Page 60 - JCTR-11-1
P. 60
Journal of Clinical and
Translational Research Hesperidin enhances repair of γ-irradiated wounds
doi: 10.1007/S10029-006-0150-Y doi: 10.4172/2329-8936.1000111
108. Schuster R, Younesi F, Ezzo M, Hinz B. The role of 119. Carvalho MTB, Araújo-Filho HG, Barreto AS, Quintans-
myofibroblasts in physiological and pathological tissue Júnior LJ, Quintans JSS, Barreto RSS. Wound healing
repair. Cold Spring Harb Perspect Biol. 2023;15(1):a041231. properties of flavonoids: A systematic review highlighting
the mechanisms of action. Phytomedicine. 2021;90:153636.
doi: 10.1101/CSHPERSPECT.A041231
doi: 10.1016/J.PHYMED.2021.153636
109. Younesi FS, Miller AE, Barker TH, Rossi FMV, Hinz B.
Fibroblast and myofibroblast activation in normal tissue 120. Zulkefli N, Che Zahari CNM, Sayuti NH, et al. Flavonoids as
repair and fibrosis. Nat Rev Mol Cell Biol. 2024;25(8):617-638. potential wound-healing molecules: Emphasis on pathways
perspective. Int J Mol Sci. 2023;24(5):4607.
doi: 10.1038/S41580-024-00716-0
doi: 10.3390/IJMS24054607
110. Bumann J, Santo-Holtje L, Loffler H, Bamberg M,
Rodemann HP. Radiation-induced alterations of the 121. Choi SS, Lee SH, Lee KA. A comparative study of hesperetin,
proliferation dynamics of human skin fibroblasts after hesperidin and hesperidin glucoside: Antioxidant,
repeated irradiation in the subtherapeutic dose range. anti-inflammatory, and antibacterial activities in vitro.
Strahlenther Onkol. 1995;171(1):35-41. Antioxidants (Basel). 2022;11(8):1618.
111. Cialdai F, Risaliti C, Monici M. Role of fibroblasts in wound doi: 10.3390/ANTIOX11081618
healing and tissue remodeling on Earth and in space. Front 122. Kim HJ, Lee SH, Hong SK, Gil BI, Lee KA. In vitro biological
Bioeng Biotechnol. 2022;10:958381. activities of hesperidin-related compounds with different
doi: 10.3389/FBIOE.2022.958381 solubility. Antioxidants (Basel). 2024;13(6):727.
112. Bellini A, Mattoli S. The role of the fibrocyte, a bone marrow- doi: 10.3390/ANTIOX13060727
derived mesenchymal progenitor, in reactive and reparative 123. Ambrozova N, Ulrichova J, Galandakova A. Models for the
fibroses. Lab Invest. 2007;87(9):858-870. study of skin wound healing. The role of Nrf2 and NF-κB.
doi: 10.1038/LABINVEST.3700654 Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub.
2017;161(1):1-13.
113. Correa-Gallegos D, Jiang D, Rinkevich Y. Fibroblasts
as confederates of the immune system. Immunol Rev. doi: 10.5507/bp.2016.063
2021;302(1):147-162. 124. Lalrinzuali K, Vabeiryureilai M, Jagetia GC. Topical
doi: 10.1111/IMR.12972 application of stem bark ethanol extract of Sonapatha,
Oroxylum indicum (L.) Kurz accelerates healing of
114. Comazzetto S, Shen B, Morrison SJ. Niches that regulate stem deep dermal excision wound in Swiss albino mice.
cells and hematopoiesis in adult bone marrow. Develomental J Ethnopharmacol. 2018;227:290-299.
Cell. 2021;56(13):1848-1860.
doi: 10.1016/j.jep.2018.08.018
doi: 10.1016/j.devcel.2021.05.018
125. Tong J, Hu C, Wu Y, Liu Q, Sun D. Radiation-induced
115. Jagetia GC, Rajanikant GK, Rao SK, Baliga M. Alteration NF-κB activation is involved in cochlear damage in mice via
in the glutathione, glutathione peroxidase, superoxide promotion of a local inflammatory response. J Radiat Res.
dismutase and lipid peroxidation by ascorbic acid in the skin 2023;64(1):63-72.
of mice exposed to fractionated gamma radiation. Clin Chim
Acta. 2003;332(1-2):111-121. doi: 10.1093/JRR/RRAC068
126. Leite CDS, Bonafé GA, Pires OC, et al. Dipotassium
doi: 10.1016/S0009-8981(03)00132-3
glycyrrhizininate improves skin wound healing by
116. Jagetia GC, Rajanikant GK. Curcumin stimulates modulating inflammatory process. Int J Mol Sci.
the antioxidant mechanisms in mouse skin exposed 2023;24(4):3839.
to fractionated γ-irradiation. Antioxidants (Basel).
2015;4(1):25-41. doi: 10.3390/IJMS24043839
127. Calabrese V, Cornelius C, Stella AMG, Calabrese EJ. Cellular
doi: 10.3390/ANTIOX4010025
stress responses, mitostress and carnitine insufficiencies
117. Jagetia GC, Ganapathi NG, Venkatesh P, Rao N, Baliga MS. as critical determinants in aging and neurodegenerative
Evaluation of the radioprotective effect of Liv 52 in mice. disorders: Role of hormesis and vitagenes. Neurochem Res.
Environ Mol Mutagen. 2006;47(7):490-502. 2010;35(12):1880-1915.
doi: 10.1002/em.20218 doi: 10.1007/S11064-010-0307-Z
118. Jagetia GC, Rao KVNM. Hesperidin, a citrus bioflavonoid 128. Calabrese V, Wenzel U, Piccoli T, et al. Investigating
reduces the oxidative stress in the skin of mouse exposed to hormesis, aging, and neurodegeneration: From bench to
partial body γ-radiation. Transcriptomics. 2015;3:2. clinics. Open Med. 2024;19(1):20240986.
Volume 11 Issue 1 (2025) 54 doi: 10.36922/jctr.24.00049

