1.Research progress on chemical constituents,pharmacological action and clinical application of Rubi fructus
Ping PAN ; Mengting CHEN ; Aoxiang LI ; Hongjang CHEN ; Yiyuan LUO
China Pharmacist 2024;27(1):155-170
Rubi fructus mainly contains contents of flavonoids,coumarins,phenolic acids,polysaccharides,alkaloids and trace elements.Meanwhile,it has activity effects of anti-tumor,anti-oxidation,anti-aging and anti-inflammation,and is widely used in medicine,food,health food and other fields.Research progress on chemical constituents,pharmacological action and clinical application of Rubi fructus were summarized in this paper,in order to provide the theoretical guidance for the rational use of Rubi fructus and the sustainable development of the resources.
2. The Relationship Between the Gut Microbiome and Neurodegenerative Diseases
Xueling ZHU ; Bo LI ; Pengcheng LOU ; Tingting DAI ; Aoxiang ZHUGE ; Yin YUAN ; Lanjuan LI ; Xueling ZHU ; Bo LI ; Pengcheng LOU ; Tingting DAI ; Aoxiang ZHUGE ; Yin YUAN ; Lanjuan LI ; Yang CHEN
Neuroscience Bulletin 2021;37(10):1510-1522
Many recent studies have shown that the gut microbiome plays important roles in human physiology and pathology. Also, microbiome-based therapies have been used to improve health status and treat diseases. In addition, aging and neurodegenerative diseases, including Alzheimer's disease and Parkinson's disease, have become topics of intense interest in biomedical research. Several researchers have explored the links between these topics to study the potential pathogenic or therapeutic effects of intestinal microbiota in disease. But the exact relationship between neurodegenerative diseases and gut microbiota remains unclear. As technology advances, new techniques for studying the microbiome will be developed and refined, and the relationship between diseases and gut microbiota will be revealed. This article summarizes the known interactions between the gut microbiome and neurodegenerative diseases, highlighting assay techniques for the gut microbiome, and we also discuss the potential therapeutic role of microbiome-based therapies in diseases.
3.The Relationship Between the Gut Microbiome and Neurodegenerative Diseases.
Xueling ZHU ; Bo LI ; Pengcheng LOU ; Tingting DAI ; Yang CHEN ; Aoxiang ZHUGE ; Yin YUAN ; Lanjuan LI
Neuroscience Bulletin 2021;37(10):1510-1522
Many recent studies have shown that the gut microbiome plays important roles in human physiology and pathology. Also, microbiome-based therapies have been used to improve health status and treat diseases. In addition, aging and neurodegenerative diseases, including Alzheimer's disease and Parkinson's disease, have become topics of intense interest in biomedical research. Several researchers have explored the links between these topics to study the potential pathogenic or therapeutic effects of intestinal microbiota in disease. But the exact relationship between neurodegenerative diseases and gut microbiota remains unclear. As technology advances, new techniques for studying the microbiome will be developed and refined, and the relationship between diseases and gut microbiota will be revealed. This article summarizes the known interactions between the gut microbiome and neurodegenerative diseases, highlighting assay techniques for the gut microbiome, and we also discuss the potential therapeutic role of microbiome-based therapies in diseases.
Alzheimer Disease/therapy*
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Gastrointestinal Microbiome
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Humans
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Microbiota
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Neurodegenerative Diseases/therapy*
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Parkinson Disease/therapy*