Objective:To study the energy pharmacology of aconite(Radix aconiti lateralis reparata).Methods:Literature induction method was applied to study the energy properties,energy pharmacological connotation,and energy phar...Objective:To study the energy pharmacology of aconite(Radix aconiti lateralis reparata).Methods:Literature induction method was applied to study the energy properties,energy pharmacological connotation,and energy pharmacological effects of aconite(Radix aconiti lateralis reparata).Results:The warm and hot properties of aconite(Radix aconiti lateralis reparata)are exactly its energy properties.The energy pharmacology of aconite(Radix aconiti lateralis reparata)is based on its energy properties,which is different from the modern aconite(Radix aconiti lateralis reparata)pharmacology that is based on the chemical composition of aconite(Radix aconiti lateralis reparata).In addition,the energy pharmacology of aconite(Radix aconiti lateralis reparata)includes not only the traditional energy pharmacology but also the modern energy pharmacology of aconite(Radix aconiti lateralis reparata).The traditional energy pharmacology of aconite(Radix aconiti lateralis reparata)is mainly manifested as the energy effect of aconite(Radix aconiti lateralis reparata)at the whole-body level,warm yang and dissipate cold,whereas the modern energy pharmacology of aconite(Radix aconiti lateralis reparata)is manifested as the physiological and pathological energy effect of warm and thermal energy properties of aconite(Radix aconiti lateralis reparata)at the tissue,cellular,and molecular levels of the body,mainly strengthening the heart,protecting cardiac muscles,dilating blood vessels,and having anti-arrhythmia,anti-shock,anti-inflammatory,analgesic,and antineoplastic effects.The traditional energy pharmacology and modern energy pharmacology of aconite(Radix aconiti lateralis reparata)constitute the basic connotation of aconite(Radix aconiti lateralis reparata)energy pharmacology.For the aconite(Radix aconiti lateralis reparata)energy pharmacology,there is a substantial foundation,its chemical components such as alkaloids.In addition,the toxicity of aconite(Radix aconiti lateralis reparata)is a manifestation of its energy pharmacology.Conclusion:aconite(Radix aconiti lateralis reparata)has energy properties that have substantial foundation.The energy pharmacology of aconite(Radix aconiti lateralis reparata)is based on its high energy and hot properties and includes the traditional energy pharmacology and modern energy pharmacology of aconite(Radix aconiti lateralis reparata).展开更多
Objective: The purpose of this research was to examine the potential anticancer properties of Xiao Tan San Jie Fang(XTSJF) and its potential mechanism of action against colorectal cancer. Materials and Methods: HCT116...Objective: The purpose of this research was to examine the potential anticancer properties of Xiao Tan San Jie Fang(XTSJF) and its potential mechanism of action against colorectal cancer. Materials and Methods: HCT116 cells were induced into HCT116 spheres in DMEM/F12 medium by treatment with epidermal growth factor + fibroblast growth factor + leukemia inhibitory factor + B27. The proliferation ability and stemness of HCT116 spheres was examined. Various concentrations of XTSJF were used to treat HCT116 spheres to observe the impact on proliferation, apoptosis, and expression of stem cell markers. Next, Wnt/β-catenin pathway-related factor proteins were detected. Results: The findings revealed that XTSJF suppressed cell growth and induced cell death in HCT116 cells in a dosage-dependent manner. Similarly, XTSJF promotes apoptosis, inhibits cell proliferation, prolongs survival, and maintains the expression of stem cells through the Wnt/-catenin/TCF4 axis. XTSJF also inhibits AKT activity and subsequently activates glycogen synthesis kinase-3β expression, inhibiting Wnt/beta-catenin pathway activity and downstream target gene transcript expression. The Wnt/β-catenin signaling pathway is inhibited by the XTSJF, leading to the suppression of colon cancer stem cell proliferation. Conclusion: Xiaotan Sanjie Prescription inhibited colon cancer stem cell growth through Wnt/β-catenin signaling pathway.展开更多
文摘Objective:To study the energy pharmacology of aconite(Radix aconiti lateralis reparata).Methods:Literature induction method was applied to study the energy properties,energy pharmacological connotation,and energy pharmacological effects of aconite(Radix aconiti lateralis reparata).Results:The warm and hot properties of aconite(Radix aconiti lateralis reparata)are exactly its energy properties.The energy pharmacology of aconite(Radix aconiti lateralis reparata)is based on its energy properties,which is different from the modern aconite(Radix aconiti lateralis reparata)pharmacology that is based on the chemical composition of aconite(Radix aconiti lateralis reparata).In addition,the energy pharmacology of aconite(Radix aconiti lateralis reparata)includes not only the traditional energy pharmacology but also the modern energy pharmacology of aconite(Radix aconiti lateralis reparata).The traditional energy pharmacology of aconite(Radix aconiti lateralis reparata)is mainly manifested as the energy effect of aconite(Radix aconiti lateralis reparata)at the whole-body level,warm yang and dissipate cold,whereas the modern energy pharmacology of aconite(Radix aconiti lateralis reparata)is manifested as the physiological and pathological energy effect of warm and thermal energy properties of aconite(Radix aconiti lateralis reparata)at the tissue,cellular,and molecular levels of the body,mainly strengthening the heart,protecting cardiac muscles,dilating blood vessels,and having anti-arrhythmia,anti-shock,anti-inflammatory,analgesic,and antineoplastic effects.The traditional energy pharmacology and modern energy pharmacology of aconite(Radix aconiti lateralis reparata)constitute the basic connotation of aconite(Radix aconiti lateralis reparata)energy pharmacology.For the aconite(Radix aconiti lateralis reparata)energy pharmacology,there is a substantial foundation,its chemical components such as alkaloids.In addition,the toxicity of aconite(Radix aconiti lateralis reparata)is a manifestation of its energy pharmacology.Conclusion:aconite(Radix aconiti lateralis reparata)has energy properties that have substantial foundation.The energy pharmacology of aconite(Radix aconiti lateralis reparata)is based on its high energy and hot properties and includes the traditional energy pharmacology and modern energy pharmacology of aconite(Radix aconiti lateralis reparata).
基金provided by the National Natural Science Foundation of China (81703967)Clinical Medical Science and Technology Development Fund Project of Jiangsu University (JLY2021134)。
文摘Objective: The purpose of this research was to examine the potential anticancer properties of Xiao Tan San Jie Fang(XTSJF) and its potential mechanism of action against colorectal cancer. Materials and Methods: HCT116 cells were induced into HCT116 spheres in DMEM/F12 medium by treatment with epidermal growth factor + fibroblast growth factor + leukemia inhibitory factor + B27. The proliferation ability and stemness of HCT116 spheres was examined. Various concentrations of XTSJF were used to treat HCT116 spheres to observe the impact on proliferation, apoptosis, and expression of stem cell markers. Next, Wnt/β-catenin pathway-related factor proteins were detected. Results: The findings revealed that XTSJF suppressed cell growth and induced cell death in HCT116 cells in a dosage-dependent manner. Similarly, XTSJF promotes apoptosis, inhibits cell proliferation, prolongs survival, and maintains the expression of stem cells through the Wnt/-catenin/TCF4 axis. XTSJF also inhibits AKT activity and subsequently activates glycogen synthesis kinase-3β expression, inhibiting Wnt/beta-catenin pathway activity and downstream target gene transcript expression. The Wnt/β-catenin signaling pathway is inhibited by the XTSJF, leading to the suppression of colon cancer stem cell proliferation. Conclusion: Xiaotan Sanjie Prescription inhibited colon cancer stem cell growth through Wnt/β-catenin signaling pathway.