[1] Mabkhot Y. N.,Al-Majid A. M.,Barakat A.,Al-Showiman S. S.,Munirah S. A.,Smaail R.,Moazzam N. Muhammad,Taibi B. H. .2014 .Synthesis and Biological Evaluation of 2- Aminobenzamide Derivatives as Antimicrobial Agents: Opening/Closing Pharmacophore Site. Int. J. Mol. Sci, 15(5115) : .
[2] Kumar Singha A.,Lohanib M.,Parthsarthya R.,Derivatives Oxadiazole,Pharm Iran. J. .2013 .. Characterization and Anti-Inflammatory activity of Some 1, 12(319) : 4.
[3] Moradei O.,Leit S.,Zhou N.,Fréchette S.,Raeppel S.,Gaudette F.,Woo S. H.,Vaisburg A.,Fournel M.,Kalita A.,Lu A.,M. C. TrachyBourget J.,Liu Z.,Li J.,Rahil A. R.,MacLeod J. M.,Besterman D.,Delorme D.,Substituted N,, N,- N- N .2006 .-acrylamides and their analogues: novel classes of histone deacetylase inhibitors. Bioorg. Med, 16(4048) : .
[4] Pîrnău A.,Bogdan M.,Călin G. F. .2009 .NMR spectroscopic characterization of β-cyclodextrin inclusion complex with vanillin. J. Physics: Conference Series, 182(012) : .
[5] Yanmei Z.,Haifeng Z.,Sensheng L.,Danwei P.,Guanshuo S. .2017 .Water as a hydrogen source in palladium-catalyzed reduction and reductive amination of nitroarenes mediated by diboronic acid, Tetrahedron. , 73(3898) : .
[6] Danyi C.,Yanmei Z.,Haifeng Z.,Sensheng L.,Qixing L.,Kaili Z.,Yasuhiro U. .2018 .Metal-free Reduction of Nitro Aromatics to Amines with B2(OH)4/H2O, synlett. , 29(1765) : .
[7] Randall Clark C.,Ching-Ming L.,Sansom R. T. .1986 .Synthesis and biological activity of benzothiazolo[3,2-a] quinolone antibac. J. Med, 29(1534) : .
[8] Javed I,Ullah I,Khan I,Ateeq M,Shahnaz G,Mater J. .2015 .H ur Rehman, Synthesis, Characterization and Evaluation of Lecithin Based Nanocarriers for Enhanced Pharmacological and Oral Pharmacokinetic Profile of Amphotericin B. , 8359(42) : .
[9] Nazir R,Mazhar M.,Akhtar M.J.,Shah M.R.,Khan N.A,Nadeem M.,Siddique N.,Mahmoud M.,Butt N.M. .2008 .Superparamagnetic bimetallic iron-palladium nanoalloy: synthesis and characterization. , 19(185608) : .
[10] Lateef A.,Nazir R.,Jamil N.,Alam S.,Shah R.,Khan M.N.,Saleem M. .2019 .Synthesis and characterization of environmental friendly corncob biochar based nano-composite - A potential slow release nano-fertilizer for sustainable agriculture. Environ. Nanotechnol. Monit. Manag., 11(100212) : .
[11] Iacovino R.,Rapuano F.,Caso J. Valentina,Russo A.,Lavorgna M.,Russo L.,G. L. .2013 .Malgieri and C. Isernia, β-Cyclodextrin Inclusion complex to Improve Physicochemical Properties of Pipemidic Acid: Characterization and Bioactivity Evaluation, Int. J. Mol. Sci, 14(13022) : .
[12] Milin S.,Vatsal S.,Anasuya G.,Zheng Z.,Tamara M.,Pharm J. .2015 .Molecular Inclusion complexes of β- Cyclodextrin Derivatives Enhance Aqueous Solubility and Cellular Internalization of Paclitaxel: Preformulation. , 10(8) : .
[13] Rajendiran N.,Sankaranarayanan R.K.,Saravanan J. .2014 .Nanostructures formed by cyclodextrin covered aminobenzophenones through supramolecular self assembly, Spectrochim. , 127(52) : .
[14] Hamdi R.,Abderrahim F.,Meganem F. .2010 .Spectroscopic studies of inclusion complex of β- cyclodextrin and benzidine diammonium dipicrate. Spectrochim. Acta. A., 75(32) : .
[15] Rajendiran N.,Mohandoss T.,Venkatesh G. .2014 .Investigation of inclusion complexes of sulfamerazine with α- and β-cyclodextrins: An experimental and theoretical study. Spectrochim. Acta. A., 124(441) : .
[16] Siva S.,Thulasidhasan J.,Rajendiran N.,A. N. .2013 .Host-guest inclusion complex of propafenone hydrochloride with α- and β-cyclodextrins: Spectral and molecular modeling studies, Spectrochim. , 115(559) : .
[17] Jara F.,Mascayano C.,Rezende M. Caroli,Tirapegui C.,Urzua A. .2006 .A spectral and molecular dynamics simulation study of β-cyclodextrin inclusion complexes with solvatochromic dyes derived from barbituric acid. J. Incl. Phenom. Macrocycl Chem, 54(95) : .
[18] Rajendiran N.,Siva S. .2014 .Inclusion compound of sulfadimethoxine with cyclodextrins: Preparation and characterization, Carbohyd Polym. , 101(828) : .
[19] Rajendiran N.,Sankaranarayanan R.K. .2014 .Azo dye/cyclodextrin: New findings of identical nanorods through 2: 2 inclusion complexes. , 106(422) : .
[20] Wang Z.,Qiu Y.,Wang Y.,Li. Li X.,Guo D.T.,Pham S. F.,Lincoln and R. K. Prud S. F. .2016 .'homme, Supramolecular polymer assembly in aqueous solution arising from cyclodextrin host-guest complexation. , 12(50) : .
[21] Medronho B.,A. J. M. Valente P,Romano A. .2014 .Inclusion complexes of rosmarinic acid and cyclodextrins: stoichiometry, association constants, and antioxidant potential, Colloid. , 292(885) : .
[22] Loftsson T.,Duchêne D. .2007 .Cyclodextrins and their applications, Inter. , 329(1) : .
[23] C. Machut J.,Patrigeon S.,Tilloy H.,Bricout F.,Hapiot F.,Monflier E. .2007 .Self-Assembled Supramolecular Bidentate Ligands for Aqueous Organometallic Catalysis, Angew. , 46(3040) : .
[24] J. Szejtli .1998 .General Overview of Cyclodextrin Chemistry, Chem. , 98(1743) : .
[25] Aleem O.,Kuchekar B.,Pore Y.,Late S. .2008 .Effect of β-cyclodextrin and hydroxypropyl β- cyclodextrin complexation on physicochemical properties and antimicrobial activity of cefdinir. J. Pharm. Biomed. Anal., 47(535) : .
[26] Wen X.,Tan F.,Jing Z.,Liu Z. .2004 .Preparation and study the 1:2 inclusion complex of carvedilol with beta-cyclodextrin. J. Pharm. Biomed. Anal., 34(517) : .
[27] M. Zhao H.,Wang B.,Yang H.,Tao H. .2010 .Identification of cyclodextrin inclusion complex of chlorogenic acid and its antimicrobial activity, Food Chem. , 120(1138) : .
[28] M. Banchero S.,Ronchetti L.,Manna L.,- Cyclodextrin Complexes Prepared Using Supercritical Carbon Dioxide J. Chem. .2013 .. , 8 : .
[29] M. Poorghorban A. H,Karoyo P.,Grochulski R. E.,Verrall L.D.,Wilson I.,Badea I. .2015 .A 1H NMR Study of Host/Guest Supramolecular Complexes of a Curcumin Analogue with β- Cyclodextrin and a β-Cyclodextrin-Conjugated Gemini Surfactant. Mol. Pharm, 12(2993) : .
[30] Farras P.,Waller H.,Benniston A. C. .2016 .Enhanced Photostability of a Ruthenium(II) Polypyridyl Complex under Highly Oxidizing Aqueous Conditions by Its Partial Inclusion into a Cyclodextrin, Chem. , 22(1133) : .
[31] Benesi H. A.,Hildebrand J. H. A. .1949 .Spectrophotometric Investigation of the Interaction of Iodine with Aromatic Hydrocarbons. J. Am. Chem. Soc., 71(2703) : .
[32] Xu Y.,Zhang X.,Li Y.,Zheng Y. .2017 .Inclusion complex of nateglinide with sulfobutyl ether β- cyclodextrin: Preparation, characterization and water solubility. J. Mol. Struct, 1141(328) : .
[33] J. Szejtli ,Highly Soluble ,Derivatives .1984 .. , 36(429) : .
[34] Hirayama F.,Uekama K. .1987 .Methods of investigating and preparing inclusion complexes. Cyclodextrins and Their Industrial Uses, 133 : .
[35] Li Dongsheng. Bai. .2018 .Photostability and antioxidant activity studies on the inclusion complexes of trans-polydatin with β- cyclodextrin and derivatives. RSC. Adv., 8(25941) : .
[36] M. Del Valle .2004 .Cyclodextrins and their uses. Proc. Biochem, 39(1033) : .
[37] Peramaiyan R.,Natarajan N.,Thamaraiselvan R.,Rajendran P.,Edwinoliver N. G.,Uppalapati L.,Jacob G.,Ikuo N. .2014 .Antioxidants and human diseases, Clinica. , 436(332) : .
[38] Sugino N. .2006 .Roles of reactive oxygen species in the corpus luteum. Anim. Sci J., 77(556) : .
[39] Vivekanand B.,Raj K. Mahendra,Mruthyunjayaswamy B. H. M. .2015 .Synthesis, characterization, antimicrobial, DNA-cleavage and antioxidant activities of 3-((5-chloro-2- phenyl-1H-indol-3-ylimino)methyl)quinoline2(1H)-thione and its metal complexes. J. Mol Struc, 1079(214) : .
[40] Braca A.,Tommasi N.D.,Bari L.D.,Pizza C.,M. C. .2001 .Politi and I. Morelli, Antioxidant Principles from Bauhinia tarapotensis. J. Nat. Prod, 64(892) : .
[41] Pellegrini N.,Proteggente A.,Pannala A.,Yong M.,Rice-Evas C. .1999 .Antioxidant activity applying an improved ABTS radical cation decolorization assay. Free. Rad. Biol Med, 26(1231) : .
[42] Halliwell B.,Gutteridge J. M. C.,O. I. Aruoma J. M. C. .1987 .The deoxyribose method: a simple “test-tube” assay for determination of rate constants for reactions of hydroxyl radicals. , 165(215) : .
[43] Pulido R.,Bravo L.,Saura-Calixto F. .2000 .Antioxidant activity of dietary polyphenols as determined by a modified ferric reducing/antioxidant power assay. J. Agric. Food Chem, 48(396) : .
[44] Singh N.,Rajini P.S. .2004 .Free radical scavenging activity of an aqueous extract of potato peel, Food Chem. , 85(611) : .