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Phytochemical profiling of Rosmarinus officinalis aerial parts and exploring its in vitro wound healing activity and network pharmacology
by
Salem, Eman
, Ehab, Mariam
, Amer, Hager
, AbdElaziz, Alaa M.
, Kotb, Sara Saeed
, Aly, Shaza H.
, Amgad, Manar
, Ehab, Nouran
, Mohamed, Aya A.
, Gaber, Omnia Mohamed
in
631/1647
/ 631/449
/ Acetic acid
/ Acids
/ Animals
/ Anti-Inflammatory Agents - chemistry
/ Anti-Inflammatory Agents - pharmacology
/ Anti-inflammatory, rosmarinic acid
/ Antioxidant, HPLC/MS
/ Antioxidants
/ Antioxidants - chemistry
/ Antioxidants - pharmacology
/ Bioactive compounds
/ Butanol
/ Collagen
/ Diterpenes
/ Essential oils
/ Ethyl acetate
/ Fibroblasts - drug effects
/ Fibroblasts - metabolism
/ Fibronectin
/ Flavonoids
/ Flavonoids - chemistry
/ Flavonoids - pharmacology
/ Gallic acid
/ Humanities and Social Sciences
/ Humans
/ Inflammation
/ Lipopolysaccharides
/ Macrophages
/ Macrophages - drug effects
/ Macrophages - metabolism
/ Metabolism
/ Metabolites
/ Mice
/ multidisciplinary
/ Network Pharmacology
/ Nitric oxide
/ Pharmacology
/ Phenols
/ Phenols - chemistry
/ Phytochemicals
/ Phytochemicals - chemistry
/ Phytochemicals - pharmacology
/ Plant Components, Aerial - chemistry
/ Plant Extracts - chemistry
/ Plant Extracts - pharmacology
/ Ron protein
/ Rosmarinic acid
/ Rosmarinus - chemistry
/ Rosmarinus officinalis
/ Rutin
/ Science
/ Science (multidisciplinary)
/ Sulfonic acid
/ Wound healing
/ Wound Healing - drug effects
2026
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Phytochemical profiling of Rosmarinus officinalis aerial parts and exploring its in vitro wound healing activity and network pharmacology
by
Salem, Eman
, Ehab, Mariam
, Amer, Hager
, AbdElaziz, Alaa M.
, Kotb, Sara Saeed
, Aly, Shaza H.
, Amgad, Manar
, Ehab, Nouran
, Mohamed, Aya A.
, Gaber, Omnia Mohamed
in
631/1647
/ 631/449
/ Acetic acid
/ Acids
/ Animals
/ Anti-Inflammatory Agents - chemistry
/ Anti-Inflammatory Agents - pharmacology
/ Anti-inflammatory, rosmarinic acid
/ Antioxidant, HPLC/MS
/ Antioxidants
/ Antioxidants - chemistry
/ Antioxidants - pharmacology
/ Bioactive compounds
/ Butanol
/ Collagen
/ Diterpenes
/ Essential oils
/ Ethyl acetate
/ Fibroblasts - drug effects
/ Fibroblasts - metabolism
/ Fibronectin
/ Flavonoids
/ Flavonoids - chemistry
/ Flavonoids - pharmacology
/ Gallic acid
/ Humanities and Social Sciences
/ Humans
/ Inflammation
/ Lipopolysaccharides
/ Macrophages
/ Macrophages - drug effects
/ Macrophages - metabolism
/ Metabolism
/ Metabolites
/ Mice
/ multidisciplinary
/ Network Pharmacology
/ Nitric oxide
/ Pharmacology
/ Phenols
/ Phenols - chemistry
/ Phytochemicals
/ Phytochemicals - chemistry
/ Phytochemicals - pharmacology
/ Plant Components, Aerial - chemistry
/ Plant Extracts - chemistry
/ Plant Extracts - pharmacology
/ Ron protein
/ Rosmarinic acid
/ Rosmarinus - chemistry
/ Rosmarinus officinalis
/ Rutin
/ Science
/ Science (multidisciplinary)
/ Sulfonic acid
/ Wound healing
/ Wound Healing - drug effects
2026
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Phytochemical profiling of Rosmarinus officinalis aerial parts and exploring its in vitro wound healing activity and network pharmacology
by
Salem, Eman
, Ehab, Mariam
, Amer, Hager
, AbdElaziz, Alaa M.
, Kotb, Sara Saeed
, Aly, Shaza H.
, Amgad, Manar
, Ehab, Nouran
, Mohamed, Aya A.
, Gaber, Omnia Mohamed
in
631/1647
/ 631/449
/ Acetic acid
/ Acids
/ Animals
/ Anti-Inflammatory Agents - chemistry
/ Anti-Inflammatory Agents - pharmacology
/ Anti-inflammatory, rosmarinic acid
/ Antioxidant, HPLC/MS
/ Antioxidants
/ Antioxidants - chemistry
/ Antioxidants - pharmacology
/ Bioactive compounds
/ Butanol
/ Collagen
/ Diterpenes
/ Essential oils
/ Ethyl acetate
/ Fibroblasts - drug effects
/ Fibroblasts - metabolism
/ Fibronectin
/ Flavonoids
/ Flavonoids - chemistry
/ Flavonoids - pharmacology
/ Gallic acid
/ Humanities and Social Sciences
/ Humans
/ Inflammation
/ Lipopolysaccharides
/ Macrophages
/ Macrophages - drug effects
/ Macrophages - metabolism
/ Metabolism
/ Metabolites
/ Mice
/ multidisciplinary
/ Network Pharmacology
/ Nitric oxide
/ Pharmacology
/ Phenols
/ Phenols - chemistry
/ Phytochemicals
/ Phytochemicals - chemistry
/ Phytochemicals - pharmacology
/ Plant Components, Aerial - chemistry
/ Plant Extracts - chemistry
/ Plant Extracts - pharmacology
/ Ron protein
/ Rosmarinic acid
/ Rosmarinus - chemistry
/ Rosmarinus officinalis
/ Rutin
/ Science
/ Science (multidisciplinary)
/ Sulfonic acid
/ Wound healing
/ Wound Healing - drug effects
2026
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Phytochemical profiling of Rosmarinus officinalis aerial parts and exploring its in vitro wound healing activity and network pharmacology
Journal Article
Phytochemical profiling of Rosmarinus officinalis aerial parts and exploring its in vitro wound healing activity and network pharmacology
2026
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Overview
The present study thoroughly assessed the wound healing efficacy of fractions derived from
Rosmarinus officinalis
through phytochemical profiling, antioxidant assays, and
in vitro
scratch wound models, along with network pharmacology to identify target genes. HPLC/MS analysis identified rosmarinic acid as the predominant phenolic compound, alongside diterpenoids (carnosic acid, carnosol) and flavonoids (cirsimaritin, diosmetin). The total extract exhibited the highest total phenolic content (106.56 µg gallic acid eq/mg), while the ethyl acetate fraction (ROE) contained the highest flavonoids (43.7 µg rutin eq/mg). Antioxidant assays revealed fraction-dependent efficacy: the
n
-butanol fraction (RON) showed superior (Ferric Reducing Antioxidant Power) FRAP activity (637.727 µM TE/mg), whereas ROE demonstrated potent radical scavenging (DPPH (2,2-diphenyl-1-picrylhydrazyl) IC₅₀: 22.81
µg/
mL; ABTS (2,2’-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) IC₅₀: 33.6
µg/
mL).
In vitro
scratch assays on human skin fibroblasts (HSF) highlighted ROE and RON as the most effective fractions, reducing wound widths to 0.42 ± 0.04 mm and 0.41 ± 0.005 mm, respectively, within 24 h at 10
µ
g/mL. These fractions also suppressed LPS(Lipopolysaccharide)-induced nitric oxide production in macrophages by > 70%, underscoring anti-inflammatory synergies. Furthermore, utilising network pharmacology, we identified ten hub target genes associated with wound healing, including IL6 and 1B (Interleukin‑6, -1B), TNF (Tumor Necrosis Factor) and FN1(Fibronectin 1). The findings establish that solvent polarity critically influences bioactive compound recovery, with semi-polar fractions (ROE, RON) optimally balancing antioxidant, anti-inflammatory, and fibroblast-migratory properties for wound healing applications. As a conclusion,
R. officinalis
is a great natural candidate for valuable bioactive components with promising anti-inflammatory, wound healing, and antioxidant properties. Further phytochemical studies should be performed to isolate the responsible compounds and investigate their mechanism of action.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 631/449
/ Acids
/ Animals
/ Anti-Inflammatory Agents - chemistry
/ Anti-Inflammatory Agents - pharmacology
/ Anti-inflammatory, rosmarinic acid
/ Butanol
/ Collagen
/ Humanities and Social Sciences
/ Humans
/ Mice
/ Phenols
/ Phytochemicals - pharmacology
/ Plant Components, Aerial - chemistry
/ Plant Extracts - pharmacology
/ Rutin
/ Science
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