Laboratorio de Biología Molecular, Facultad de Odontología, Universidad Autónoma de Nuevo León, UANL, Monterrey, Nuevo León, México.
Subdirección de Investigación Básica, Instituto Nacional de Cancerología, Ciudad de México, México.
J Appl Biomater Funct Mater. 2024 Jan-Dec;22:22808000241236590. doi: 10.1177/22808000241236590.
To evaluate the antitumor and antimicrobial properties of an alginate-based membrane (ABM) loaded with bismuth lipophilic nanoparticles (BisBAL NPs) and cetylpyridinium chloride (CPC) on clinically isolated bacteria and a pancreatic cancer cell line.
The BisBAL NP-CPC ABM was characterized using optical and scanning electron microscopy (SEM). The antimicrobial potential was measured using the disk-diffusion assay, and antibiofilm activity was determined through the live/dead assay and fluorescence microscopy. The antitumor activity was analyzed on the pancreatic cell line (Panc 03.27) using the MTT assay and live/dead assay with fluorescence microscopy.
After a 24-h exposure (37°C, aerobic conditions), 5 µM BisBAL NP reduced the growth of by 77.9%, while 2.5 µM BisBAL NP inhibited the growth of , and by 82.9%, 82.6%, and 78%, respectively (). The BisBAL NPs-CPC ABM (at a ratio of 10:1; 500 and 50 µM, respectively) inhibited the growth of all isolated bacteria, producing inhibition halos of 9.5, 11.2, 7, and 10.3 mm for , and , respectively, in contrast to the 6.5, 9.5, 8.5, and 9.8 mm obtained with 100 µM ceftriaxone (). The BisBAL NPs-CPC ABM also reduced bacterial biofilms, with 81.4%, 74.5%, 97.1%, and 79.5% inhibition for , and , respectively. Furthermore, the BisBAL NPs-CPC ABM decreased Panc 03.27 cell growth by 76%, compared to 18% for drug-free ABM. GEM-ABM reduced tumoral growth by 73%. The live/dead assay confirmed that BisBAL NPs-CPC-ABM and GEM-ABM were cytotoxic for the turmoral Panc 03.27 cells.
An alginate-based membrane loaded with BisBAL NP and CPC exhibits dual antimicrobial and antitumoral efficacy. Therefore, it could be applied in cancer treatment and to diminish the occurrence of surgical site infections.
评估载有亲脂性铋纳米粒子(BisBAL NPs)和十六烷基吡啶氯(CPC)的藻酸盐膜(ABM)对临床分离细菌和胰腺癌细胞系的抗肿瘤和抗菌特性。
采用光学显微镜和扫描电子显微镜(SEM)对 BisBAL NP-CPC ABM 进行了表征。采用圆盘扩散法测定抗菌潜力,通过活菌/死菌检测和荧光显微镜测定抗生物膜活性。采用 MTT 法和荧光显微镜活菌/死菌检测分析胰腺细胞系(Panc 03.27)的抗肿瘤活性。
在 24 小时(37°C,有氧条件)暴露后,5μM BisBAL NP 使 减少 77.9%,而 2.5μM BisBAL NP 抑制 、 和 的生长分别为 82.9%、82.6%和 78%()。BisBAL NPs-CPC ABM(比例为 10:1;分别为 500 和 50μM)抑制所有分离细菌的生长,与 100μM 头孢曲松获得的 6.5、9.5、8.5 和 9.8mm 相比,分别产生 9.5、11.2、7 和 10.3mm 的抑菌环 、 、 和 ()。BisBAL NPs-CPC ABM 还减少了细菌生物膜的形成,对 、 、 和 的抑制率分别为 81.4%、74.5%、97.1%和 79.5%。此外,与无药物 ABM 的 18%相比,BisBAL NPs-CPC ABM 使 Panc 03.27 细胞生长减少 76%。GEM-ABM 使肿瘤生长减少 73%。活菌/死菌检测证实,BisBAL NPs-CPC-ABM 和 GEM-ABM 对肿瘤 Panc 03.27 细胞具有细胞毒性。
载有 BisBAL NP 和 CPC 的藻酸盐膜具有双重抗菌和抗肿瘤功效。因此,它可应用于癌症治疗并减少手术部位感染的发生。