pbc multi point constraints mpcs Search Results


86
Abaqus Inc multi point constraint subroutine mpc
Multi Point Constraint Subroutine Mpc, supplied by Abaqus Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pbc+multi+point+constraints+mpcs/constraint+mpc+multi+point+subroutine/10__3390_slash_app8112192-57-1-6
Average 86 stars, based on 1 article reviews
multi point constraint subroutine mpc - by Bioz Stars, 2026-09
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90
Alpha-Omega Engineering multi-channel processor
Multi Channel Processor, supplied by Alpha-Omega Engineering, 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/product/pbc+multi+point+constraints+mpcs/multi+channel+processor/bio_rxiv__2020__04__26__061085-150-23-26
Average 90 stars, based on 1 article reviews
multi-channel processor - by Bioz Stars, 2026-09
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90
Actuarial Research Corporation multi-payer claims database (mpcd)
Multi Payer Claims Database (Mpcd), supplied by Actuarial Research Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
multi-payer claims database (mpcd) - by Bioz Stars, 2026-09
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90
Dynamic Biosensors switchsense multi-purpose chip mpc-96-2-g1r1-s
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Switchsense Multi Purpose Chip Mpc 96 2 G1r1 S, supplied by Dynamic Biosensors, 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/product/pbc+multi+point+constraints+mpcs/standard+multipurpose+switchsense+chips++mpc2+48+2+g1r1+s+/pmc11164218-373-10-14
Average 90 stars, based on 1 article reviews
switchsense multi-purpose chip mpc-96-2-g1r1-s - by Bioz Stars, 2026-09
90/100 stars
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90
Worthmann Maschinenbau multi-step model predictive control (mpc) scheme
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Multi Step Model Predictive Control (Mpc) Scheme, supplied by Worthmann Maschinenbau, 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/product/pbc+multi+point+constraints+mpcs/model+predictive+control/10__1016_slash_j__ifacol__2017__08__1551-10-66-43
Average 90 stars, based on 1 article reviews
multi-step model predictive control (mpc) scheme - by Bioz Stars, 2026-09
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94
Sutter Instrument Company micromanipulator system
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Micromanipulator System, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pbc+multi+point+constraints+mpcs/MPC-200+Controller+and+ROE-200/bio_rxiv__2025__09__16__676508-248-29-36
Average 94 stars, based on 1 article reviews
micromanipulator system - by Bioz Stars, 2026-09
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90
ADC BioScientific multi-pigmentmeter mpc-100
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Multi Pigmentmeter Mpc 100, supplied by ADC BioScientific, 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/product/pbc+multi+point+constraints+mpcs/multi+pigmentmeter+mpc+100/bio_rxiv__2025__01__24__634723-74-22-24
Average 90 stars, based on 1 article reviews
multi-pigmentmeter mpc-100 - by Bioz Stars, 2026-09
90/100 stars
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90
Sutter Instrument mpc 325 multi micromanipulator systems
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Mpc 325 Multi Micromanipulator Systems, supplied by Sutter Instrument, 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/product/pbc+multi+point+constraints+mpcs/mp+255+micromanipulator/pmc11633710-82-5-8
Average 90 stars, based on 1 article reviews
mpc 325 multi micromanipulator systems - by Bioz Stars, 2026-09
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90
Hamamatsu multi-pixel photon counter (mpcc)
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Multi Pixel Photon Counter (Mpcc), supplied by Hamamatsu, 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/product/pbc+multi+point+constraints+mpcs/multi+pixel+photon+counter++mppc+/pm37703597-93-13-17
Average 90 stars, based on 1 article reviews
multi-pixel photon counter (mpcc) - by Bioz Stars, 2026-09
90/100 stars
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99
Danaher Inc mesenchymal progenitor cells mpcs
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Mesenchymal Progenitor Cells Mpcs, supplied by Danaher Inc, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pbc+multi+point+constraints+mpcs/SpectraMax+i3x/pm37481965-91-11-21
Average 99 stars, based on 1 article reviews
mesenchymal progenitor cells mpcs - by Bioz Stars, 2026-09
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95
Sutter Instrument Company multi micromanipulator
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Multi Micromanipulator, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pbc+multi+point+constraints+mpcs/Multi-Manipulator+System+w%2F+Two+MP-225's/pmc06376006-267-16-18
Average 95 stars, based on 1 article reviews
multi micromanipulator - by Bioz Stars, 2026-09
95/100 stars
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95
Sutter Instrument Company multimicromanipulator
Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a <t>switchSENSE</t> biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01
Multimicromanipulator, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pbc+multi+point+constraints+mpcs/Multi-Manipulator+System+w%2F+Two+MP-225s/pmc07079062__CBIC___21___612___s001-29-16-18
Average 95 stars, based on 1 article reviews
multimicromanipulator - by Bioz Stars, 2026-09
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Image Search Results


Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a switchSENSE biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01

Journal: mAbs

Article Title: Insight into the avidity–affinity relationship of the bivalent, pH-dependent interaction between IgG and FcRn

doi: 10.1080/19420862.2024.2361585

Figure Lengend Snippet: Kinetic analysis of immobilized human FcRn and a human IgG1 (mAb1) in solution at pH 6.0 utilizing a medium FcRn density on a switchSENSE biosensor chip. (a) shows the schematic assay configuration allowing affinity and avidity to occur simultaneously. mAb1 was injected in five different concentrations as two-fold dilution series with a highest concentration of 300 nM for hIgg1 Fc WT (b) and 60 nM for hIgg1 Fc YTE (c). Each plot (b,c) shows the measured raw data (gray) and the global fit analysis as solid lines (blue fading). The sensorgram display a monophasic association phase and biphasic dissociation phase reflecting affinity and avidity binding mode. The determined kinetic parameters are described in . Illustration a is created with BioRender.com. Table 2. Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error. Sample Affinity Avidity k ON (x10 6 M −1 s −1 ) k OFF,AFFINITY (x10 −2 s −1 ) K D,AFFINITY (nM) k OFF,AVIDITY (x10 −2 s −1 ) K D,AVIDITY (nM) hIgG1 Fc WT 7.53 ± 0.38 34.2 ± 1.50 45.4 ± 3.0 4.70 ± 0.30 6.24 ± 0.51 hIgG1 Fc YTE 8.42 ± 0.15 2.60 ± 0.06 3.09 ± 0.09 0.25 ± 0.01 0.29 ± 0.01

Article Snippet: Human FcRn molecules were immobilized on the surface of a switchSENSE multi-purpose chip (MPC-96-2-G1R1-S, Dynamic Biosensors).

Techniques: Injection, Concentration Assay, Binding Assay

Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a  switchSENSE  biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in <xref ref-type= Figure 2 . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error." width="100%" height="100%">

Journal: mAbs

Article Title: Insight into the avidity–affinity relationship of the bivalent, pH-dependent interaction between IgG and FcRn

doi: 10.1080/19420862.2024.2361585

Figure Lengend Snippet: Summary of the affinity and avidity measurements of immobilized human FcRn and an mAb1 Fc variants in solution using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in Figure 2 . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error.

Article Snippet: Human FcRn molecules were immobilized on the surface of a switchSENSE multi-purpose chip (MPC-96-2-G1R1-S, Dynamic Biosensors).

Techniques:

Kinetic analysis of human FcRn immobilized and a human IgG1 (mAb1) Fc YTE mutant in solution at nine different pH values on switchSENSE biosensor chip. mAb1 Fc YTE was injected in five different concentration as two-fold dilution series with a highest concentration of (a) 60 nM at pH 5.8, (b) 60 nM at pH 6.0, (c) 100 nM at pH 6.2, (d) 150 nM at pH 6.4, (e) 200 nM at pH 6.6, (f) 300 nM at pH 6.8, (g) 400 nM at pH 7.0, (h) 800 nM at pH 7.2 and (i) 800 nM at pH 7.4. Note that the x axis for each sensorgram (a – i) has a different time scale. Each plot (a – i) shows the measured raw data (grey) and the global fit analysis as solid lines (blue fading). For (a – h) the dissociation phase is biphasic characterized by two different dissociation rate constants reflecting the affinity (1:1) and the avidity (2:1) binding mode. The interaction displays a biphasic dissociation curve reflecting affinity and avidity binding where one or two hFcrn are engaged with one mAb1 Fc YTE. The dissociation of mAb1 Fc YTE and hFcrn at pH 7.4 (I) is described by a monophasic fit model reflecting the affinity binding mode (1:1) where one hFcrn is engaged with one mAb1 Fc YTE. Panel (J) shows the applied, exemplary biphasic fit model for FcRn with mAb1 Fc YTE mutant injecting 300 nM at pH 6.0. The adequacy of the fit model is confirmed by the minimal residuals, indicating no significant deviation. The association phase occurred to be monophasic while the dissociation phase is biphasic. The overall dissociation curve is superposition of two exponential time-courses, namely the affinity binding mode (fast dissociation) and the avidity binding mode (slow dissociation). The measured data is shown in blue and the fit in black solid lines, whereas the two deconvoluted exponential time-courses are shown in grey as dashed lines. The contribution of fast and slow dissociation to the overall signal change is shown as Amplitude A fast or A slow . The determined kinetic parameters are described in .

Journal: mAbs

Article Title: Insight into the avidity–affinity relationship of the bivalent, pH-dependent interaction between IgG and FcRn

doi: 10.1080/19420862.2024.2361585

Figure Lengend Snippet: Kinetic analysis of human FcRn immobilized and a human IgG1 (mAb1) Fc YTE mutant in solution at nine different pH values on switchSENSE biosensor chip. mAb1 Fc YTE was injected in five different concentration as two-fold dilution series with a highest concentration of (a) 60 nM at pH 5.8, (b) 60 nM at pH 6.0, (c) 100 nM at pH 6.2, (d) 150 nM at pH 6.4, (e) 200 nM at pH 6.6, (f) 300 nM at pH 6.8, (g) 400 nM at pH 7.0, (h) 800 nM at pH 7.2 and (i) 800 nM at pH 7.4. Note that the x axis for each sensorgram (a – i) has a different time scale. Each plot (a – i) shows the measured raw data (grey) and the global fit analysis as solid lines (blue fading). For (a – h) the dissociation phase is biphasic characterized by two different dissociation rate constants reflecting the affinity (1:1) and the avidity (2:1) binding mode. The interaction displays a biphasic dissociation curve reflecting affinity and avidity binding where one or two hFcrn are engaged with one mAb1 Fc YTE. The dissociation of mAb1 Fc YTE and hFcrn at pH 7.4 (I) is described by a monophasic fit model reflecting the affinity binding mode (1:1) where one hFcrn is engaged with one mAb1 Fc YTE. Panel (J) shows the applied, exemplary biphasic fit model for FcRn with mAb1 Fc YTE mutant injecting 300 nM at pH 6.0. The adequacy of the fit model is confirmed by the minimal residuals, indicating no significant deviation. The association phase occurred to be monophasic while the dissociation phase is biphasic. The overall dissociation curve is superposition of two exponential time-courses, namely the affinity binding mode (fast dissociation) and the avidity binding mode (slow dissociation). The measured data is shown in blue and the fit in black solid lines, whereas the two deconvoluted exponential time-courses are shown in grey as dashed lines. The contribution of fast and slow dissociation to the overall signal change is shown as Amplitude A fast or A slow . The determined kinetic parameters are described in .

Article Snippet: Human FcRn molecules were immobilized on the surface of a switchSENSE multi-purpose chip (MPC-96-2-G1R1-S, Dynamic Biosensors).

Techniques: Mutagenesis, Injection, Concentration Assay, Binding Assay

Summary of the affinity and avidity measurements of immobilized human FcRn and mAb1 Fc YTE mutant as solute using a  switchSENSE  biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in <xref ref-type= Figure 3 . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error." width="100%" height="100%">

Journal: mAbs

Article Title: Insight into the avidity–affinity relationship of the bivalent, pH-dependent interaction between IgG and FcRn

doi: 10.1080/19420862.2024.2361585

Figure Lengend Snippet: Summary of the affinity and avidity measurements of immobilized human FcRn and mAb1 Fc YTE mutant as solute using a switchSENSE biosensor chip having a medium ligand density. The kinetic rate parameters are determined from analyzing the sensorgrams shown in Figure 3 . The k ON , k OFF and K D values are results from a global fit analysis ± fitting error.

Article Snippet: Human FcRn molecules were immobilized on the surface of a switchSENSE multi-purpose chip (MPC-96-2-G1R1-S, Dynamic Biosensors).

Techniques: Mutagenesis