Prospects of earthworm coelomic fluid as a potential therapeutic agent to treat cancer

Mattiuzzi, C., & Lippi, G. (2019). Current cancer epidemiology. Journal of epidemiology and global health, 9(4), 217.

Article  PubMed  PubMed Central  Google Scholar 

Malone, E. R., Oliva, M., Sabatini, P. J. B., Stockley, T. L., & Siu, L. L. (2020). Molecular profiling for precision cancer therapies. Genome Medicine, 12(1), 8.

Article  PubMed  PubMed Central  Google Scholar 

Anand, U., Dey, A., Chandel, A. K. S., Sanyal, R., Mishra, A., Pandey, D. K., De Falco, V., Upadhyay, A., Kandimalla, R., Chaudhary, A., Dhanjal, J. K., Dewanjee, S., Vallamkondu, J., & Pérez de la Lastra, J. M. (2022). Cancer chemotherapy and beyond: Current status, drug candidates, associated risks and progress in targeted therapeutics. Genes & Diseases, 10(4), 1367–1401.

Article  Google Scholar 

Davis, M. E. (2018). Epidemiology and overview of gliomas. In Seminars in oncology nursing (pp. 420–429). Elsevier.

Google Scholar 

Zhou, Y., Xing, X., Zhou, J., Jiang, H., Cen, P., Jin, C., Zhong, Y., Zhou, R., Wang, J., & Tian, M. (2023). Therapeutic potential of tumor treating fields for malignant brain tumors. Cancer Reports, 6(5), e1813.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Deng, Z., Gao, S., Xiao, X., Yin, N., Ma, S., Li, W., & Li, Y. (2019). The effect of earthworm extract on mice S180 tumor growth and apoptosis. Biomedicine & Pharmacotherapy, 115, 108979.

Article  CAS  Google Scholar 

Liu, Y. P., Zheng, C. C., Huang, Y. N., He, M. L., Xu, W. W., & Li, B. (2021). Molecular mechanisms of chemo- and radiotherapy resistance and the potential implications for cancer treatment. MedComm (2020), 2(3), 315–340.

CAS  PubMed  Google Scholar 

Hashem, S., Ali, T. A., Akhtar, S., Nisar, S., Sageena, G., Ali, S., Al-Mannai, S., Therachiyil, L., Mir, R., & Elfaki, I. (2022). Targeting cancer signaling pathways by natural products: Exploring promising anti-cancer agents. Biomedicine & Pharmacotherapy, 150, 113054.

Article  CAS  Google Scholar 

Huang, M., Lu, J.-J., & Ding, J. (2021). Natural products in cancer therapy: Past, present and future. Natural products and bioprospecting, 11, 5–13.

Article  PubMed  PubMed Central  Google Scholar 

Lin, S. R., Chang, C. H., Hsu, C. F., Tsai, M. J., Cheng, H., Leong, M. K., Sung, P. J., Chen, J. C., & Weng, C. F. (2020). Natural compounds as potential adjuvants to cancer therapy: Preclinical evidence. British Journal of Pharmacology, 177(6), 1409–1423.

Article  CAS  PubMed  Google Scholar 

Barreca, M., Spanò, V., Montalbano, A., Cueto, M., Díaz Marrero, A. R., Deniz, I., Erdoğan, A., Lukić Bilela, L., Moulin, C., Taffin-de-Givenchy, E., Spriano, F., Perale, G., Mehiri, M., Rotter, A., Thomas, P., Barraja, P., Gaudêncio, S. P., & Bertoni, F. (2020). Marine anticancer agents: An overview with a particular focus on their chemical classes. Marine Drugs, 18(12), 619.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Baindara, P., & Mandal, S. M. (2020). Bacteria and bacterial anticancer agents as a promising alternative for cancer therapeutics. Biochimie, 177, 164–189.

Article  CAS  PubMed  Google Scholar 

Wang, D., Ruan, Z., Zhang, R., Wang, X., Wang, R., & Tang, Z. (2021). Effect of earthworm on wound healing: A systematic review and meta-analysis. Frontiers in Pharmacology, 12, 691742. https://doi.org/10.3389/fphar.2021.691742

Article  PubMed  PubMed Central  Google Scholar 

Augustine, D., Rao, R. S., Anbu, J., & Murthy, K. (2018). Anticancer prospects of earthworm extracts: A systematic review of in vitro and in vivo studies. Pharmacognosy Reviews, 12(23), 46–55.

Article  CAS  Google Scholar 

Mustafa, R. G., Saiqa, A., Domínguez, J., Jamil, M., Manzoor, S., Wazir, S., Shaheen, B., Parveen, A., Khan, R., & Ali, S. (2022). Therapeutic values of earthworm species extract from Azad Kashmir as anticoagulant, antibacterial, and antioxidant agents. Canadian Journal of Infectious Diseases and Medical Microbiology, 2022, 1–20. https://doi.org/10.1155/2022/6949117

Article  Google Scholar 

He, M., Xie, W.-Q., Cheng, G., Li, W.-P., Yu, D.-J., Jin, H.-F., Deng, Z.-H., & Li, Y.-S. (2021). The therapeutic effects of earthworm extract on deep second-degree burn wound healing. Annals of Palliative Medicine, 10(3), 2869–2879.

Article  PubMed  Google Scholar 

Samatra, D. P. G. P., Sukrama, G. B. M. T., Dewi, I. D. M., Praja, N. W. S., & Nurmansyah, R. K. (2017). Extract of earthworms (Lumbricus rubellus) reduced malondialdehyde and 8-hydroxy-deoxyguanosine level in male Wistar rats infected by salmonella typhi. Biomedical and Pharmacology Journal, 10(4), 1765–1771.

Article  Google Scholar 

Wasunan, P., Maneewong, C., Daengprok, W., & Thirabunyanon, M. (2022). Bioactive earthworm peptides produced by novel protease-producing Bacillus velezensis PM 35 and its bioactivities on liver cancer cell death via apoptosis, antioxidant activity, protection against oxidative stress, and immune cell activation. Frontiers in Microbiology, 13, 892945. https://doi.org/10.3389/fmicb.2022.892945

Article  PubMed  PubMed Central  Google Scholar 

Prem-U-Domkit, K., Muangman, T., Klungsupya, P., Chantsavang, S., & Kubera, A. (2017). Bioactivities of crude mucus proteins from Eudrilus eugeniae (African night crawler) and Perionyx excavatus (Blue worm). European Review for Medical and Pharmacological Sciences, 21(2), 361–368.

CAS  PubMed  Google Scholar 

Ečimović, S., Vrandečić, K., Kujavec, M., Žulj, M., Ćosić, J., & Velki, M. (2021). Antifungal activity of earthworm coelomic fluid obtained from Eisenia andrei, Dendrobaena veneta and Allolobophora chlorotica on six species of phytopathogenic fungi. Environments, 8(10), 102.

Article  Google Scholar 

Fiołka, M. J., Czaplewska, P., Macur, K., Buchwald, T., Kutkowska, J., Paduch, R., Kaczyński, Z., Wydrych, J., & Urbanik-Sypniewska, T. (2019). Anti-Candida albicans effect of the protein-carbohydrate fraction obtained from the coelomic fluid of earthworm Dendrobaena veneta. PLoS One, 14(3), e0212869.

Article  PubMed  PubMed Central  Google Scholar 

Fiołka, M. J., Mieszawska, S., Czaplewska, P., Szymańska, A., Stępnik, K., Sofińska-Chmiel, W., Buchwald, T., & Lewtak, K. (2020). Candida albicans cell wall as a target of action for the protein–carbohydrate fraction from coelomic fluid of Dendrobaena veneta. Scientific Reports, 10(1), 16352.

Article  PubMed  PubMed Central  Google Scholar 

Shafi, F. A. A., & Faleh, N. (2019). Anticancer activity of earthworm powder (Lumbricus terrestris) against MCF-7 and PC-3 cancer cell lines. Journal of Gastrointestinal Cancer, 50, 919–925.

Article  CAS  PubMed  Google Scholar 

Liu, C., Chen, X., Pan, Y., Liang, H., Song, S., & Ji, A. (2017). Antitumor studies of earthworm fibrinolytic enzyme component A from Eisenia foetida on breast cancer cell line MCF-7. Indian Journal of Pharmaceutical Sciences, 79(3), 361–368.

Article  CAS  Google Scholar 

Kauschke, E., Mohrig, W., & Cooper, E. L. (2007). Coelomic fluid proteins as basic components of innate immunity in earthworms. European Journal of Soil Biology, 43, S110–S115.

Article  CAS  Google Scholar 

Dewi, N. W. S., & Mahendra, A. N. (2020). The in-vivo anti-inflammatory effect of red earthworm (Lumbricus rubellus) ethanolic extract from organic farmland in Bali, Indonesia. Bali Medical Journal, 9(3), 652–655.

Article  Google Scholar 

Rudrammaji, L., Dinesh, M., & Sonole, V. G. (2015). Cytotoxic effect of coelomic fluid of earthworm Eudrilus eugeniae. Biomedical and Pharmacology Journal, 1(2), 433–436.

Google Scholar 

Verma, M. K., Xavier, F., Verma, Y. K., & Sobha, K. (2013). Evaluation of cytotoxic and anti-tumor activity of partially purified serine protease isolate from the Indian earthworm Pheretima posthuma. Asian Pacific Journal of Tropical Biomedicine, 3(11), 896–901.

Article  CAS  PubMed Central  Google Scholar 

Rochfort, S., Wyatt, M. A., Liebeke, M., Southam, A. D., Viant, M. R., & Bundy, J. G. (2017). Aromatic metabolites from the coelomic fluid of Eisenia earthworm species. European journal of soil biology, 78, 17–19.

Article  CAS  Google Scholar 

Griffith, C. M., Williams, P. B., Tinoco, L. W., Dinges, M. M., Wang, Y., & Larive, C. K. (2017). 1H NMR metabolic profiling of earthworm (Eisenia fetida) coelomic fluid, coelomocytes, and tissue: Identification of a new metabolite-malylglutamate. Journal of Proteome Research, 16(9), 3407–3418.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Dajem, S. B., Ali, S. B., Abdelrady, O. G., Salahaldin, N. M., Soliman, A. M., Kamal, Y. M., Abdelazim, A. Y., Mohamed, A. F., Morsy, K., & Mohamed, A. S. (2020). Allolobophora caliginosa coelomic fluid ameliorates gentamicin-induced hepatorenal toxicity in rats. Asian Pacific Journal of Tropical Biomedicine, 10(9), 411.

Article  CAS  Google Scholar 

Fiołka, M. J., Lewtak, K., Rzymowska, J., Grzywnowicz, K., Hułas-Stasiak, M., Sofińska-Chmiel, W., & Skrzypiec, K. (2013). Antifungal and anticancer effects of a polysaccharide–protein complex from the gut bacterium Raoultella ornithinolytica isolated from the earthworm Dendrobaena veneta. Pathogens and disease, 69(1), 49–61.

Google Scholar 

Budayatin, W., Wahyuni, J., & Dafik, D. (2021). Antibacterial effects of Pheretima javanica extract and bioactive chemical analysis using gas chromatography mass spectrum. Journal of Physics: Conference Series, 1751(1), 012055.

CAS  Google Scholar 

Hussain, M., Liaqat, I., Ali, N. M., Arshad, N., Hanif, U., Sajjad, S., Sardar, A. A., Awan, U. F., Khan, F. S., & Slahuddin. (2021). Antibacterial and bacteriostatic potential of coelomic fluid and body paste of Pheretima posthuma (Vaillant, 1868) (Clitellata, Megascolecidae) against ampicillin resistant clinical bacterial isolates. Brazilian Journal of Biology, 83, e247016.

Article  CAS  Google Scholar 

Hussain, M., Liaqat, I., Hanif, U., Sultan, A., Ara, C., Aftab, N., Urooj, B., & A. (2022). Medicinal perspective of antibacterial bioactive agents in earthworms (Clitellata, Annelida): A comprehensive review. Journal of Oleo Science, 71(4), 563–573.

Article  CAS  PubMed  Google Scholar 

Sadek, S. A., Sayed, M. G., Fahmy, S. R., & Soliman, A. M. (2022). A coelomic fluid of Allolobophora caliginosa as novel prospects for medicinal antioxidants, anti-inflammatory, antiproliferative, analgesics, and antipyretics. Biointerface Research in Applied Chemistry, 13(3), 1–20.

Google Scholar 

Augustine Mds, D., Rao, R., Anbu, J., & Murthy, K. (2018). Anti-proliferative activity of earthworm coelomic fluid using oral squamous carcinoma KB 3-1 cells: An in vitro study with serine protease analysis. Pharmacognosy Magazine, 14, 528.

Article  Google Scholar 

Jaabir, M., Shamsheerali, L., Yasar, M., & Kumar, S. S. (2011). Evaluation of the cell-free coelomic fluid of the earthworm Eudrilus euginiae to induce apoptosis in SiHa cell line. Journal of Pharmacy Research, 4(10), 3417–3420.

CAS 

留言 (0)

沒有登入
gif