Network pharmacology is a new discipline based on the theory of systems biology and network analysis of biological systems to design the drugs.It comprehensively observes the intervention and influence of drugs on the...Network pharmacology is a new discipline based on the theory of systems biology and network analysis of biological systems to design the drugs.It comprehensively observes the intervention and influence of drugs on the disease network,and reveals the mystery of multi-molecular drugs synergistically acting on disease.These concepts reflect the ideas of multi-component,multi-target and system regulation,and have many similarities with the research ideas of traditional Chinese medicine,which focuses on syndrome differentiation and treatment,emphasizes the overall understanding of the etiology and pathogenesis.Network pharmacology can be used to predict and identify the target and active component of traditional herbal medicine,to clarify the mechanism of action,to scientifically explain the rules of the prescription,to explore the rules of real-world prescription,to discover new indications and new active compounds,and to study drug relocation,etc.The applications of network pharmacology in traditional herbal medicine were systematically summarized to demonstrate the significant value in these areas.展开更多
Hyperexcitability of neural network is a key neurophysiological mechanism in several neurological disorders including epilepsy, neuropathic pain, and tinnitus. Although standard paradigm of pharmacological management ...Hyperexcitability of neural network is a key neurophysiological mechanism in several neurological disorders including epilepsy, neuropathic pain, and tinnitus. Although standard paradigm of pharmacological management of them is to suppress this hyperexcitability, such as having been exemplified by the use of certain antiepileptic drugs, their frequent refractoriness to drug treatment suggests likely different pathophysiological mechanism. Because the pathogenesis in these disorders exhibits a transition from an initial activity loss after injury or sensory deprivation to subsequent hyperexcitability and paroxysmal discharges, this process can be regarded as a process of functional compensation similar to homeostatic plasticity regulation, in which a set level of activity in neural network is maintained after injury-induced activity loss through enhanced network excitability. Enhancing brain activity, such as cortical stimulation that is found to be effective in relieving symptoms of these disorders, may reduce such hyperexcitability through homeostatic plasticity mechanism. Here we review current evidence of homeostatic plasticity in the mechanism of acquired epilepsy, neuropathic pain, and tinnitus and the effects and mechanism of cortical stimulation. Establishing a role of homeostatic plasticity in these disorders may provide a theoretical basis on their pathogenesis as well as guide the development and application of therapeutic approaches through electrically or pharmacologically stimulating brain activity for treating these disorders.展开更多
文摘Network pharmacology is a new discipline based on the theory of systems biology and network analysis of biological systems to design the drugs.It comprehensively observes the intervention and influence of drugs on the disease network,and reveals the mystery of multi-molecular drugs synergistically acting on disease.These concepts reflect the ideas of multi-component,multi-target and system regulation,and have many similarities with the research ideas of traditional Chinese medicine,which focuses on syndrome differentiation and treatment,emphasizes the overall understanding of the etiology and pathogenesis.Network pharmacology can be used to predict and identify the target and active component of traditional herbal medicine,to clarify the mechanism of action,to scientifically explain the rules of the prescription,to explore the rules of real-world prescription,to discover new indications and new active compounds,and to study drug relocation,etc.The applications of network pharmacology in traditional herbal medicine were systematically summarized to demonstrate the significant value in these areas.
基金supported in part by the NIH DA039530(to XJ)a grant from the CURE Epilepsy Foundation(to XJ)
文摘Hyperexcitability of neural network is a key neurophysiological mechanism in several neurological disorders including epilepsy, neuropathic pain, and tinnitus. Although standard paradigm of pharmacological management of them is to suppress this hyperexcitability, such as having been exemplified by the use of certain antiepileptic drugs, their frequent refractoriness to drug treatment suggests likely different pathophysiological mechanism. Because the pathogenesis in these disorders exhibits a transition from an initial activity loss after injury or sensory deprivation to subsequent hyperexcitability and paroxysmal discharges, this process can be regarded as a process of functional compensation similar to homeostatic plasticity regulation, in which a set level of activity in neural network is maintained after injury-induced activity loss through enhanced network excitability. Enhancing brain activity, such as cortical stimulation that is found to be effective in relieving symptoms of these disorders, may reduce such hyperexcitability through homeostatic plasticity mechanism. Here we review current evidence of homeostatic plasticity in the mechanism of acquired epilepsy, neuropathic pain, and tinnitus and the effects and mechanism of cortical stimulation. Establishing a role of homeostatic plasticity in these disorders may provide a theoretical basis on their pathogenesis as well as guide the development and application of therapeutic approaches through electrically or pharmacologically stimulating brain activity for treating these disorders.