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Research Article

Seed Protein from Artocarpus hirsutus Lam. with Trypsin Inhibitory, Micro-bicidal and Antioxidant Activities Induces Depletion of Human Skin Cancer (A431) and Colon Cancer (HT29) Cells

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Pages 65-76 | Received 09 May 2020, Accepted 15 Nov 2021, Published online: 08 Feb 2022

References

  • Prakash, B., Murthy, M.R.N., Sreerama, Y.N., Rao, D.R., Gowda, L.R. (1997). Studies on simultaneous inhibition of trypsin and chymotrypsin by horsegram Bowman-Birk inhibitor. Journal of Biosciences. 22(5): 545-554. doi: https://doi.org/10.1007/BF02703392
  • Klomklao, S., Benjakul, S., Kishimura, H., Chaijan, M. (2011). Extraction, purification and properties of trypsin inhibitor from Thai mung bean (Vigna radiata (L.) R. Wilczek). Food Chemistry. 129(4): 1348-1354. doi: https://doi.org/10.1016/j.foodchem.2011.05.029
  • Martins-Olivera, B.T., Almeida-Reis, R., Theodoro-Júnior, O.A., Oliva, L.V., Neto Dos Santos Nunes, N., Olivo, C.R., Vilela de Brito, M., Prado, C.M., Leick, E.A., Martins, M., Oliva, M.L., Righetti, R.F., Tibério, I. (2016). The Plant-Derived Bauhinia bauhinioides Kallikrein Proteinase Inhibitor (rBbKI) Attenuates Elastase-Induced Emphysema in Mice. Mediators of Inflammation. 2016: (Article ID 5346574): 1-12
  • Zhao, H., Ullah, H., McNeill, M.R., Du, G., Hao, K., Tu, X., Zhang, Z. (2019). Inhibitory Effects of Plant Trypsin Inhibitors Msti-94 and Msti-16 on Therioaphis trifolii (Monell) (Homoptera: Aphididae) in Alfalfa. Insects. 10(6): 154: 1-18. doi: https://doi.org/10.3390/insects10060154
  • Nandi, A.K., Basu, D., Das, S., Sen, S.K. (1999). High level expression of soybean trypsin inhibitor gene in transgenic tobacco plants failed to confer resistance against damage caused by Helicoverpa armigera. Journal of Biosciences. 24(4): 445-452. doi: https://doi.org/10.1007/BF02942655
  • de Paula Carli, A., de Abreu Vieira, P.M., Silva, K.T., de Sá Cota, R.G., Carneiro, C.M., Castro-Borges, W., de Andrade, M.H. (2012). Bowman-Birk inhibitors, proteasome peptidase activities and colorectalpre neoplasias induced by 1,2-dimethylhydrazine in Swiss mice. Food Chemistry and Toxicology. 50(5): 1405-1412. doi: https://doi.org/10.1016/j.fct.2012.01.036
  • Nakahata, A.M., Mayer, B., Ries, C., de Paula, C.A., Karow, M., Neth, P., Sampaio, M.U., Jochum, M., Oliva, M.L. (2011). The effects of a plant proteinase inhibitor from Enterolobium contortisiliquum on human tumor cell lines. Biological Chemistry. 392(4): 327-336. doi: https://doi.org/10.1515/bc.2011.031
  • Chan, A.T., Baba, Y., Shima, K., Nosho, K., Chung, D.C., Hung, K.E., Mahmood, U., Madden, K., Poss, K., Ranieri, A., Shue, D., Kucherlapati, R., Fuchs, C.S., Ogino, S. (2010). Cathepsin B expression and survival in colon cancer: Implications for molecular detection of neoplasia. Cancer Epidemiology, Biomarkers and Prevention. 19(11): 2777-2785. doi: https://doi.org/10.1158/1055-9965.EPI-10-0529
  • Iqbal, J., Siddiqui, R., Kazmi, S.U., Khan, N.A. (2013). A Simple Assay to Screen Antimicrobial Compounds Potentiating the Activity of Current Antibiotics. BioMedical Research International. 2013 (Article ID 927323): 1-4.
  • Yeh, K.W., Chen, J.C., Lin, M.I., Chen, Y.M., Lin, C.Y. (1997). Functional activity of sporamin from sweet potato (Ipomoea batatas Lam.): a tuber storage protein with trypsin inhibitory activity. Plant Molecular Biology. 33(3): 565-570. doi: https://doi.org/10.1023/A:1005764702510
  • Alfatemi, S.M., Rad, J.S., Rad, M.S., Mohsenzadeh, S., da Silva, J.A. (2015). Chemical composition, antioxidant activity and in vitro antibacterial activity of Achillea wilhelmsii C. Koch essential oil on methicillin-susceptible and methicillin-resistant Staphylococcus aureus spp. 3 Biotechnology. 5(1): 39-44.
  • Salehi, B., Sharifi-Rad, J., Herrera-Bravo, J., Salazar, L.A., Delporte, C., Barra, G.V., Cazar Ramirez, M.E., López, M.D., Ramírez-Alarcón, K., Cruz-Martins, N., Martorell, M. (2021). Ethnopharmacology, Phytochemistry and Biological Activities of Native Chilean Plants. Current Pharmaceutical Design. 27(7): 953-970. doi: https://doi.org/10.2174/1381612826666201124105623
  • Sharifi-Rad, J., Herrera-Bravo, J., Salazar, L.A., Shaheen, S., Abdulmajid Ayatollahi, S., Kobarfard, F., Imran, M., Imran, A., Custódio, L., Dolores López, M., Schoebitz, M., Martorell, M., Kumar, M., Ansar Rasul Suleria, H., Cho, W.C. (2021). The Therapeutic Potential of Wogonin Observed in Preclinical Studies. Evidence-Based Complementary and Alternative Medicine. 2021 (Article ID 9935451): 1-9.
  • Jagtap, U., Bapat, V. (2010). Artocarpus: a review of its traditional uses, phyto-chemistry and pharmacology. Journal of Ethnopharmacology. 129(2): 142-166. doi: https://doi.org/10.1016/j.jep.2010.03.031
  • Kakade, M.L, Simons, N., Liener, I.E. (1969). An evaluation of natural vs synthetic substrates for measuring the antitryptic activity of soybean samples. Cereal Chemistry. 46(5): 518-526.
  • Lowry, O.H., Rosebrough, N.J., Farr, A.L., Randall, R.J. (1951). Protein measurement with Folin phenol reagent. Journal of Biological Chemistry. 193(1): 265-275. doi: https://doi.org/10.1016/S0021-9258(19)52451-6
  • Englard, S., Seifter, S. (1990). Precipitation techniques: Methods in Enzymology. 182: 285-300.
  • Felicioli, R., Garzelli, B., Vaccari, L., Melfi, D., Balestreri, E. (1997). Activity staining of protein inhibitors of proteases on gelatin-containing polyacrylamide gel electrophoresis. Analytical Biochemistry. 244(1): 176-179. doi: https://doi.org/10.1006/abio.1996.9917
  • Talarico, L.B., Zibetti, R.G., Faria, P.C., Scolaro, L.A., Duarte, M.E., Noseda, M.D., Pujol, C.A., Damonte, E.B. (2004). Anti-herpes simplex virus activity of sulfated galactans from the red seaweeds Gymnogongrus griffithsiae and Cryptonemia crenulata. International Journal of Biological Macromolecules. 34(1-2): 63-71. doi: https://doi.org/10.1016/j.ijbiomac.2004.03.002
  • Kuznetsov, A.V., Gnaiger, E. (2006). Laboratory protocol Lactate dehydrogenase cytosolic marker enzyme. Mitochondrial Physiology Network. 8: 1-7.
  • Pulido, R., Bravo, L., Saura-Calixto, F. (2000). Antioxidant activity of dietary polyphenols as determined by a modified ferric reducing/antioxidant power assay. Journal of Agricultural and Food Chemistry. 48(8): 3396-3402.
  • Shimada, K., Fujikawa, K., Yahara, K., Nakamura, T. (1992). Antioxidative properties of xanthan on the autoxidation of soybean oil in cyclodextrin emulsion. Journal of Agricultural and Food Chemistry. 40(6): 945-948. doi: https://doi.org/10.1021/jf00018a005
  • Bauer, A., Kirby, W., Sherris, J.C., Turck, M. (1966). Antibiotic susceptibility testing by a standardized single disk method. American Journal of Clinical Pathology. 45(4): 493-496.
  • Zhang, L., Wan, X.S., Donahue, J.J., Ware, J.H., Kennedy, A.R. (1999). Effects of the Bowman-Birk Inhibitor on Clonogenic Survival and Cisplatin-or Radiation-Induced Cytotoxicity in Human Breast, Cervical, and Head and Neck Cancer Cells. Nutrition and Cancer. 33(2): 165-173. doi: https://doi.org/10.1207/S15327914NC330208
  • Souza Lda. C., Camargo, R., Demasi, M., Santana, J.M., de Sá, C.M., de Freitas S.M. (2014). Effects of an anticarcinogenic Bowman-Birk protease inhibitor on purified 20S proteasome and MCF-7 breast cancer cells. PLoS One. 9(1): e86600. doi: https://doi.org/10.1371/journal.pone.0086600
  • Nagala, S., Yekula, M., Tamanam, R.R. (2013). Antioxidant and gas chromatographic analysis of five varieties of jackfruit (Artocarpus) seed oils. Drug Invention Today. 5(4): 315-320. doi: https://doi.org/10.1016/j.dit.2013.08.001
  • Konala, G., Seva L., Davuluri, S. (2012). Antimicrobial activity of prickly chaff (Achyranthes aspera) seed trypsin inhibitor. International Journal of Pharmaceutical Science Research. 3(9): 3241-3248.
  • Macedo, M.L.R., Ribeiro, S.F., Taveira, G.B., Gomes, V.M., de Barros, K.M., Maria-Neto, S. (2016). Antimicrobial Activity of ILTI, a Kunitz -Type Trypsin Inhibitor from Inga laurina (SW.) Willd. Current Microbiology. 72(5): 538-544. doi: https://doi.org/10.1007/s00284-015-0970-z
  • Padhi, P., Masi, M., Chourasia, R., Rajashekar, Y., Rai, A.K., Evidente, A. (2021). ADMET profile and virtual screening of plant and microbial natural metabolites as SARS-Cov-2 S1 glycoprotein receptor binding domain and main protease inhibitors. European Journal of Pharmacology. 890, 173648: 1-7.
  • Bloch, A. and Thomson, C.A. (1997). Position of the American Dietetic Association: Phytochemicals and functional foods. Journal of Nutraceuticals Functional and Medical Foods. 1(1): 33-45. doi: https://doi.org/10.1300/J133v01n01_04

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