Suppression efficacy of lignosulfonate/mercerized cotton fiber composite against cancer cell’s activities

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES Advanced Composites Letters Pub Date : 2019-01-01 DOI:10.1177/0963693519875974
A. El‐kott, Aishah F. A. Syef, M. Alshehri, Sahar I Al Dessouky, S. Keshk
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引用次数: 6

Abstract

Lignosulfonate (LS)/mercerized cotton composite was prepared to study the LS suppressive possibility to control malignant cell activities to facilitate chemotherapy treatment. The composite was characterized by cross-polarized/magic angle spinning 13C nuclear magnetic resonance (NMR) spectrometry and scanning electron microscope (SEM). 13C NMR spectra and SEM indicated that the presence of LS increased crystallinity and porosity of mercerized cellulose, respectively. Furthermore, the composite efficacy against cancer cell activity was evaluated by cytotoxicity for malignant cell line HCT116, HepG2, and MCF-7. The cancer cells thrive in an acidic environment and they do not survive in normal or alkaline media. The release of LS was intended at acidic pH, in which, the acidity increased due to the activity of the cancer cells that activate the LS released from the mercerized cotton into the media. Therefore, this release process reduced the activity of cancer cells. The released LS kept cancer cells in a low activity via decreasing acidity. Hence, the composite may not eliminate the cancer cells, but it reduces the activity of cancer cells.
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木质素磺酸盐/丝光棉纤维复合材料对癌症细胞活性的抑制作用
制备木质素磺酸盐(LS)/丝光棉复合材料,研究LS抑制恶性肿瘤细胞活性的可能性,促进化疗治疗。采用交极化/魔角自旋13C核磁共振(NMR)谱和扫描电镜(SEM)对复合材料进行了表征。13C NMR和SEM结果表明,LS的存在提高了丝光纤维素的结晶度和孔隙度。此外,通过对恶性细胞系HCT116、HepG2和MCF-7的细胞毒作用,评价了复合药物的抗癌活性。癌细胞在酸性环境中茁壮成长,不能在正常或碱性环境中存活。LS的释放是在酸性pH下进行的,在酸性pH下,由于癌细胞的活动激活了从丝光棉花释放到培养基中的LS,酸度增加。因此,这种释放过程降低了癌细胞的活性。释放的LS通过降低酸度使癌细胞保持低活性。因此,该复合物虽不能消灭癌细胞,但能降低癌细胞的活性。
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来源期刊
Advanced Composites Letters
Advanced Composites Letters 工程技术-材料科学:复合
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审稿时长
4.2 months
期刊介绍: Advanced Composites Letters is a peer reviewed, open access journal publishing research which focuses on the field of science and engineering of advanced composite materials or structures.
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