Third World Center for Science and Technology, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.
H. E. J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.
Biomolecules. 2022 May 31;12(6):770. doi: 10.3390/biom12060770.
As the technologies for peptide synthesis and development continue to mature, antimicrobial peptides (AMPs) are being widely studied as significant contributors in medicinal chemistry research. Furthermore, the advancement in the synthesis of dendrimers' design makes dendrimers wonderful nanostructures with distinguishing properties. This study foregrounds a temporin SHa analog, [G10a]-SHa, and its dendrimers as globular macromolecules possessing anticancer and antibacterial activities. These architectures of temporin SHa, named as [G10a]-SHa, its dendrimeric analogs [G10a]-SHa and [G10a]-SHa, and [G10a]-SHa conjugated with a polymer molecule, i.e., Jeff-[G10a]-SHa, were synthesized, purified on RP-HPLC and UPLC and fully characterized by mass, NMR spectroscopic techniques, circular dichroism, ultraviolet, infrared, dynamic light scattering, and atomic force microscopic studies. In pH- and temperature-dependent studies, all of the peptide dendrimers were found to be stable in the temperature range up to 40-60 °C and pH values in the range of 6-12. Biological-activity studies showed these peptide dendrimers possessed improved antibacterial activity against different strains of both Gram-positive and Gram-negative strains. Together, these dendrimers also possessed potent selective antiproliferative activity against human cancer cells originating from different organs (breast, lung, prostate, pancreas, and liver). The high hemolytic activity of [G10a]-SHa and [G10a]-SHa dendrimers, however, limits their use for topical treatment, such as in the case of skin infection. On the contrary, the antibacterial and anticancer activities of Jeff-[G10a]-SHa, associated with its low hemolytic action, make it potentially suitable for systemic treatment.
随着肽合成和开发技术的不断成熟,抗菌肽(AMPs)作为药物化学研究的重要贡献者受到了广泛的研究。此外,在树状大分子的设计合成方面的进步使得树状大分子成为具有独特性质的奇妙纳米结构。本研究重点研究了一种临时素 SHa 类似物 [G10a]-SHa 及其树状大分子作为具有抗癌和抗菌活性的球形大分子。这些临时素 SHa 的结构,命名为 [G10a]-SHa、其树状大分子类似物 [G10a]-SHa 和 [G10a]-SHa 以及与聚合物分子 Jeff-[G10a]-SHa 偶联的 [G10a]-SHa,均通过质谱、NMR 光谱技术、圆二色性、紫外-可见光谱、红外光谱、动态光散射和原子力显微镜研究进行了合成、纯化和充分表征。在 pH 值和温度依赖性研究中,发现所有的肽树状大分子在温度范围高达 40-60°C 和 pH 值范围 6-12 时均稳定。生物活性研究表明,这些肽树状大分子对不同类型的革兰氏阳性和革兰氏阴性菌株均具有改善的抗菌活性。此外,这些树状大分子还对来自不同器官(乳腺、肺、前列腺、胰腺和肝脏)的人类癌细胞具有有效的选择性增殖抑制活性。然而,[G10a]-SHa 和 [G10a]-SHa 树状大分子的高溶血活性限制了它们在局部治疗(例如皮肤感染)中的应用。相反,Jeff-[G10a]-SHa 的抗菌和抗癌活性以及其低溶血作用使其有可能适用于全身治疗。