见有许多纵向平行排列的神经丝和神经微管,以及连续纵行的长管状的滑面内质网和一些多泡体等。在高倍电镜下,还可见在神经丝、神经微管之间均有极微细纤维网络连接,这种横向连接的极细纤维称为微小梁(microtrabecula)起支持作用。轴突末端还有突触小泡。
轴突运输(axonal transport)神经元的胞体和轴突在结构和功能上是一个整体,神经元代谢活动的物质多在胞体形成,神经元的整体生理活动物质代谢是由轴浆不断流动所实现。
研究证明:神经元胞质自胞体向轴突远端流动,同时从轴突远端也向胞体流动。这种方向不同、快慢不一的轴质双向流动称为轴突运输。从胞体向轴突远端的运输,由于运输方向与轴质流动的方向*故称为倾向运输(a病毒ograde transport),这种运输有快慢之分:快速运输,其速度为每天200~500mm,是将神经元胞体合成的神经递质的各类小泡和有关的酶类等经长管状的滑面内质网和沿微管表面流向轴突末端,待神经冲动时释放。慢速运输也称轴质流动(axoplasmic flow),其速度为每天1~4mm,主要是将神经元胞体合成的蛋白质,不断地向轴突末端流动,以更新轴质的基质、神经丝以及微管等结构蛋白质。逆向运输(retrograde transport)是轴突末端代谢产物和轴突末端通过人胞作用摄取的蛋白质、神经营养病毒子以及一些小分子物质等由轴突末端运向胞体,运输方向与轴质流动相反,故称为逆向运输,速度为每天l~4mm,这种运输主要是由多泡体实现。多泡体是一个大泡内含许多小泡,小泡内分别含有代谢产物或摄入的神经营养病毒子。

Axonal component metabolism and synaptic vesicles within the neurotransmitter, are synthesized in the cell body, through the axon microtubules, nerve filaments flow to the end of the axon.
Neuronal dendrites can accept the end of the signal from other nerves, and the signal to the neurons, the virus is the afferent nerve endings. Axon branching, on the other hand, can transmit nerves to other neurons or effectors, the virus that is the tip of the outgoing nerve.
Under electron microscope, there are many longitudinally parallel neurofilaments and microtubules in long axis from axon to axon, as well as the long tubular endoplasmic reticulum and some multiphosphates in continuous longitudinal. At high power electron microscopy, it is also seen that there is a very fine network of fibers between the neurofibers and the microtubules, which is called microtrabecula. There are synaptic vesicles at the end of the axon.
Axonal transport The neurons of the soma and axon are structurally and functionally integrated, and most of the substances that neurons metabolize are mostly formed in the soma. The overall metabolism of the neurons is controlled by the constant flow of the axoplasm .
Studies have shown that neuronal cytoplasm flows from the body to the distal axon and from the distal axon to the body. This different direction, varying speed of shaft two-way flow is called axonal transport. From the cell body to the distal axonal transport, due to the transport direction and axial flow direction is consistent so that the propensity to transport (a virus ograde transport), this transport is divided by speed: rapid transport, the speed of daily 200 ~ 500mm , Is the neuron cell body synthesis of neurotransmitters of various vesicles and related enzymes such as the long tubular endoplasmic reticulum and the flow along the microtubule end of the axon to be released when the nerve impulses. Slow transit, also known as axoplasmic flow, occurs at a rate of 1 to 4 mm per day, primarily through the synthesis of neuronal somatic proteins that continually flow to the ends of the axons to renew the axonal matrix, nerve filaments, and microtubules Tubes and other structural proteins. Reverse transport (retrograde transport) is a protein that is metabolized by the terminal axons and taken up by the end of the axon. Human neurotrophic virus and some small molecules are transported from the ends of the axons to the soma. The transport direction is opposite to the axial flow, It is called reverse transport, speed of l ~ 4mm per day, this transport is mainly achieved by more foam body. Multi-bubble is a large bubble containing many small vesicles, vesicles containing metabolites or intake of neurotrophic virions.

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