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Siddiqui et al. Chem Synth 2023;3:25  https://dx.doi.org/10.20517/cs.2023.02    Page 49 of 50

               39.      Choudhary MI, Siddiqui ZA, Hussain S; Atta-ur-Rahman. Structure elucidation and antibacterial activity of new fungal metabolites of
                   sclareol. Chem Biodivers 2006;3:54-61.  DOI  PubMed
               40.      Sultan S, Atif M, Ali SAS, et al. metabolism of an anti-HIV and anti-malarial natural product andrographolide. Available from: https://
                   innovareacademics.in/journals/index.php/ijpps/article/view/2799/9253 [Last accessed on 26 Apr 2023].
               41.      Choudhary MI, Atif M, Shah SAA, et al. Biotransformation of dehydroabietic acid with microbial cell cultures and α-glucosidase
                   inhibitory activity of resulting metabolites. Available from: https://innovareacademics.in/journals/index.php/ijpps/article/view/2016
                   [Last accessed on 26 Apr 2023].
               42.      Choudhary MI, Ranjit R, Atta-Ur-Rahman, et al. Hydroxylation of the sesterterpene leucosceptrine by the fungus Rhizopus stolonifer.
                   Phytochemistry 2006;67:439-43.  DOI  PubMed
               43.      Choudhary MI, Batool I, Khan SN, et al. Microbial transformation of oleanolic acid by Fusarium lini and alpha-glucosidase inhibitory
                   activity of its transformed products. Nat Prod Res 2008;22:489-94.  DOI  PubMed
               44.      Choudhary M, Ali Siddiqui Z, Ahmed Nawaz S. Microbial transformation of 18beta-glycyrrhetinic acid by Cunninghamella elegans
                   and Fusarium lini, and lipoxygenase inhibitory activity of transformed products. Nat Prod Res 2009;23:507-13.  DOI  PubMed
               45.      Rahman AU, Choudhary MI, Asif F, Farooq A, Yaqoob M. Microbial transformations of testosterone.  Nat Prod Lett 1998;12:255-61.
                   DOI
               46.      Al-Aboudi A, Mohammad MY, Musharraf SG, Choudhary MI, Atta-ur-Rahman. Microbial transformation of testosterone by Rhizopus
                   stolonifer and Fusarium lini. Nat Prod Res 2008;22:1498-509.  DOI  PubMed
               47.      Atif M, Shah SAA, Sultan S, Choudhary MI. Solid phase microbial fermentation of anabolic steroid, dihydrotestosterone with
                   ascomycete fungus Fusarium oxysporum. Int J Pharm Pharm Sci 2015;7:104-107.
               48.      Choudhary MI, Asif F, Farooq A, Yaqoob M. Fungal transformations of steroids by cephalosporium aphidicola and trichothecium
                   roseum.  Nat Prod Lett 2000;14:217-24.  DOI
               49.      Atif M, Sultan S, Shah SAA, Choudhary MI. Solid phase microbial reactions of sex hormone, trans-androsterone with filamentous
                   fungi. Int J Pharm Pharm Sci 2015;7:385-8.
               50.      Choudhary MI, Shah SA, Musharraf SG, Shaheen F, Atta-Ur-Rahman. Microbial transformation of dehydroepiandrosterone. Nat Prod
                   Res 2003;17:215-20.  DOI  PubMed
               51.      Azizuddin, Khan S, Ali K, Choudhary MI. Biotransformation of dehydroepiandrosterone by cell suspension culture of codiaeum
                   variegatum. Chem Nat Compd 2014;50:669-72.  DOI
               52.      Choudhary MI, Zafar S, Khan NT, et al. Biotransformation of dehydroepiandrosterone with macrophomina phaseolina and β-
                   glucuronidase inhibitory activity of transformed products. J Enzyme Inhib Med Chem 2012;27:348-55.  DOI
               53.      Choudhary MI, Musharraf SG, Shaheen F, Atta-Ur-Rahman. Microbial transformation of (+)-androsta-1 ,4-diene-3,17-dione by
                   cephalosporium aphidicola. Nat Prod Lett 2002;16:377-82.  DOI  PubMed
               54.      Musharraf SG, Atta-Ur-Rahman, Choudhary MI, Sultan S. Microbial transformation of (+)-adrenosterone. Nat Prod Lett 2002;16:345-
                   9.  DOI  PubMed
               55.      Choudhary MI, Khan NT, Musharraf SG, Anjum S, Atta-Ur-Rahman. Biotransformation of adrenosterone by filamentous fungus,
                   cunninghamella elegans. Steroids 2007;72:923-9.  DOI  PubMed
               56.      Choudhary M, Adnan S, Shah A, Anjum S, Atta-Ur-Rahman. Microbial oxidation of anabolic steroids. Nat Prod Res 2008;22:1289-
                   96.  DOI  PubMed
               57.      Baydoun E, Karam M, Atia-tul-Wahab, et al. Microbial transformation of nandrolone with cunninghamella echinulata and
                   cunninghamella blakesleeana and evaluation of leishmaniacidal activity of transformed products. Steroids 2014;88:95-100.  DOI
               58.      Choudhary MI, Mohammad MY, Musharraf SG, Parvez M, Al-Aboudi A, Atta-ur-Rahman. New oxandrolone derivatives by
                   biotransformation using Rhizopus stolonifer. Steroids 2009;74:1040-4.  DOI  PubMed
               59.      Smith C, Wahab AT, Khan MS, et al. Microbial transformation of oxandrolone with macrophomina phaseolina and cunninghamella
                   blakesleeana. Steroids 2015;102:39-45.  DOI
               60.      Siddiqui M, Atia-tul-wahab, Naveed Shaikh N, Baydoun E, Atta-ur-rahman, Choudhary MI. Biocatalytic transformation of steroidal
                   drugs oxandrolone and ganaxolone, and aromatase inhibitory activity of transformed products. Phytochem Lett 2021;44:137-41.  DOI
               61.      Choudhary MI, Sultan S, Jalil S, et al; Atta-ur-Rahman. Microbial transformation of mesterolone. Chem Biodivers 2005;2:392-400.
                   DOI  PubMed
               62.      Ahmad MS, Zafar S, Bibi M, et al. Biotransformation of androgenic steroid mesterolone with cunninghamella blakesleeana and
                   macrophomina phaseolina. Steroids 2014;82:53-9.  DOI
               63.      Ahmad MS, Farooq R, Hussain N, et al. Three new analogues of androgenic drug mesterolone through biotransformation with
                   Cunninghamella blakseleeana. J Mol Catal B-Enzym 2016;133:S395-9.  DOI
               64.      Siddiqui M, Ahmad MS, Wahab AT, et al. Biotransformation of a potent anabolic steroid, mibolerone, with cunninghamella
                   blakesleeana, C. echinulata, and Macrophomina phaseolina, and biological activity evaluation of its metabolites. PLoS One
                   2017;12:e0171476.  DOI  PubMed  PMC
               65.      Siddiqui M, Atia-Tul-Wahab, Jabeen A, et al. Whole-cell fungal-mediated structural transformation of anabolic drug metenolone
                   acetate into potent anti-inflammatory metabolites. J Adv Res 2020;24:69-78.  DOI  PubMed  PMC
               66.      Hussain  Z,  Dastagir  N,  Hussain  S,  et  al.  Aspergillus  niger-mediated  biotransformation  of  methenolone  enanthate,  and
                   immunomodulatory activity of its transformed products. Steroids 2016;112:68-73.  DOI
               67.      Baydoun E, Atia-tul-Wahab, Mehmood H, et al. Microbial transformation of danazol with Cunninghamella blakesleeana and anti-
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