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[국내논문] 갈랑가 뿌리 추출물의 항산화, 항노화 효과 및 W/O형 에멀젼에서 항산화 효과의 보존성
Antioxidant and anti-aging effects of Alpinia galanga L. rhizome extracts and preservation of antioxidant effects in W/O type emulsion 원문보기

Journal of applied biological chemistry, v.66, 2023년, pp.424 - 435  

윤선영 (Department of Pharmaceutical Engineering, Daegu Catholic University) ,  김봉환 (Department of Semiconductor and electronic Engineering, Daegu Catholic University) ,  장영아 (Division of Cosmetic Science and Technology, Daegu Haany University) ,  김세기 (Department of Pharmaceutical Engineering, Daegu Catholic University)

초록
AI-Helper 아이콘AI-Helper

본 연구 결과 DPPH 라디칼 소거 활성은 갈랑가 뿌리 70% 에탄올 추출물(AG.E) 100 ㎍/mL 농도에서 81.8%이었으며 ABTS+ 라디칼 소거 활성은 AG.E 50 ㎍/mL의 낮은 농도에서 L-Ascorbic acid (AA)와 유사한 99.8%로 확인되었다. 항노화 활성을 측정하기 위하여 collagenase와 elastase 저해 활성을 측정한 결과 둘 모두에서 AG.E는 50 ㎍/mL의 낮은 농도부터 epigallocatechin (EGCG)보다 더 높은 저해 효과를 나타내었다. 특히 500 ㎍/mL 농도에서 EGCG 대비 3배 이상의 저해 효과를 보였다. CCD-986sk 세포내에서 AG.E의 항노화 효과를 검증하기 위해 UVB로 자극한 다양한 실험에서도 우수한 항노화 효과가 얻어졌다. RT-PCR을 통한 유전자 발현 분석 실험에서 COL1A mRNA 발현량은 AG.E 20 ㎍/mL 저농도에서 무첨가 대비 2.90배 증가시키는 결과가 얻어져 항노화관련 우수한 기능성 소재로 개발 가능성이 확인되었다. 제형에 소재의 적용 시 생리활성의 경시적 보전성에 대한 기초 연구로서 AG.E 및 AA등을 안정한 W/O type emulsion에 첨가하여 25 ℃ 항온조에 보관하면서 1일차, 30일차, 60일차에 DPPH와 ABTS+ 라디칼소거 활성을 측정한 결과 모두 경시적으로 항산화 효과가 높은수준 유지됨을 확인하였다.

Abstract AI-Helper 아이콘AI-Helper

As a result of this study, DPPH radical scavenging activity was 81.8% at a concentration of 100 ㎍/mL of Alpinia galanga L. rhizome 70% ethanol extract (AG.E), and ABTS+ radical scavenging activity was confirmed to be 99.8%, similar to L-Ascorbic acid (AA), at a low concentration of 50 ㎍...

Keyword

참고문헌 (45)

  1. Qin Y, Li X, Wu J, Yu K (2022) A management method of chronic?diseases in the elderly based on IoT security environment. Comput Electr?Eng 102: 108188. doi: 10.1016/j.compeleceng.2022.108188 

  2. Shlisky J, Bloom DE, Beaudreault AR, Tucker KL, Keller HH, FreundLevi Y, Fielding RA, Cheng FW, Jensen GL, Wu D, Meydani SN (2017)?Nutritional Considerations for Healthy Aging and Reduction in AgeRelated Chronic Disease. Adv Nutr 8: 17-26. doi: 10.3945/an.116.013474 

  3. Kline KA, Bowdish DME (2016) Infection in an aging population.?Current Opinion in Microbiology 29: 63-67. doi: 10.1016/j.mib.2015.11.003 

  4. Kim HS, Shin KO (2022) A theoretical Study for the Introduction of?Beauty Welfare System in Korea, Aging Society. J Kor Soc Cosmetol?28: 165-171. doi: 10.52660/JKSC.2022.28.1.165 

  5. Lowe P, Mcbride-Henry K (2012) What factors impact upon the quality?of life of elderly women with chronic illnesses: Three women's?perspectives. Contemporary Nurse 41: 18-27. doi: 10.5172/conu.2012.41.1.18 

  6. Shin JW, Kwon SH, Choi JY, Na JI, Huh CH, Choi HR, Park KC (2019)?Molecular Mechanisms of Dermal Aging and Antiaging Approaches. Int?J Mol Sci 20: 2126. doi: 10.3390/ijms20092126 

  7. Pittet JC, Freis O, Smit N, Vazquez-Duchene MD, Perie G, Pauly G?(2014) Evaluation of Elastin/Collagen Content in Human Dermis inVivo by Multiphoton Tomography-Variation with Depth and?Correlation with Aging. Cosmetics 1: 211-221. doi: 10.3390/cosmetics1030211 

  8. Kim YA, Kim DH, Yu JM, Park CB, Park TS, Park BJ (2017) Antiwrinkle effects of extracts and solvent fractions from Nymphoides peltata?on CCD-986sk. J Appl Biol Chem 60: 357-362. doi: 10.3839/jabc.2017.056 

  9. Park SH, Kim JM, Kim JH, Oh YS, Joo DH, Lee EY, Shin HS, Kim?AR, Lee SL, Park SN (2017) Antioxidative Effects and Component?Analysis of Graviola (Annona muricata) Leaf Extract/Fractions. J Soc?Cosmet Sci Korea 43: 309-320. doi: 10.15230/SCSK.2017.43.4.309 

  10. Lim SB, Kim MU, Lee EH, Kim YJ, Choi EB, Park KI, Kang IK, Choi?YJ (2018) Anti-Oxidant and Inhibitory Activities on Elastase,?Collagenase, Hyaluronidase, and α-Glucosidase of Cedrela sinensis?Fruits. J Korean Soc Food Sci Nutr 47: 1085-1092. doi: 10.3746/jkfn.2018.47.11.1085 

  11. Lee KE, Son SH, Kang SG (2018) The Coffee Sliver Skin Extracts from?Coffee Beans Exhibited Cosmetic Properties with Antioxiant Activity?and Inhibitory Effects for Elastase, Collagenase and Tyrosinase. J Soc?Cosmet Sci Korea 44: 39-48. doi: 10.15230/SCSK.2018.44.1.39 

  12. Oliveira MM, Ratti BA, Dare RG, Silva SO, Truiti MCT, UedaNakamura T, Auzely-Velty R, Nakamura CV (2019) Dihydrocaffeic?Acid Prevents UVB-Induced Oxidative Stress Leading to the Inhibition?of Apoptosis and MMP-1 Expression via p38 Signaling Pathway.?Oxidative Medicine and Cellular Longevity 2019: 2419096. doi: 10.1155/2019/2419096 

  13. Na EJ, Jang HH, Kim GR (2016) Review of Recent Studies and?Research Analysis for Anti-oxidant and Anti-aging Materials. Asian J?Beauty Cosmetol 14: 481-491. doi: 10.20402/ajbc.2016.0107 

  14. Sonani RR, Rastogi RP, Madamwar D (2015) Antioxidant Potential of?Phycobiliproteins: Role in Anti-Aging Research. Biochem Anal?Biochem 4: 1000172. doi: 10.4172/2161-1009.1000172 

  15. Masaki H (2010) Role of antioxidants in the skin: Anti-aging effects.?Journal of Dermatological Science 58: 85-90. doi: 10.1016/j.jdermsci.2010.03.003 

  16. Khairullah AR, Solikhah TI, Ansori ANM, Fadholly A, Ramandinianto?SC, Ansharieta R, Widodo A, Riwu KHP, Putri N, Proboningrat A,?Kusala MKJ, Rendragraha BW, Putra ARS, Anshori A (2020) A Review?of an Important Medicinal Plant: Alpinia galanga (L.) Willd. Sys Rev?Pharm 11: 387-395 

  17. Oonmetta-aree J, Suzuki T, Gasaluck P, Eumkeb G (2006) Antimicrobial?properties and action of galangal (Alpinia galanga Linn.) on?Staphylococcus aureus. LWT-Food Science and Technology 39: 1214-1220. doi: 10.1016/j.lwt.2005.06.015 

  18. Park BY, Lee SK, Jeong IH, Park SK, Lee SB (2018) Insecticidal?activities and repellent effects of methylcinnamate and essential oils from?Alpinia galangal against nymphs and adults of Metcalfa pruinose. J Appl?Biol Chem 61: 291-295. doi: 10.3839/jabc.2018.041 

  19. Hidayat IW, Astuti RT, Kusuma TM (2021) Product Development of?Anti Acne Gel: Combination of White Turmeric Rhizome Ethanol?Extract (Curcuma Mango Val) and Galangal Rhizome Ethanol Extract?(Alpinia Galanga). Urecol Journal Part C: Health Sciences 1: 17-23. doi: 10.53017/ujhs.42 

  20. Chouni A, Paul S (2018) A Review on Phytochemical and?Pharmacological Potential of Alpinia galanga. Pharmacogn J 10: 9-15.?doi: 10.5530/pj.2018.1.2 

  21. Zeng QH, Lu CL, Zhang XW, Jiang JG (2015) Isolation and?identification of ingredients inducing cancer cell death from the seeds of?Alpinia galanga, a Chinese spice. Food Funct 6: 431-443. doi: 10.1039/c4fo00709c 

  22. Ramanunny AK, Wadhwa S, Singh SK, Kumar B, Gulati M, Kumar A,?Almawash S, Saqr AA, Gowthamarajan K, Dua K, Singh H, Vishwas S,?Khursheed R, Parveen SR, Venkatesan A, Paudel KR, Hansbro PM,?Chellappan DK (2022) Topical non-aqueous nanoemulsion of Alpinia?galanga extract for effective treatment in psoriasis: In vitro and in vivo?evaluation. International Journal of Pharmaceutics 624: 121882. doi: 10.1016/j.ijpharm.2022.121882 

  23. Gomes A, Costa ALR, Perrechil FA, Cunha RL (2016) Role of the?phases composition on the incorporation of gallic acid in O/W and W/O?emulsions. J Food Eng 168: 205-214. doi: 10.1016/j.jfoodeng.2015.07.041 

  24. Kim WH, Lee KS, Lee KK (2012) An Experimental Study on the?Property and Stability of W/O emulsion by Various Structures of?Emulsifier. J Soc Cosmet Sci Korea 38: 119-131. doi: 10.15230/SCSK.2012.38.2.119 

  25. Yeon JY, Seo JM, Kim TH, Shin JG (2018) Emulsion Stability of Low?Viscosity W/O emulsion and Application of Inorganic Sunscreen Agents.?Journal of Oil & Applied Science 35: 985-1001. doi: 10.12925/jkocs.2018.35.3.985 

  26. Blois MS (1958) Antioxidant determinations by the use of a stable free?radical. Nature 181: 1199-1200 doi: 10.1038/1811199a0 

  27. Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C?(1999) Antioxidant activity applying an improved ABTS radical cation?decolorization assay. Free Radic Biol Med 26: 1231-1237. doi: 10.1016/S0891-5849(98)00315-3 

  28. Cannell RJP, Kellam SJ, Owsianka AM, Walker JM (1988) Results of a?large scale screen of microalgae for the production of protease inhibitors.?Planta medica 54: 10-14. doi: 10.1055/s-2006-962319 

  29. Wunsch E, Heidrich HG (1963) Zur quantitativen bestimmung der?kollagenase. Hoppe-Seyler's Physiol Chem 333: 149-151. doi: 10.1515/bchm2.1963.333.1.149 

  30. Huang H, Chen AY, Ye X, Guan R, Rankin GO, Chen YC (2020)?Galangin, a Flavonoid from Lesser Galangal, Induced Apoptosis via?p53-Dependent Pathway in Ovarian Cancer Cells. Molecules 25: 1579.?doi:10.3390/molecules25071579 

  31. Divakaran SA, Hema PS, Nair MS, Nair CKK (2013) Antioxidant?capacity and radiopro tective properties of the flavonoids galangin and?kaempferide isolated from Alpinia galanga L. (Zin giberaceae) against?radiation induced cellular DNA damage. Inter J Radiat Res 11: 81-89 

  32. Iwami M, Shiina T, Hirayama H, Shima T, Takewaki T, Shimizu Y?(2011) Inhibitory effects of zingerone, a pungent component of Zingiber?officinale Roscoe, on colonic motility in rats. J Nat Med 65: 89-94. doi:?10.1007/s11418-010-0463-0 

  33. Villano D, Fernandez-Pachon MS, Troncoso AM, Garcia-Parrilla MC?(2005) Comparison of antioxidant activity of wine phenolic compounds?and metabolites in vitro. Analytica Chimica Acta 538: 391-398. doi:?10.1016/j.aca.2005.02.016 

  34. Lee KE, Bharadwaj S, Yadava U, Kang SG (2019) Evaluation of?caffeine as inhibitor against collagenase, elastase and tyrosinase using in?silico and in vitro approach. J Enzyme Inhib Med Chem 34: 927-936.?doi: 10.1080/14756366.2019.1596904 

  35. Roh E, Kim JE, Kwon JY, Park JS, Bode AM, Dong Z (2014) Molecular?mechanisms of green tea polyphenols with protective effects against skin?photoaging. Crit Rev Food Sci Nutr 57; 1631-1637. doi:10.1080/10408398.2014.1003365 

  36. Kim E, Han SY, Hwang K, Kim D, Kim EM, Hossain MA, Kim JH,?Cho JY (2019) Antioxidant and Cytoprotective Effects of (-)-?Epigallocatechin-3-(3"-O-methyl) Gallate. Int J Mol Sci 20; 3993. doi:10.3390/ijms20163993 

  37. Ying QL, Rinehart AR, Simon SR, Cheronis JC (1991) Inhibition of?human leucocyte elastase by ursolic acid. Biochem J 277: 521-526. doi:10.1042/bj2770521 

  38. Park JG, Kramer BS, Steinberg SM, Carmichael J, Collins JM, Minna?JD, Gazdar AF (1987) Chemosensitivity Testing of Human Colorectal?Carcinoma Cell Lines Using a Tetrazolium-based Colorimetrie Assay.?Cancer Research 47: 5875-5879. 

  39. ISO 10993-5:2009 Biological Evaluation of Medical Devices. Part 5?(2009) Tests for In Vitro Cytotoxicity. International Organization for?Standardization, Geneva, Switzerland 

  40. Bae I, Kim TG, Kim T, Kim D, Kim DH, Jo J, Lee YJ, Jeong YI (2022)?Phenethyl Isothiocyanate-Conjugated Chitosan Oligosaccharide?Nanophotosensitizers for Photodynamic Treatment of Human Cancer?Cells. Int J Mol Sci 23; 13802. doi: 10.3390/ijms232213802 

  41. Jang YA, Lee JT (2018) Anti-wrinkle effect of berberine by inhibition of?MMP-2 and MMP-9 activity in fibroblasts. J Appl Biol Chem 61: 9-15.?doi: 10.3839/jabc.2018.002 

  42. Chithra P, Sajithlal GB, Chandrakasan G (1998) Influence of Aloe vera?on collagen characteristics in healing dermal wounds in rats. Mol Cell?Biochem 181: 71-76. doi: 10.1023/a:1006813510959 

  43. Xue S, Li L (2011) Upregulation of collagen type 1 in aged murine?dermis after transplantation of dermal multipotent cells. Clin Exp?Dermatol 36: 775-781. doi: 10.1111/j.1365-2230.2011.04071.x 

  44. Bikiaris ND, Koumentakou I, Hatzistamatiou K, Lykidou S, Barmpalexis?P, Nikolaidis N (2023) Preparation and Investigation of the SPF and?Antioxidant Properties of O/W and W/O emulsions Containing Vitamins?A, C and E for Cosmetic Applications. Cosmetics 10: 76. doi: 10.3390/cosmetics10030076 

  45. Bahtz J, Gunes DZ, Syrbe A, Mosca N, Fischer P, Windhab EJ (2016)?Quantification of Spontaneous W/O Emulsification and its Impact on the?Swelling Kinetics of Multiple W/O/W Emulsions. Langmuir 32: 5787-5795. doi: 10.1021/acs.langmuir.6b00425 

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