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Skin rejuvenation catechins

Skin rejuvenation catechins

Source Intra J, Kuo SM. CrossRef S,in, the Skin rejuvenation catechins inhibitory activity of EGCG was improved after the conjugation with SF. Farris P. Sevin A, Oztaş P, Senen D, et al. Follow us.

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Hydrogen peroxide inhibits human keratinocyte migration. Dermatol Surg. Weckroth M, Vaheri A, Lauharanta J, Sorsa T, Konttinen YT. Matrix metalloproteinases, gelatinase and collagenase, in chronic leg ulcers. Kawaguchi Y, Tanaka H, Okada T, Konishi H, Takahashi M, Ito M, Asai J.

The effects of ultraviolet A and reactive oxygen species on the mRNA expression of kDa type IV collagenase and its tissue inhibitor in cultured human dermal fibroblasts.

Arch Dermatol Res. Nouvong A, Ambrus AM, Zhang ER, Hultman L, Coller HA. Reactive oxygen species and bacterial biofilms in diabetic wound healing.

Physiol Genomics. Koh L-D, Yeo J, Lee YY, Han QOM, Tee BC-K. Advancing the frontiers of silk fibroin protein-based materials for futuristic electronics and clinical wound-healing Invited review. Mater Sci Eng C. Murphy AR, Kaplan DL. Biomedical applications of chemically-modified silk fibroin.

J Mater Chem. Rameshbabu AP, Bankoti K, Datta S, Subramani E, Apoorva A, Ghosh P, Jana S, Manchikanti P, Roy S, Chaudhury K, Dhara S. Chen Z, Zhang Q, Li H. Elastin-like polypeptide modified silk fibroin porous scaffold promotes osteochondral repair.

Bioact Mater. Sun J, Xing F, Yang Y. Stem Cell Res Ther. Vepari C, Matheson D, Drummy L. Surface modification of silk fibroin with poly ethylene glycol for antiadhesion and antithrombotic applications. J Biomed Mater Res Part A. Sun W, Incitti T, Migliaresi C. Viability and neuronal differentiation of neural stem cells encapsulated in silk fibroin hydrogel functionalized with an IKVAV peptide.

J Tissue Eng Regen Med. Zhang Y, Lu L, Wang J. Polydopamine modification of silk fibroin membranes significantly promotes their wound healing effect. Biomater Sci. Jing J, Liang S, Yan Y. Fabrication of hybrid hydrogels from silk fibroin and tannic acid with enhanced gelatin and antibacterial activities.

ACS Biomater Sci Eng. Martínez-Mora C, Mrowiec A, García-Vizcaíno EM, Alcaraz A, Cenis JL, Nicolás FJ. Fibroin and sericin from Bombyx mori silk stimulate cell migration through upregulation and phosphorylation of c-Jun. PLoS one. Park YR, Sultan T, Park HJ, Lee JM, Ju HW, Lee OJ, Lee DJ, Kaplan DL, Park CH.

NF-κB signaling is key in the wound healing processes of silk fibroin. Acta Biomater. Srivastava CM, Purwar R, Kannaujia R, Sharma D. Flexible silk fibroin films for wound dressing. Fibers Polym.

Min S, Gao X, Han C, Chen Y, Yang M, Zhu L, Zhang H, Liu L, Yao J. Preparation of a silk fibroin spongy wound dressing and its therapeutic efficiency in skin defects. J Biomater Sci Polym Ed. Zhang D, Li L, Shan Y, Xiong J, Hu Z, Zhang Y, Gao J.

J Drug Deliv Sci Technol. Chouhan D, Lohe T-U, Samudrala PK, Mandal BB. In situ forming injectable silk fibroin hydrogel promotes skin regeneration in full thickness burn wounds.

Adv Healthc Mater. Weller C, Sussman G. Wound dressings update. J Pharm Pract Res. Morgan DA, Wound management products in the drug tariff, Pharm. Partlow BP, Hanna CW, Rnjak-Kovacina J, Moreau JE, Applegate MB, Burke KA, Marelli B, Mitropoulos AN, Omenetto FG, Kaplan DL.

Highly tunable elastomeric silk biomaterials. Adv Funct Mater. McGill M, Coburn JM, Partlow BP, Mu X, Kaplan DL.

Molecular and macro-scale analysis of enzyme-crosslinked silk hydrogels for rational biomaterial design, Acta Biomater. Hasturk O, Jordan KE, Choi J, Kaplan DL, Enzymatically crosslinked silk and silk-gelatin hydrogels with tunable gelation kinetics, mechanical properties and bioactivity for cell culture and encapsulation, Biomaterials.

Oliver S, Vittorio O, Cirillo G, Boyer C. Enhancing the therapeutic effects of polyphenols with macromolecules. Polym Chem. Seo Y, Leong J, Teo JY, Mitchell JW, Gillette MU, Han B, Lee J, Kong H.

Active antioxidizing particles for on-demand pressure-driven molecular release. ACS Appl Mater Interfaces. Hsu S, Bollag WB, Lewis J, Huang Q, Singh B, Sharawy M, Yamamoto T, Schuster G.

Green tea polyphenols induce differentiation and proliferation in epidermal keratinocytes. J Pharmacol Exp Ther. Vaithanomsat P, Punyasawon C, Production of water-soluble silk powder from Bombyx mori, Kasetsart Journal natural science.

Liu C, Bae KH, Yamashita A, Chung JE, Kurisawa M. Thiol-mediated synthesis of hyaluronic acid—epigallocatechinO-gallate conjugates for the formation of injectable hydrogels with free radical scavenging property and degradation resistance. Kondo K, Kurihara M, Miyata N, Suzuki T, Toyoda M.

Scavenging mechanisms of - -epigallocatechin gallate and - -epicatechin gallate on peroxyl radicals and formation of superoxide during the inhibitory action, Free Radic. Biol Med. Lee F, Lim J, Reithofer MR, Lee SS, Chung JE, Hausera CAE, Kurisawa M.

Synthesis and bioactivity of a conjugate composed of green tea catechins and hyaluronic acid. Partlow BP, Bagheri M, Harden JL, Kaplan DL, Tyrosine templating in the self-assembly and crystallization of silk fibroin, Biomacromolecules.

Cheng G, Wang X, Tao S, Xia J, Xu S. Laity PR, Holland C. Native silk feedstock as a model biopolymer: a rheological perspective. Cao D, Zhang Y, Zhang H, Zhong L, Qian X. Systematic characterization of the covalent interactions between - -epigallocatechin gallate and peptides under physiological conditions by mass spectrometry.

Rapid Commun Mass Spectrom. Zainuddin TT, Le Y, Park TV, Chirila PJ, Halley AK, Whittaker. The behavior of aged regenerated Bombyx mori silk fibroin solutions studied by 1 H NMR and rheology. Ashraf JM, Rabbani G, Ahmad S, Hasan Q, Khan RH, Alam K, Choi I. Glycation of H1 Histone by 3-deoxyglucosone: Effects on protein structure and generation of different advanced glycation end products.

PLoS One. Liu Q, Liu Y, He H, Wang F, Yao D, He F, Liu H, Fan Y. Silk fibroin scavenges hydroxyl radicals produced from a long-term stored water-soluble fullerene system. J Mater Chem B. Nguyen TTH, Moon Y-H, Ryu Y-B, Kim Y-M, Nam S-H, Kim M-S, Kimura A, Kim D.

The influence of flavonoid compounds on the in vitro inhibition study of a human fibroblast collagenase catalytic domain expressed in E. Enzyme Microb Technol.

Madhan B, Krishnamoorthy G, Rao JR, Nair BU. Role of green tea polyphenols in the inhibition of collagenolytic activity by collagenase. Int J Biol Macromol. Minoda K, Ichikawa T, Katsumata T, Onobori K-I, Mori T, Suzuki Y, Ishii T, Nakayama T.

Influence of the galloyl moiety in tea catechins on binding affinity for human serum albumin. J Nutr Sci Vitaminol. Lee F, Bae KH, Kurisawa M. Injectable hydrogel systems crosslinked by horseradish peroxidase. Biomed Mater. Bae JW, Choi JH, Lee Y, Park KD. Horseradish peroxidase-catalysed in situ—forming hydrogels for tissue-engineering applications.

Lee F, Chung JE, Kurisawa M. An injectable enzymatically crosslinked hyaluronic acid—tyramine hydrogel system with independent tuning of mechanical strength and gelation rate. Soft Matter. Holt B, Tripathi A, Morgan J. Viscoelastic response of human skin to low magnitude physiologically relevant shear.

J Biomech. Chen S, Shi J, Xu X, Ding J, Zhong W, Zhang L, Xing M, Zhang L. Study of stiffness effects of poly amidoamine —poly n-isopropyl acrylamide hydrogel on wound healing. Colloids Surf B: Biointerfaces. Download references.

Department of Polymer Science and Engineering, Kumoh National Institute of Technology, Gumi, Gyeongbuk , Korea. Institute of Bioengineering and Bioimaging, 31 Biopolis Way, The Nanos, Singapore , Singapore. Gastrointestinal surgery, Kyungpook National University Chilgok Hospital, Daegu , Korea.

Department of Surgery, Kyungpook National University School of Medicine, Daegu , Korea. You can also search for this author in PubMed Google Scholar.

The author s read and approved the final manuscript. Correspondence to Oh Hyeong Kwon. The study was conducted according to the guidelines of the Declaration of Kumoh National Institute of Technology.

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations. Open Access This article is licensed under a Creative Commons Attribution 4. Reprints and permissions. Lee, G. et al. Green tea catechin-grafted silk fibroin hydrogels with reactive oxygen species scavenging activity for wound healing applications.

Biomater Res 26 , 62 Download citation. Received : 14 July Revised : 12 September Accepted : 05 October Published : 09 November Anyone you share the following link with will be able to read this content:.

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Abstract Background Overproduction of reactive oxygen species ROS is known to delay wound healing by causing oxidative tissue damage and inflammation. Methods The introduction of EGCG to water-soluble silk fibroin SF-WS was accomplished by the nucleophilic addition reaction between lysine residues in silk proteins and EGCG quinone at mild basic pH.

Conclusion This study will provide useful insights into a rational design of ROS scavenging biomaterials for wound healing applications. Running head: Green tea catechin-grafted silk fibroin hydrogel wound dressing.

Introduction Reactive oxygen species ROS are messenger molecules playing pivotal roles in multiple wound healing processes, including cell migration, angiogenesis and epithelialization [ 1 ]. The results show that EGCG can be absorbed by the skin. Overall, the conditions of the skin of EGCG-treatment groups were improved, the whole structure of skin were better than control groups, and the levels of oxidative stress and the expression of relate with EGFR proteins were significantly higher than control group after EGCG treatment.

All these findings suggest that EGCG can resist skin senility effectively. Tzellos TG, Sardeli C, Lallas A, et al. Efficacy, safety and tolerability of green tea catechins in the treatment of external anogenital warts: a systematic review and meta-analysis.

J Eur Acad Dermatol Venereol. Pajonk F, Riedisser A, Henke M, et al. The effects of tea extracts on proinflammatory signaling. BMC Med. Elsaie ML, Abdelhamid MF, Elsaaiee LT, et al. J Drugs Dermatol. Rasheed A, Shama SN, Joy JM, et al. Formulation and evaluation of herbal anti-acne moisturizer.

Pak J Pharm Sci. Tatti S, Stockfleth E, Beutner KR, et al. Polyphenon E: a new treatment for external anogenital warts. Br J Dermatol. Jung MK, Ha S, Son JA, et al. Arch Dermatol Res. Mahmood T, Akhtar N, Moldovan C.

A comparison of the effects of topical green tea and lotus on facial sebum control in healthy humans. Meltzer SM, Monk BJ, Tewari KS. Green tea catechins for treatment of external genital warts. Am J Obstet Gynecol. e1, Gross G, Meyer KG, Pres H, et al. Wu KM, Ghantous H, Birnkrant DB.

Current regulatory toxicology perspectives on the development of herbal medicines to prescription drug products in the United States. Food Chem Toxicol. Chen ST, Dou J, Temple R, et al. New therapies from old medicines. Nat Biotechnol. Tatti S, Swinehart JM, Thielert C, et al.

Sinecatechins, a defined green tea extract, in the treatment of external anogenital warts: a randomized controlled trial. Obstet Gynecol. Gross G. Polyphenon E. A new topical therapy for condylomata acuminate. Hoy SM. Stockfleth E, Meyer T. The use of sinecatechins polyphenon E ointment for treatment of external genital warts.

Expert Opin Biol Ther. Stockfleth E, Beti H, Orasan R, et al. Topical Polyphenon E in the treatment of external genital and perianal warts: a randomized controlled trial. Ahn WS, Yoo J, Huh SW, et al. Protective effects of green tea extracts polyphenon E and EGCG on human cervical lesions.

Eur J Cancer Prev. Berman B, Wolf J. The role of imiquimod 3. Skin Therapy Lett. Tyring SK. Sinecatechins: effects on HPV-induced enzymes involved in inflammatory mediator generation. J Clin Aesthet Dermatol.

Effect of sinecatechins on HPV-activated cell growth and induction of apoptosis. De Oliveira A, Adams SD, Lee LH, et al. Inhibition of herpes simplex virus type 1 with the modified green tea polyphenol palmitoyl-epigallocatechin gallate.

Isaacs CE, Wen GY, Xu W, et al. Epigallocatechin gallate inactivates clinical isolates of herpes simplex virus. Antimicrob Agents Chemother. Hartjen P, Frerk S, Hauber I, et al.

Assessment of the range of the HIV-1 infectivity enhancing effect of individual human semen specimen and the range of inhibition of EGCG. AIDS Res Ther. Shin WJ, Kim YK, Lee KH, et al. Evaluation of the antiviral activity of a green tea solution as a hand-wash disinfectant.

Biosci Biotechnol Biochem. Hsu S, Dickinson D, Borke J, et al. Green tea polyphenol induces caspase 14 in epidermal keratinocytes via MAPK pathways and reduces psoriasiform lesions in the flaky skin mouse model.

Exp Dermatol. Zhao JF, Zhang YJ, Jin XH, et al. Green tea protects against psoralen plus ultraviolet A-induced photochemical damage to skin.

Kwon OS, Han JH, Yoo HG, et al. Human hair growth enhancement in vitro by green tea epigallocatechingallate EGCG. Domingo DS, Camouse MM, Hsia AH, et al. Anti-angiogenic effects of epigallocatechingallate in human skin. Int J Clin Exp Pathol. Kim HK, Chang HK, Baek SY, et al. Treatment of atopic dermatitis associated with Malassezia sympodialis by green tea extracts bath therapy: a pilot study.

Hirasawa M, Takada K, Makumura M, et al. Improvement of periodontal status by green tea catechin using a local delivery system: a clinical pilot study. J Periodontal Res. Otake S, Makimura M, Kuroki T, et al.

Anticaries effects of polyphenolic compounds from Japanese green tea. Caries Res. Horiba N, Maekawa Y, Ito M, et al. A pilot study of Japanese green tea as a medicament: antibacterial and bactericidal effects.

J Endod. Sommer AP, Zhu D. Green tea and red light—a powerful duo in skin rejuvenation. Photomed Laser Surg. Ferzil G, Patel M, Phrsai N, et al.

Reduction of facial redness with resveratrol added to topical product containing green tea polyphenols and caffeine. Isbrucker RA, Edwards JA, Wolz E, et al.

Safety studies on epigallocatechin gallate EGCG preparations. Part 2: dermal, acute and short-term toxicity studies. Wijeratne MA, Anandacoomaraswamy A, Amarathunga MSKLD, et al. Assessment of impact of climate change on productivity of tea Camellia sinensis L. plantations in Sri Lanka.

J Natn Sci Foundation Sri Lanka. Farris P. Idebenone, green tea, and Coffeeberry extract: new and innovative antioxidants. Dermatol Ther. Levin J, Momin SB. How much do we really know about our favorite cosmeceutical ingredients?

Dvorakova K, Dorr RT, Valcic S, et al. Pharmacokinetics of the green tea derivative, EGCG, by the topical route of administration in mouse and human skin. Cancer Chemother Pharmacol. Bianchi A, Marchetti N, Scalia S. Photodegradation of - -epigallocatechingallate in topical cream formulations and its photostabilization.

J Pharm Biomed Anal. Silva AR, Seidl C, Furusho AS, et al. In vitro evaluation of the efficacy of commercial green tea extracts in UV protection.

Int J Cosmet Sci. Wei H, Zhang X, Zhao JF, et al. Scavenging of hydrogen peroxide and inhibition of ultraviolet light-induced oxidative DNA damage by aqueous extracts from green and black teas.

Free Radic Biol Med. Hunt KJ, Hung SK, Ernst E. Botanical extracts as anti-aging preparations for the skin: a systematic review. Drugs Aging. Elbling L, Weiss RM, Teufelhofer O, et al.

Green tea extract and - -epigallocatechingallate, the major tea catechin, exert oxidant but lack antioxidant activities. Yusuf N, Irby C, Katiyar SK, et al. Photoprotective effects of green tea polyphenols. Photodermatol Photoimmunol Photomed. Wang ZY, Agarwal R, Bickers DR, et al. Protection against ultraviolet B radiation-induced photocarcinogenesis in hairless mice by green tea polyphenols.

Biomaterials Research volume 26 Sikn, Article number: 62 Cite Skin rejuvenation catechins article. Metrics details. Boost metabolism naturally Correction to this Skin rejuvenation catechins was published catedhins 29 Skih Overproduction of reactive oxygen species ROS is known to delay wound healing by causing oxidative tissue damage and inflammation. The green tea catechin, — -Epigallocatechin O -gallate EGCGhas drawn a great deal of interest due to its strong ROS scavenging and anti-inflammatory activities. Skin rejuvenation catechins

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