Bhuiyan Ashif Iqbal, Papajani Vilma Toska, Paci Maurizio, Melino Sonia
Department of Chemical Sciences and Technologies, University of Rome Tor Vergata, via della Ricerca Scientifica, Rome 00133, Italy.
Department of Professional Chemistries and Pharmacognosy, University of Medicine, Tirana, Str. "Dibra", Nr. 371, Tirana 1000, Albania.
Molecules. 2015 Jan 20;20(1):1731-50. doi: 10.3390/molecules20011731.
Natural organosulfur compounds (OSCs) from Allium sativum L. display antioxidant and chemo-sensitization properties, including the in vitro inhibition of tumor cell proliferation through the induction of apoptosis. Garlic water- and oil-soluble allyl sulfur compounds show distinct properties and the capability to inhibit the proliferation of tumor cells. In the present study, we optimized a new protocol for the extraction of water-soluble compounds from garlic at low temperatures and the production of glutathionyl-OSC conjugates during the extraction. Spontaneously, Cys/GSH-mixed-disulfide conjugates are produced by in vivo metabolism of OSCs and represent active molecules able to affect cellular metabolism. Water-soluble extracts, with (GSGaWS) or without (GaWS) glutathione conjugates, were here produced and tested for their ability to release hydrogen sulfide (H2S), also in the presence of reductants and of thiosulfate:cyanide sulfurtransferase (TST) enzyme. Thus, the TST catalysis of the H2S-release from garlic OSCs and their conjugates has been investigated by molecular in vitro experiments. The antiproliferative properties of these extracts on the human T-cell lymphoma cell line, HuT 78, were observed and related to histone hyperacetylation and downregulation of GAPDH expression. Altogether, the results presented here pave the way for the production of a GSGaWS as new, slowly-releasing hydrogen sulfide extract for potential therapeutic applications.
来自大蒜的天然有机硫化合物(OSCs)具有抗氧化和化学增敏特性,包括通过诱导凋亡在体外抑制肿瘤细胞增殖。大蒜的水溶性和油溶性烯丙基硫化合物表现出不同的特性以及抑制肿瘤细胞增殖的能力。在本研究中,我们优化了一种新方案,用于在低温下从大蒜中提取水溶性化合物,并在提取过程中生产谷胱甘肽基-OSC缀合物。OSCs在体内代谢会自发产生半胱氨酸/谷胱甘肽混合二硫键缀合物,它们是能够影响细胞代谢的活性分子。在此制备了含有(GSGaWS)或不含有(GaWS)谷胱甘肽缀合物的水溶性提取物,并测试了它们释放硫化氢(H2S)的能力,同时还测试了在存在还原剂和硫代硫酸盐:氰化物硫转移酶(TST)酶的情况下的释放能力。因此,通过分子体外实验研究了TST对大蒜OSCs及其缀合物释放H2S的催化作用。观察了这些提取物对人T细胞淋巴瘤细胞系HuT 78的抗增殖特性,并将其与组蛋白高乙酰化和GAPDH表达下调相关联。总之,本文给出的结果为生产GSGaWS作为一种新型的、缓慢释放硫化氢的提取物用于潜在治疗应用铺平了道路。