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Network Pharmacological Study of Radix Effect on Bone Trauma. | LitMetric

AI Article Synopsis

  • Bone trauma is a widespread issue needing effective treatment, and this study explores how Radix (ABR), an alternative medicine, works for bone healing.
  • Through extensive research, the study identified 176 components in ABR and 151 potential targets, with 21 specifically linked to bone trauma, highlighting key proteins like IL6 and MAPK pathways.
  • The findings indicate that ABR's benefits in bone trauma management involve various molecular mechanisms, suggesting multiple ways it influences the healing process.

Article Abstract

Purpose: Bone trauma is a clinical condition that afflicts the majority of the world's population. For the management of bone trauma, the underlying mechanisms of the drugs effective for bone healing are deemed necessary. Radix (ABR) is a popular alternative medicine recommended in the treatment of bone trauma and injury, yet its mechanism of action persists to be vague. This study was conducted for the evaluation of the mode of action of ABR through network pharmacology in treating bone trauma.

Methods: An extensive survey of published works led to the development of a drug-target database, after which multiple protein targets for bone trauma were discerned. The protein-protein interaction network was developed by utilizing the STITCH database and gene ontology (GO) enrichment analysis using Cytoscape and ClueGO. Moreover, docking studies were performed for revealing the affinity of various ingredients with IL6.

Results: The extensive literature survey yielded the presence of 176 components in ABR, and 151 potential targets were acquired. Scrutinization of these targets revealed that 21 potential targets were found to be associated with bone trauma. Out of which, some remarkable targets such as IL6, MAPK14, MAPK8, SRC, PTGS2, and MMP2 were observed to be associated in the functional interaction of ABR. According to docking results, several ingredients of ABR such as Baicalien, Copistine, Epiberberine, Kaempferol, and Palmatine have the lowest docking scores (range between -6 and -7).

Conclusions: The results of the study elucidated that ABR can positively be utilized for the management of bone trauma, which can be mediated by multiple molecular mechanisms such as ERBB2 signaling pathway, positive regulation of oxidoreductase activity, JNK cascade pathway, multicellular organism metabolic process, T cell costimulation, and the positive regulation of MAPK activity. The findings also suggest that several ingredients of ABR such as Baicalien, Copistine, Epiberberine, Kaempferol, and Palmatine have good affinity with IL6, suggesting the promising potential of ABR in treating bone trauma, likely through IL6.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7959927PMC
http://dx.doi.org/10.1155/2021/5692039DOI Listing

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