Department of Chemistry, Universidad CEU San Pablo, Madrid, Spain.
Curr Med Chem. 2012;19(7):1036-64. doi: 10.2174/092986712799320628.
Extracellular matrix metalloproteinases (MMPs) are a family of zinc-dependent neutral endopeptidases involved in physiological and pathological processes, through the cleavage of extracellular matrix. MMPs are capable of degrading essentially all matrix components, which is crucial for malignant tumor growth, invasion, metastasis and angiogenesis. The vertebrates MMP family includes at least 26 enzymes (23 have been known in humans) with only MMP-1, 2, and 7 experimentally validated as targets for antitumoral drug design. However, inhibition of MMP-1 has been hypothesized to be the cause of the clinically observed musculoskeletal syndrome when broad spectrum inhibitors are used. On the other hand, MMP-9 is a tricky enzyme, since its inhibition might be useful in treating patients with early-stage cancers, but MMP-9 is an anti-target in patients with advanced disease. So, MMP-9 inhibition should also be prevented. Therefore, selective MMP-2 inhibition arises as a pursued profile for MMP binders. Among them, hydroxamates have been extensively studied as small molecule drug candidates characterized by an effective zinc-binding group plus additional side chains responsible for the selectivity. This article pays particular attention to MMP-2 selectivity on hydroxamate-type inhibitors, especially against MMP-9, and their chemical structure, SAR, general synthetic methods, and molecular modelling studies are here reviewed in order to inspire further design of new effective anticancer agents.
细胞外基质金属蛋白酶(MMPs)是一类锌依赖性中性内肽酶,参与生理和病理过程,通过细胞外基质的裂解。MMPs 能够降解几乎所有的基质成分,这对于恶性肿瘤的生长、侵袭、转移和血管生成至关重要。脊椎动物 MMP 家族至少包括 26 种酶(人类已知有 23 种),只有 MMP-1、2 和 7 经实验验证可作为抗肿瘤药物设计的靶点。然而,当使用广谱抑制剂时,抑制 MMP-1 被假设为引起临床上观察到的肌肉骨骼综合征的原因。另一方面,MMP-9 是一种棘手的酶,因为其抑制作用可能对治疗早期癌症的患者有用,但在晚期疾病患者中 MMP-9 是一个抗靶标。因此,也应该防止 MMP-9 的抑制。因此,选择性 MMP-2 抑制成为 MMP 结合物的追求特征。在这些结合物中,羟肟酸类已被广泛研究作为小分子药物候选物,其特征是有效的锌结合基团加上负责选择性的额外侧链。本文特别关注羟肟酸类抑制剂对 MMP-2 的选择性,特别是对 MMP-9 的选择性,以及它们的化学结构、SAR、一般合成方法和分子建模研究,以激发新的有效抗癌药物的进一步设计。