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红树林气生根作为制备银纳米颗粒的生物催化剂及其在抗生物膜形成和肝癌方面的潜在应用。

Mangrove pneumatophores as biocatalysts for the fabrication of silver nanoparticles and their potential applications against biofilm formation and hepatic carcinoma.

作者信息

Nayak Debasis, Mishra Awdhesh Kumar, Biswas Kunal, Sen Asmita, Malakar Chandana, Panda Jibanjyoti, Kungwani Neelam Amit, Rustagi Sarvesh, Panda Bibhu Prasad, Mohanta Yugal Kishore

机构信息

Bioresources and Traditional Knowledge Laboratory, Department of Wildlife and Biodiversity Conservation, Maharaja Sriram Chandra Bhanja Deo University Sriram Chandra Vihar, Takatpur, Baripada, Mayurbhanj Odisha 757003 India

Department of Biotechnology, Yeungnam University Gyeongsan 38541 Gyeongsangbuk-do Republic of Korea

出版信息

Nanoscale Adv. 2025 Mar 3;7(9):2608-2625. doi: 10.1039/d4na00722k. eCollection 2025 Apr 29.

Abstract

The current study demonstrates the biogenic synthesis of silver nanoparticles using the pneumatophores of (AiP-AgNPs), which is cost-effective and biocompatible. possesses remarkable features to endure the harshest conditions for its entire life cycle and generates secondary metabolites for its sustainability in hostile mangrove ecosystems. The presence of a prominent UV-visible absorption band at 420 nm supported the distinct color change inference for the synthesized AiP-AgNPs. The size of the synthesized AiP-AgNPs was determined to be ∼15 nm through field emission-scanning electron microscopy (FE-SEM), transmission electron microscopy (cryo-TEM), and atomic force microscopy (AFM). The presence of secondary metabolites such as 2-bromo-1,1-dichloroethene, hemin and -(sulfanylacetyl)-l-seryl-l-argininamide was indicated by prominent peaks in liquid chromatography, suggesting their probable roles in the synthesis of AgNPs. The synthesized AiP-AgNPs demonstrated a distinct zone of inhibition against (15.33 mm), (9.83 mm), and (12 mm). They also exhibited concentration-dependent antioxidant activity in DPPH, nitric oxide, and hydrogen peroxide scavenging assays. The anticancer potential of the synthesized AiP-AgNPs against HepG2 hepatocarcinoma cells determined through MTT colorimetric assay and flow cytometry revealed their dose-dependent cytotoxicity with the occurrence of the sub-G phase (25.6%). Subsequent analysis using fluorescence microscopy, DNA damage, comet assay, and migration assay indicated that AiP-AgNPs hold significant potential and the ability to serve as a therapeutic candidate to pave the way for further in-depth investigations for pre-clinical and clinical research purposes.

摘要

当前的研究展示了利用[具体植物名称]的呼吸根生物合成银纳米颗粒(AiP-AgNPs),这种方法具有成本效益且生物相容性良好。[具体植物名称]具有显著特征,能够在其整个生命周期中耐受最恶劣的条件,并产生次生代谢产物以维持其在恶劣的红树林生态系统中的生存。在420 nm处出现的明显紫外-可见吸收带支持了合成的AiP-AgNPs明显的颜色变化推断。通过场发射扫描电子显微镜(FE-SEM)、透射电子显微镜(冷冻TEM)和原子力显微镜(AFM)确定合成的AiP-AgNPs的尺寸约为15 nm。液相色谱中的显著峰表明存在2-溴-1,1-二氯乙烯、血红素和N-(巯基乙酰基)-L-丝氨酰-L-精氨酰胺等次生代谢产物,表明它们可能在AgNPs的合成中发挥作用。合成的AiP-AgNPs对[具体细菌名称1](15.33 mm)、[具体细菌名称2](9.83 mm)和[具体细菌名称3](12 mm)表现出明显的抑菌圈。它们在DPPH、一氧化氮和过氧化氢清除试验中还表现出浓度依赖性抗氧化活性。通过MTT比色法和流式细胞术确定合成的AiP-AgNPs对HepG2肝癌细胞的抗癌潜力,显示出它们的剂量依赖性细胞毒性,出现亚G期(25.6%)。随后使用荧光显微镜、DNA损伤、彗星试验和迁移试验进行的分析表明,AiP-AgNPs具有巨大潜力,有能力作为治疗候选物,为临床前和临床研究的进一步深入研究铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaf1/12039528/65cb51042648/d4na00722k-f1.jpg

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