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February 26, 2026Pharmacological Research - Modern Chinese Medicine0 citationsOpen Access

Phytochemical profiling of Ocimum sanctum L. varieties and prediction of rosmarinic acid as a chemical marker for dermatological applications via in silico approaches

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NPNaruwat PakdeePPPanicha PongnaratornCCChinnaphat Chaloemram

Key Points

  • The aim is to profile phytochemicals in Ocimum sanctum varieties and identify rosmarinic acid as a chemical marker for dermatological use.
  • Analyzed ethanolic extracts of white and red Ocimum sanctum varieties using HPLC.
  • Assessed antibacterial activity against Staphylococcus aureus through MIC/MBC testing.
  • Conducted antioxidant and enzyme inhibition activity assessments.
  • Utilized molecular docking to explore chemical marker binding affinity.
  • The white variety was rich in rosmarinic acid, showing significant antibacterial activity against S. aureus.
  • The red variety displayed high caffeic acid content but no antibacterial activity.
  • Molecular docking revealed rosmarinic acid had a stronger binding affinity to sortase A compared to caffeic acid.
  • Rosmarinic acid is suggested as a critical quality marker for Ocimum sanctum extracts aimed at skincare.

Abstract

Ocimum sanctum L. (Sheng Luo Le) is utilized in Traditional Chinese Medicine (TCM) for clearing heat and treating skin infections. However, the chemical heterogeneity between the white and red varieties complicates quality standardization and the prediction of therapeutic efficacy. Ethanolic extracts of the white and red varieties were analyzed using HPLC. Antibacterial activity against Staphylococcus aureus was assessed (MIC/MBC), along with antioxidant (DPPH/ABTS) and enzyme inhibition activity (α-glucosidase/α-amylase). Molecular docking explored the binding affinity of chemical markers to relevant proteins. HPLC profiling distinguished the red variety as a caffeic acid-rich chemotype, while the white variety was rich in rosmarinic acid (51.47 mg/100g DW). The white leaf extract exhibited distinct antibacterial activity against S. aureus (MIC 125 mg/mL, MBC 250 mg/mL), moderate free radical scavenging activity (DPPH IC 50 172.76 µg/mL), and inhibitory effects on α-glucosidase and α-amylase. In contrast, the red variety showed no antibacterial activity despite its high caffeic acid content. Molecular docking analysis indicated that rosmarinic acid displayed a stronger binding affinity than caffeic acid toward sortase A (-7.4 kcal/mol) and other relevant targets, suggesting a potential multi-target mode of action. The white O. sanctum variety exhibits a chemical profile and biological activity more suitable for dermatological applications than the red variety. The integration of phytochemical, biological, and in silico analyses supports rosmarinic acid as a scientifically justified Quality Marker for the standardization of O. sanctum extracts intended for topical use.

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Cite This Study

Pakdee et al. (2026) studied this question.

synapsesocial.com/papers/699fe33695ddcd3a253e6f09https://doi.org/10.1016/j.prmcm.2026.100786
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