首页> 外文期刊>Pharmacological research: The official journal of The Italian Pharmacological Society >Isothiocyanate-cysteine conjugates protect renal tissue against cisplatin-induced apoptosis via induction of heme oxygenase-1
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Isothiocyanate-cysteine conjugates protect renal tissue against cisplatin-induced apoptosis via induction of heme oxygenase-1

机译:异硫氰酸盐-半胱氨酸结合物通过诱导血红素加氧酶-1保护肾脏组织免受顺铂诱导的细胞凋亡

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摘要

Heme oxygenase-1 (HO-1) is a redox sensitive inducible enzyme endowed with important antioxidant and cytoprotective activities. Here we report that two water-soluble isothiocyanate-cysteine conjugates, S-[N-benzyl(thiocarbamoyl)]-L-cysteine (BTTC) and S-[N-(3-phenylpropyl)(thiocarbamoyl)]-L-cysteine (PTTC), potently increase HO-1 protein expression and heme oxygenase activity in renal tubular epithelial cells at 5 and 10muM, while higher concentrations are themselves cytotoxic and pro-apoptotic. Inhibitors of the pro-survival pathways ERK, MAPK and PI3K almost completely abolished the increase in HO-1 induction and heme oxygenase activity, while the JNK pathway appeared to be mainly involved in the apoptosis triggered by the isothiocyanates. We also found that renal cells exposed to 50 muM cisplatin (CDDP), a chemotherapeutic agent known for its nephrotoxic actions, displayed a marked increase in caspase-3 activity and the number of apoptotic cells. These effects were abolished by pre-incubation of cells with concentrations of BTCC or PTCC that maximize HO-1 induction and were reversed by the inhibitor of heme oxygenase activity tin protoporphyrin IX (SnPPIX). Moreover, in a model of CDDP-induced nephrotoxicity in vivo, pre-treatment of rats with a daily dose of BTCC or PTCC (25 mg/kg, i.p.) completely abolished the increase in serum creatinine and urea levels and markedly reduced the severity of renal tissue apoptosis caused by CDDP. The renoprotective effects of BTCC and PTCC in vivo were markedly attenuated by administration of rats with SnPPIX. These findings indicate that water-soluble isothiocyanates counteract renal dysfunction and apoptosis by up-regulating the HO-1 system and could be used as a supplementary treatment to mitigate CDDP-induced nephrotoxic effects.
机译:血红素加氧酶-1(HO-1)是一种氧化还原敏感的诱导酶,具有重要的抗氧化剂和细胞保护活性。在这里我们报道了两种水溶性异硫氰酸酯-半胱氨酸结合物,S- [N-苄基(硫代氨基甲酰基)]-L-半胱氨酸(BTTC)和S- [N-(3-苯丙基)(硫代氨基甲酰基)]-L-半胱氨酸( PTTC)在5和10μM时可有效增加肾小管上皮细胞中HO-1蛋白的表达和血红素加氧酶活性,而更高的浓度本身具有细胞毒性和促凋亡作用。促存活途径ERK,MAPK和PI3K的抑制剂几乎完全消除了HO-1诱导和血红素加氧酶活性的增加,而JNK途径似乎主要参与了异硫氰酸酯引发的凋亡。我们还发现,暴露于50μM顺铂(CDDP)(一种以其肾毒性作用而闻名的化学治疗剂)的肾细胞,其caspase-3活性和凋亡细胞数量显着增加。通过将细胞与浓度最大化的HO-1诱导的BTCC或PTCC预孵育,可以消除这些作用,而血红素加氧酶活性抑制剂原卟啉IX(SnPPIX)可逆转这些作用。此外,在CDDP诱导的体内肾毒性模型中,用每日剂量的BTCC或PTCC(25 mg / kg,腹膜内)每天对大鼠进行预处理完全消除了血清肌酐和尿素水平的增加,并显着降低了血肌酐的严重程度。 CDDP引起肾组织凋亡。通过给予SnPPIX大鼠,BTCC和PTCC体内的肾脏保护作用显着减弱。这些发现表明,水溶性异硫氰酸盐通过上调HO-1系统来抵消肾功能不全和细胞凋亡,可以用作减轻CDDP引起的肾毒性作用的补充治疗。

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