Friedman Mendel, Tam Christina C, Kim Jong H, Escobar Sydney, Gong Steven, Liu Max, Mao Xuan Yu, Do Cindy, Kuang Irene, Boateng Kelvin, Ha Janica, Tran Megan, Alluri Srimanth, Le Tam, Leong Ryan, Cheng Luisa W, Land Kirkwood M
Healthy Processed Foods Research Unit, Agricultural Research Service, United States Department of Agriculture, Albany, CA 94710, USA.
Foodborne Toxins Detection and Prevention Research Unit, Agricultural Research Service, United States Department of Agriculture, Albany, CA 94710, USA.
Foods. 2021 Jan 23;10(2):230. doi: 10.3390/foods10020230.
Trichomoniasis in humans, caused by the protozoal parasite is the most common non-viral sexually transmitted disease, while causes trichomonosis, an infection of the gastrointestinal tract and diarrhea in farm animals and domesticated cats. As part of an effort to determine the inhibitory effects of plant-based extracts and pure compounds, seven commercially available cherry tomato varieties were hand-peeled, freeze-dried, and pounded into powders. The anti-trichomonad inhibitory activities of these peel powders at 0.02% concentration determined using an in vitro cell assay varied widely from 0.0% to 66.7% against G3 (human); from 0.9% to 66.8% for C1 (feline); and from 0.0% to 81.3% for D1 (bovine). The organic var. (D) peels were the most active against all three trichomonads, inhibiting 52.2% (G3), 66.8% (C1), and 81.3% (D1). Additional assays showed that none of the powders inhibited the growth of foodborne pathogenic bacteria, pathogenic fungi, or non-pathogenic lactobacilli. Tomato peel and pomace powders with high content of described biologically active compounds could serve as functional food and feed additives that might help overcome adverse effects of wide-ranging diseases and complement the treatment of parasites with the anti-trichomonad drug metronidazole.
由原生动物寄生虫引起的人类滴虫病是最常见的非病毒性性传播疾病,而该寄生虫会导致家畜和家养猫的胃肠道感染及腹泻。作为确定植物提取物和纯化合物抑制作用的一部分,对七个市售樱桃番茄品种进行手工去皮、冷冻干燥并研磨成粉末。使用体外细胞试验测定这些果皮粉末在0.02%浓度下对阴道毛滴虫G3株(人类)的抗滴虫抑制活性差异很大,从0.0%到66.7%不等;对猫三毛滴虫C1株为0.9%到66.8%;对牛三毛滴虫D1株为0.0%到81.3%。有机品种(D)的果皮对所有三种滴虫最具活性,分别抑制52.2%(G3)、66.8%(C1)和81.3%(D1)。额外的试验表明,这些粉末均未抑制食源性病原体细菌、致病真菌或非致病性乳酸杆菌的生长。含有所述生物活性化合物的高含量番茄果皮和果渣粉末可作为功能性食品和饲料添加剂,可能有助于克服多种疾病的不良影响,并辅助使用抗滴虫药物甲硝唑治疗寄生虫病。