Fabrication of water-dispersible dye/polymer matrix-stabilized β-FeOOH (Rh-B/F127@β-FeOOH) nanoparticles: synthesis, characterization and therapeutic applications

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanoscale Advances Pub Date : 2025-01-24 DOI:10.1039/D4NA00595C
Neela Mohan Chidambaram, Palanisamy Rajkumar, P. Arul Prakash, G. M. Rathika, K. Prabhu, Senthil Muthu Kumar Thiagamani, M. Khalid Hossain, Manikandan Ayyar, Lalitha Gnanasekaran and Jinho Kim
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Abstract

In this study, dye/polymer matrix-stabilized β-FeOOH nanomaterials were fabricated for therapeutic applications. Rh-B/F127@β-FeOOH nanomaterials were synthesized using two different methods: co-precipitation (CoP) and hydrothermal (HT) methods. The as-synthesized nanoparticles were characterized using various spectroscopic techniques, including FT-IR, UV-Vis, PL, XRD, HR-TEM, and XPS analysis. The functional groups and optical properties were confirmed by FT-IR spectroscopy, UV-Vis and fluorescence spectroscopy. The Rh-B/F127@β-FeOOH nanomaterials exhibited both rod-like and sphere-like morphology, as confirmed by HR-TEM analysis. Unlike the nanorods, the nanospheres produced multi-colored emissions at 407, 446, 482 and 520 nm. The oxidative states and elements were confirmed by XPS spectroscopy. MTT assays were used to analyze the cytotoxicity of the nanospheres against A549 cells. The reactive oxygen species (ROS) generation and apoptotic cell death caused by the β-FeOOH nanospheres were evaluated by flow cytometry. Cell cycle analysis indicated that the treatment of nanospheres-induced S-phase cell cycle arrest in A549 cells. The synthesized nanospheres induced late-stage apoptosis in the A549 cell line, with a cell death rate of up to 30.37% at the IC50 concentration. Additionally, the antioxidant activities of the synthesized nanorods showed a high scavenging activity against free radicals, as examined by different assays such as such as DPPH, RP, and FRAP. The above results suggest that the synthesized nanorods and nanospheres are promising and efficient material for therapeutic applications.

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水分散染料/聚合物基质稳定β-FeOOH (Rh-B/F127@β-FeOOH)纳米颗粒的制备:合成、表征和治疗应用。
在本研究中,制备了染料/聚合物基质稳定的β-FeOOH纳米材料用于治疗应用。采用共沉淀法(CoP)和水热法(HT)制备了Rh-B/F127@β-FeOOH纳米材料。利用FT-IR、UV-Vis、PL、XRD、HR-TEM和XPS等多种光谱技术对合成的纳米颗粒进行了表征。通过红外光谱、紫外-可见光谱和荧光光谱对其官能团和光学性质进行了表征。HR-TEM分析证实,Rh-B/F127@β-FeOOH纳米材料具有棒状和球状两种形态。与纳米棒不同,纳米球在407、446、482和520纳米处产生多色辐射。用XPS光谱法确定了氧化态和氧化元素。MTT法检测纳米微球对A549细胞的细胞毒性。采用流式细胞术观察β-FeOOH纳米微球对活性氧(ROS)生成和凋亡细胞死亡的影响。细胞周期分析表明,纳米球处理诱导A549细胞s期细胞周期阻滞。合成的纳米微球可诱导A549细胞株发生晚期凋亡,IC50浓度下细胞死亡率高达30.37%。此外,合成的纳米棒的抗氧化活性显示出对自由基的高清除活性,如DPPH, RP和FRAP等不同的检测。上述结果表明,合成的纳米棒和纳米球是一种有前景的高效治疗材料。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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