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Research Article

Insights of ethyl acetate fraction from Vassobia breviflora in multidrug-resistant bacteria and cancer cells: from biological to therapeutic

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References

  • Abd-ELmageed, M. K., H. A. Abushady, and A. A. Amin. 2019. Antibacterial and antioxidant activities of physalis peruviana and hyphaene thebaica extracts. Afr. J. Biol. Sci. 15:73–86. doi:10.21608/ajbs.2019.63997.
  • Afroz, M., S. Akter, A. Ahmed, R. Rouf, J. A. Shilpi, E. Tiralongo, S. D. Sarker, U. Goransson, and S. J. Uddin. 2020. Ethnobotany and antimicrobial peptides from plants of the Solanaceae family: An update and future prospects. Front Pharmacol 11:565. doi:10.3389/fphar.2020.00565.
  • Allard, B., P. A. Beavis, P. K. Darcy, and J. Stagg. 2016. Immunosuppressive activities of adenosine in cancer. Curr Opin Pharmacol 29:7–16. doi:10.1016/j.coph.2016.04.001.
  • Almoulah, N. F., Y. Voynikov, R. Gevrenova, H. Schohn, T. Tzanova, S. Yagi, J. Thomas, B. Mignard, A. A. A. Ahmed, E. L. El Siddig, et al. 2017. Antibacterial, antiproliferative and antioxidant activity of leaf extracts of selected Solanaceae species. South African J Bot 112:368–74. doi:10.1016/j.sajb.2017.06.016.
  • Assaraf, Y. G., A. C. Brozovic, D. Gonçalves, A. Jurkovicova, M. Line, S. Machuqueiro, A. B. Saponara, C. P. R. Sartmento-Ribeiro, and M. H. Xavier. 2019. The multi-factorial nature of clinical multidrug resistance in cancer. Drug Resist Updat 46:100645. doi:10.1016/j.drup.2019.100645.
  • Barboza, G. E., A. T. Hunziker, G. Bernadello, A. A. Cogucci, A. E. Moscone, C. Carrizo-Garcia, V. Fuentes, M. O. Dillon, V. Bittrich, M. T. Cosa, R. Subilis, A. Romanutti, S. Arroyo, A. Anton . 2016. Solanaceae. In Vol. 14 of Flowering plants. eudicots, the families and genera of vascular plants, ed. K. Jw E and V. Bittrich, 295–357. Springer International Publishing.
  • Battal, M., A. Kartal, B. Çitgez, B. Yilmaz, A. Akcakaya, and O. Karatepe. 2015. Impact of allyl disulfide on oxidative damage and liver regeneration in an experimental hepatectomy model. Chirurgia 100:117–22.
  • Benzie, I. F., and J. J. Strain. 1996. The ferric reducing ability of plasma (FRAP) as a measure of “antioxidant power”: The FRAP assay. Anal. Biochem. 239:70–76. doi:10.1006/abio.1996.0292.
  • Bhargavi, S., and S. M. Shankar. 2021. Dual herbal combination of Withania somnifera and five Rasayana herbs: A phytochemical, antioxidant, and chemometric profiling. J Ayurveda Integr Med 12:283–93. doi:10.1016/j.jaim.2020.10.001.
  • Boeira, C. P., N. Piovesan, D. C. B. Flores, M. B. Soquetta, B. N. Lucas, R. T. Heck, J. S. Alves, P. C. B. Campagnol, D. Santos, E. M. M. F. E. Flores, et al. 2020. Phytochemical characterization and antimicrobial activity of Cymbopogon citratus extract for application as natural antioxidant in fresh sausage. Food Chem. 319:126553. doi:10.1016/j.foodchem.2020.126553.
  • Bouhlel, I., W. Bhouri, I. Limem, J. Boubaker, A. Nefatti, I. Skandrani, M. B. Sghaier, S. Kilani, K. Ghedira, and L. C. Ghedira. 2009. Cell protection induced by Acacia salicina extracts: Inhibition of genotoxic damage and determination of its antioxidant capacity. Drug Chem Toxicol 32:139–49. doi:10.1080/01480540802593899.
  • Burnstock, G., and F. Di Virgilio. 2013. Purinergic signalling and cancer. Purinergic Signal. 9:491–540. doi:10.1007/s11302-013-9372-5.
  • CLSI. 2015. Methods for dilution antimicrobial susceptibility tests for bacteria that grow aerobically; Approved standard-tenth edition. [accessed 2022 15 April). CLSI document M07-A10, 35(2),1-87. https://clsi.org/media/1632/m07a10_sample.pdf
  • Costerton, J. W., P. S. Stewart, and E. P. Greenberg. 1999. Bacterial biofilms: A common cause of persistent infections. Science 284:1318–22. doi:10.1126/science.284.5418.1318.
  • Cragg, G. M., and D. J. Newman. 2005. Biodiversity: A continuing source of novel drug leads. Pure and Applied Chemistry 77:7–24. doi:10.1351/pac200577010007.
  • Deli, T., and L. Csernoch. 2008. Extracellular ATP and cancer—An overview with special reference to P2 purinergic receptors. Pathol. Oncol. Res 14:219–31. doi:10.1007/s12253-008-9071-7.
  • Di Virgilio, F., and E. Adinolfi. 2017. Extracellular purines, purinergic receptors and tumor growth. Oncogene 36:293–303. doi:10.1016/0022-1759(83)90303-4.
  • Dutta, S., S. Mahalanobish, S. Saha, S. Ghosh, and P. Sil. 2019. Natural products: An upcoming therapeutic approach to cancer. Food Chem. Toxicol 128:240–55. doi:10.1016/j.fct.2019.04.012.
  • Erel, O. 2004. A novel automated method to measure total antioxidant response against potent free radical reactions. Clin. Biochem. 37:112–19. doi:10.1016/j.clinbiochem.2003.10.014.
  • Fernandes, A. S., J. H. Véras, L. S. Silva, S. C. Puga, E. F. L. C. Bailão, M. G. Oliveira, C. G. Cardoso, C. C. Carneiro, S. C. Santos, and L. Chen-Chen. 2022. Pedunculagin isolated from Plinia cauliflora seeds exhibits genotoxic, antigenotoxic and cytotoxic effects in bactéria and human lymphocytes. J. Toxicol. Environ. Health 85:353–63. doi:10.1080/15287394.2021.2009947.
  • Frankel, E. N., and A. S. Meyer. 2000. The problems of using one‐dimensional methods to evaluate multifunctional food and biological antioxidants. J. Sci. Food Agric. 80:1925–41. doi:10.1002/1097-0010(200010)80:13<1925::AID-JSFA714>3.0.CO;2-4.
  • Fu, T., E. Houel, N. Amusant, D. Touboul, G. Genta-Jouve, S. Della-Negra, G. L. Fisher, A. Brunelle, and C. Duplais. 2019. 3 Biosynthetic investigation of γ-lactones in Sextonia rubra wood using in situ TOF-SIMS MS/MS imaging to localize and characterize biosynthetic intermediates. Sci Rep 9:1928. doi:10.1038/s41598-018-37577-5.
  • Gao, Z. W., H. P. Wang, K. Dong, F. Lin, X. Wang, and H. Z. Zhang. 2016. Adenosine inhibits migration, invasion and induces apoptosis of human cervical cancer cells. Neoplasma 63:201–07. doi:10.4149/204_150723N407.
  • Garzon, L. R., M. Fracasso, A. R. Viana, M. Giacometi, G. V. A. Samoel, L. Souza, M. B. Baldissera, L. S. Petry, L. M. F. Krause, and S. G. Monteiro. 2021. In vitro activity of larval secretions from Lucilia cuprina against Leishmania amazonensis, Trypanosoma cruzi and cell lines. Brazilian J Develop 7:82837–58. doi:10.34117/bjdv7n8-475.
  • Giusti, G., B. Galanti. 1984. Colorimetric method. Methods of enzymatic analysis 3:315–323.
  • Gottesman, M. M. 2002. Mechanisms of cancer drug resistance. Annu. Rev. Med. 53:615–27. doi:10.1146/annurev.med.53.082901.103929.
  • Göztoka, F., and F. Zengin. 2013. The antimicrobial activity of Physalis peruviana L. Bitlis Eren Univ J Sci & Technol 3:15–17. doi:10.17678/beuscitech.47134.
  • Green, L. C., D. A. Wagner, J. Glogowski, P. L. Skipper, J. S. Wishnok, and S. R. Tannenbaum. 1982. Analysis of nitrate, nitrite, and [15N]nitrate in biological samples. Anal. Biochem. 126:131–38. doi:10.1016/0003-2697(82)90118-x.
  • Griess, J. P. 1864. Philosophical Transactions of the Royal Society B. v.154: 679./Bratton, A.C., Marshall Jr E.K. J. Biol. Chem 128:537.
  • Halliwell, B., and M. Whiteman. 2004. Measuring reactive species and oxidative damage in vivo and in cell culture: How should you do it and what do the results mean? Br. J. Pharmacol. 142:231–55. doi:10.1038/sj.bjp.0705776.
  • Hassanien, M. F. R. 2011. Physalis peruviana: A Rich source of bioactive phytochemicals for functional foods and pharmaceuticals. Food Rev. Int. 27:259–73. doi:10.1080/87559129.2011.563391.
  • Heymann, D., M. Reddington, and G. W. Kreutzberg. 1984. Subcellular localization of 5’-nucleotidase in rat brain. J. Neurochem. 43:971–78. doi:10.1111/j.1471-4159.1984.tb12832.x.
  • Hu, Y. A., J. Xiang, L. Su, and X. Tang. 2020. The regulation of nitric oxide in tumor progression and therapy. J Int Med Res 48:1–9. doi:10.1177/03000605209059.
  • Jayaprakasam, B., Y. Zhang, N. P. Seeram, and M. G. Nair. 2003. Growth inhibition of human tumor cell lines by withanolides from Withania somnifera leaves. Life Sci. 74:125–32. doi:10.1016/j.lfs.2003.07.007.
  • Jedvert, K., and T. Heinze. 2017. Cellulose modification and shaping – A review. J Polym Eng 37:845–60. doi:10.1515/polyeng-2016-0272.
  • Kepp, O., F. Loos, P. Liu, and G. Kroemer. 2017. Extracellular nucleosides and nucleotides as immunomodulators. Immunol. Rev. 280:83–92. doi:10.1111/imr.12571.
  • Khalighi-Sigaroodi, F., M. Ahvazi, D. Yazdani, and M. Kashefi. 2012. Cytotoxicity and antioxidant activity of five plant species of Solanaceae family from Iran. J Med Plants 11:41–53.
  • Khan, M. S., F. A. Qais, I. Ahmad, A. Hussainb, and F. A. Mohamed. 2018. Genotoxicity inhibition by Syzygium cumini (L.) seed fraction and rutin: Understanding the underlying mechanism of DNA protection. Toxicol Res (Camb) 7:156–71. doi:10.1039/c7tx00269f.
  • Kim, K. H., S. K. Ha, S. U. Choi, S. Y. Kim, and K. R. Lee. 2011. Bioactive Phenolic Constituents from the seeds of Pharbitis nil. Chem. Pharm. Bull. 59:1425–29. doi:10.1248/cpb.59.1425.
  • Koklesova, L., A. Liskova, M. Samec, T. Qaradakhi, A. Zulli, K. Smejkal, K. Kajo, J. Jakubikova, P. Behzadi, M. Pec, et al. 2020. Genoprotective activities of plant natural substances in cancer and chemopreventive strategies in the context of 3P medicine. EPMA Journal 11:261–87. doi:10.1007/s13167-020-00210-5.
  • Landini, P., D. Antoniani, J. G. Burgess, and R. Nijland. 2010. Molecular mechanisms of compounds affecting bacterial biofilm formation and dispersal. Appl. Microbiol. Biotechnol. 86:813–23. doi:10.1007/s00253-010-2468-8.
  • Lax, A. J., and W. Thomas. 2002. How bacteria could cause cancer: One step at a time. Trends Microbiol. 10:293–99. doi:10.1016/S0966-842X(02)02360-0.
  • Li, Z., H. Hao, W. Tian, Y. Jiao, X. Deng, S. Han, and J. Han. 2020. Nitric oxide, a communicator between tumor cells and endothelial cells, mediates the anti-tumor effects of Marsdenia Tenacissima extract (MTW). J Ethnopharmacol 250:112524. doi:10.1016/j.jep.2019.112524.
  • Lorusso, D., F. Petrelli, A. Coinu, F. Raspagliesi, and S. Barni. 2014. A systematic review comparing cisplatin and carboplatin plus paclitaxel-based chemotherapy for recurrent or metastatic cervical cancer. Gynecol. Oncol. 133:117–23. doi:10.1016/j.ygyno.2014.01.042.
  • Madland, E. 2013. Extraction, Isolation and Structure Elucidation of Saponins from Herniaria incana. Master thesis, Department of Chemistry of the Norwegian University of Science and Techonology. https://ntnuopen.ntnu.no/ntnu-xmlui/handle/11250/247824
  • Maqsood, M., R. Qureshi, M. Ikram, M. S. Ahmad, B. Jabeen, M. R. Asi, J. A. Khan, S. Ali, and L. Lilge. 2018. In vitro anticancer activities of Withania coagulans against HeLa, MCF-7, RD, RG2, and INS-1 cancer cells and phytochemical analysis. Integr. Med. Res 7:184–91. doi:10.1016/j.imr.2018.03.003.
  • Masson-Meyers, D. S., V. V. Bumah, and C. S. Enwemeka. 2016. A comparison of four methods for determining viability in human dermal fibroblasts irradiated with blue light. J. Pharmacol. Toxicol. Methods 79:15–22. doi:10.1016/j.vascn.2016.01.001.
  • Michiels, J. A., C. Kevers, J. Pincemail, J. O. Defraigne, and J. Dommes. 2012. Extraction conditions can greatly influence antioxidant capacity assays in plant food matrices. Food Chem. 130:986–93. doi:10.1016/j.foodchem.2011.07.117.
  • Minski, V. T., C. Garbinato, N. Thiel, and A. M. Siebel. 2021. Erythromycin in the aquatic environment: Deleterious effects on the initial development of zebrafish. J. Toxicol. Environ. Health 84:56–66. doi:10.1080/15287394.2020.1834477.
  • Mishra, B. B., and V. K. Tiwari. 2011. Natural products: An evolving role in future drug discovery. Eur J Med Chem 46:4769–807. doi:10.1016/j.ejmech.2011.07.057.
  • Mosmann, T. 1983. Rapid colorimetric assay for cellular growth and survival: Application to proliferation and cytotoxicity assays. J. Immunol. Methods 65:55–63. doi:10.1016/0022-1759(83)90303-4.
  • Mulani, M. S., E. E. Kamble, S. N. Kumkar, M. S. Tawre, and K. R. Pardesi. 2019. Emerging strategies to combat ESKAPE pathogens in the era of antimicrobial resistance: A review. Front Microbiol 10:539. doi:10.3389/fmicb.2019.00539.
  • Nawaz, A., A. Jamal, A. Arif, and Z. Parveen. 2021. In vitro cytotoxic potential of Solanum nigrum against human cancer cell lines. Saudi J. Biol. Sci. 28:4786–92. doi:10.1016/j.sjbs.2021.05.004.
  • NCCLS. 1999. M26-A - methods for determining bactericidal activity of antimicrobial agents; approved guideline. [accessed 2022 19 March). CLSI document M26-A, 19: 1-29. https://clsi.org/media/1462/m26a_sample.pdf
  • Parsonnet, J. 1995. Bacterial infection as a cause of cancer. Environ. Health Perspect. 103:262–68. doi:10.1289/ehp.95103s8263.
  • Patel, S., N. Gheewala, A. Suthar, and A. Shah. 2009. In-vitro cytotoxicity activity of Solanum nigrum extract against Hela cell line and Vero cell line. Int. J. Pharm. Pharm. Sci. 1:38–46.
  • Pavlovic, M. O., S. Kolarevic, J. Dordevic, J. J. Maric, T. Lunic, M. Mandic, M. K. Kolarevic, J. Zivkovic, A. A. Aradski, P. D. Marin, et al. 2021. A study of phytochemistry, genoprotective activity, and antitumor effects of extracts of the selected Lamiaceae species. Plants 10:2306. doi:10.3390/plants10112306.
  • Pellegrini, N., M. Serafini, B. Colombi, D. D. Rio, S. Salvatore, M. Bianchi, and F. Brighenti. 2003. Total antioxidant capacity of plant foods, beverages and oils consumed in Italy assessed by three different in vitro assays. J Nutr 133:2812–19. doi:10.1093/jn/133.9.2812.
  • Pérez-Jiménez, J., S. Arranz, M. Tabernero, M. E. Díaz-Rubio, J. Serrano, I. Goñi, and F. Saura-Calixto. 2008. Updated methodology to determine antioxidant capacity in plant foods, oils and beverages: Extraction, measurement and expression of results. Food Res. Int 41:274–85. doi:10.1016/j.foodres.2007.12.004.
  • Re, R., N. Pellegrini, A. Proteggente, A. Pannala, M. Yang, and C. Rice-Evans. 1999. Antioxidant activity applying an improved ABTS radical. Free Radic. Biol. Med. 26:1231–37. doi:10.1016/s0891-5849(98)00315-3.
  • Repetto, G., A. Del Peso, and J. L. Zurita. 2008. Neutral red uptake assay for the estimation of cell viability/cytotoxicity. Nat Protoc 3:1125–31. doi:10.1038/nprot.2008.75.
  • Roesler, R., L. G. Malta, L. C. Carrasco, R. B. Holanda, C. A. S. Sousa, and G. N. Pastore. 2007. Antioxidant activity of cerrado fruits. Food Sci. Technol 27:53–60. doi:10.1590/s0101-20612007000100010.
  • Rota, C., C. F. Chignell, and R. P. Mason. 1999. Evidence for free radical formation during the oxidation of 2’-7’-dichlorofluorescin to the fluorescent dye 2’-7’-dichlorofluorescein by horseradish peroxidase: Possible implications for oxidative stress measurements. Free Radic. Biol. Med. 27:873–81. doi:10.1016/s0891-5849(99)00137-9.
  • Salvat, A., L. Antonnacci, R. H. Fortunato, E. Y. Suarez, and H. M. Godoy. 2001. Screening of some plants from Northern Argentina for their antimicrobial activity. Lett. Appl. Microbiol. 32:293–97. doi:10.1046/j.1472-765x.2001.00923.x.
  • Sauer, H., K. Wefer, V. Vetrugno, M. Pocchiari, C. Gissel, A. Sachinidis, J. Hescheler, and M. Wartenberg. 2003. Regulation of intrinsic prion protein by growth factors and TNF-α: The role of intracellular reactive oxygen species. Free Radic. Biol. Med. 15:586–94. doi:10.1016/s0891-5849(03)00360-5.
  • Schetinger, M. R. C., N. M. Porto, M. B. Moretto, V. M. Morsch, J. B. T. Rocha, V. Vieira, F. Moro, R. T. Neis, S. Bittencourt, H. G. Bonacorso, et al. 2000. New benzodiazepines alter acetylcholinesterase and ATPDase activities. Neurochem. Res. 25:949–55.
  • Shah, V. V., N. D. Shah, and P. V. Patrekar. 2013. Medicinal plants from Solanaceae family. Res. J. Pharm. Technol 6:143–51.
  • Shen, Q. 2009. Surface properties of cellulose and cellulose derivatives: A review. Model Cell Surf 1019:259–89. doi:10.1021/bk-2009-1019.ch012.
  • Silva, J. N., N. B. N. Monção, R. R. R. Farias, A. M. G. L. Citó, M. H. Chaves, M. R. S. Araújo, D. J. B. Lima, C. Pessoa, A. Lima, E. C. C. Araújo, et al. 2020. Toxicological, chemopreventive, and cytotoxic potentialities of rare vegetal species and supporting findings for the Brazilian unified health system (SUS). J. Toxicol. Environ. Health 83:525–45. doi:10.1080/15287394.2020.1780658.
  • Somawathi, K. M., V. Rizliya, D. G. N. G. Wijesinghe, and W. M. T. Madhujith. 2014. Antioxidant activity and total phenolic content different skin coloured brinjal (Solanum melongena). J. Sustain. Trop. Agric. Res. 26:152–61. doi:10.4038/tar.v26i1.8080.
  • Subramanian, C., P. T. Grogan, V. P. Opipari, B. N. Timmermann, and M. S. Cohen. 2018. Novel natural withanolides induce apoptosis and inhibit migration of neuroblastoma cells through down regulation of N-myc and suppression of Akt/mTOR/NF-κB activation. Oncotarget 9:14509–23. doi:10.18632/oncotarget.24429.
  • Sung, H., J. Ferlay, R. L. Siegel, M. Laversanne, I. Soerjomataram, A. Jemal, and F. Bray. 2021. Global cancer statistics 2020: GLOBOCAN estimates of incidence and mortality worldwide for 36 Cancers in 185 Countries. Cancer J. Clin 71:209–49. doi:10.3322/caac.21660.
  • Tong, X., 2011. Anti-proliferative withanolides from Vassobia breviflora and withania somnifera. master of science, program in medicinal chemistry and the graduate faculty of the university of Kansas. Link: http://hdl.handle.net/1808/8203
  • Viana, A. R., B. G. Noro, J. C. Lenz, M. L. M. T. Teixeira, M. B. Serafin, R. Hörner, C. Franco, L. M. F. Krause, B. S. Vizzotto, and B. J. Maraschin. 2022. Cytotoxic screening and antibacterial activity of Withaferin A. J. Toxicol. Environ. 85:685–98. doi:10.1080/15287394.2022.2071787.
  • Vizzotto, B. S., S. D. Renne, A. I. Bernardo, F. K. Luciana, R. V. Altevir, and P. S. André. 2020. DNA photocleavage and melanoma cells cytotoxicity induced by a mesotetra-ruthenated porphyrin under visible light irradiation. J. Photochem. Photobiol. B 209:111922. doi:10.1016/j.jphotobiol.2020.111922.
  • Wakeel, A., S. A. Jan, I. Ullah, Z. K. Shinwari, and M. Xu. 2019. Solvent polarity mediates phytochemical yield and antioxidant capacity of. Isatis tinctoria. PeerJ 7:e7857. doi:10.7717/peerj.7857.
  • Zhang, S., H. Xu, L. Zhang, and Y. Qiao. 2020. Cervical cancer: Epidemiology, risk factors and screening. Chin. J. Cancer 32:720–28. doi:10.21147/j.1000-9604.2020.06.05.
  • Zimmermann, H., M. Zebisch, and N. Sträter. 2012. Cellular function and molecular structure of ecto-nucleotidases. Purinergic Signal. 8:437–502. doi:10.1007/s11302-012-9309-4.

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