Miranda-Vera Carolina, Hernández Ángela Patricia, García-García Pilar, Díez David, García Pablo Anselmo, Castro María Ángeles
Laboratorio de Química Farmacéutica, Departamento de Ciencias Farmacéuticas, CIETUS, IBSAL, Facultad de Farmacia, Campus Miguel de Unamuno, Universidad de Salamanca, 37007 Salamanca, Spain.
Departamento de Química Orgánica, Facultad de Ciencias Químicas, Universidad de Salamanca, 37008 Salamanca, Spain.
Pharmaceutics. 2023 Dec 4;15(12):2728. doi: 10.3390/pharmaceutics15122728.
Podophyllotoxin is a naturally occurring cyclolignan isolated from rhizomes of sp. In the clinic, it is used mainly as an antiviral; however, its antitumor activity is even more interesting. While podophyllotoxin possesses severe side effects that limit its development as an anticancer agent, nevertheless, it has become a good lead compound for the synthesis of derivatives with fewer side effects and better selectivity. Several examples, such as etoposide, highlight the potential of this natural product for chemomodulation in the search for new antitumor agents. This review focuses on the recent chemical modifications (2017-mid-2023) of the podophyllotoxin skeleton performed mainly at the C-ring (but also at the lactone D-ring and at the trimethoxyphenyl E-ring) together with their biological properties. Special emphasis is placed on hybrids or conjugates with other natural products (either primary or secondary metabolites) and other molecules (heterocycles, benzoheterocycles, synthetic drugs, and other moieties) that contribute to improved podophyllotoxin bioactivity. In fact, hybridization has been a good strategy to design podophyllotoxin derivatives with enhanced bioactivity. The way in which the two components are joined (directly or through spacers) was also considered for the organization of this review. This comprehensive perspective is presented with the aim of guiding the medicinal chemistry community in the design of new podophyllotoxin-based drugs with improved anticancer properties.
鬼臼毒素是一种从鬼臼属植物根茎中分离得到的天然环木脂素。在临床上,它主要用作抗病毒药物;然而,其抗肿瘤活性更受关注。尽管鬼臼毒素具有严重的副作用,限制了其作为抗癌药物的开发,但它已成为合成副作用更少、选择性更好的衍生物的良好先导化合物。一些例子,如依托泊苷,凸显了这种天然产物在寻找新的抗肿瘤药物中进行化学调节的潜力。本综述重点关注了2017年至2023年年中主要在C环(但也在内酯D环和三甲氧基苯基E环)对鬼臼毒素骨架进行的化学修饰及其生物学特性。特别强调了与其他天然产物(初级或次级代谢产物)以及其他分子(杂环、苯并杂环、合成药物和其他基团)形成的杂化物或缀合物,这些有助于提高鬼臼毒素的生物活性。事实上,杂化一直是设计具有增强生物活性的鬼臼毒素衍生物的良好策略。本综述的组织还考虑了两种组分连接的方式(直接连接或通过间隔基团连接)。呈现这一全面的观点旨在指导药物化学界设计具有更好抗癌特性的新型鬼臼毒素类药物。