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Rapid isolation of gluten-digesting bacteria from human stool and saliva by using gliadin-containing plates

机译:使用含麦醇溶蛋白的板从人粪便和唾液中快速分离出麸质消化细菌

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The number of individuals with gluten intolerance has increased dramatically over the last years. To date, the only therapy for gluten intolerance is the complete avoidance of dietary gluten. To sustain a strictly gluten-free diet, however, is very challenging. Therefore, there is need for a non-dietary therapy. Any such treatment must appreciate that the immunogenic part of gluten are gliadin peptides which are poorly degraded by the enzymes of the gastrointestinal tract. Probiotic therapy and oral enzyme therapy containing gluten-degrading bacteria (GDB) and their gliadin-digesting enzymes are possible new approaches for the treatment of gluten intolerance, however effectively isolating GDB for these treatments is problematic. The goal of this study was to develop an easy technique to isolate GDB rapidly and efficiently with the hope it might lead to newer ways of developing either probiotics or traditional medicines to treat gluten intolerance. Several researchers have already isolated successfully GDB by using gluten minimal or limited agar plates. Although these plates can be used to isolate bacteria which can tolerate gluten, further assays are needed to investigate if the same bacteria can also digest gluten. The agar plates we developed can detect bacteria which cannot only tolerate gluten but are able to digest it as well. Therefore, we were able to combine two steps into one step. Using such technologies, we were able to isolate five GDB from saliva and stool, and identified three bacterial reference strains with gluten-degrading activity. The technique we developed to isolate bacteria with gluten-degrading activity is fast, effective, and easy to use. The GDB isolated by our technology could have potential as part of a probiotic or enzymatic therapy for people with gluten intolerance.
机译:近年来,患有麸质不耐症的人数急剧增加。迄今为止,面筋不耐受的唯一疗法是完全避免饮食中的面筋。然而,维持严格的无麸质饮食是非常具有挑战性的。因此,需要一种非饮食疗法。任何这样的处理都必须认识到,面筋的免疫原性部分是麦醇溶蛋白肽,其很难被胃肠道的酶降解。含有面筋降解细菌(GDB)及其麦醇溶酶的益生菌疗法和口服酶疗法可能是治疗面筋不耐症的新方法,但是有效分离GDB的方法存在问题。这项研究的目的是开发一种简单的技术来快速,有效地分离GDB,希望它可能会导致开发开发新的方法来开发益生菌或传统药物来治疗面筋不耐症。一些研究人员已经通过使用最小或有限的面筋琼脂平板成功分离出GDB。尽管这些板可用于分离可耐受面筋的细菌,但仍需要进一步的试验来研究相同的细菌是否也可以消化面筋。我们开发的琼脂平板可以检测不仅能耐受面筋而且还能够消化面筋的细菌。因此,我们能够将两个步骤组合为一个步骤。使用这种技术,我们能够从唾液和粪便中分离出五种GDB,并鉴定出三种具有面筋降解活性的细菌参考菌株。我们开发的用于分离具有面筋降解活性的细菌的技术快速,有效且易于使用。通过我们的技术分离出的GDB可能作为面筋不耐症患者的益生菌或酶促疗法的一部分。

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