Tasaki Ken
Tomorrow Water, 1225 N. Patt, Anaheim, CA, 92801, USA.
Bioresour Bioprocess. 2021 Jul 12;8(1):60. doi: 10.1186/s40643-021-00406-1.
Protein is becoming an increasingly important resource for a variety of commercial applications. Yet, a large volume of protein is being wasted. Notably, livestock manure solids have a significant content of protein which is not only underutilized, but prone to runoff and eventual breakdown to reactive nitrogen compounds, contributing to eutrophication. It would be desirable to remove protein before it causes environmental hazards and then convert it to value-added commercial applications. We have developed a novel thermal hydrolysis process (THP) to extract crude protein from livestock manure solid, or manure digestate solid (MDS) in particular, without the use of any chemical. We demonstrate the versatility of our new process to control the molecular weight (MW) distribution of the extracted protein hydrolysate (PH). The antioxidant activity of the crude protein hydrolysate (CPH) has been examined through Oxygen Radical Absorbance Capacity Assay. The results have shown that our CPH had its antioxidant capacity against the peroxyl radical similar to that of vitamin E and exhibited almost 7 times as strong inhibition against the hydroxyl radical as vitamin E. We also evaluated the nutritional value of our PH by analyzing its amino acid composition and the MW distribution through amino acid analysis, SDS-PAGE, and MALDI-TOF mass spectroscopy. The characterizations have revealed that the PH recovered from MDS had 2.5 times as much essential amino acids as soybean meal on dry matter basis, with the MW distribution ranging from over a 100 Da to 100 KDa. Finally, the protein powder was prepared from the extracted CPH solution and its composition was analyzed.
蛋白质正成为各种商业应用中越来越重要的资源。然而,大量蛋白质正在被浪费。值得注意的是,畜禽粪便固体中含有大量蛋白质,这些蛋白质不仅未得到充分利用,而且容易流失,并最终分解为活性氮化合物,导致富营养化。在蛋白质造成环境危害之前将其去除,然后将其转化为增值商业应用将是理想的。我们开发了一种新型热水解工艺(THP),用于从畜禽粪便固体,特别是粪便消化物固体(MDS)中提取粗蛋白,且不使用任何化学物质。我们展示了我们新工艺在控制提取的蛋白水解物(PH)分子量(MW)分布方面的多功能性。通过氧自由基吸收能力测定法检测了粗蛋白水解物(CPH)的抗氧化活性。结果表明,我们的CPH对过氧自由基的抗氧化能力与维生素E相似,对羟基自由基的抑制能力几乎是维生素E的7倍。我们还通过氨基酸分析、SDS-PAGE和MALDI-TOF质谱分析其氨基酸组成和MW分布,评估了我们的PH的营养价值。表征结果显示,从MDS中回收的PH在干物质基础上的必需氨基酸含量是豆粕的2.5倍,MW分布范围从100 Da以上到100 KDa。最后,从提取的CPH溶液中制备了蛋白粉并分析了其成分。