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Design and validation of a frugal, automated, solid-phase peptide synthesizer

机译:节俭,自动化,固相肽合成器的设计和验证

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Solid phase peptide synthesis (SPPS) has enabled widespread use of synthetic peptides in applications ranging from pharmaceuticals to materials science. The demand for synthetic peptides has driven recent efforts to produce automated SPPS synthesizers which utilize fluid-handling components common to chemistry laboratories to drive costs down to several thousand dollars. Herein, we describe the design and validation of a more ‘frugal’ SPPS synthesizer that uses inexpensive, consumer-grade fluid-handling components to achieve a prototype price point between US$300 and $600. We demonstrated functionality by preparing and characterizing peptides with a variety of distinct properties including binding functionality, nanoscale self-assembly, and oxidation-induced fluorescence. This system yielded micromoles of peptide at a cost of approximately $1/residue, a cost which may be further reduced by optimization and bulk purchasing.
机译:固相肽合成(SPP)能够在药物中的应用到材料科学的应用中广泛使用合成肽。 对合成肽的需求已经驱动了近期生产自动化SPP合成器的努力,该合成器利用化学实验室共同的流体处理组件来推动成本降至数千美元。 在此,我们描述了使用廉价的消费者级流体处理部件的更“节俭”SPP合成器的设计和验证,以实现300美元和600美元之间的原型价格点。 我们通过制备和表征具有各种不同性质的肽来证明功能性,包括结合官能度,纳米级自组装和氧化诱导的荧光。 该系统以约1美元/残余物的成本产生肽的微粒,通过优化和散装采购可以进一步降低成本。

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