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PUBMED FOR HANDHELDS

Journal Abstract Search


261 related items for PubMed ID: 24460028

  • 1. The presence of an air-water interface affects formation and elongation of α-Synuclein fibrils.
    Campioni S, Carret G, Jordens S, Nicoud L, Mezzenga R, Riek R.
    J Am Chem Soc; 2014 Feb 19; 136(7):2866-75. PubMed ID: 24460028
    [Abstract] [Full Text] [Related]

  • 2. The air-water interface determines the outcome of seeding during amyloidogenesis.
    Trigg BJ, Lee CF, Vaux DJ, Jean L.
    Biochem J; 2013 Nov 15; 456(1):67-80. PubMed ID: 24015785
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  • 3. Critical role of interfaces and agitation on the nucleation of Abeta amyloid fibrils at low concentrations of Abeta monomers.
    Morinaga A, Hasegawa K, Nomura R, Ookoshi T, Ozawa D, Goto Y, Yamada M, Naiki H.
    Biochim Biophys Acta; 2010 Apr 15; 1804(4):986-95. PubMed ID: 20100601
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  • 4. In vitro evidence that an aqueous extract of Centella asiatica modulates α-synuclein aggregation dynamics.
    Berrocal R, Vasudevaraju P, Indi SS, Sambasiva Rao KR, Rao KS.
    J Alzheimers Dis; 2014 Apr 15; 39(2):457-65. PubMed ID: 24284367
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  • 5. Surface behavior of α-Synuclein and its interaction with phospholipids using the Langmuir monolayer technique: a comparison between monomeric and fibrillar α-Synuclein.
    Chaari A, Horchani H, Frikha F, Verger R, Gargouri Y, Ladjimi M.
    Int J Biol Macromol; 2013 Jul 15; 58():190-8. PubMed ID: 23562552
    [Abstract] [Full Text] [Related]

  • 6. Trehalose inhibits fibrillation of A53T mutant alpha-synuclein and disaggregates existing fibrils.
    Yu WB, Jiang T, Lan DM, Lu JH, Yue ZY, Wang J, Zhou P.
    Arch Biochem Biophys; 2012 Jul 15; 523(2):144-50. PubMed ID: 22575388
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  • 8. The conformation and the aggregation kinetics of α-synuclein depend on the proline residues in its C-terminal region.
    Meuvis J, Gerard M, Desender L, Baekelandt V, Engelborghs Y.
    Biochemistry; 2010 Nov 02; 49(43):9345-52. PubMed ID: 20828147
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  • 9. In vitro formation of amyloid from alpha-synuclein is dominated by reactions at hydrophobic interfaces.
    Pronchik J, He X, Giurleo JT, Talaga DS.
    J Am Chem Soc; 2010 Jul 21; 132(28):9797-803. PubMed ID: 20578692
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  • 11. Raised calcium and oxidative stress cooperatively promote alpha-synuclein aggregate formation.
    Goodwin J, Nath S, Engelborghs Y, Pountney DL.
    Neurochem Int; 2013 Apr 21; 62(5):703-11. PubMed ID: 23159813
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  • 13. Triggers for β-sheet formation at the hydrophobic-hydrophilic interface: high concentration, in-plane orientational order, and metal ion complexation.
    Hoernke M, Falenski JA, Schwieger C, Koksch B, Brezesinski G.
    Langmuir; 2011 Dec 06; 27(23):14218-31. PubMed ID: 22011020
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  • 15. Natural compound safranal driven inhibition and dis-aggregation of α-synuclein fibrils.
    Save SS, Rachineni K, Hosur RV, Choudhary S.
    Int J Biol Macromol; 2019 Dec 01; 141():585-595. PubMed ID: 31505208
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  • 16. Cyclic-NDGA Effectively Inhibits Human γ-Synuclein Fibrillation, Forms Nontoxic Off-Pathway Species, and Disintegrates Preformed Mature Fibrils.
    Singh SL, Bhat R.
    ACS Chem Neurosci; 2024 May 01; 15(9):1770-1786. PubMed ID: 38637513
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  • 18. Graphene oxide sheets and quantum dots inhibit α-synuclein amyloid formation by different mechanisms.
    Ghaeidamini M, Bernson D, Sasanian N, Kumar R, Esbjörner EK.
    Nanoscale; 2020 Oct 01; 12(37):19450-19460. PubMed ID: 32959853
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  • 20. Impact of subunit linkages in an engineered homodimeric binding protein to α-synuclein.
    Gauhar A, Shaykhalishahi H, Gremer L, Mirecka EA, Hoyer W.
    Protein Eng Des Sel; 2014 Dec 01; 27(12):473-9. PubMed ID: 25332193
    [Abstract] [Full Text] [Related]


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