Biopolymer-coated gold nanoparticles inhibit human insulin amyloid fibrillation

被引:0
|
作者
Brahmaiah Meesaragandla
Sanjai Karanth
Una Janke
Mihaela Delcea
机构
[1] Institute of Biochemistry,
[2] University of Greifswald,undefined
[3] Felix-Hausdorff-Straße 4,undefined
[4] ZIK HIKE - Zentrum für Innovationskompetenz,undefined
[5] Humorale Immunreaktionen bei kardiovaskulären Erkrankungen“,undefined
[6] Fleischmannstraße 42,undefined
[7] DZHK (Deutsches Zentrum für Herz-Kreislauf-Forschung),undefined
[8] partner site,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Deposits of protein misfolding and/or aggregates are a pathological hallmark of amyloid-related diseases. For instance, insulin amyloid fibril deposits have been observed in patients with insulin-dependent diabetes mellitus after insulin administration. Here, we report on the use of AuNPs functionalized with linear- (i.e. dextrin and chitosan) and branched- (i.e. dextran-40 and dextran-10) biopolymers as potential agents to inhibit insulin fibril formation. Our dynamic light scattering analyses showed a size decrease of the amyloid fibrils in the presence of functionalized AuNPs. Circular dichroism spectroscopy as well as enzyme-linked immunosorbent assay data demonstrated that the secondary structural transition from α-helix to β-sheet (which is characteristic for insulin amyloid fibril formation) was significantly suppressed by all biopolymer-coated AuNPs, and in particular, by those functionalized with linear biopolymers. Both transmission electron microscopy and atomic force microscopy analyses showed that the long thick amyloid fibrils formed by insulin alone become shorter, thinner or cluster when incubated with biopolymer-coated AuNPs. Dextrin- and chitosan-coated AuNPs were found to be the best inhibitors of the fibril formation. Based on these results, we propose a mechanism for the inhibition of insulin amyloid fibrils: biopolymer-coated AuNPsstrongly interact with the insulin monomers and inhibit the oligomer formation as well as elongation of the protofibrils.Moreover, cytotoxicity experiments showed that AuNP-insulin amyloid fibrils are less toxic compared to insulin amyloid fibrils alone. Our results suggest that both dextrin- and chitosan-AuNPs could be used as therapeutic agents for the treatment of amyloid-related disorders.
引用
收藏
相关论文
共 50 条
  • [21] Nontoxic Black Phosphorus Quantum Dots Inhibit Insulin Amyloid Fibrillation at an Ultralow Concentration
    Wang, Siqi
    Li, Chuanxi
    Xia, Yinqiang
    Chen, Shaohuang
    Robert, Jordan
    Banquy, Xavier
    Huang, Renliang
    Qi, Wei
    He, Zhimin
    Su, Rongxin
    ISCIENCE, 2020, 23 (05)
  • [22] Anion-Induced Amyloid Fibrillation of Human Insulin In vitro
    Begum, Shahnaz
    Paul, Swarnali
    Parvej, Hasan
    Mondal, Falguni
    Dalui, Ramkrishna
    Pradhan, Anirban
    Sepay, Nayim
    Chandra Halder, Umesh
    CHEMISTRYSELECT, 2024, 9 (13):
  • [23] Fibrillation of human insulin is accelerated upon interaction with PVP-coated nanoparticles under in vitro conditions
    Meratan, A. A.
    Ostadi, H.
    Morshedi, D.
    Ghasemi, A.
    Shariatizi, S.
    Eshaghi, A.
    Nemat-Gorgani, M.
    FEBS JOURNAL, 2010, 277 : 66 - 66
  • [24] Can small hydrophobic gold nanoparticles inhibit β2-microglobulin fibrillation?
    Brancolini, Giorgia
    Toroz, Dimitrios
    Corni, Stefano
    NANOSCALE, 2014, 6 (14) : 7903 - 7911
  • [25] Capsaicin-Coated Silver Nanoparticles Inhibit Amyloid Fibril Formation of Serum Albumin
    Anand, Bibin G.
    Dubey, Kriti
    Shekhawat, Dolat Singh
    Kar, Karunakar
    BIOCHEMISTRY, 2016, 55 (24) : 3345 - 3348
  • [26] The size-effect of gold nanoparticles and nanoclusters in the inhibition of amyloid-β fibrillation
    Gao, Guanbin
    Zhang, Mingxi
    Gong, Dejun
    Chen, Rui
    Hu, Xuejiao
    Sun, Taolei
    NANOSCALE, 2017, 9 (12) : 4107 - 4113
  • [27] Inhibition of amyloid fibrillation, enzymatic degradation and cytotoxicity of insulin at carboxyl tailored gold-aryl nanoparticles surface<bold> </bold>
    AlBab, Nemat D.
    Hameed, Mehavesh K.
    Maresova, Aneta
    Ahmady, Islam M.
    Arooj, Mahreen
    Han, Changseok
    Workie, Bizuneh
    Chehimi, Mohamed
    Mohamed, Ahmed A.
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2020, 586
  • [28] Tyrosine carbon dots inhibit fibrillation and toxicity of the human islet amyloid polypeptide
    Bloch, Daniel Nir
    Ben Zichri, Shani
    Kolusheva, Sofiya
    Jelinek, Raz
    NANOSCALE ADVANCES, 2020, 2 (12): : 5866 - 5873
  • [29] Negatively charged hydrophobic nanoparticles inhibit amyloid β-protein fibrillation: The presence of an optimal charge density
    Liu, Hongchen
    Xie, Baolong
    Dong, Xiaoyan
    Zhang, Lei
    Wang, Yongjian
    Liu, Fufeng
    Sun, Yan
    REACTIVE & FUNCTIONAL POLYMERS, 2016, 103 : 108 - 116
  • [30] Probing the effect of the molecular interface of gold nanoparticles on the disassembly of insulin amyloid fibrils
    Taverna, C.
    Fasolato, C.
    Brasili, F.
    Ripanti, F.
    Rizza, C.
    De Marcellis, A.
    Postorino, P.
    Sennato, S.
    Nucara, A.
    Capocefalo, A.
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2025, 306