Bufadienolides from amphibians: A promising source of anticancer prototypes for radical innovation, apoptosis triggering and Na+/K+-ATPase inhibition

被引:78
作者
De Sousa, Livia Queiroz [1 ]
Machado, Katia da Conceicao [1 ]
Oliveira, Samara Ferreira de Carvalho [2 ]
Aradjo, Lidiane da Silva [3 ]
Moncao-Filho, Evaldo dos Santos [3 ]
Melo-Cavalcante, Ana Amelia Carvalho [1 ]
Vieira, Gerardo Magela, Jr. [3 ]
Ferreira, Paulo Michel Pinheiro [1 ,4 ]
机构
[1] Federal Univ Piaui, Postgraduate Program Pharmaceutical Sci, 049550 Piaui, Brazil
[2] Federal Univ Piaui, Dept Sci Biol, Campus Senator Helvido Nunes Barros, 64607 piaui, Brazil
[3] Federal Univ Piaui, Dept Chem, 049550 piaui, Brazil
[4] Federal Univ Piaui, Dept Biophys & Physiol, Lab Expt Cancerol, 049550 Piaui, Brazil
关键词
Toad secretion; Chemical diversity; Cell death; Cardiovascular role; Clinical studies; ENDOGENOUS CARDIOTONIC STEROIDS; TRADITIONAL CHINESE MEDICINE; CELL LUNG-CANCER; CARDIAC-GLYCOSIDES; NATURAL-PRODUCTS; DRUG DISCOVERY; NA/K-ATPASE; CHAN-SU; ANTIPROLIFERATIVE ACTIVITY; HEPATOCELLULAR-CARCINOMA;
D O I
10.1016/j.toxicon.2017.01.004
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Amphibians present pharmacologically active aliphatic, aromatic and heterocyclic molecules in their skin as defense against microorganisms, predators and infections, such as steroids, alkaloids, biogenic amines, guanidine derivatives, proteins and peptides. Based on the discovered bioactive potential of bufadienolides, this work reviewed the contribution of amphibians, especially from members of Bufonidae family, as source of new cytotoxic and antitumor molecules, highlighting the mechanisms responsible for such amazing biological potentialities. Bufonidae species produce bufadienolides related to cholesterol through the mevalonate-independent and acidic bile acid pathways as polyhydroxy steroids with 24 carbons. In vitro antitumor studies performed with skin secretions and its isolated components (specially marinobufagin, telocinobufagin, bufalin and cinobufagin) from Rhinella, Bufo and Rhaebo species have shown remarkable biological action on hematological, solid, sensitive and/or resistant human tumor cell lines. Some compounds revealed higher selectivity against neoplastic lines when compared to dividing normal cells and some molecules may biochemically associate with Na+/K+-ATPase and there is structural similarity to the digoxin- and ouabain-Na+/K+-ATPase complexs, implying a similar mechanism of the Na+/K+-ATPase inhibition by cardenolides and bufadienolides. Some bufadienolides also reduce levels of antiapoptotic proteins and DNA synthesis, cause morphological changes (chromatin condensation, nuclear fragmentation, cytoplasm shrinkage, cytoplasmic vacuoles, stickiness reduction and apoptotic bodies), cell cycle arrest in G(2)/M or S phases, mitochondrial depolarization, PARP [poly (ADPribose) polymerasej and Bid cleavages, cytochrome c release, activation of Bax and caspases (-3, -9, -8 and -10), increased expression of the Fas-Associated protein with Death Domain (FADD), induce topoisomerase II inhibition, DNA fragmentation, cell differentiation, angiogenesis inhibition, multidrug resistance reversion, and also regulate immune responses. Then, bufadienolides isolated from amphibians, some of them at risk of extinction, emerge as a natural class of incredible chemical biodiversity, has moderate selectivity against human tumor cells and weak activity on murine cells, probably due to structural differences between subunits of human and mice Na+/K+-ATPases. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:63 / 76
页数:14
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