Research Article
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Year 2025, Volume: 29 Issue: 4, 1636 - 1652, 05.07.2025
https://doi.org/10.12991/jrespharm.1657486

Abstract

Project Number

1919B012311654

References

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  • [2] Sasounian R, Martinez RM, Lopes AM, Giarolla J, Rosado C, Magalhães WV, Innovative Approaches to an Eco-Friendly Cosmetic Industry: A Review of Sustainable Ingredients. Clean Technol. 2024; 6(1):1-23. https://doi.org/10.3390/cleantechnol6010011.
  • [3] Xie M, Jiang Z, Lin X, Wei X. Application of plant extract cosmetics in the field of anti-aging. J Dermatol Sci Cosmetic Technol. 2024; 1(2): 100014. https://doi.org/10.1016/j.jdsct.2024.100014
  • [4] Annapurna Veludurthi P, Kumar Vadaga AA. Comprehensive Review of Formulations, Ingredients, Advances, and Future Perspectives in Lipcare Cosmetics. J Pharm Insight Res. 2024; 02(03):123-128. https://doi.org/10.5281/zenodo.11527489
  • [5] Bibow A, Oleszek, W. Essential Oils as Potential Natural Antioxidants, Antimicrobial, and Antifungal Agents in Active Food Packaging. Antibiotics 2024;13: 1168. https://doi.org/10.3390/antibiotics13121168
  • [6] Vora LK, Gholap AD, Hatvate NT, Naren P, Khan S, Chavda VP. Essential oils for clinical aromatherapy: A comprehensive review. J Ethnopharmacol. 2024;330(10): 118180. https://doi.org/10.1016/j.jep.2024.118180
  • [7] Cheng BCY, Fu XQ, Guo H, Li T, Wu ZZ, Chan K. The genus Rosa and arthritis: Overview on pharmacological perspectives. Pharmacol Res. 2016; 114:219-234. https://doi.org/10.1016/j.phrs.2016.10.029
  • [8] Speranza B, Guerrieri A, Racioppo A, Bevilacqua A, Campaniello D, Corbo MR. Sage and Lavender Essential Oils as Potential Antimicrobial Agents for Foods. Microbiol Res (Pavia). 2023; 14(3): 1089-1113. https://doi.org/1010.3390/microbiolres14030073
  • [9] British Pharmacopoeia Commission, British Pharmacopoeia, 13th Edition, 2002.
  • [10] Kathleen P, William M. Martindale: the complete drug reference. Br J Clin Pharmacol. 2000; 49(6): 613. https://doi.org/10.1046/j.1365-2125.2000.00206.x
  • [11] Bashir A, Lambert P. Microbiological study of used cosmetic products: highlighting possible impact on consumer health. J Appl Microbiol. 2020; 128: 598-605. https://doi.org/10.1111/jam.14479
  • [12] Onurdağ FK. Microbiological Investigation of Used Cosmetic Samples. Hacettepe Univ J Fac Pharm. 2010; 1: 1-16.
  • [13] Habib U, Pervaiz A, Murtaza A, Hussain A, Sarwar H, Ulah M, Ayub MA, Ahmad N, Bashir M. Assessing The Cumulative Effects of Heavy Metal Exposure From Cosmetic Products On Local Consumers. J Mountain Area Res. 2024; 9: 149-167. https://doi.org/10.53874/jmar.v9i0.195
  • [14] Atanasov AG, Zotchev SB, Dirsch VM, Orhan IE, Banach M, Rollinger JM. Natural products in drug discovery: advances and opportunities. Nat Rev Drug Discov. 2021; 20(3):200–216. https://doi.org/10.1038/s41573-020-00114-z
  • [15] Gonçalves S, Gaivão I. Natural Ingredients in Skincare: A Scoping Review of Efficacy and Benefits. Biomed Biopharm Res. 2023; 20(2):143-160. https://doi.org/10.19277/bbr.20.2.328
  • [16] Lukić M, Pantelić I, Savić SD. Towards optimal pH of the skin and topical formulations: From the current state of the art to tailored products. Cosmetics. 2021; 8(3): 69. https://doi.org/10.3390/cosmetics8030069
  • [17] Kaczmarczyk D, Strub DJ, Polowy A, Wilk KA, Lochyński S. Selected Essential Oils in Cosmetic Emulsions: Process Oriented Stability Studies and Antimicrobial Activity. Nat Vol Essent Oils. 2015; 2(4): 27-39.
  • [18] Shkreli R, Terziu R, Memushaj L, Dhamo K. Formulation and stability evaluation of a cosmetics emulsion loaded with different concentrations of synthetic and natural preservative. Hist Stud Phys Biol Sci. 2022; 5(1):38-51. https://doi.org/10.62400/jbs.v5i1.6373
  • [19] Visht S, Salih SS, Mohammed DA, Abduljabbar AA, Hama SJ, Khudhair IA. Formulation and Evaluation of Lip Balm Using Different Herbal Pigments. Pharmacogn Res. 2024; 16(2):367-375. https://doi.org/10.5530/pres.16.2.46
  • [20] Fajdek-Bieda A, Pawlin´ska J, Wróblewska A, Z˙wierełło W, Łus´ A. Antibacterial and Preservative Potential of Eugenol and Isoeugenol in Cosmetics: A Natural Solution for Product Stability. Appl Sci. 2025; 15:2129. https://doi.org/10.3390/app15042129
  • [21] Nong Y, Maloh J, Natarelli N, Gunt HB, Tristani E, Sivamani RK. A review of the use of beeswax in skincare. J Cosmetic Dermatol. 2023; 22:2166–2173. https://doi.org/10.1111/jocd.15718
  • [22] Purnamawati S, Indrastuti N, Danarti R, Saefudin T. The Role of Moisturizers in Addressing Various Kinds of Dermatitis: A Review. Clin Med Res. 2017; 15: 3-4: 75-87. https://doi.org/10.3121/cmr.2017.1363
  • [23] Chouhan S, Sharma K, Guleria S. Antimicrobial Activity of Some Essential Oils—Present Status and Future Perspectives. Medicines 2017; 4: 58. https://doi.org/10.3390/medicines4030058
  • [24] Zia P, Sunita M, Sneha S. Extraction of Natural Colour from Beet Root (Beta vulgaris), Its Phytochemical Analysis and Antibacterial Activity. EAS J Nutr Food Sci. 2021; 3: 4. 80-84. https://doi.org/84.10.36349/easjnfs
  • [25] Raeber J, Favrod S, Steuer C. Determination of Major, Minor and Chiral Components as Quality and Authenticity Markers of Rosa damascena Oil by GC-FID. Plants. 2023; 12: 506. https://doi.org/10.3390/plants12030506
  • [26] Jung J, Sewenig S, Hener U, Mosandı A. Comprehensive authenticity assessment of lavender oils using multielement/multicomponent isotope ratio mass spectrometry analysis and enantioselective multidimensional gas chromatography–mass spectrometry. Eur Food Res Technol. 2005; 220:232–237. https://doi.org/1010.1007/s00217-004-1049-4
  • [27] Husnu Can, Baser K, Buchbauer G. Handbook of Essential Oils: Science, Technology, and Applications. CRG. 2010.
  • [28] Lopez GP, Roque LB, Igal K, Espinosa EG, Bellotti N. Citronellol-functionalized natural silica: a biogenic approach for antifungal and antibacterial material applications. Front Chem. 2025; 13:1535787. https://doi.org/10.3389/fchem.2025.1535787
  • [29] Chen W, Viljoen AM, Geraniol – A review update. South Afr J Bot. 2022; 2022 (150):1205-1219. https://doi.org/10.1016/j.sajb.2022.09.012.
  • [30] Patel K, Panchal R, Sakariya B, Gevariya M, Raüyani R, Soni R, Goswami D. Combatting antibiotic resistance by exploring the promise of Quorum Quenching in targeting bacterial virulence. Microbe J. 2025; 6: 100224. https://doi.org/10.1016/j.microb.2024.100224
  • [31] Rybczyńska-Tkaczyk K, Grenda A, Jakubczyk A, Kiersnowska K, Bik-Małodzińska M. Natural Compounds with Antimicrobial Properties in Cosmetics. Pathogens. 2023; 15,12(2):320. https://doi.org/10.3390/pathogens12020320
  • [32] Tang T, Zhong W, Tang P, Dai R, Guo J, Gao Z. Linalool’s Multifaceted Antimicrobial Potential: Unveiling its Antimicrobial Efficacy and Immunomodulatory Role Against Saprolegnia parasitica. BioRxiv. 2024; 600497. http://biorxiv.org/lookup/doi/10.1101/2024.06.24.600497
  • [33] Truong S, Mudgil P. The antibacterial effectiveness of lavender essential oil against methicillin-resistant Staphylococcus aureus: a systematic review. Front Pharmacol. 2023; 7(14):1306003. https://doi.org/10.3389/fphar.2023.1306003
  • [34] Maquera Huacho PM, Rodriguez Herrero E, Verspecht T, Pauwels M, Marcantonio E, Palomari Spolidorio DM. Terpinen-4-ol and carvacrol affect multi-species biofilm composition. Biofouling. 2019; 35(5):561-572. https://doi.org/10.1080/08927014.2019.1630386
  • [35] Mawazi SM, Redzal NAA, Othman N, Alolayan SO, Lipsticks History. Formulations and Production: A Narrative Review. Cosmetics.2022; 9(1): 25. https://doi.org/10.3390/cosmetics9010025
  • [36] Adegboye T, Itiola O. Physical and Release Properties of Metronidazole Suppositories. Trop J Pharm Res. 2008; 7 (1): 887-896. https://doi.org/10.4314/tjpr.v7i1.14673
  • [37] Şekeroğlu G, Kaya A. Effects of shear and cooling rates on the crystallization behavior of cocoa butter. Harran Tarım ve Gıda Bilimleri Derg. 2021; 25(2): 120-130. https://doi.org/10.29050/harranziraat.843455
  • [38] Declerck A, Nelis V, Danthine S, Dewettinck K, Vander Meeren P. Characterisation of fat crystal polymorphism in cocoa butter by time-domain nmr and dsc deconvolution. Foods. 2021; 10(3): 520. https://doi.org/10.3390/foods10030520
  • [39] Stobbs JA, Pensini E, Ghazani SM, Leontowich AFG, Quirk A, Tu K. Phospholipid Self-Assembly in Cocoa Butter Provides a Crystallizing Surface for Seeding the Form V Polymorph in Chocolate. Crystal Growth Des. 2024: 2024 (24): 2685-26699. https://doi.org/10.1021/acs.cgd.3c01130
  • [40] Velasco MVR, Fernandes AR, Ferrera M, Claudinéia D, Sales A, Pinto O. Stability evaluation of organic Lip Balm. Brazil J Pharm Sci. 2013; 49(2):293. https://doi.org/10.1590/S1984-82502013000200011
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  • [42] Rico F, Mazabel A, Egurrola G, Pulido J, Barrios N, Marquez R. Meta-Analysis and Analytical Methods in Cosmetics Formulation: A Review. Cosmetics. 2024; 11(1): 1. https://doi.org/10.3390/cosmetics11010001
  • [43] Gismondi A, Di Marco G, Redi EL, Ferrucci L, Cantonetti M, Canini A. The antimicrobial activity of Lavandula angustifolia Mill. essential oil against Staphylococcus species in a hospital environment. J Herb Med. 2012; 26: 100426. https://doi.org/10.1016/j.hermed.2021.100426
  • [44] Jiang Y, Wu N, Fu YJ, Wang W, Luo M, Zhao CJ. Chemical composition and antimicrobial activity of the essential oil of Rosemary. Environ Toxicol Pharmacol. 2011; 32: 63–68. https://doi.org/10.1016/j.etap.2011.03.011
  • [45] Swamy MK, Akhtar MS, Sinniah UR. Antimicrobial properties of essential oils plant against human pathogens and their mode of action: An updated review. Evid-Based Complement Altern Med. 2016; 20:3012462. https://doi.org/10.1155/2016/3012462
  • [46] Tullio V, Roana J, Cavallo L, Mandras N. Immune Defences: A View from the Side of the Essential Oils. Molecules. 2023; 28(1): 435. https://doi.org/10.3390/molecules28010435435
  • [47] Özdemir, E., Aslan, İ., Çakıcı, B., Türker, B., Emre Çelik, B. Microbiological Property Evaluation of Natural Essential Oils Used in Green Cosmetic Industry. Current Perspectives on Medicinal and Aromatic Plants, 2018; 1(2), 111-116.
  • [48] Kurt, A. A., & Ibrahim, B. (2024). New generation natural face cream formulation: development and in vitro evaluation. Celal Bayar Üniversitesi Sağlık Bilimleri Enstitüsü Dergisi, 11(4), 672-680. https://doi.org/10.34087/cbusbed.1565063

Antimicrobial synergy of Lavandula angustifolia L. and Rosa damascene L. essential oils: Preparation of herbal lip formulations

Year 2025, Volume: 29 Issue: 4, 1636 - 1652, 05.07.2025
https://doi.org/10.12991/jrespharm.1657486

Abstract

Increasing concerns about the potential toxicity of heavy metals such as lead and various chemical compounds commonly found in synthetic lip care products have increased the demand for herbal alternatives. The main objective of this study was to formulate a low-toxicity, natural, and antimicrobial lip care product using essential oils obtained from Lavandula angustifolia (lavender) and Rosa damascena (rose) species grown in the Isparta region. Cosmetic grade rose, lavender, and clove oils, alongside chitosan, lanolin, and ethylhexylglycerin, were formulated. Gas chromatography (GC) determined the qualitative and quantitative components of the essential oils, while standard methods assessed the formulations' physicochemical properties (pH, viscosity, melting point, and weight deviation). Furthermore, microbiological tests, safety limit analyses, and in vitro antimicrobial activity examinations were conducted for a comprehensive evaluation of the formulations. GC analyses revealed distinct component profiles, with rose oil mainly composed of beta citronellol, geraniol, and nonadecane, while lavender oil featured linalool, linalyl acetate, and terpinen-4-ol. The resulting formulations were homogeneous, stable, and had acceptable pH levels, demonstrating safety and microbial contamination resistance. Notably, lavender oil exhibited superior antimicrobial activity compared to rose oil, and the LF-9 formulation maintained its physicochemical properties for 6 months, displaying low MIC values against L. angustifolia, E. coli, B. cereus, and C. albicans. The study showed that natural, safe lip care products can be developed using the antimicrobial properties of lavender and rose essential oils. Due to its superior properties, the LF-9 formulation is a natural alternative to synthetics.

Supporting Institution

Suleyman Demirel University

Project Number

1919B012311654

Thanks

This study was funded by the Scientific and Technological Research Council of Turkey (TUBITAK) Tubitak-2209/A Grant No 1919B012311654. We would also like to thank Sebat Rose Oil and Essential Oils Cosmetics Construction. Machinery. Tur. Industry. Trade Ltd. Co.

References

  • [1] Wang M, Zhang L, Hao H, Yan M, Zhu Z. Applications of Engineered Skin Tissue for Cosmetic Component and Toxicology Detection. Cell Transplant. 2024; 33:1-24. https://doi.org/10.1177/09636897241235464
  • [2] Sasounian R, Martinez RM, Lopes AM, Giarolla J, Rosado C, Magalhães WV, Innovative Approaches to an Eco-Friendly Cosmetic Industry: A Review of Sustainable Ingredients. Clean Technol. 2024; 6(1):1-23. https://doi.org/10.3390/cleantechnol6010011.
  • [3] Xie M, Jiang Z, Lin X, Wei X. Application of plant extract cosmetics in the field of anti-aging. J Dermatol Sci Cosmetic Technol. 2024; 1(2): 100014. https://doi.org/10.1016/j.jdsct.2024.100014
  • [4] Annapurna Veludurthi P, Kumar Vadaga AA. Comprehensive Review of Formulations, Ingredients, Advances, and Future Perspectives in Lipcare Cosmetics. J Pharm Insight Res. 2024; 02(03):123-128. https://doi.org/10.5281/zenodo.11527489
  • [5] Bibow A, Oleszek, W. Essential Oils as Potential Natural Antioxidants, Antimicrobial, and Antifungal Agents in Active Food Packaging. Antibiotics 2024;13: 1168. https://doi.org/10.3390/antibiotics13121168
  • [6] Vora LK, Gholap AD, Hatvate NT, Naren P, Khan S, Chavda VP. Essential oils for clinical aromatherapy: A comprehensive review. J Ethnopharmacol. 2024;330(10): 118180. https://doi.org/10.1016/j.jep.2024.118180
  • [7] Cheng BCY, Fu XQ, Guo H, Li T, Wu ZZ, Chan K. The genus Rosa and arthritis: Overview on pharmacological perspectives. Pharmacol Res. 2016; 114:219-234. https://doi.org/10.1016/j.phrs.2016.10.029
  • [8] Speranza B, Guerrieri A, Racioppo A, Bevilacqua A, Campaniello D, Corbo MR. Sage and Lavender Essential Oils as Potential Antimicrobial Agents for Foods. Microbiol Res (Pavia). 2023; 14(3): 1089-1113. https://doi.org/1010.3390/microbiolres14030073
  • [9] British Pharmacopoeia Commission, British Pharmacopoeia, 13th Edition, 2002.
  • [10] Kathleen P, William M. Martindale: the complete drug reference. Br J Clin Pharmacol. 2000; 49(6): 613. https://doi.org/10.1046/j.1365-2125.2000.00206.x
  • [11] Bashir A, Lambert P. Microbiological study of used cosmetic products: highlighting possible impact on consumer health. J Appl Microbiol. 2020; 128: 598-605. https://doi.org/10.1111/jam.14479
  • [12] Onurdağ FK. Microbiological Investigation of Used Cosmetic Samples. Hacettepe Univ J Fac Pharm. 2010; 1: 1-16.
  • [13] Habib U, Pervaiz A, Murtaza A, Hussain A, Sarwar H, Ulah M, Ayub MA, Ahmad N, Bashir M. Assessing The Cumulative Effects of Heavy Metal Exposure From Cosmetic Products On Local Consumers. J Mountain Area Res. 2024; 9: 149-167. https://doi.org/10.53874/jmar.v9i0.195
  • [14] Atanasov AG, Zotchev SB, Dirsch VM, Orhan IE, Banach M, Rollinger JM. Natural products in drug discovery: advances and opportunities. Nat Rev Drug Discov. 2021; 20(3):200–216. https://doi.org/10.1038/s41573-020-00114-z
  • [15] Gonçalves S, Gaivão I. Natural Ingredients in Skincare: A Scoping Review of Efficacy and Benefits. Biomed Biopharm Res. 2023; 20(2):143-160. https://doi.org/10.19277/bbr.20.2.328
  • [16] Lukić M, Pantelić I, Savić SD. Towards optimal pH of the skin and topical formulations: From the current state of the art to tailored products. Cosmetics. 2021; 8(3): 69. https://doi.org/10.3390/cosmetics8030069
  • [17] Kaczmarczyk D, Strub DJ, Polowy A, Wilk KA, Lochyński S. Selected Essential Oils in Cosmetic Emulsions: Process Oriented Stability Studies and Antimicrobial Activity. Nat Vol Essent Oils. 2015; 2(4): 27-39.
  • [18] Shkreli R, Terziu R, Memushaj L, Dhamo K. Formulation and stability evaluation of a cosmetics emulsion loaded with different concentrations of synthetic and natural preservative. Hist Stud Phys Biol Sci. 2022; 5(1):38-51. https://doi.org/10.62400/jbs.v5i1.6373
  • [19] Visht S, Salih SS, Mohammed DA, Abduljabbar AA, Hama SJ, Khudhair IA. Formulation and Evaluation of Lip Balm Using Different Herbal Pigments. Pharmacogn Res. 2024; 16(2):367-375. https://doi.org/10.5530/pres.16.2.46
  • [20] Fajdek-Bieda A, Pawlin´ska J, Wróblewska A, Z˙wierełło W, Łus´ A. Antibacterial and Preservative Potential of Eugenol and Isoeugenol in Cosmetics: A Natural Solution for Product Stability. Appl Sci. 2025; 15:2129. https://doi.org/10.3390/app15042129
  • [21] Nong Y, Maloh J, Natarelli N, Gunt HB, Tristani E, Sivamani RK. A review of the use of beeswax in skincare. J Cosmetic Dermatol. 2023; 22:2166–2173. https://doi.org/10.1111/jocd.15718
  • [22] Purnamawati S, Indrastuti N, Danarti R, Saefudin T. The Role of Moisturizers in Addressing Various Kinds of Dermatitis: A Review. Clin Med Res. 2017; 15: 3-4: 75-87. https://doi.org/10.3121/cmr.2017.1363
  • [23] Chouhan S, Sharma K, Guleria S. Antimicrobial Activity of Some Essential Oils—Present Status and Future Perspectives. Medicines 2017; 4: 58. https://doi.org/10.3390/medicines4030058
  • [24] Zia P, Sunita M, Sneha S. Extraction of Natural Colour from Beet Root (Beta vulgaris), Its Phytochemical Analysis and Antibacterial Activity. EAS J Nutr Food Sci. 2021; 3: 4. 80-84. https://doi.org/84.10.36349/easjnfs
  • [25] Raeber J, Favrod S, Steuer C. Determination of Major, Minor and Chiral Components as Quality and Authenticity Markers of Rosa damascena Oil by GC-FID. Plants. 2023; 12: 506. https://doi.org/10.3390/plants12030506
  • [26] Jung J, Sewenig S, Hener U, Mosandı A. Comprehensive authenticity assessment of lavender oils using multielement/multicomponent isotope ratio mass spectrometry analysis and enantioselective multidimensional gas chromatography–mass spectrometry. Eur Food Res Technol. 2005; 220:232–237. https://doi.org/1010.1007/s00217-004-1049-4
  • [27] Husnu Can, Baser K, Buchbauer G. Handbook of Essential Oils: Science, Technology, and Applications. CRG. 2010.
  • [28] Lopez GP, Roque LB, Igal K, Espinosa EG, Bellotti N. Citronellol-functionalized natural silica: a biogenic approach for antifungal and antibacterial material applications. Front Chem. 2025; 13:1535787. https://doi.org/10.3389/fchem.2025.1535787
  • [29] Chen W, Viljoen AM, Geraniol – A review update. South Afr J Bot. 2022; 2022 (150):1205-1219. https://doi.org/10.1016/j.sajb.2022.09.012.
  • [30] Patel K, Panchal R, Sakariya B, Gevariya M, Raüyani R, Soni R, Goswami D. Combatting antibiotic resistance by exploring the promise of Quorum Quenching in targeting bacterial virulence. Microbe J. 2025; 6: 100224. https://doi.org/10.1016/j.microb.2024.100224
  • [31] Rybczyńska-Tkaczyk K, Grenda A, Jakubczyk A, Kiersnowska K, Bik-Małodzińska M. Natural Compounds with Antimicrobial Properties in Cosmetics. Pathogens. 2023; 15,12(2):320. https://doi.org/10.3390/pathogens12020320
  • [32] Tang T, Zhong W, Tang P, Dai R, Guo J, Gao Z. Linalool’s Multifaceted Antimicrobial Potential: Unveiling its Antimicrobial Efficacy and Immunomodulatory Role Against Saprolegnia parasitica. BioRxiv. 2024; 600497. http://biorxiv.org/lookup/doi/10.1101/2024.06.24.600497
  • [33] Truong S, Mudgil P. The antibacterial effectiveness of lavender essential oil against methicillin-resistant Staphylococcus aureus: a systematic review. Front Pharmacol. 2023; 7(14):1306003. https://doi.org/10.3389/fphar.2023.1306003
  • [34] Maquera Huacho PM, Rodriguez Herrero E, Verspecht T, Pauwels M, Marcantonio E, Palomari Spolidorio DM. Terpinen-4-ol and carvacrol affect multi-species biofilm composition. Biofouling. 2019; 35(5):561-572. https://doi.org/10.1080/08927014.2019.1630386
  • [35] Mawazi SM, Redzal NAA, Othman N, Alolayan SO, Lipsticks History. Formulations and Production: A Narrative Review. Cosmetics.2022; 9(1): 25. https://doi.org/10.3390/cosmetics9010025
  • [36] Adegboye T, Itiola O. Physical and Release Properties of Metronidazole Suppositories. Trop J Pharm Res. 2008; 7 (1): 887-896. https://doi.org/10.4314/tjpr.v7i1.14673
  • [37] Şekeroğlu G, Kaya A. Effects of shear and cooling rates on the crystallization behavior of cocoa butter. Harran Tarım ve Gıda Bilimleri Derg. 2021; 25(2): 120-130. https://doi.org/10.29050/harranziraat.843455
  • [38] Declerck A, Nelis V, Danthine S, Dewettinck K, Vander Meeren P. Characterisation of fat crystal polymorphism in cocoa butter by time-domain nmr and dsc deconvolution. Foods. 2021; 10(3): 520. https://doi.org/10.3390/foods10030520
  • [39] Stobbs JA, Pensini E, Ghazani SM, Leontowich AFG, Quirk A, Tu K. Phospholipid Self-Assembly in Cocoa Butter Provides a Crystallizing Surface for Seeding the Form V Polymorph in Chocolate. Crystal Growth Des. 2024: 2024 (24): 2685-26699. https://doi.org/10.1021/acs.cgd.3c01130
  • [40] Velasco MVR, Fernandes AR, Ferrera M, Claudinéia D, Sales A, Pinto O. Stability evaluation of organic Lip Balm. Brazil J Pharm Sci. 2013; 49(2):293. https://doi.org/10.1590/S1984-82502013000200011
  • [41] Türkiye İlaç ve Tıbbi Cihaz Kurumu Klinik Araştırmalar. Türkiye İlaç ve Tıbbi Cihaz Kurumu Klinik Araştırmalar Daire Başkanlığına Yapılan Klinik Araştırma Başvurularına İlişkin Kılavuz. Türkiye İlaç ve Tıbbi Cihaz Kurumu Klinik Araştırmalar. 2024. https://www.titck.gov.tr/faaliyetalanlari/ilac/klinik-arastirmalar
  • [42] Rico F, Mazabel A, Egurrola G, Pulido J, Barrios N, Marquez R. Meta-Analysis and Analytical Methods in Cosmetics Formulation: A Review. Cosmetics. 2024; 11(1): 1. https://doi.org/10.3390/cosmetics11010001
  • [43] Gismondi A, Di Marco G, Redi EL, Ferrucci L, Cantonetti M, Canini A. The antimicrobial activity of Lavandula angustifolia Mill. essential oil against Staphylococcus species in a hospital environment. J Herb Med. 2012; 26: 100426. https://doi.org/10.1016/j.hermed.2021.100426
  • [44] Jiang Y, Wu N, Fu YJ, Wang W, Luo M, Zhao CJ. Chemical composition and antimicrobial activity of the essential oil of Rosemary. Environ Toxicol Pharmacol. 2011; 32: 63–68. https://doi.org/10.1016/j.etap.2011.03.011
  • [45] Swamy MK, Akhtar MS, Sinniah UR. Antimicrobial properties of essential oils plant against human pathogens and their mode of action: An updated review. Evid-Based Complement Altern Med. 2016; 20:3012462. https://doi.org/10.1155/2016/3012462
  • [46] Tullio V, Roana J, Cavallo L, Mandras N. Immune Defences: A View from the Side of the Essential Oils. Molecules. 2023; 28(1): 435. https://doi.org/10.3390/molecules28010435435
  • [47] Özdemir, E., Aslan, İ., Çakıcı, B., Türker, B., Emre Çelik, B. Microbiological Property Evaluation of Natural Essential Oils Used in Green Cosmetic Industry. Current Perspectives on Medicinal and Aromatic Plants, 2018; 1(2), 111-116.
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There are 48 citations in total.

Details

Primary Language English
Subjects Pharmaceutical Sciences
Journal Section Articles
Authors

Bashar Ibrahim 0000-0003-3086-0995

Ahmet Arif Kurt 0000-0002-3490-0192

Buse Zeren 0009-0002-7052-4769

Duygu Türkmen 0009-0008-5395-1236

Şeyma Akgün 0009-0003-8148-9337

Ceren Akıncı 0009-0004-9690-3390

Hande Yarmalı 0009-0003-3266-1153

İsmail Aslan 0000-0001-7075-7103

Project Number 1919B012311654
Publication Date July 5, 2025
Submission Date March 13, 2025
Acceptance Date May 10, 2025
Published in Issue Year 2025 Volume: 29 Issue: 4

Cite

APA Ibrahim, B., Kurt, A. A., Zeren, B., … Türkmen, D. (2025). Antimicrobial synergy of Lavandula angustifolia L. and Rosa damascene L. essential oils: Preparation of herbal lip formulations. Journal of Research in Pharmacy, 29(4), 1636-1652. https://doi.org/10.12991/jrespharm.1657486
AMA Ibrahim B, Kurt AA, Zeren B, et al. Antimicrobial synergy of Lavandula angustifolia L. and Rosa damascene L. essential oils: Preparation of herbal lip formulations. J. Res. Pharm. July 2025;29(4):1636-1652. doi:10.12991/jrespharm.1657486
Chicago Ibrahim, Bashar, Ahmet Arif Kurt, Buse Zeren, Duygu Türkmen, Şeyma Akgün, Ceren Akıncı, Hande Yarmalı, and İsmail Aslan. “Antimicrobial Synergy of Lavandula Angustifolia L. and Rosa Damascene L. Essential Oils: Preparation of Herbal Lip Formulations”. Journal of Research in Pharmacy 29, no. 4 (July 2025): 1636-52. https://doi.org/10.12991/jrespharm.1657486.
EndNote Ibrahim B, Kurt AA, Zeren B, Türkmen D, Akgün Ş, Akıncı C, Yarmalı H, Aslan İ (July 1, 2025) Antimicrobial synergy of Lavandula angustifolia L. and Rosa damascene L. essential oils: Preparation of herbal lip formulations. Journal of Research in Pharmacy 29 4 1636–1652.
IEEE B. Ibrahim, A. A. Kurt, B. Zeren, D. Türkmen, Ş. Akgün, C. Akıncı, H. Yarmalı, and İ. Aslan, “Antimicrobial synergy of Lavandula angustifolia L. and Rosa damascene L. essential oils: Preparation of herbal lip formulations”, J. Res. Pharm., vol. 29, no. 4, pp. 1636–1652, 2025, doi: 10.12991/jrespharm.1657486.
ISNAD Ibrahim, Bashar et al. “Antimicrobial Synergy of Lavandula Angustifolia L. and Rosa Damascene L. Essential Oils: Preparation of Herbal Lip Formulations”. Journal of Research in Pharmacy 29/4 (July2025), 1636-1652. https://doi.org/10.12991/jrespharm.1657486.
JAMA Ibrahim B, Kurt AA, Zeren B, Türkmen D, Akgün Ş, Akıncı C, Yarmalı H, Aslan İ. Antimicrobial synergy of Lavandula angustifolia L. and Rosa damascene L. essential oils: Preparation of herbal lip formulations. J. Res. Pharm. 2025;29:1636–1652.
MLA Ibrahim, Bashar et al. “Antimicrobial Synergy of Lavandula Angustifolia L. and Rosa Damascene L. Essential Oils: Preparation of Herbal Lip Formulations”. Journal of Research in Pharmacy, vol. 29, no. 4, 2025, pp. 1636-52, doi:10.12991/jrespharm.1657486.
Vancouver Ibrahim B, Kurt AA, Zeren B, Türkmen D, Akgün Ş, Akıncı C, et al. Antimicrobial synergy of Lavandula angustifolia L. and Rosa damascene L. essential oils: Preparation of herbal lip formulations. J. Res. Pharm. 2025;29(4):1636-52.