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point decrease » point increase (Expand Search)
nm decrease » _ decrease (Expand Search), we decrease (Expand Search), gy decreased (Expand Search)
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121
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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122
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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123
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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124
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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125
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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126
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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127
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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128
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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129
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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130
Tadpole-like Unimolecular Nanomotor with Sub-100 nm Size Swims in a Tumor Microenvironment Model
Published 2019“…To address this problem, a unimolecular nanomotor based on molecular bottlebrush (MBB) of sub-100 nm size is reported. …”
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131
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132
The decrease or inhibition of Hsp90 induced REST degradation.
Published 2019“…(D) The level of REST dramatically reduced in differentiated SH-SY5Y cells treated with GA (1 μM) or PU-H71 (50 nM) at 24 h. (E) The REST level decreased by GA more than 50% and (F) PU-H71 more than 80%, respectively. …”
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133
Lytic reactivation stimuli decrease Oct-2 expression.
Published 2012“…Oct-2 protein bands were quantified using ImageJ software and represented as percentage decrease of Oct-2 expression (relative to untreated cells at each time point) as shown below the Oct-2 immunoblot. …”
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134
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135
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136
ANG II treatment leads to decreased contractile function.
Published 2016“…(E) Representative stress traces generated from x-projections of films (F) ANG II treatment leads to a decrease in contractile stress generation. Control n = 85 tissues, 5 nM n = 15 tissues, 100 nM n = 69 tissues, 3 harvests. …”
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137
Triton-induced autolysis is decreased in the absence of WalH.
Published 2016“…Lysis was determined as the decrease in OD<sub>600 nm</sub> over time and indicated as a percentage of the initial OD (measured OD<sub>600 nm</sub> / initial OD<sub>600 nm</sub>). …”
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138
Activation of PAR2 decreased the frequency of mEPSCs.
Published 2016“…<b>(C)</b> Application of SLIGKV-NH<sub>2</sub> (100 μM, 4 min) decreased the mEPSC frequency (n = 17; ***p < 0.001) compared to the pretreatment period (100%). …”
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139
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140
Effects of siRNA TMPRSS2-ERG on ERG protein expression and cell viability.
Published 2015“…The number of viable cells was measured and 100% cell viability corresponds to the number of living cells incubated only with transfecting agent. *** = <i>p</i><0.001, significant decrease compared to untreated cells or to siRNA Control (Kruskal & Wallis followed by Tukey and Dunnet test).…”