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Association of Different ABO and Rh Blood Groups with the Erythroprotective Effect of Extracts from and Their Anti-Inflammatory and Antiproliferative Properties

Abstract

Previous studies have reported that different blood groups are associated with the risk of chronic degenerative diseases that mainly involve inflammation and neoplastic processes. We investigate the relationship between blood groups and the erythroprotective effect of extracts from against oxidative damage as a proposal to develop drugs designed for people with a specific blood type related to chronic pathology. The study was carried out through the elucidation of the erythroprotective potential, anti-inflammatory and antiproliferative activity of . Research suggests that the presence or absence of certain blood groups increases or decreases the abilities of certain phytochemicals to inhibit oxidative stress, which is related to the systemic inflammatory response involved in the development of different types of cancer. The pigment-rich extracts from inhibit ROO•- induced oxidative stress in human erythrocytes on the A RhD+ve antigen without compromising the structure of the cell membrane. This result is very important, since the A antigen is related to the susceptibility of contracting prostate cancer. Similarly, it was possible to inhibit the proliferation of cervical (HeLa) and prostate (PC-3) carcinoma. The combinatorial analysis of different biological activities can help design phytochemicals as new candidates for preventive drugs treating the chronic degenerative diseases associated with a specific blood group.

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Erythroprotective Potential of Phycobiliproteins Extracted from .

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References
1.
Xiao J, Huang G, Zhu C, Ren D, Zhang S . Morphological study on apoptosis Hela cells induced by soyasaponins. Toxicol In Vitro. 2007; 21(5):820-6. DOI: 10.1016/j.tiv.2007.01.025. View

2.
Hazim R, Volland S, Yen A, Burgess B, Williams D . Rapid differentiation of the human RPE cell line, ARPE-19, induced by nicotinamide. Exp Eye Res. 2018; 179:18-24. PMC: 6360117. DOI: 10.1016/j.exer.2018.10.009. View

3.
Rodrigues E, Mariutti L, Chiste R, Mercadante A . Development of a novel micro-assay for evaluation of peroxyl radical scavenger capacity: application to carotenoids and structure-activity relationship. Food Chem. 2012; 135(3):2103-11. DOI: 10.1016/j.foodchem.2012.06.074. View

4.
Zhao X, Jiang S, Dong Q, Dang J, Liu Z, Han H . Anti-rheumatoid arthritis effects of iridoid glucosides from Lamiophlomis rotata (Benth.) kudo on adjuvant-induced arthritis in rats by OPG/RANKL/NF-κB signaling pathways. J Ethnopharmacol. 2020; 266:113402. DOI: 10.1016/j.jep.2020.113402. View

5.
Ravi Kumar S, Hosokawa M, Miyashita K . Fucoxanthin: a marine carotenoid exerting anti-cancer effects by affecting multiple mechanisms. Mar Drugs. 2013; 11(12):5130-47. PMC: 3877908. DOI: 10.3390/md11125130. View