Tecnológico de Monterrey, Escuela de Ingeniería y Ciencias, Ave. Eugenio Garza Sada 2501, Monterrey 64849, Mexico.
InDeX Innovación y Desarrollo en Alimentos, Av. Lázaro Cárdenas 4336, Monterrey 64930, Mexico.
Molecules. 2022 Apr 29;27(9):2824. doi: 10.3390/molecules27092824.
The development of novel cancer therapeutic strategies has garnered increasing interest in cancer research. Among the therapeutic choices, chemosensitizers have shown exciting prospects. Peptides are an attractive alternative among the molecules that may be used as chemosensitizers. We rationally designed a new-to-nature peptide, nurP28, derived from the 22-kDa α-zein protein sequence (entry Q00919_MAIZE). The resultant sequence of the nurP28 peptide after the addition of arginine residues was LALLALLRLRRRATTAFIIP, and we added acetyl and amide groups at the N- and C-terminus, respectively, for capping. We evaluated the cytotoxicity of the nurP28 peptide alone and in combination with docetaxel in fibroblast monolayers and breast cancer monolayers and spheroids. Our results indicated that nurP28 is not cytotoxic to human fibroblasts or cancer cells. Nevertheless, when combined with 1 µM docetaxel, 3 ng/mL nurP28 induced equivalent (in MCF7 monolayers) and higher (in MCF7 spheroids) cytotoxic effects than 10-fold higher doses of docetaxel alone. These findings suggest that nurP28 may act as a chemosensitizer in breast cancer treatment. This study describes the enhancing "anti-cancer" effects of nurP28 in breast cancer 2D and 3D cultures treated with docetaxel. Further studies should explore the mechanisms underlying these effects and assess the clinical potential of our findings using animal models.
新型癌症治疗策略的发展在癌症研究中引起了越来越多的关注。在治疗选择中,化学增敏剂显示出了令人兴奋的前景。在可能用作化学增敏剂的分子中,肽是一种有吸引力的选择。我们从 22kDaα-zein 蛋白序列(条目 Q00919_MAIZE)中合理设计了一种新的天然肽 nurP28。添加精氨酸残基后,nurP28 肽的序列为 LALLALLRLRRRATTAFIIP,我们分别在 N 端和 C 端添加乙酰基和酰胺基以进行封端。我们评估了 nurP28 肽单独使用以及与多西他赛联合使用在成纤维细胞单层和乳腺癌单层和球体中的细胞毒性。我们的结果表明,nurP28 对人成纤维细胞或癌细胞没有细胞毒性。然而,当与 1µM 多西他赛联合使用时,3ng/mL 的 nurP28 诱导的细胞毒性效应与单独使用 10 倍高剂量的多西他赛相当(在 MCF7 单层中),甚至更高(在 MCF7 球体中)。这些发现表明,nurP28 可能在乳腺癌治疗中作为化学增敏剂发挥作用。本研究描述了 nurP28 在乳腺癌 2D 和 3D 培养物中与多西他赛联合使用时增强的“抗癌”作用。进一步的研究应该探索这些作用的机制,并使用动物模型评估我们研究结果的临床潜力。