Apigenin
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Chrysanthemum morifolium, Naringenin and Apigenin can alleviate depression-like behavior by interfering with specific metabolic pathways.
Apigenin Chrysanthemum Depression
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A metabolomic study on the anti-depressive effects of two active components from Chrysanthemum morifolium
2020 Jan 01 Artificial Cells, Nanomedicine, and Biotechnology Liu T, Zhou N, Xu R, Cao Y, Zhang Y, Liu Z, et al.
Experimental Study Animal Study Depression Chrysanthemum Naringenin ApigeninChrysanthemum morifolium, Naringenin and Apigenin can alleviate depression-like behavior by interfering with specific metabolic pathways.
Preparative Purification of Bioactive Compounds from Flos Chrysanthemi Indici and Evaluation of Its Antiosteoporosis Effect
2016 Jan Evidence-Based Complementary and Alternative Medicine Li J, Lin X, Zhang Y, Liu W, Mi X, Zhang J, et al.
Experimental Study Osteoporosis ChrysanthemumThe ethanol extract of FCI potentially counters bone loss in mice by enhancing osteoblast proliferation and differentiation, facilitated by multiple bioactive compounds.
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Chrysanthemum morifolium, Naringenin and Apigenin can alleviate depression-like behavior by interfering with specific metabolic pathways.
2020 Artificial Cells, Nanomedicine, and Biotechnology A metabolomic study on the anti-depressive effects of two active components from Chrysanthemum morifolium Liu T, Zhou N, Xu R, Cao Y, Zhang Y, Liu Z, et al.
Experimental Study Chrysanthemum Depression Naringenin
In this study, the researchers decided to evaluate the impact of Chrysanthemum morifolium, Naringenin, and Apigenin on depression-like behaviors instigated specifically by corticosterone. These substances, which are the primary active ingredients in the aqueous extract of C. morifolium and are used in Traditional Chinese Medicine, were analyzed regarding their therapeutic properties for depression. Researchers analyzed behavior and biochemical indicators tied to depression to understand the effects of these substances on a modeled depression scenario.
In the discussion of results, the authors highlight that these substances demonstrated antidepressant properties through their interference with certain metabolic pathways. These pathways include tryptophan metabolism, arginine and proline metabolism, citrate cycle, niacin and niacinamide metabolism, phenylalanine metabolism, and alanine, aspartate and glutamate metabolism. The effects were further explained on the basis of material and energy metabolism. Moreover, it was noted that Naringenin could potentially be used as a replacement for Chrysanthemum morifolium with similar beneficial outcomes; while Apigenin paralleled the function of other positive drugs targeting depression.
The ethanol extract of FCI potentially counters bone loss in mice by enhancing osteoblast proliferation and differentiation, facilitated by multiple bioactive compounds.
2016 Evidence-Based Complementary and Alternative Medicine Preparative Purification of Bioactive Compounds from Flos Chrysanthemi Indici and Evaluation of Its Antiosteoporosis Effect Li J, Lin X, Zhang Y, Liu W, Mi X, Zhang J, et al.
Experimental Study Chrysanthemum Osteoporosis
In this study, the researchers scrutinized the antiosteoporosis potential of the ethanol extract of FCI in mice experiencing bone loss due to ovariectomy, a process likened to human menopause. In the process, the antiosteoporosis fraction derived from FCI was isolated and cleansed using a technique known as high-speed countercurrent chromatography, which resulted in the successful isolation of the principle bioactive compounds.
The researchers found that, among the separations, the ethyl acetate fraction exhibited remarkable antiosteoporosis activity. Upon further analysis, the foremost compounds were identified as acacetin, apigenin, luteolin, and linarin. Furthermore, these compounds were found to stimulate the proliferation and differentiation of osteoblasts - the cells responsible for bone formation. The process was potentially mediated by the activation of the AKT signaling pathway and the upregulation of certain genes such as Runx2, OCN, OPN, and COL I. The collective efforts of these bioactive compounds played a crucial role in the observed antiosteoporosis effects, suggesting that the effectiveness of FCI is not reliant on a single component, but an ensemble of elements working in tandem.
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Presentation Slides
Experimental Study
Chrysanthemum morifolium, Naringenin and Apigenin can alleviate depression-like behavior by interfering with specific metabolic pathways.
Liu T, Zhou N, Xu R, Cao Y, Zhang Y, Liu Z, Zheng X, Feng W
Experimental Study
The ethanol extract of FCI potentially counters bone loss in mice by enhancing osteoblast proliferation and differentiation, facilitated by multiple bioactive compounds.
Li J, Lin X, Zhang Y, Liu W, Mi X, Zhang J, Su J
Executive Summary
Write an executive summary in the form of a blog article on the topic of "Research into Chinese medicine treatment for Apigenin" summarising the research below and using language that can be easily understood by patients and avoiding medical jargon using a professional and caring tone of voice.
Write an executive summary in the form of a blog article on the topic of "Researched Chinese medicine treatments for Apigenin" summarising the research below in an objective and easy to understand way, and using language that can be easily understood by patients. Group the article into Chinese medicine treatments first, followed by nutrition and other treatments. Avoid using medical jargon and use a professional and caring tone of voice.
Write me a concise but easy to understand executive summary on the topic of "Chinese medicine treatments for Apigenin" based on the following research that I will give you. Your summary should be 2 paragraphs long in Australian English spelling and include references to the studies.
A Experimental Study published in 2020 in the journal Artificial Cells, Nanomedicine, and Biotechnology found that Chrysanthemum morifolium, Naringenin and Apigenin can alleviate depression-like behavior by interfering with specific metabolic pathways. In this study, the researchers decided to evaluate the impact of Chrysanthemum morifolium, Naringenin, and Apigenin on depression-like behaviors instigated specifically by corticosterone. These substances, which are the primary active ingredients in the aqueous extract of C. morifolium and are used in Traditional Chinese Medicine, were analyzed regarding their therapeutic properties for depression. Researchers analyzed behavior and biochemical indicators tied to depression to understand the effects of these substances on a modeled depression scenario. In the discussion of results, the authors highlight that these substances demonstrated antidepressant properties through their interference with certain metabolic pathways. These pathways include tryptophan metabolism, arginine and proline metabolism, citrate cycle, niacin and niacinamide metabolism, phenylalanine metabolism, and alanine, aspartate and glutamate metabolism. The effects were further explained on the basis of material and energy metabolism. Moreover, it was noted that Naringenin could potentially be used as a replacement for Chrysanthemum morifolium with similar beneficial outcomes; while Apigenin paralleled the function of other positive drugs targeting depression.
A Experimental Study published in 2016 in the journal Evidence-Based Complementary and Alternative Medicine found that The ethanol extract of FCI potentially counters bone loss in mice by enhancing osteoblast proliferation and differentiation, facilitated by multiple bioactive compounds. In this study, the researchers scrutinized the antiosteoporosis potential of the ethanol extract of FCI in mice experiencing bone loss due to ovariectomy, a process likened to human menopause. In the process, the antiosteoporosis fraction derived from FCI was isolated and cleansed using a technique known as high-speed countercurrent chromatography, which resulted in the successful isolation of the principle bioactive compounds. The researchers found that, among the separations, the ethyl acetate fraction exhibited remarkable antiosteoporosis activity. Upon further analysis, the foremost compounds were identified as acacetin, apigenin, luteolin, and linarin. Furthermore, these compounds were found to stimulate the proliferation and differentiation of osteoblasts - the cells responsible for bone formation. The process was potentially mediated by the activation of the AKT signaling pathway and the upregulation of certain genes such as Runx2, OCN, OPN, and COL I. The collective efforts of these bioactive compounds played a crucial role in the observed antiosteoporosis effects, suggesting that the effectiveness of FCI is not reliant on a single component, but an ensemble of elements working in tandem.
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