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Identification and Quantitation of Cashmere (Pashmina) Fiber and Wool Using Novel Microchip Based Real-Time PCR Technology

机译:新型基于Microchip的实时PCR技术鉴定和定量羊绒(羊绒)纤维和羊毛

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The textile industrial chain all over the world is facing a challenge of differentiating cashmere fiber from mixture of wool and other fibers in case cashmere stocks are adulterated with wool or other fibers. For identification of cashmere in such mixtures, the development of microchip based real-time PCR technology offers a very sensitive, specific, and accurate solution. The technology has been validated with cashmere and wool samples procured from distant farms, and from cashmere goats and sheep of different age and sex. Model samples with incremental raw cashmere or wool content were tested. The experimentally determined content was found to be comparable to the weighed content of the respective fibers in the samples. This technology may prove a cost cutter since it needs only 1.2 μl of the PCR reagent mix. It is substantially faster than traditional real-time PCR systems for being carried as miniature reaction volume in metal microchip. These features allow faster thermal equilibrium and thermal uniformity over the entire array of microreactors. For routine tests or in commercial set up, the microchips are available as ready-to-run with lyophilized reagents in its microreactors to which only 1 μl of the 10-fold diluted isolated DNA sample is added. The lyophilized microchips offer user-friendly handling in testing laboratories and help minimize human error.
机译:全世界的纺织产业链都面临着将羊绒纤维与羊毛和其他纤维的混合物区分开的挑战,以防羊绒原料掺入羊毛或其他纤维。为了鉴定这种混合物中的羊绒,基于微芯片的实时PCR技术的发展提供了一种非常灵敏,特异和准确的解决方案。该技术已通过从遥远的农场以及不同年龄和性别的羊绒山羊和绵羊采购的羊绒和羊毛样品进行了验证。测试了具有增加的原始羊绒或羊毛含量的模型样品。发现实验确定的含量与样品中各纤维的称量含量相当。由于该技术仅需要1.2μlPCR试剂混合物,因此可以证明是一种节省成本的方法。作为金属微芯片中微型反应体积的载体,它比传统的实时PCR系统快得多。这些特征允许在整个微反应器阵列上更快的热平衡和热均匀性。对于常规测试或商业设置,微芯片可在其微反应器中与冻干试剂一起准备运行,仅向其中添加1μl10倍稀释的分离的DNA样品。冻干的微芯片在测试实验室中提供了用户友好的处理方式,有助于最大程度地减少人为错误。

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