氧化铁可以促进产甲烷菌的代谢活动,从而加快厌氧消化体系的产甲烷速率。通过设计3组反应器,探究了不同的氧化铁添加方式对餐厨垃圾厌氧消化产甲烷的影响:包括空白组A(餐厨垃圾+厌氧污泥),以及2个实验组B(餐厨垃圾+厌氧污泥,48 h后投加...氧化铁可以促进产甲烷菌的代谢活动,从而加快厌氧消化体系的产甲烷速率。通过设计3组反应器,探究了不同的氧化铁添加方式对餐厨垃圾厌氧消化产甲烷的影响:包括空白组A(餐厨垃圾+厌氧污泥),以及2个实验组B(餐厨垃圾+厌氧污泥,48 h后投加氧化铁)和C(餐厨垃圾+厌氧污泥+氧化铁)。结果表明:反应器A酸化严重,进入长期产甲烷抑制状态;反应器B可以解除酸抑制,恢复体系产甲烷能力,但需要较长的启动期;反应器C则能较快达到产甲烷阶段。此外,截止到第54天实验结束,反应器C的累积产甲烷量(48 349 m L)高于B(35 665 m L)。对于餐厨垃圾厌氧消化,投加氧化铁可解除体系酸抑制,恢复其产甲烷能力。而在厌氧消化初期加入氧化铁可以更快地解除酸抑制,并促成更高的产甲烷速率。展开更多
AIM: To investigate the impact of arachidonic acid (AA) and docosahexaenoic acid (DHA) and their combination on colon cancer cell growth. METHODS: The LS-174T colon cancer cell line was used to study the role of...AIM: To investigate the impact of arachidonic acid (AA) and docosahexaenoic acid (DHA) and their combination on colon cancer cell growth. METHODS: The LS-174T colon cancer cell line was used to study the role of the prostaglandin precursor AA and the omega-3 polyunsaturated fatty acid DHA on cell growth. Cell viability was assessed in XTT assays. For analysis of cell cycle and cell death, flow cytometry and DAPI staining were applied. Expression of cyclooxygenase-2 (COX-2), p21 and bcl-2 in ceils incubated with AA or DHA was examined by real-time RT-PCR. Prostaglandin E2 (PGE2) generation in the presence of AA and DHA was measured using a PGE2- ELISA. RESULTS: AA increased cell growth, whereas DHA reduced viability of LS 174T cells in a time- and dosedependent manner. Furthermore, DHA down- regulated mRNA of bcl-2 and up-regulated p21. Interestingly, DHA was able to suppress AA-induced cell proliferation and significantly lowered AA-derived PGE2 formation. DHA also down-regulated COX-2 expression. In addition to the effect on PGE2 formation, DHA directly reduced PGE2-induced cell proliferation in a dosedependent manner. CONCLUSION: These results suggest that DHA can inhibit the pro-proliferative effect of abundant AA or PGE2.展开更多
文摘氧化铁可以促进产甲烷菌的代谢活动,从而加快厌氧消化体系的产甲烷速率。通过设计3组反应器,探究了不同的氧化铁添加方式对餐厨垃圾厌氧消化产甲烷的影响:包括空白组A(餐厨垃圾+厌氧污泥),以及2个实验组B(餐厨垃圾+厌氧污泥,48 h后投加氧化铁)和C(餐厨垃圾+厌氧污泥+氧化铁)。结果表明:反应器A酸化严重,进入长期产甲烷抑制状态;反应器B可以解除酸抑制,恢复体系产甲烷能力,但需要较长的启动期;反应器C则能较快达到产甲烷阶段。此外,截止到第54天实验结束,反应器C的累积产甲烷量(48 349 m L)高于B(35 665 m L)。对于餐厨垃圾厌氧消化,投加氧化铁可解除体系酸抑制,恢复其产甲烷能力。而在厌氧消化初期加入氧化铁可以更快地解除酸抑制,并促成更高的产甲烷速率。
基金Supported by Grants from the German National Academic Foundation (to P.H.)from the American Cancer Society (RSG-03-140-01-CNE)+2 种基金the NIH (NIH R01 113605) (both to J.X.K.)the German Research Foundation (DFG)a Charité Research Grant (both to K.H.W.)
文摘AIM: To investigate the impact of arachidonic acid (AA) and docosahexaenoic acid (DHA) and their combination on colon cancer cell growth. METHODS: The LS-174T colon cancer cell line was used to study the role of the prostaglandin precursor AA and the omega-3 polyunsaturated fatty acid DHA on cell growth. Cell viability was assessed in XTT assays. For analysis of cell cycle and cell death, flow cytometry and DAPI staining were applied. Expression of cyclooxygenase-2 (COX-2), p21 and bcl-2 in ceils incubated with AA or DHA was examined by real-time RT-PCR. Prostaglandin E2 (PGE2) generation in the presence of AA and DHA was measured using a PGE2- ELISA. RESULTS: AA increased cell growth, whereas DHA reduced viability of LS 174T cells in a time- and dosedependent manner. Furthermore, DHA down- regulated mRNA of bcl-2 and up-regulated p21. Interestingly, DHA was able to suppress AA-induced cell proliferation and significantly lowered AA-derived PGE2 formation. DHA also down-regulated COX-2 expression. In addition to the effect on PGE2 formation, DHA directly reduced PGE2-induced cell proliferation in a dosedependent manner. CONCLUSION: These results suggest that DHA can inhibit the pro-proliferative effect of abundant AA or PGE2.