DI PHENYL AMINE AR
Part No. RXSOL-60-6604-488
DIPHENYLAMINE AR
Key details
| Part number | RXSOL-60-6604-488 |
|---|---|
| Standard packing | 0.00 Box |
| Supply locations | DI PHENYL AMINE AR manufacturers, suppliers, exporters in Mumbai, Gandhidham, Kolkata, Varanasi, Visakhapatnam, Chennai, Fujairah, Dubai, Canada BC, Barka, Sohar, Muscat, Oman. Lab chemicals manufacturers, suppliers, exporters in India, UAE Middle East, Barka, Sohar, Muscat, Oman, Canada. DI PHENYL AMINE AR is available in small packing as well as in bulk. Buy premium quality DI PHENYL AMINE AR and other lab chemicals from one of the most trusted brands. |
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<span style="font-size:14px;"><strong><span style="text-align: justify; color: rgb(32, 33, 36); font-family: arial, sans-serif;">Diphenylamine is used as a </span><b style="text-align: justify; color: rgb(32, 33, 36); font-family: arial, sans-serif; font-size: 16px;">pre- or postharvest scald inhibitor for apples</b><span style="text-align: justify; color: rgb(32, 33, 36); font-family: arial, sans-serif;"> applied as an indoor drench treatment. Its anti-scald activity is the result of its antioxidant properties, which protect the apple skin from the oxidation products of α-farnesene during storage.</span></strong></span></p>
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<strong><span style="text-align: justify; color: rgb(77, 81, 86); font-family: arial, sans-serif;">daily </span><span style="text-align: justify; font-weight: bold; color: rgb(95, 99, 104); font-family: arial, sans-serif;">doses</span><span style="text-align: justify; color: rgb(77, 81, 86); font-family: arial, sans-serif;"> in the range of from 0.01 to 1000 mg/kg/day.</span></strong></p>
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<span style="font-size:14px;"><strong><span style="color: rgb(28, 29, 30); font-family: "Open Sans", sans-serif; text-align: justify;">As three-dimensional (3D) cell culture systems gain popularity in biomedical research, reliable assays for cell proliferation within 3D matrices become more important. Although many cell quantification techniques have been established for cells cultured on nondegradable plastic culture dishes and cells suspended in media, it is becoming increasingly clear that cell quantification after prolonged culture in 3D polymeric scaffolds imposes unique challenges because the added presence of polymeric materials may contribute to background signal via various mechanisms including autofluorescence, diffusion gradients, and sequestering effects</span></strong></span></p>
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