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Volumn 375, Issue 1, 2012, Pages 1-11

On the thermodynamics of biomolecule surface transformations

Author keywords

Biomolecules; Biosensors; Molecular machines; Molecular recognition; Nanoparticles self assembly; Surfaces; Thermodynamics

Indexed keywords

BIOLOGICAL SURFACES; HEALTH AND ENVIRONMENT; LIGAND-RECEPTOR; MOLECULAR MACHINES; NANOMECHANICAL ASPECTS; NANOPARTICLES SELF-ASSEMBLY; NANOSCIENCE AND NANOTECHNOLOGIES; PROTEIN THIN FILMS; SURFACE BINDING; SURFACE THERMODYNAMICS; SURFACE TRANSFORMATIONS; THERMODYNAMIC MODEL;

EID: 84859005921     PISSN: 00219797     EISSN: 10957103     Source Type: Journal    
DOI: 10.1016/j.jcis.2012.02.013     Document Type: Article
Times cited : (17)

References (114)
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    • Depending on the Context, the Term " Recognition" can be Referred as " Association" , " Binding" , " Engagement" .
    • Depending on the Context, the Term " Recognition" can be Referred as " Association" , " Binding" , " Engagement" .
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    • For Other Geometries the Surface Curvature must be Taken into Account
    • Eq. (2) is Strictly True only for Plane and Spherical Surfaces. More Details Can be Found in [78].
    • Eq. (2) is Strictly True only for Plane and Spherical Surfaces. For Other Geometries the Surface Curvature must be Taken into Account. More Details Can be Found in [78].
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    • See Literature on Protein Surface Adsorption, for Example, Ref. [7] and References Cited Therein, Ref. [2], C. Tanford, Adv. Protein Chem. 23 (1968) 121-282.
    • See Literature on Protein Surface Adsorption, for Example, Ref. [7] and References Cited Therein, Ref. [2], C. Tanford, Adv. Protein Chem. 23 (1968) 121-282. C. Tanford, Proc. Natl. Acad. Sci. U. S. A. 78 (1981) 270-273.
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    • To Rule Out " Unspecific" Effects, the MC Bending, Δz, is Referred to an Unmodified MC (Reference MC)
    • To Rule Out " Unspecific" Effects, the MC Bending, Δz, is Referred to an Unmodified MC (Reference MC).
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    • At 25°C We Know that 1kBT=4.11·10-21 J≈4 pN·nm. Therefore, for a Protein Rearrangement of 0.5 nm, We Can Estimate an Applied Force of 3kBT/0.5nm=24pN.
    • At 25°C We Know that 1kBT=4.11·10-21 J≈4 pN·nm. Therefore, for a Protein Rearrangement of 0.5 nm, We Can Estimate an Applied Force of 3kBT/0.5nm=24pN.
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    • For Calculations of Molar Gibbs Free Energy According to the Thermodynamical Model in [66].
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  • 114
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    • For Calculations of Molar Gibbs Free Energy According to Nearest-Neighbour Model.
    • For Calculations of Molar Gibbs Free Energy According to Nearest-Neighbour Model. http://www.basic.northwestern.edu/biotools/OligoCalc.html.


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.