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2) of probe 3 with or without hCAI (shown in Table S1, Supporting Information).
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2) of probe 3 with or without hCAI (shown in Table S1, Supporting Information).
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31
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79960870024
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AFM consistently revealed the formation of spherical or oval aggregates of 4 with diameters ranging from 80 to 100 nm, as in the case of probe 1. Moreover, aggregates of 4 were also observed after addition of hCAI, and the diameters slightly increased (ranging from 100 to 150 nm) in the AFM experiments (Figure S2d, Supporting Information). These results were consisted in the DLS measurements.
-
AFM consistently revealed the formation of spherical or oval aggregates of 4 with diameters ranging from 80 to 100 nm, as in the case of probe 1. Moreover, aggregates of 4 were also observed after addition of hCAI, and the diameters slightly increased (ranging from 100 to 150 nm) in the AFM experiments (Figure S2d, Supporting Information). These results were consisted in the DLS measurements.
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33
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79960867338
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In our previous reports, avidin probe 6 has been evaluated in the buffer with higher ionic strength (500 mM NaCl) (7a) for enhancing the degree of aggregation.
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In our previous reports, avidin probe 6 has been evaluated in the buffer with higher ionic strength (500 mM NaCl) (7a) for enhancing the degree of aggregation.
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35
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84855681598
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The detection limit of hCAI with probe 12 was less than 2.5 μM, which was at least 2-fold lower than that of probe 1 (5 μM). (7a)
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The detection limit of hCAI with probe 12 was less than 2.5 μM, which was at least 2-fold lower than that of probe 1 (5 μM). (7a)
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36
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79960885072
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We could not obtain any clear images from the sample containing probe 13 (F = 1) and hCAI, despite accumulation for 3 h.
-
We could not obtain any clear images from the sample containing probe 13 (F = 1) and hCAI, despite accumulation for 3 h.
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37
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