[1] Nie P,Zhao Y.,Xu H. .2023 .Synthesis, applications, toxicity and toxicity mechanisms of silver nanoparticles: A review. Ecotoxicol. Environ. Saf, 253 : .
[2] .2023 .. , 114636 : .
[3] Makarov V.,Makarova S.S.,Yaminsky V.,Kalinina N.O. .2014 .V, AJ. , : .
[4] . .Green" nanotechnologies: Synthesis of metal nanoparticles using plants. Acta Naturae, 6 : 35-44.
[5] Ashique S,Upadhyay A.,Hussain A.,Bag S.,Chaterjee D. .2022 .Green biogenic silver nanoparticles, therapeutic uses, recent advances, risk assessment, challenges, and future perspectives. J. Drug Delivery Sci., : .
[6] Technol .2022 .. , 103876 : .
[7] Hillaireau H.,Couvreur P. .2009 .Nanocarriers entry into the cell: Relevance to drug delivery. Cell. Mol. Life Sci, 66 : 2873-2896.
[8] Ocwigja Z.,Adamczyk M.,Morga K.,Kubiak K. .2015 .. , : .
[9] Adv . .. , 222 : 530-563.
[10] Bagherzade G,Namaei M.H. .2017 .. , : .
[11] . .Green syn tofshilveernsanoipartsicles using aqueous extract of saffron (Crocus sativus L.) wastages and its antibacterial activity against six bacteria. Asian Pac. J. Trop. Biomed., 7 : 227-233.
[12] Ahluwalia V.,Kumar J.,Sisodia R.,Shakil N.A.,Walia S. .2014 .Green synthesis of silver nanoparticles by 7richoderma harzianum and their bio-efficacy evaluation against Staphylococcus aureus and Klebsiella pneumonia. , : .
[13] Prod Ind. Crops . .. , 55 : 202-206.
[14] Xu Z,Zha X.,Ji R.,Zhao H.,Zhou S. .2023 .Green biosynthesis of silver nanoparticles using aqueous extracts of Ageratum Conyzoides and their anti-inflammatory effects. , : .
[15] . .. ACS Appl. Mater. Interfaces, 15 : 13983-13992.
[16] Feghali ,T.M. Wright .1997 .Cytokines in acute and chronicinflammation. , 2 : 12-26.
[17] Sonis S.T. .2002 .The biologic role for nuclear factor-KappaB in disease and its potential involvement in mucosal injury associated with anti-neoplastic therapy. Crit. Rev. Oral Biol., : .
[18] . .. , 13 : 380-389.
[19] . Sultani M.,AM J.M. .2012 .Bowen and RJ. , : .
[20] .2012 .Anti-inflammatory cytokines: Important immunoregulatory factors contributing to chemotherapy-induced gastrointestinal mucositis. Chemother. Res. Pract, : .
[21] Al-Nadaf AH,Seder N.J.,Rayyan W. Abu .2018 .Wound healing; antimicrobiaalnd anti-aoctixvitiydfor aJonrdatnian Juglans regia L. unripe fruits. J. Innovations Pharm. Biol. Sci., 5 : 26-34.
[22] Khattak P.,Khalil T.F.,Bibi S.,Jabeen H.,Muhammad N.,Liaqat S. .2022 .Juglans regia (walnut tree) bark in dentistry: walnut tree bark in dentistry.. , : .
[23] Pak. BioMedical . .. , 5 : 152-156.
[24] de AlmeidaJr .2019 ./n vivo methods for the evaluation of anti-inflammatory and antinoceptive potential. Br. J. Pain, 2 : 386-389.
[25] Korbekandi S.S.,Jalayer M.,Bandegani M. .2013 .Nanosilver particle production using Juglans regia L. Walnut) leaf extract. Jundishapur J. Nat., : .
[26] Pharm. Prod. . .. , 8 : 20-26.
[27] Arya G.,Kumar N.,Gupta N.,Kumar A.,Nimesh S. .2017 .. , : .
[28] . .Antibacterial potential of silvernanoparticles biosynthesised using Canarium ovatum leaves extract. [ET Nanobiotechnol, 11 : 506-511.
[29] Muley MM,McDougall J.J. .2016 .Preclinical assessment of inflammatory pain. CNS Neurosci. Ther., 22 : 88-101.
[30] Hunskaar S.,Hole K. .1987 .The formalin test in mice: Dissociation between inflammatory and non-inflammatory pain. Pain, 30 : 103-114.
[31] Pereira ,Oliveira A.,Sousa P.,Valentao and P.B. Andrade P. .2007 .Walnut (Juglans regia L.) leaves: Phenolic compounds, antibacterial activity and antioxidant potential of different cultivars. Food Chem, 45 : 2287-2295.
[32] Oliveira I,A I,Ferreira C.F.R.,Bento A.,Estevinho L.,Pereira J.A. .2008 .Total phenols, antioxidant potential and antimicrobialactoifvwialtnuyt (Juglans regia L.) green husks. , : .
[33] Chem Food . .. , 46 : 2326-2331.
[34] Prathna N.,Chandrasekaran A.,Mukherjee A. .2011 .. , : .
[35] Aspects . .. , 390 : 216-224.
[36] Wiley B.J.,Im S.H.,SiekkkinenandY. Xia A. .2006 .Maneuvering the surface plasmon resonance of silver nanostructures through shape-controlled synthesis. , : .
[37] Phys. Chem J. . .. , 110 : 15666-15675.
[38] Gaikwad S.,Birla A.P.,Ingle A.,Gade P.,Ingle P.,Goliriska M.,Rai M. .2022 .Superior /n vivo wound-healing activity of mycosynthesized silver nanogel on different wound models inrat. Front. Microbiol,, 881404 : .
[39] Pop R,Ungur A.P.,Negoescu A. .2022 .Helicobacter pylori-induced ~ gastric infections: From pathogenesis to novel therapeutic approaches using silver nanoparticles. Pharmaceutics, 14 : .
[40] . .. , : .
[41] Wang J.P,Y.M. Zhou Y.J.,Ye X.M.,Shang Y.L.,Cai Y.L. .2011 .Topical anti-inflammatory and analgesic activity of kirenol isolated from Siegesbeckia orientalis. , : .
[42] Ethnopharmacol J. . .. , 137 : 1089-1094.
[43] Hernandez-Perez M.,Rabanal R.M. .2002 .Evaluation of the antinflammatory and analgesic activity of Sideritis canariensis var. pannosa in mice. J. Ethnopharmacol, 81 : 43-47.
[44] Quintans-Junior .2010 .Bioassay-guided evaluation of anti neffeoctocfAtisaliccyloeyltrpyptatminei:A vbeheavioral and electrophysiological approach. J. Biomed. Biotechnol., 10 : .
[45] Winder CV,M.D. Stephens CV .1969 .. , : .
[46] Rheumatism Arthritis . .. , 12 : 472-482.
[47] Walz D.T. .1971 .. MJ. DiMartino, JH. Kuch andW. Zuccarello, : .
[48] . .. Exp. Biol. Med, 136 : 907-910.
[49] Khane Y.,Benouis K.,Abomughaid K. .2022 .Green synthesis of silver nanoparticles using aqueous citrus limon zest extract: characterization and evaluation of their antioxidant and antimicrobial properties. , 12 : .
[50] . .. , : .