JOURNAL OF LIGHT INDUSTRY

CN 41-1437/TS  ISSN 2096-1553

杜仲叶提取物绿色合成纳米铂颗粒及其美白作用

张义森 程硕 周娟娟 贾会领 王军 陈雪 吴丽芳

张义森, 程硕, 周娟娟, 等. 杜仲叶提取物绿色合成纳米铂颗粒及其美白作用[J]. 轻工学报, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016
引用本文: 张义森, 程硕, 周娟娟, 等. 杜仲叶提取物绿色合成纳米铂颗粒及其美白作用[J]. 轻工学报, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016
ZHANG Yisen, CHENG Shuo, ZHOU Juanjuan, et al. Green synthesis of platinum nanoparticles by Eucommia ulmoides Oliver leaf extract and its whitening effect[J]. Journal of Light Industry, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016
Citation: ZHANG Yisen, CHENG Shuo, ZHOU Juanjuan, et al. Green synthesis of platinum nanoparticles by Eucommia ulmoides Oliver leaf extract and its whitening effect[J]. Journal of Light Industry, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016

杜仲叶提取物绿色合成纳米铂颗粒及其美白作用

    作者简介: 张义森(1997-),男,山东省潍坊市人,安徽医科大学硕士研究生,主要研究方向为生物材料。E-mail:13656467805@163.com;
  • 基金项目: 中国科学院战略生物资源计划项目(KFJ-BRP-007-014)

  • 中图分类号: TS974.1;Q599

Green synthesis of platinum nanoparticles by Eucommia ulmoides Oliver leaf extract and its whitening effect

  • Received Date: 2022-12-16
    Accepted Date: 2023-03-13

    CLC number: TS974.1;Q599

  • 摘要: 以杜仲叶提取物为还原剂和稳定剂,采用一步法绿色合成纳米铂颗粒(PtNPs),通过单因素试验分析反应条件对PtNPs颜色和浓度的影响,并研究PtNPs对酪氨酸酶活性的影响。结果表明:在一定范围内改变反应条件可调控合成PtNPs的颜色和浓度,适宜反应条件为反应时间60 min、反应温度90 ℃、氯铂酸浓度3.5 mmol/L、杜仲叶提取物质量浓度10.0 mg/mL,在该条件下制备的PtNPs粒径平均尺寸为(2.27±0.65) nm,具有面心立方结构,分布较均匀;PtNPs对体外蘑菇酪氨酸酶活性有较强的抑制作用,IC50为(6.98±0.76) μg/mL,显著降低了A375细胞内酪氨酸酶活性和UVB诱导的黑色素含量,可达到美白皮肤的效果。
    1. [1]

      ERAMABADI P,MASOUDI M,MAKHDOUMI A,et al.Microbial cell lysate supernatant (CLS) alteration impact on platinum nanoparticles fabrication, characterization, antioxidant and antibacterial activity[J].Materials Science & Engineering C, 2020,117:111292-111303.

    2. [2]

      PEDONE D,MOGLIANETTI M,DE LUCA E,et al.Platinum nanoparticles in nanobiomedicine[J].Chem Soc Rev,2017,46(16):4951-4975.

    3. [3]

      滕子萱,刘玲,李群,等.一种纳米铂抗菌剂的抗菌活性及其抗菌机制的研究[J].中国消毒学杂志,2021,38(6):407-409
      ,413.

    4. [4]

      GURUNATHAN S,JEYARAJ M,KANG M H,et al.The effects of apigenin-biosynthesized ultra-small platinum nanoparticles on the human monocytic THP-1 cell line[J].Cells,2019,8(5):444.

    5. [5]

      JEYARAJ M,GURUNATHAN S,QASIM M,et al.A comprehensive review on the synthesis,characterization,and biomedical application of platinum nanoparticles[J].Nanomaterials (Basel),2019,9(12):1719.

    6. [6]

      EL-SEEDI H R,EL-SHABASY R M,KHALIFA S A M,et al.Metal nanoparticles fabricated by green chemistry using natural extracts:Biosynthesis, mechanisms,and applications[J].Rsc Adv,2019,9(42):24539-24559.

    7. [7]

      SELVI A M,PALANISAMY S,JEYANTHI S,et al.Synthesis of Tragia involucrata mediated platinum nanoparticles for comprehensive therapeutic applications:Antioxidant,antibacterial and mitochondria-associated apoptosis in HeLa cells[J].Process Biochem,2020,98:21-33.

    8. [8]

      ZHENG B,KONG T,JING X,et al.Plant-mediated synthesis of platinum nanoparticles and its bioreductive mechanism[J].J Colloid Interface Sci,2013,396:138-145.

    9. [9]

      SONG J Y,KWON E Y,KIM B S.Biological synthesis of platinum nanoparticles using Diopyros kaki leaf extract[J].Bioproc Biosyst Eng,2010,33(1):159-164.

    10. [10]

      TAHIR K,NAZIR S,AHMAD A,et al.Facile and green synthesis of phytochemicals capped platinum nanoparticles and in vitro their superior antibacterial activity[J].J Photochem Photobiol B,2017,166:246-251.

    11. [11]

      CASTRO L,BLAZQUEZ M L,GONZALEZ F,et al.Biosynthesis of silver and platinum nanoparticles using orange peel extract:Characterisation and applications[J].IET Nanobiotechnol,2015,9(5):252-258.

    12. [12]

      YANG C,WANG M,ZHOU J,et al.Bio-synthesis of peppermint leaf extract polyphenols capped nano-platinum and their in-vitro cytotoxicity towards colon cancer cell lines (HCT 116)[J].Materials Science & Engineering C,2017,77:1012-1016.

    13. [13]

      ZENG Y,GUO L P,CHEN B D,et al.Arbuscular mycorrhizal symbiosis and active ingredients of medicinal plants:Current research status and prospectives[J].Mycorrhiza,2013,23(4):253-265.

    14. [14]

      杨玉环,梁晓晓,殷运菊,等.杜仲叶提取物对育肥猪肉品质和抗氧化性能的影响[J].中国畜牧杂志,2022,58(8):8:262
      -269.

    15. [15]

      KONG F,ZENG Q,LI Y,et al.Improving Antioxidative and Antiproliferative Properties Through the Release of Bioactive Compounds From Eucommia ulmoides Oliver Bark by Steam Explosion[J].Front Nutr,2022,9:916609.

    16. [16]

      CHO S,HONG R,YIM P,et al.An herbal formula consisting of Schisandra chinensis (Turcz.) Baill,Lycium chinense Mill and Eucommia ulmoides Oliv alleviates disuse muscle atrophy in rats[J].J Ethnopharmacol,2018,213:328-339.

    17. [17]

      MEI X P,WANG D X,ZHANG L,et al.Synthesis of carbon dots for Al3+ sensing in water by fluorescence assay[J].Luminescence,2021,36(6):1469-1475.

    18. [18]

      GUO M X,LI W,YANG F,et al.Controllable biosynthesis of gold nanoparticles from a Eucommia ulmoides bark aqueous extract[J].Spectrochimica Acta Part A(Molecular and Biomolecular Spectroscopy),2015,142:73-79.

    19. [19]

      LYU S F,WU Y H,LIU H H.Silver nanoparticles synthesized using Eucommia ulmoides bark and their antibacterial efficacy[J].Mater Lett,2017,196:217-220.

    20. [20]

      DUAN L S,LI M,LIU H H.Biosynthesised palladium nanoparticles using Eucommia ulmoides bark aqueous extract and their catalytic activity[J].IET Nanobiotechnol,2015,9(6):349-354.

    21. [21]

      SUN L P,GUO Y,ZHANG Y X,et al.Antioxidant and anti-tyrosinase activities of phenolic extracts from rape bee pollen and inhibitory melanogenesis by cAMP/MITF/TYR pathway in B16 mouse melanoma cells[J].Front Pharmacol,2017,8:1.

    22. [22]

      HSU J Y,LIN H H,LI T S,et al.Anti-melanogenesis effects of lotus seedpod in vitro and in vivo[J].Nutrients,2020,12(11):3535-3551.

    23. [23]

      SUN L,GUO Y,ZHANG Y,et al.Antioxidant and anti-tyrosinase activities of phenolic extracts from rape bee pollen and inhibitory melanogenesis by cAMP/MITF/TYR Pathway in B16 mouse melanoma cells[J].Front Pharmacol,2017,8:104-112.

    24. [24]

      BASAVEGOWDA N,IDHAYADHULLA A,LEE Y R.Tyrosinase inhibitory activity of silver nanoparticles treated with Hovenia dulcis fruit extract:An in vitro study[J].Mater Lett,2014,129:28-30.

    25. [25]

      EZE F N,NWABOR O F.Valorization of Pichia spent medium via one-pot synthesis of biocompatible silver nanoparticles with potent antioxidant, antimicrobial, tyrosinase inhibitory and reusable catalytic activities[J].Mater Sci Eng C Mater Biol Appl,2020,115:111104.

    26. [26]

      KONIECZNY P,GORALCZYK A G,SZMYD R,et al.Effects triggered by platinum nanoparticles on primary keratinocytes[J].Int J Nanomedicine,2013,8:3963-3975.

    1. [1]

      池哲翔廖敏史尚李声毅廖芸丁冬 . 国外烟草活性成分提取及纤维材料利用现状与展望. 轻工学报, 2024, 0(0): -.

    2. [2]

      张嫚张国治张康逸何梦影 . 超声辅助酶解法制备小麦ACE抑制肽及其稳定性研究. 轻工学报, 2024, 0(0): -.

    3. [3]

      张嫚张国治张康逸何梦影 . 超声辅助酶解法制备小麦ACE抑制肽及其稳定性研究. 轻工学报, 2024, 39(5): 29-39. doi: 10.12187/2024.05.004

    4. [4]

      李敏贺姗姗杨钰雯 . 改良QuEChERS方法结合超高效液相色谱测定火腿肠中杂环胺类化合物. 轻工学报, 2024, 39(5): 60-70. doi: 10.12187/2024.05.007

  • 加载中
计量
  • PDF下载量:  22
  • 文章访问数:  1139
  • 引证文献数: 0
文章相关
  • 收稿日期:  2022-12-16
  • 修回日期:  2023-03-13
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索
张义森, 程硕, 周娟娟, 等. 杜仲叶提取物绿色合成纳米铂颗粒及其美白作用[J]. 轻工学报, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016
引用本文: 张义森, 程硕, 周娟娟, 等. 杜仲叶提取物绿色合成纳米铂颗粒及其美白作用[J]. 轻工学报, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016
ZHANG Yisen, CHENG Shuo, ZHOU Juanjuan, et al. Green synthesis of platinum nanoparticles by Eucommia ulmoides Oliver leaf extract and its whitening effect[J]. Journal of Light Industry, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016
Citation: ZHANG Yisen, CHENG Shuo, ZHOU Juanjuan, et al. Green synthesis of platinum nanoparticles by Eucommia ulmoides Oliver leaf extract and its whitening effect[J]. Journal of Light Industry, 2023, 38(5): 119-126. doi: 10.12187/2023.05.016

杜仲叶提取物绿色合成纳米铂颗粒及其美白作用

    作者简介:张义森(1997-),男,山东省潍坊市人,安徽医科大学硕士研究生,主要研究方向为生物材料。E-mail:13656467805@163.com
  • 1. 安徽医科大学 基础医学院, 安徽 合肥 230032;
  • 2. 中国科学院合肥物质科学研究院 离子束生物工程与绿色农业研究中心, 安徽 合肥 230031
基金项目:  中国科学院战略生物资源计划项目(KFJ-BRP-007-014)

摘要: 以杜仲叶提取物为还原剂和稳定剂,采用一步法绿色合成纳米铂颗粒(PtNPs),通过单因素试验分析反应条件对PtNPs颜色和浓度的影响,并研究PtNPs对酪氨酸酶活性的影响。结果表明:在一定范围内改变反应条件可调控合成PtNPs的颜色和浓度,适宜反应条件为反应时间60 min、反应温度90 ℃、氯铂酸浓度3.5 mmol/L、杜仲叶提取物质量浓度10.0 mg/mL,在该条件下制备的PtNPs粒径平均尺寸为(2.27±0.65) nm,具有面心立方结构,分布较均匀;PtNPs对体外蘑菇酪氨酸酶活性有较强的抑制作用,IC50为(6.98±0.76) μg/mL,显著降低了A375细胞内酪氨酸酶活性和UVB诱导的黑色素含量,可达到美白皮肤的效果。

English Abstract

参考文献 (26) 相关文章 (4)

目录

/

返回文章