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The Anti-Proliferative Effects of Ficus carica Latex on Cancer and Normal Cells

Yıl 2024, Cilt: 9 Sayı: 2, 145 - 151, 30.06.2024
https://doi.org/10.35229/jaes.1412816

Öz

The stems of unripe fig fruits or leaves contain a white liquid called fig latex. Fig latex contains compounds that are effective against cancer cells. It is used for various purposes in folk medicine and has been proven to have superior pharmacological properties in modern studies. The industrial value of latex from a cosmetic perspective is increasing as well. In the current study, the cytotoxic effect of fig latex obtained from Ficus carica was evaluated by MTT analysis on lung cancer (A549), breast cancer (MCF-7), triple-negative breast cancer (MDA-MB-231), and non-tumorogenic lung (MRC-5) cell lines. All cell lines were treated with various dilutions of fig latex ranging from 1/1500 to 1/12 for 48 hours. In cancer cells, it induced cell death in a concentration-dependent manner, and high doses caused a more serious cytotoxic effect. On the other hand, it showed less cytotoxicity on healthy cells compared to cancer cells. Fig latex IC50 values were found to be 1/26, 1/40, 1/45, and 1/7 for A549, MCF-7, MDA-MB-231, and MRC-5 cells, respectively. Based on our findings, fig latex showed selective cytotoxicity against cancer cells, making it a possible target for future cancer drug development. However, further research is needed to fully understand the potential use of fig latex and its bioactive compounds in cancer treatment in terms of their functional properties.

Kaynakça

  • Abdel-Aty, A.M., Hamed, M.B., Salama, W.H., Ali, M.M., Fahmy, A.S. & Mohamed, S.A. (2019). Ficus carica, Ficus sycomorus and Euphorbia tirucalli latex extracts: Phytochemical screening, antioxidant and cytotoxic properties. Biocatalysis and Agricultural Biotechnology, 20, 101199.
  • Abe, T. (2020). Fig (Ficus carica L.) leaf tea suppresses allergy by acceleration disassembly of IgE-receptor complexes. Bioscience, Biotechnology, and Biochemistry, 84(5), 1013-1022.
  • AlGhalban, F.M., Khan, A.A. & Khattak, M.N.K. (2021). Comparative anticancer activities of Ficus carica and Ficus salicifolia latex in MDA-MB231 cells. Saudi Journal of Biological Sciences, 28(6), 3225-3234.
  • Almehmadi, A. (2023). Biological Activities of Ficus carica L. Fig Leaves and Latex. Journal of Food and Dairy Sciences, 14(7), 173-179.
  • Badgujar, S.B., Patel, V.V., Bandivdekar, A.H. & Mahajan, R.T. (2014). Traditional uses, phytochemistry and pharmacology of Ficus carica: A review. Pharmaceutical Biology, 52(11), 1487-1503.
  • Baohong, L., Zhongyuan, L., Ying, T., Beibei, Y., Wenting, N., Yiming, Y., Qinghua, C. & Qingjun, Z. (2023). Latex derived from Ficus carica L. inhibited the growth of NSCLC by regulating the caspase/gasdermin/AKT signaling pathway. Food & Function, 14(4), 2239-2248.
  • Boyacıoğlu, O., Kara, B., Tecimen, S., Kılıç, M., Delibaş, M., Erdoğan, R., Özdemir, E., Bahadır, A. & Örenay-Boyacıoğlu, S. (2021). Antiproliferative effect of Ficus carica latex on cancer cell lines is not solely linked to peroxidaselike activity of ficin. European Journal of Integrative Medicine, 45, 101348.
  • Cakir, M.O., Bilge, U., Naughton, D. & Ashrafi, G.H. (2023). Ficus carica Latex Modulates ImmunityLinked Gene Expression in Human Papillomavirus Positive Cervical Cancer Cell Lines: Evidence from RNA Seq Transcriptome Analysis. International Journal of Molecular Sciences, 24(17), 13646.
  • Castelli, M.V. & Lopez, S.N. (2022). Chemistry, Biological activities, and uses of Ficus carica latex, In: Gums, Resins and Latexes of Plant Origin: Chemistry, Biological Activities and Uses, 801-822p, Cham: Springer International Publishing.
  • Devaraj, K.B., Kumar, P.R. & Prakash, V. (2008). Purification, characterization, and solventinduced thermal stabilization of ficin from Ficus carica. J. Agric. Food Chem., 56, 11417-23.
  • Garcia-Oliveira, P., Otero, P., Pereira, A. G., Chamorro, F., Carpena, M., Echave, J., Fraga-Corral, M., Simal-Gandara, J. & Prieto, M.A. (2021). Status and challenges of plant-anticancer compounds in cancer treatment. Pharmaceuticals, 14(2), 157.
  • Ghanbari, A., Le Gresley, A., Naughton, D., Kuhnert, N., Sirbu, D. & Ashrafi, G.H. (2019). Biological activities of Ficus carica latex for potential therapeutics in Human Papillomavirus (HPV) related cervical cancers. Scientific Reports, 9, 1013.
  • Ghandehari, F. & Fatemi, M. (2018). The effect of Ficus carica latex on 7, 12-dimethylbenz (a) anthracene-induced breast cancer in rats. Avicenna Journal of Phytomedicine, 8, 286-295.
  • Hanahan, D. & Weinberg, R.A. (2011). Hallmarks of cancer: the next generation. Cell, 144(5), 646-674.
  • Hashemi, S.A. & Abediankenari, S. (2013). Suppressive effect of fig (Ficus carica) latex on esophageal cancer cell proliferation. Acta Facultatis Medicae Naissensis, 30(2), 93-96.
  • Hashemi, S.A., Abediankenari, S., Ghasemi, M., Azadbakht, M., Yousefzadeh, Y. & Dehpour A.A. (2011). The effect of fig tree latex (Ficus carica) on stomach cancer line. Iranian Red Crescent Medical Journal, 13(4), 272-275.
  • Hegazy, M.M., Mekky, R.H., Afifi, W.M., Mostafa, A.E. & Abbass, H.S. (2023). Composition and Biological Activities of Ficus carica Latex, In: Ramadan, M.F. (Ed) Fig (Ficus Carica): Production, Processing, and Properties, 597- 641p, Cham, Springer International Publishing.
  • Khodarahmi, G.A., Ghasemi, N., Hassanzadeh, F. & Safaie, M. (2011). Cytotoxic effects of different extracts and latex of Ficus carica L. on HeLa cell line. Iranian Journal of Pharmaceutical Research, 10(2), 273-277.
  • Koch, A., Tamez, P., Pezzuto, J. & Soejarto, D. (2005). Evaluation of plants used for antimalarial treatment by the Maasai of Kenya, J. Ethnopharmacol. 101(1-3) 95-99.
  • Lansky, E.P., Paavilainen, H.M., Pawlus, A.D. & Newman, R.A. (2008). Ficus spp.(fig): Ethnobotany and potential as anticancer and antiinflammatory agents. Journal of Ethnopharmacology, 119(2), 195-213.
  • Li, A.N., Li, S., Zhang, Y.J., Xu, X.R., Chen, Y.M. & Li, H.B. (2014). Resources and biological activities of natural polyphenols. Nutrients, 6(12), 6020- 6047.
  • Menichini, G., Alfano, C., Provenzano, E., Marrelli, M., Statti, G.A., Somma, F., Menichini, F. & Conforti, F. (2012). Fig latex (Ficus carica L. cultivar dottato) in combination with UV irradiation decreases the viability of A375 melanoma cells in vitro. Anti-Cancer Agents in Medicinal Chemistry, 12(8), 959-965.
  • Mostafaie, A., Mansouri, K., Norouznezhad, A.H. & Mohammadi, M.H.R. (2011). Anti-angiogenic activity of Ficus carica latex extract on human umbilical vein endothelial cells. Cell Journal, 12(4), 525-528.
  • Muhammad, N., Usmani, D., Tarique, M., Naz, H., Ashraf, M., Raliya, R., Tabrez, S., Zughaibi, T.A., Alsaieedi, Hakeem, I.J. & Suhail, M. (2022). The role of natural products and their multitargeted approach to treat solid cancer. Cells, 11(14), 2209.
  • Pawlus, A.D., Cartwright, C.A., Vijjeswarapu, M., Liu, Z., Woltering, E. & Newman, R.A. (2008). Anti-angiogenic activity from the fruit latex of Ficus carica (Fig). Planta Medica, 74, PA97.
  • Rasool, I.F.U., Aziz, A., Khalid, W., Koraqi, H., Siddiqui, S.A., Al-Farga, A., Lai, W.F. & Ali, A. (2023). Industrial Application and Health Prospective of Fig (Ficus carica L.) By-Products. Molecules, 28(3), 960.
  • Rubnov, S., Kashman, Y., Rabinowitz, R., Schlesinger, M. & Mechoulam, R., (2001). Suppressors of cancer cell proliferation from fig (Ficus carica) resin: isolation and structure elucidation. J. Nat. Prod., 64, 993-996.
  • Shahinuzzaman, M., Yaakob, Z., Anuar, F.H., Akhtar, P., Kadir, N.H.A., Mahmut Hasan, A.K., Sobayel, K., Nour, M., Sindi, H., Amin, N., Sopian, K. & Akhtaruzzaman, Md. (2020). In vitro antioxidant activity of Ficus carica L. latex from 18 different cultivars. Scientific Reports, 10(1), 10852.
  • Shin, B.S., Lee, S.A., Moon, S.M., Han, S.H., Hwang, E.J., Kim, S.G., Kim, D.K., Kim, J.S., Park, B.R. & Kim, C.S. (2017). Latex of Ficus carica L. induces apoptosis through caspase and bcl-2 family in FaDu human hypopharynx squamous carcinoma cells. International Journal of Oral Biology, 42(4), 183-190.
  • Shiraishi, C.S.H., Zbiss, Y., Roriz, C.L., Dias, M.I., Prieto, M.A., Calhelha, R.C., Alves, M.J., Heleno, S.A., da Cunha Mendes, V., Carocho, M., Abreu, R.M.V. & Barros, L. (2023). Fig Leaves (Ficus carica L.): Source of Bioactive Ingredients for Industrial Valorization. Processes, 11(4), 1179.
  • Soltana, H., Pinon, A., Limami, Y., Zaid, Y., Khalki, L., Zaid, N., Salah, D., Yerzhan Sabitaliyevich, U., Simon, A., Liagre, B. & Hammami, M. (2019). Antitumoral activity of Ficus carica L. on colorectal cancer cell lines. Cellular and Molecular Biology, 65(6), 6-11.
  • Soni, N., Mehta, S., Satpathy, G. & Gupta, R.K. (2014). Estimation of nutritional, phytochemical, antioxidant and antibacterial activity of dried figsg (Ficus carica). Journal of Pharmacognosy and Phytochemistry, 3(2), 158-165.
  • Teruel-Andreu, C., Andreu-Coll, L., López-Lluch, D., Sendra, E., Hernández, F. & Cano-Lamadrid, M. (2021). Ficus carica fruits, by-products and based products as potential sources of bioactive compounds: A review. Agronomy, 11(9), 1834.
  • Tezcan, G., Tunca, B., Bekar, A., Yalcin, M., Sahin, S., Budak, F., Cecener, G., Egeli, U., Demir, C., Guvenc, G., Yilmaz, G., Erkan, L.G., Malyer, H., Taskapilioglu, M.O., Evrensel, T. & Bilir, A. (2015). Ficus carica latex prevents invasion through induction of let-7d expression in GBM cell lines. Cellular and Molecular Neurobiology, 35, 175-187.
  • Tuli, H.S., Tuorkey, M.J., Thakral, F., Sak, K., Kumar, M., Sharma, A.K., Sharma, U., Jain, A., Aggarwal, V. & Bishayee, A. (2019). Molecular mechanisms of action of genistein in cancer: Recent advances. Frontiers in Pharmacology, 10, 1336.
  • Upadhyay, R.K. (2011). Plant latex: A natural source of pharmaceuticals and pesticides. International Journal of Green Pharmacy (IJGP), 5(3), 169- 180.
  • Wang, J., Wang, X.J., Jiang, S., Lin, P., Zhang, J., Lu, Y.R., Wang, Q., Xiong, Z.J., Wu, Y.Y., Ren, J.J. & Yang, H.L. (2008) Cytotoxicity of fig fruit latex against human cancer cells. Foodand Chemical Toxicology, 46(3), 1025-1033.
  • World Health Organization. (2019). International agency for research on cancer. World Health Organization: Geneva, Switzerland.
  • Yahiaoui, S., Kati, D.E., Ali, L.M., El Cheikh, K., Morére, A., Menut, C., Bachir-bey, M. & Bettache, N. (2022). Assessment of antioxidant, antiproliferative, anti-inflammatory, and enzyme inhibition activities and UPLC-MS phenolic determination of Ficus carica latex. Industrial Crops and Products, 178, 114629.

Ficus carica Sütünün Kanser ve Normal Hücre Üzerindeki Anti-proliferatif Etkileri

Yıl 2024, Cilt: 9 Sayı: 2, 145 - 151, 30.06.2024
https://doi.org/10.35229/jaes.1412816

Öz

İncir sütü, olgunlaşmamış incir meyve veya yaprak saplarının içerisinde bulunan beyaz renkli bir sıvıdır. İncir sütü, halk hekimliğinde çeşitli amaçlar için kullanılmaktadır ve modern çalışmalarda üstün farmakolojik özelliklere sahip olduğu kanıtlanmıştır. Ayrıca incir sütünün kozmetik açıdan endüstriyel değeri gitgide artmaktadır. Mevcut çalışmada, Ficus carica (F. carica) türünden elde edilen incir sütünün akciğer kanseri (A549), meme kanseri (MCF-7), üçlü negatif meme kanseri (MDA-MB-231) ve tümörojenik olmayan akciğer (MRC-5) hücre hatları üzerindeki sitotoksik etkisi MTT analiziyle değerlendirildi. Tüm hücre hatları, incir sütünün 1/1500-1/12 arası değişen konsantrasyonlarıyla 48 saat boyunca muamele edildi. İncir sütü, kanserli hücrelerde konsantrasyona bağlı bir şekilde hücre ölüm oranını arttırdı ve yüksek dozlarında hücreler üzerinde daha ciddi bir sitotoksisik etkiye neden oldu. Sağlıklı hücrelerde ise kanser hücrelerine göre daha az toksik etki gösterdi. İncir sütünün IC50 değeri, A549 hücrelerinde 1/26, MCF-7 hücrelerinde 1/40, MDA-MB-231 hücrelerinde 1/45 ve MRC-5 hücrelerinde ise 1/7 olarak belirlendi. Bulgularımız, incir sütünün kanser hücrelerine karşı seçici sitotoksisiteye sahip olduğunu ve gelecekte kanserle ilgili ilaç araştırmalarındaki ilerlemelerde faydalı olabileceğini göstermektedir. İncir sütünün ve muhtevasındaki biyoaktif bileşiklerinin fonksiyonel özellikleri açısından kanser tedavilerinde potansiyel kullanımına dair bilimsel araştırmalara daha fazla ihtiyaç vardır.

Kaynakça

  • Abdel-Aty, A.M., Hamed, M.B., Salama, W.H., Ali, M.M., Fahmy, A.S. & Mohamed, S.A. (2019). Ficus carica, Ficus sycomorus and Euphorbia tirucalli latex extracts: Phytochemical screening, antioxidant and cytotoxic properties. Biocatalysis and Agricultural Biotechnology, 20, 101199.
  • Abe, T. (2020). Fig (Ficus carica L.) leaf tea suppresses allergy by acceleration disassembly of IgE-receptor complexes. Bioscience, Biotechnology, and Biochemistry, 84(5), 1013-1022.
  • AlGhalban, F.M., Khan, A.A. & Khattak, M.N.K. (2021). Comparative anticancer activities of Ficus carica and Ficus salicifolia latex in MDA-MB231 cells. Saudi Journal of Biological Sciences, 28(6), 3225-3234.
  • Almehmadi, A. (2023). Biological Activities of Ficus carica L. Fig Leaves and Latex. Journal of Food and Dairy Sciences, 14(7), 173-179.
  • Badgujar, S.B., Patel, V.V., Bandivdekar, A.H. & Mahajan, R.T. (2014). Traditional uses, phytochemistry and pharmacology of Ficus carica: A review. Pharmaceutical Biology, 52(11), 1487-1503.
  • Baohong, L., Zhongyuan, L., Ying, T., Beibei, Y., Wenting, N., Yiming, Y., Qinghua, C. & Qingjun, Z. (2023). Latex derived from Ficus carica L. inhibited the growth of NSCLC by regulating the caspase/gasdermin/AKT signaling pathway. Food & Function, 14(4), 2239-2248.
  • Boyacıoğlu, O., Kara, B., Tecimen, S., Kılıç, M., Delibaş, M., Erdoğan, R., Özdemir, E., Bahadır, A. & Örenay-Boyacıoğlu, S. (2021). Antiproliferative effect of Ficus carica latex on cancer cell lines is not solely linked to peroxidaselike activity of ficin. European Journal of Integrative Medicine, 45, 101348.
  • Cakir, M.O., Bilge, U., Naughton, D. & Ashrafi, G.H. (2023). Ficus carica Latex Modulates ImmunityLinked Gene Expression in Human Papillomavirus Positive Cervical Cancer Cell Lines: Evidence from RNA Seq Transcriptome Analysis. International Journal of Molecular Sciences, 24(17), 13646.
  • Castelli, M.V. & Lopez, S.N. (2022). Chemistry, Biological activities, and uses of Ficus carica latex, In: Gums, Resins and Latexes of Plant Origin: Chemistry, Biological Activities and Uses, 801-822p, Cham: Springer International Publishing.
  • Devaraj, K.B., Kumar, P.R. & Prakash, V. (2008). Purification, characterization, and solventinduced thermal stabilization of ficin from Ficus carica. J. Agric. Food Chem., 56, 11417-23.
  • Garcia-Oliveira, P., Otero, P., Pereira, A. G., Chamorro, F., Carpena, M., Echave, J., Fraga-Corral, M., Simal-Gandara, J. & Prieto, M.A. (2021). Status and challenges of plant-anticancer compounds in cancer treatment. Pharmaceuticals, 14(2), 157.
  • Ghanbari, A., Le Gresley, A., Naughton, D., Kuhnert, N., Sirbu, D. & Ashrafi, G.H. (2019). Biological activities of Ficus carica latex for potential therapeutics in Human Papillomavirus (HPV) related cervical cancers. Scientific Reports, 9, 1013.
  • Ghandehari, F. & Fatemi, M. (2018). The effect of Ficus carica latex on 7, 12-dimethylbenz (a) anthracene-induced breast cancer in rats. Avicenna Journal of Phytomedicine, 8, 286-295.
  • Hanahan, D. & Weinberg, R.A. (2011). Hallmarks of cancer: the next generation. Cell, 144(5), 646-674.
  • Hashemi, S.A. & Abediankenari, S. (2013). Suppressive effect of fig (Ficus carica) latex on esophageal cancer cell proliferation. Acta Facultatis Medicae Naissensis, 30(2), 93-96.
  • Hashemi, S.A., Abediankenari, S., Ghasemi, M., Azadbakht, M., Yousefzadeh, Y. & Dehpour A.A. (2011). The effect of fig tree latex (Ficus carica) on stomach cancer line. Iranian Red Crescent Medical Journal, 13(4), 272-275.
  • Hegazy, M.M., Mekky, R.H., Afifi, W.M., Mostafa, A.E. & Abbass, H.S. (2023). Composition and Biological Activities of Ficus carica Latex, In: Ramadan, M.F. (Ed) Fig (Ficus Carica): Production, Processing, and Properties, 597- 641p, Cham, Springer International Publishing.
  • Khodarahmi, G.A., Ghasemi, N., Hassanzadeh, F. & Safaie, M. (2011). Cytotoxic effects of different extracts and latex of Ficus carica L. on HeLa cell line. Iranian Journal of Pharmaceutical Research, 10(2), 273-277.
  • Koch, A., Tamez, P., Pezzuto, J. & Soejarto, D. (2005). Evaluation of plants used for antimalarial treatment by the Maasai of Kenya, J. Ethnopharmacol. 101(1-3) 95-99.
  • Lansky, E.P., Paavilainen, H.M., Pawlus, A.D. & Newman, R.A. (2008). Ficus spp.(fig): Ethnobotany and potential as anticancer and antiinflammatory agents. Journal of Ethnopharmacology, 119(2), 195-213.
  • Li, A.N., Li, S., Zhang, Y.J., Xu, X.R., Chen, Y.M. & Li, H.B. (2014). Resources and biological activities of natural polyphenols. Nutrients, 6(12), 6020- 6047.
  • Menichini, G., Alfano, C., Provenzano, E., Marrelli, M., Statti, G.A., Somma, F., Menichini, F. & Conforti, F. (2012). Fig latex (Ficus carica L. cultivar dottato) in combination with UV irradiation decreases the viability of A375 melanoma cells in vitro. Anti-Cancer Agents in Medicinal Chemistry, 12(8), 959-965.
  • Mostafaie, A., Mansouri, K., Norouznezhad, A.H. & Mohammadi, M.H.R. (2011). Anti-angiogenic activity of Ficus carica latex extract on human umbilical vein endothelial cells. Cell Journal, 12(4), 525-528.
  • Muhammad, N., Usmani, D., Tarique, M., Naz, H., Ashraf, M., Raliya, R., Tabrez, S., Zughaibi, T.A., Alsaieedi, Hakeem, I.J. & Suhail, M. (2022). The role of natural products and their multitargeted approach to treat solid cancer. Cells, 11(14), 2209.
  • Pawlus, A.D., Cartwright, C.A., Vijjeswarapu, M., Liu, Z., Woltering, E. & Newman, R.A. (2008). Anti-angiogenic activity from the fruit latex of Ficus carica (Fig). Planta Medica, 74, PA97.
  • Rasool, I.F.U., Aziz, A., Khalid, W., Koraqi, H., Siddiqui, S.A., Al-Farga, A., Lai, W.F. & Ali, A. (2023). Industrial Application and Health Prospective of Fig (Ficus carica L.) By-Products. Molecules, 28(3), 960.
  • Rubnov, S., Kashman, Y., Rabinowitz, R., Schlesinger, M. & Mechoulam, R., (2001). Suppressors of cancer cell proliferation from fig (Ficus carica) resin: isolation and structure elucidation. J. Nat. Prod., 64, 993-996.
  • Shahinuzzaman, M., Yaakob, Z., Anuar, F.H., Akhtar, P., Kadir, N.H.A., Mahmut Hasan, A.K., Sobayel, K., Nour, M., Sindi, H., Amin, N., Sopian, K. & Akhtaruzzaman, Md. (2020). In vitro antioxidant activity of Ficus carica L. latex from 18 different cultivars. Scientific Reports, 10(1), 10852.
  • Shin, B.S., Lee, S.A., Moon, S.M., Han, S.H., Hwang, E.J., Kim, S.G., Kim, D.K., Kim, J.S., Park, B.R. & Kim, C.S. (2017). Latex of Ficus carica L. induces apoptosis through caspase and bcl-2 family in FaDu human hypopharynx squamous carcinoma cells. International Journal of Oral Biology, 42(4), 183-190.
  • Shiraishi, C.S.H., Zbiss, Y., Roriz, C.L., Dias, M.I., Prieto, M.A., Calhelha, R.C., Alves, M.J., Heleno, S.A., da Cunha Mendes, V., Carocho, M., Abreu, R.M.V. & Barros, L. (2023). Fig Leaves (Ficus carica L.): Source of Bioactive Ingredients for Industrial Valorization. Processes, 11(4), 1179.
  • Soltana, H., Pinon, A., Limami, Y., Zaid, Y., Khalki, L., Zaid, N., Salah, D., Yerzhan Sabitaliyevich, U., Simon, A., Liagre, B. & Hammami, M. (2019). Antitumoral activity of Ficus carica L. on colorectal cancer cell lines. Cellular and Molecular Biology, 65(6), 6-11.
  • Soni, N., Mehta, S., Satpathy, G. & Gupta, R.K. (2014). Estimation of nutritional, phytochemical, antioxidant and antibacterial activity of dried figsg (Ficus carica). Journal of Pharmacognosy and Phytochemistry, 3(2), 158-165.
  • Teruel-Andreu, C., Andreu-Coll, L., López-Lluch, D., Sendra, E., Hernández, F. & Cano-Lamadrid, M. (2021). Ficus carica fruits, by-products and based products as potential sources of bioactive compounds: A review. Agronomy, 11(9), 1834.
  • Tezcan, G., Tunca, B., Bekar, A., Yalcin, M., Sahin, S., Budak, F., Cecener, G., Egeli, U., Demir, C., Guvenc, G., Yilmaz, G., Erkan, L.G., Malyer, H., Taskapilioglu, M.O., Evrensel, T. & Bilir, A. (2015). Ficus carica latex prevents invasion through induction of let-7d expression in GBM cell lines. Cellular and Molecular Neurobiology, 35, 175-187.
  • Tuli, H.S., Tuorkey, M.J., Thakral, F., Sak, K., Kumar, M., Sharma, A.K., Sharma, U., Jain, A., Aggarwal, V. & Bishayee, A. (2019). Molecular mechanisms of action of genistein in cancer: Recent advances. Frontiers in Pharmacology, 10, 1336.
  • Upadhyay, R.K. (2011). Plant latex: A natural source of pharmaceuticals and pesticides. International Journal of Green Pharmacy (IJGP), 5(3), 169- 180.
  • Wang, J., Wang, X.J., Jiang, S., Lin, P., Zhang, J., Lu, Y.R., Wang, Q., Xiong, Z.J., Wu, Y.Y., Ren, J.J. & Yang, H.L. (2008) Cytotoxicity of fig fruit latex against human cancer cells. Foodand Chemical Toxicology, 46(3), 1025-1033.
  • World Health Organization. (2019). International agency for research on cancer. World Health Organization: Geneva, Switzerland.
  • Yahiaoui, S., Kati, D.E., Ali, L.M., El Cheikh, K., Morére, A., Menut, C., Bachir-bey, M. & Bettache, N. (2022). Assessment of antioxidant, antiproliferative, anti-inflammatory, and enzyme inhibition activities and UPLC-MS phenolic determination of Ficus carica latex. Industrial Crops and Products, 178, 114629.
Toplam 39 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Hayvan Fizyolojisi - Hücre
Bölüm Makaleler
Yazarlar

Ferhunde Aysin 0000-0003-1971-8031

Nihal Şimşek Özek 0000-0002-7326-5670

Nurullah Acet Bu kişi benim 0000-0002-8382-7200

Kubra Koc 0000-0001-6208-165X

Erken Görünüm Tarihi 14 Haziran 2024
Yayımlanma Tarihi 30 Haziran 2024
Gönderilme Tarihi 3 Ocak 2024
Kabul Tarihi 4 Nisan 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 9 Sayı: 2

Kaynak Göster

APA Aysin, F., Şimşek Özek, N., Acet, N., Koc, K. (2024). The Anti-Proliferative Effects of Ficus carica Latex on Cancer and Normal Cells. Journal of Anatolian Environmental and Animal Sciences, 9(2), 145-151. https://doi.org/10.35229/jaes.1412816


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