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non-linear curve fitting with the boltzmann function curve fit  (OriginLab corp)


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    OriginLab corp non-linear curve fitting with the boltzmann function curve fit
    Non Linear Curve Fitting With The Boltzmann Function Curve Fit, supplied by OriginLab corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/non-linear curve fitting with the boltzmann function curve fit/product/OriginLab corp
    Average 90 stars, based on 1 article reviews
    non-linear curve fitting with the boltzmann function curve fit - by Bioz Stars, 2026-06
    90/100 stars

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    Image Search Results


    a Structure of a bovine Fab NC-Cow1 (PDB:6OO0) with an ultra-long CDR-H3 (gray color). Schematic figure and ulCDR sequence alignment of the Fab variants in this work. b Non-reducing SDS-PAGE of cell supernatants with secreted Fab fragments and a purified NC-Cow1 wt reference. c Chromatograms and molecular mass in SEC-MALS. d Mean values ( n = 2) of molecular masses calculated from MALS. e Exemplary melting curves in SUPR-DSF. f Apparent onset temperatures of unfolding T on and melting temperatures T m obtained from SUPR-DSF measurements. Mean values ( n = 3). g Slope factors of fitted Boltzmann functions obtained from SUPR-DSF melting curves. A smaller slope factor indicates a steeper transition (more cooperative unfolding). Mean values ( n = 3; SD shown in Table ). h Apparent hydrodynamic radii R h from DLS. Mean values ( n = 3) with SD. i Apparent hydrodynamic radii R h during heating ramp with DLS. j Aggregation onset temperatures T agg obtained from heat-ramped DLS. Mean values ( n = 3) with SD.

    Journal: Communications Biology

    Article Title: Stability convergence in natural antibodies with ultra-long hypervariable loops

    doi: 10.1038/s42003-025-08036-5

    Figure Lengend Snippet: a Structure of a bovine Fab NC-Cow1 (PDB:6OO0) with an ultra-long CDR-H3 (gray color). Schematic figure and ulCDR sequence alignment of the Fab variants in this work. b Non-reducing SDS-PAGE of cell supernatants with secreted Fab fragments and a purified NC-Cow1 wt reference. c Chromatograms and molecular mass in SEC-MALS. d Mean values ( n = 2) of molecular masses calculated from MALS. e Exemplary melting curves in SUPR-DSF. f Apparent onset temperatures of unfolding T on and melting temperatures T m obtained from SUPR-DSF measurements. Mean values ( n = 3). g Slope factors of fitted Boltzmann functions obtained from SUPR-DSF melting curves. A smaller slope factor indicates a steeper transition (more cooperative unfolding). Mean values ( n = 3; SD shown in Table ). h Apparent hydrodynamic radii R h from DLS. Mean values ( n = 3) with SD. i Apparent hydrodynamic radii R h during heating ramp with DLS. j Aggregation onset temperatures T agg obtained from heat-ramped DLS. Mean values ( n = 3) with SD.

    Article Snippet: For comparing the slopes of the melting curves, a sigmoidal Boltzmann fit was performed using GraphPad Prism version 8.0.1 for Windows, GraphPad Software, Boston, Massachusetts USA, www.graphpad.com .

    Techniques: Sequencing, SDS Page, Purification