Exploring the anticancer and antioxidant potential of gold nanoparticles synthesized from Pterocarpus marsupium bark extract against oral squamous cell carcinoma.

IF 4.5 3区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Smrutipragnya Samal, Rajesh Kumar Meher, Pratyush Kumar Das, Santosh Kumar Swain, Debasmita Dubey, Mohd Shahnawaz Khan, Bigyan Ranjan Jali
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引用次数: 0

Abstract

Oral squamous cell carcinoma (OSCC) is a disease of significant concern with higher mortality rates. Conventional treatment approaches have several drawbacks, leading to the opening of new research avenues in the field of nanoparticle-based cancer therapeutics. The study aimed at the synthesis of gold nanoparticles (Pm-AuNPs) from the aqueous bark extract of Pterocarpus marsupium, followed by its characterization and in vitro anticancer evaluation against OSCC. The synthesized Pm-AuNPs were characterized using UV-visible spectroscopy, particle size analyser, zeta potential, FTIR and SEM techniques. The anticancer potential of the Pm-AuNPs was evaluated against OSCC cell lines (SCC29b, SSC154 and OECM-1) through in vitro assays. The IC50 value was found to be 25 ± 1.2, 45 ± 1.5 and 75 ± 2.1 µg/mL for the three OSCC cell lines, elucidating Pm-AuNPs cytotoxic effects and mechanism of action. Intracellular ROS and SOX detection, mitochondrial transmembrane potential analysis and apoptosis detection were used to confirm the activity of Pm-AuNPs against OSCC. Acute toxicity studies on Wistar rats confirmed the non-toxic nature of the Pm-AuNPs at a higher dose concentration up to 2000 mg/kg body weight. The findings underscore Pm-AuNPs as promising candidates for future anticancer therapeutics, providing insights into their mechanism of action and therapeutic efficacy against OSCC.

探讨紫檀树皮提取物合成的金纳米粒子对口腔鳞状细胞癌的抗癌和抗氧化潜力
口腔鳞状细胞癌(OSCC)是一种死亡率较高的疾病,备受关注。传统的治疗方法存在一些弊端,因此在基于纳米粒子的癌症治疗领域开辟了新的研究途径。本研究旨在从紫檀树皮水提取物中合成金纳米粒子(Pm-AuNPs),并对其进行表征和体外抗癌评估。利用紫外可见光谱、粒度分析仪、ZETA电位、傅立叶变换红外光谱和扫描电镜技术对合成的 Pm-AuNPs 进行了表征。通过体外实验评估了 Pm-AuNPs 对 OSCC 细胞系(SCC29b、SSC154 和 OECM-1)的抗癌潜力。结果发现,三种 OSCC 细胞系的 IC50 值分别为 25 ± 1.2、45 ± 1.5 和 75 ± 2.1 µg/mL,从而阐明了 Pm-AuNPs 的细胞毒性作用和作用机制。细胞内 ROS 和 SOX 检测、线粒体跨膜电位分析和细胞凋亡检测用于证实 Pm-AuNPs 对 OSCC 的活性。对 Wistar 大鼠进行的急性毒性研究证实,Pm-AuNPs 在较高剂量浓度(最高达 2000 毫克/千克体重)下无毒性。这些研究结果表明,Pm-AuNPs 是未来抗癌疗法的理想候选物质,有助于深入了解它们对 OSCC 的作用机制和疗效。
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来源期刊
Artificial Cells, Nanomedicine, and Biotechnology
Artificial Cells, Nanomedicine, and Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-ENGINEERING, BIOMEDICAL
CiteScore
10.90
自引率
0.00%
发文量
48
审稿时长
20 weeks
期刊介绍: Artificial Cells, Nanomedicine and Biotechnology covers the frontiers of interdisciplinary research and application, combining artificial cells, nanotechnology, nanobiotechnology, biotechnology, molecular biology, bioencapsulation, novel carriers, stem cells and tissue engineering. Emphasis is on basic research, applied research, and clinical and industrial applications of the following topics:artificial cellsblood substitutes and oxygen therapeuticsnanotechnology, nanobiotecnology, nanomedicinetissue engineeringstem cellsbioencapsulationmicroencapsulation and nanoencapsulationmicroparticles and nanoparticlesliposomescell therapy and gene therapyenzyme therapydrug delivery systemsbiodegradable and biocompatible polymers for scaffolds and carriersbiosensorsimmobilized enzymes and their usesother biotechnological and nanobiotechnological approachesRapid progress in modern research cannot be carried out in isolation and is based on the combined use of the different novel approaches. The interdisciplinary research involving novel approaches, as discussed above, has revolutionized this field resulting in rapid developments. This journal serves to bring these different, modern and futuristic approaches together for the academic, clinical and industrial communities to allow for even greater developments of this highly interdisciplinary area.
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