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L-谷氨酰胺/氨快速分析试剂盒是一种新颖的方法,用于特异性地、方便地、经济地、快速地测量和分析培养基/上清液和其他材料中的L-谷氨酰胺和氨。

L-谷氨酰胺/氨快速分析试剂盒流程图
L-谷氨酰胺/氨快速分析试剂盒具有如下优势和特性:
- 延长辅助因子的稳定性。溶解的辅助因子在4°C下稳定时间超过1年。
- 由于使用高活性谷氨酰胺酶和无抑制的谷氨酸脱氢酶,反应非常迅速
- 所有的酶以稳定的悬浮液形式提供
- 唯一可用的酶试剂盒
- 非常具有成本效益
- 所有试剂在制备后稳定时间大于2年
- Mega-Calc™软件工具可从我们的网站上获得,用于无忧无虑地处理原始数据
- 包括的标准
Analyte: Ammonia, L-Glutamine Assay Format: Spectrophotometer, Microplate Detection Method: Absorbance Wavelength (nm): 340 Signal Response: Decrease Linear Range: 1 to 40 µg of L-glutamine per assay Limit of Detection: 0.54 mg/L (L-glutamine),
0.06 mg/L (ammonia)Reaction Time (min): ~ 10 min Application examples: Cell culture media and cultures, dietary supplements, vegetables and other materials (e.g. biological samples, etc.). Method recognition: Novel method 关键词:- L-谷氨酰胺/氨快速分析试剂盒
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产品组分
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规格 储存温度
L-谷氨酰胺/氨快速分析试剂盒 K-GLNAM 50次 2-8°C 操作手册
1 1 常温
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注意事项
保存建议 厂家推荐蓝冰运输。当您收到产品后,按照说明书建议保存于-20°C。 -
FAQ

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New insights in the targets of action of dimethyl fumarate in endothelial cells: effects on energetic metabolism and serine synthesis.
Ocaña, M. C., Yang, C., Bernal, M., Martínez-Poveda, B., Vu, H., Cárdenas, C., DeBerardinis, R. & Medina, M. Á. Europe PMC, (2022), PPR490973.
Metabolic and Transcriptional Changes across Osteogenic Differentiation of Mesenchymal Stromal Cells.
Sigmarsdottir, T. B., McGarrity, S., de Lomana, A. L. G., Kotronoulas, A., Sigurdsson, S., Yurkovich, J. T., Rolfsson, O. & Sigurjonsson, O. E. (2021). Bioengineering, 8(12), 208.
NH4+ Suppresses NO3- Dependent Lateral Root Growth and Alters Gene Expression and Gravity Response in OsAMT1 RNAi Mutants of Rice (Oryza sativa).
Kumar, V., Kim, S. H., Priatama, R. A., Jeong, J. H., Adnan, M. R., Saputra, B. A., Kim, C. M., Je, B. II.,Park, S. J., Jung, K. H., Kim, K. M., Xuan, Y. H. & Han, C. D. (2020). Journal of Plant Biology, 63(5), 391-407.
LC-MS/MS-based quantitative proteomic and phosphoproteomic analysis of CHO-K1 cells adapted to growth in glutamine-free media.
Kaushik, P., Curell, R. V. B., Henry, M., Barron, N. & Meleady, P. (2020). Biotechnology Letters, 42(12), 2523-2536.
Development of a method for live octopus (Octopus vulgaris) transportation for long distance at high densities.
Araújo, J., Matias, A. C., Pousão‐Ferreira, P. & Soares, F. (2020). Aquaculture Research, 51(9), 3751-3759.
Three-layered silk fibroin tubular scaffold for the repair and regeneration of small caliber blood vessels: from design to in vivo pilot tests.
Alessandrino, A., Chiarini, A., Biagiotti, M., Dal Prà, I., Bassani, G. A., Vincoli, V., Settembrini, P., Pierimarchi, P., Freddi, G. & Armato, U. (2019). Frontiers in Bioengineering and Biotechnology, 7, 356.
Liver-type glutaminase GLS2 is a druggable metabolic node in luminal-subtype breast cancer.
Lukey, M. J., Cluntun, A. A., Katt, W. P., Miao-chong, J. L., Druso, J. E., Ramachandran, S., Erickson, J. W., Le, H. H., Wang, Z. E., Blank, B., Greene, K. S. & Cerione, R. A. (2019). Cell Reports, 29(1), 76-88.
Metabolic profiling of hematopoietic stem and progenitor cells during proliferation and differentiation into red blood cells.
Daud, H., Browne, S., Al-Majmaie, R., Murphy, W. & Al-Rubeai, M. (2016). New Biotechnology, 33(1), 179-186.
A mutation in GDP-mannose pyrophosphorylase causes conditional hypersensitivity to ammonium, resulting in Arabidopsis root growth inhibition, altered ammonium metabolism, and hormone homeostasis.
Barth, C., Gouzd, Z. A., Steele, H. P., & Imperio, R. M. (2010). Journal of Experimental Botany, 61(2), 379-394.
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