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~(31)P-nuclear magnetic resonance spectroscopic analysis of phosphorus in oat and barley β-glucans

机译:〜(31)P-核磁共振波谱分析燕麦和大麦中β-葡聚糖中的磷

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Oat and barley β-glucans were isolated from their respective concentrates that were prepared through a novel technology, containing total phosphorus at 0.920 and 0.170%, w/w, respectively. The highest purity of oat and barley β-glucans achieved was 97 and 90%, w/w (db), respectively. Purified oat and barley β-glucans contained 21.8 and 54.1%, w/w, respectively, of the total phosphorus present in the corresponding β-glucan concentrates. On a weight basis, the total phosphorus content in purified oat and barley β-glucans was 0.201 (degree of substitution (DS) = 0.011) and 0.092% (DS = 0.005), respectively. ~(31)P NMR of both types of β-glucans showed the presence of inner C-6 carbon bound phosphomonoesters and an unknown form of phosphorus, possibly phospholipids and/or phosphoproteins. In addition to these phosphorus forms, barley β-glucan sample contained pyrophosphate for which the origin was unknown. Although a substantial amount of phytate phosphorus (0.745 and 0.103%, w/w, for oat and barley, respectively) was present in both types of β-glucan concentrates, this form of phosphorus was absent in the purified β-glucan as evidenced by ~(31)P NMR data. Aqueous extractability of oat β-glucan from purified sample at 37℃ was 6.6-fold higher than that of barley β-glucan at the same temperature. This may partly be attributed to the presence of more (46%) negatively charged phosphorus substitution in oat β-glucan than in barley.
机译:燕麦和大麦β-葡聚糖是从各自的浓缩物中分离出来的,这些浓缩物是通过一种新技术制备的,总磷含量分别为0.920和0.170%w / w。燕麦和大麦β-葡聚糖的最高纯度分别为w / w(db)的97%和90%。纯化的燕麦和大麦β-葡聚糖分别占相应β-葡聚糖浓缩物中总磷的21.8和54.1%(w / w)。以重量计,纯燕麦和大麦β-葡聚糖中的总磷含量分别为0.201(取代度(DS)= 0.011)和0.092%(DS = 0.005)。两种类型的β-葡聚糖的〜(31)P NMR均显示存在内部C-6碳键合的磷酸单酯和未知形式的磷,可能是磷脂和/或磷蛋白。除这些磷形式外,大麦β-葡聚糖样品还含有焦磷酸盐,其来源未知。尽管两种类型的β-葡聚糖浓缩物中都存在大量的植酸磷(分别为燕麦和大麦为0.745和0.103%,w / w),但纯化的β-葡聚糖中不存在这种形式的磷。 〜(31)P NMR数据。在相同温度下,纯化后的样品中燕麦β-葡聚糖在37℃下的水浸提率是大麦β-葡聚糖的6.6倍。这可能部分归因于燕麦β-葡聚糖比大麦中存在更多(46%)带负电的磷取代。

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