Phytochemical Profiling, Antioxidant and Anti-Inflammatory Activities, and Nano-Spray Development for Muscle Pain Relief from Thai Ma-Khwaen Zanthoxylum rhetsa (Roxb.) DC.

Zanthoxylum rhetsa (Roxb.) DC. (Ma-Khwaen) is an economically important medicinal plant traditionally used for pain and inflammatory disorders. This study explored its phytochemical composition, biological activities, and potential for nano-spray product development. Methods: Ethanolic fruit extracts collected from five provinces in Northern Thailand were evaluated for extraction yield, total phenolic content (TPC), total flavonoid content (TFC), antioxidant activity, and anti-inflammatory activity. Extracts from Nan Province were further selected for DPPH radical scavenging, GC–MS characterization, nitric oxide (NO) inhibition assay in LPS stimulated RAW 264.7 macrophages, nano-spray formulation development, and stability assessment. Results: Considerable phytochemical variation was observed among geographical origins, with TPC and TFC ranging from 19.47 to 103.09 mg GAE/g extract and 28.57 to 400.72 mg QE/g extract, respectively. The Nan whole-fruit extract exhibited the highest extraction yield (20.81%), whereas the pericarp extract showed the strongest antioxidant activity (IC50 = 111.78 μg/mL). GC–MS analysis revealed anti-inflammatory phytochemicals, predominantly α-terpineol, geranyl acetate, n-hexadecanoic acid, oleic acid, and linalool. The selected extract demonstrated potent anti-inflammatory activity (IC50 = 6.95 ± 0.44 μg/mL), exceeding that of prednisolone, and was successfully incorporated into a physically stable nano-spray formulation with 60-day storage stability. Conclusions: These findings provide scientific validation for the traditional use of Ma-Khwaen and support its development as a stable nano-spray formulation for muscle pain relief and inflammation alleviation.

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Publication Details

Journal
Cosmetics
Published
2026-09-21
DOI
https://doi.org/10.3390/cosmetics13050252
Primary Topic
Plant chemical constituents analysis
Type
article
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article

Phytochemical Profiling, Antioxidant and Anti-Inflammatory Activities, and Nano-Spray Development for Muscle Pain Relief from Thai Ma-Khwaen Zanthoxylum rhetsa (Roxb.) DC.

Pannatat Suttirak, Monchanok Choowanthanapakorn, Pitakpong Panta, Phanit Srisuttha et al.
Cosmetics
Plant chemical constituents analysis
article

Phytochemical Profiling, Antioxidant and Anti-Inflammatory Activities, and Nano-Spray Development for Muscle Pain Relief from Thai Ma-Khwaen Zanthoxylum rhetsa (Roxb.) DC.

Pannatat Suttirak, Monchanok Choowanthanapakorn, Pitakpong Panta, Phanit Srisuttha, Sakesun Thongtip, Teerapong Yata, Ubonwan Saesiw, Keng Chaichana, Wannita Sakulwattana, Raweephun Sunanta, Wichida Larsomsri, Phadungnaree Saenmuang, Pakorn Pusuwan
article en

Abstract

Zanthoxylum rhetsa (Roxb.) DC. (Ma-Khwaen) is an economically important medicinal plant traditionally used for pain and inflammatory disorders. This study explored its phytochemical composition, biological activities, and potential for nano-spray product development. Methods: Ethanolic fruit extracts collected from five provinces in Northern Thailand were evaluated for extraction yield, total phenolic content (TPC), total flavonoid content (TFC), antioxidant activity, and anti-inflammatory activity. Extracts from Nan Province were further selected for DPPH radical scavenging, GC–MS characterization, nitric oxide (NO) inhibition assay in LPS stimulated RAW 264.7 macrophages, nano-spray formulation development, and stability assessment. Results: Considerable phytochemical variation was observed among geographical origins, with TPC and TFC ranging from 19.47 to 103.09 mg GAE/g extract and 28.57 to 400.72 mg QE/g extract, respectively. The Nan whole-fruit extract exhibited the highest extraction yield (20.81%), whereas the pericarp extract showed the strongest antioxidant activity (IC50 = 111.78 μg/mL). GC–MS analysis revealed anti-inflammatory phytochemicals, predominantly α-terpineol, geranyl acetate, n-hexadecanoic acid, oleic acid, and linalool. The selected extract demonstrated potent anti-inflammatory activity (IC50 = 6.95 ± 0.44 μg/mL), exceeding that of prednisolone, and was successfully incorporated into a physically stable nano-spray formulation with 60-day storage stability. Conclusions: These findings provide scientific validation for the traditional use of Ma-Khwaen and support its development as a stable nano-spray formulation for muscle pain relief and inflammation alleviation.

CosmeticsVol. 13(5)
Thammasat University (TH), University of Phayao (TH)
Openalex Percentile: Top 13%
Plant chemical constituents analysis
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