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Brookhaven Instruments zimm plot software
Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) <t>Zimm</t> <t>plot</t> of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.
Zimm Plot Software, supplied by Brookhaven Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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1) Product Images from "Plasmid DNA Delivery to Cancer Cells with Poly(L-lysine)-Based Copolymers Bearing Thermally Sensitive Segments: Balancing Polyplex Tightness, Transfection Efficiency, and Biocompatibility"

Article Title: Plasmid DNA Delivery to Cancer Cells with Poly(L-lysine)-Based Copolymers Bearing Thermally Sensitive Segments: Balancing Polyplex Tightness, Transfection Efficiency, and Biocompatibility

Journal: Pharmaceutics

doi: 10.3390/pharmaceutics17081012

Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) Zimm plot of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.
Figure Legend Snippet: Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) Zimm plot of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.

Techniques Used: Concentration Assay

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Molecular Weight:

Article Title: Effects of Hofmeister Anions on the LCST of PNIPAM as a Function of Molecular Weight
Article Snippet: Light scattering experiments were carried out using a Brookhaven Instruments BI-200SM goniometer, a BI-9000AT digital correlator, and a Melles Griot helium neon laser. .. Molecular weight analysis of light scattering data was performed using Brookhaven Instruments’ Zimm Plot Software. ..

Article Title: Solution behaviour of a polymer with polyoxometalate inorganic molecular clusters in its main chain
Article Snippet: Please note that technical editing may introduce minor changes to the text and/or graphics, which may alter content.. The journal’s standard Terms & Conditions and the Ethical guidelines still apply.. In no event shall the Royal Society of Chemistry be held responsible for any errors or omissions in this Accepted Manuscript or any consequences arising from the use of any information it contains.

Software:

Article Title: Effects of Hofmeister Anions on the LCST of PNIPAM as a Function of Molecular Weight
Article Snippet: Light scattering experiments were carried out using a Brookhaven Instruments BI-200SM goniometer, a BI-9000AT digital correlator, and a Melles Griot helium neon laser. .. Molecular weight analysis of light scattering data was performed using Brookhaven Instruments’ Zimm Plot Software. ..

Article Title: Thermosensitive dendritic stars of tert-butyl-glycidylether and glycidol – Synthesis and encapsulation properties
Article Snippet: Dendritic block copolymers of hydrophobic core and hydrophilic shell were prepared by a multi-step process based on anionic ring-opening polymerization.. In the first step, amphiphilic stars with four or six poly(tert-butyl-glycidylether)-block-polyglycidol arms were synthesized.. The hydroxyl groups of polyglycidol after ionization served as initiation centers for sequential anionic polymerization of tertbutyl-glycidylether and 1-ethoxyethyl-glycidylether.

Article Title: Solution behaviour of a polymer with polyoxometalate inorganic molecular clusters in its main chain
Article Snippet: Please note that technical editing may introduce minor changes to the text and/or graphics, which may alter content.. The journal’s standard Terms & Conditions and the Ethical guidelines still apply.. In no event shall the Royal Society of Chemistry be held responsible for any errors or omissions in this Accepted Manuscript or any consequences arising from the use of any information it contains.


Article Title: Hierarchical assembly of branched supramolecular polymers from (cyclic Peptide)-polymer conjugates.
Article Snippet: We report the synthesis and assembly of (N-methylated cyclic peptide)−polymer conjugates for which the cyclic peptide is attached to either the αor both αand ωend groups of a polymer.. A combination of chromatographic, spectroscopic, and scattering techniques reveals that the assembly of the conjugates follows a two-level hierarchy, initially driven by H-bond formation between two N-methylated cyclic peptides, followed by unspecific, noncovalent aggregation of this peptide into small domains that behave as branching points and lead to the formation of branched supramolecular polymers.

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Article Snippet: .. The SLS data were analyzed using the Zimm plot software provided by Brookhaven Instruments. ..

Article Title: Cinnamyl-Modified Polyglycidol/Poly(ε-Caprolactone) Block Copolymer Nanocarriers for Enhanced Encapsulation and Prolonged Release of Cannabidiol.
Article Snippet: .. The SLS data were analyzed using the Zimm plot software provided by Brookhaven Instruments. ..

other:

Article Title: Linear Amphiphilic Polyglycidol/Poly(ε-caprolactone) Block Copolymers Prepared via “Click” Chemistry-Based Concept
Article Snippet: We introduce a “click” chemistry-based concept for the preparation of amphiphilic block copolymers comprising linear polyglycidol (PG).. Herein, a new class of linear polyglycidol/poly(ε-caprolactone) (PG/PCL) block copolymers of precisely designed macromolecular characteristics and composition was synthesized to demonstrate the convenience of this strategy.. Monohydroxyl poly(ethoxyethylglycidyl ether) (PEEGE) precursors were synthesized by ring-opening anionic polymerization of ethoxyethylglycidyl ether (EEGE) and subsequently functionalized with a “clickable” alkyne end group.

Concentration Assay:

Article Title: Solution behaviour of a polymer with polyoxometalate inorganic molecular clusters in its main chain
Article Snippet: Please note that technical editing may introduce minor changes to the text and/or graphics, which may alter content.. The journal’s standard Terms & Conditions and the Ethical guidelines still apply.. In no event shall the Royal Society of Chemistry be held responsible for any errors or omissions in this Accepted Manuscript or any consequences arising from the use of any information it contains.



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Brookhaven Instruments zimm plot software
Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) <t>Zimm</t> <t>plot</t> of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.
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Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) <t>Zimm</t> <t>plot</t> of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.
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Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) <t>Zimm</t> <t>plot</t> of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.
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Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) <t>Zimm</t> <t>plot</t> of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.
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Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) <t>Zimm</t> <t>plot</t> of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.
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Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) Zimm plot of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.

Journal: Pharmaceutics

Article Title: Plasmid DNA Delivery to Cancer Cells with Poly(L-lysine)-Based Copolymers Bearing Thermally Sensitive Segments: Balancing Polyplex Tightness, Transfection Efficiency, and Biocompatibility

doi: 10.3390/pharmaceutics17081012

Figure Lengend Snippet: Physicochemical characterization results of the polyplexes. ( A ) Representative particle size distribution measured at an angle of 90° for polyplexes of PNL-65 at N/P 12, prepared by method H-C. ( B ) Zimm plot of polyplexes of PNL-20 at N/P 18, prepared by method H: experimental points (open symbols); extrapolated points to zero concentration and zero scattering angle (closed symbols). ( C ) Representative AFM micrographs of the polyplex particles prepared with PNL-10 at N/P 12, using method H. ( D ) Variations of hydrodynamic diameters and ( E ) ζ potential values of polyplex particles of PNL-10, PNL-20, PNL-37, and PNL-65 with N/P. The polyplexes were prepared by the method RT. Measurements were performed at 25 °C.

Article Snippet: The SLS data were analyzed using the Zimm plot software provided by Brookhaven Instruments.

Techniques: Concentration Assay