Trehalose Assay Kit

Trehalose Assay Kit

Catalog Number:
CMK1462187MEG
Mfr. No.:
K-TREH
Price:
$568
  • Size:
    100 assays (manual)/1000 assays (microplate)/1100 assays (auto-analyser)
    Quantity:
    Add to Cart:
      • Overview
        • The Trehalose assay kit is a simple method for the rapid and reliable measurement and analysis of trehalose in foods, beverages and other materials.
          Note for Content: The number of manual tests per kit can be doubled if all volumes are halved. This can be readily accommodated using the MegaQuantTM Wave Spectrophotometer (D-MQWAVE).

          Please contact us at for specific academic pricing.

      • Properties
        • Details
          Limit of Detection: 37.5mg/L
          Storage
          Short term stability: 2-8°C
          Long term stability: See individual component labels
          Stability
          > 2 years under recommended storage conditions

          * For research use only.

      • Applications
        • Application Description
          Honey, mushrooms, bread, beer, seafood (e.g. lobster and shrimp), fruit juices, purees and fillings, nutrition bars, surimi, dehydrated fruits and vegetables, fruit products, white chocolate, sports drinks, dairy products, egg products, soups and sauces, confectionery, chewing gum, cosmetics, pharmaceuticals and other materials (e.g. biological cultures, samples, etc.).
      • Reference
        • 1.Deletion of NTH1 and HSP12 increases the freeze-thaw resistance of baker’s yeast in bread dough. Chen, B. C. & Lin, H. Y. (2022). Microbial Cell Factories, 21(1), 1-10.
          2.Increased Stress Levels in Caged Honeybee (Apis mellifera)(Hymenoptera: Apidae) Workers. Lattorff, H. M. G. (2022). Stresses, 2(4), 373-383.
          3.Chronic exposure to field-realistic doses of imidacloprid resulted in biphasic negative effects on honey bee physiology. Kim, S., Kim, J. H., Cho, S., Clark, J. M. & Lee, S. H. (2022). Insect Biochemistry and Molecular Biology, 144, 103759.
          4.Effects of Water Stress on Quality and Sugar Metabolism in ‘Gala’Apple Fruit. Tao, H., Sun, H., Wang, Y., Wang, X. & Guo, Y. (2022). Horticultural Plant Journal, In Press.
          5.Trehalose provisioning in Daphnia resting stages reflects local adaptation to the harshness of diapause conditions. Santos, J. L. & Ebert, D. (2022). Biology Letters, 18(2), 20210615.
          6.The photosynthetic efficiency and carbohydrates responses of six edamame (Glycine max. L. Merrill) cultivars under drought stress. Hlahla, J. M., Mafa, M. S., Van der Merwe, R., Alexander, O., Duvenhage, M. M., Kemp, G. & Moloi, M. J. (2022). Plants, 11(3), 394.
          7.Roles of PINK1 in regulation of systemic growth inhibition induced by mutations of PTEN in Drosophila. Han, Y., Zhuang, N., & Wang, T. (2021). Cell Reports, 34(12), 108875.
          8.Sulfolobus acidocaldarius uses a complex trehalose metabolism for salt stress response involving a novel TPS/TPP pathway. Stracke, C., Meyer, B. H., Hagemann, A., Jo, E., Lee, A., Albers, S. V., Cha, J., Brasen, C. & Siebers, B. (2020). Applied and Environmental Microbiology, 86(24).
          9.Engineering cyanobacteria as cell factories for direct trehalose production from CO2. Qiao, Y., Wang, W. & Lu, X. (2020). Metabolic Engineering, 62, 161-171.
          10.The effect of trehalose on autophagy-related proteins and cyst growth in a hypomorphic Pkd1 mouse model of autosomal dominant polycystic kidney disease. Atwood, D. J., Brown, C. N., Holditch, S. J., Pokhrel, D., Thorburn, A., Hopp, K. & Edelstein, C. L. (2020). Cellular Signalling, 75, 109760.
          11.Combination of hydrophobically modified γ-poly (glutamic acid) and trehalose achieving high cryosurvival of RBCs. Zhang, Q., Liu, B., Chong, J., Ren, L., Zhao, Y. & Yuan, X. (2020). Science China Technological Sciences, 1-11.
          12.Sequencing and analysis of the genome of propionibacterium freudenreichii T82 strain: importance for industry. Piwowarek, K., Lipińska, E., Hać-Szymańczuk, E., Kieliszek, M. & Kot, A. M. (2020). Biomolecules, 10(2), 348.
          13.Unusual deprivation of compatible solutes in Acinetobacter baumannii. Zeidler, S. & Müller, V. (2020). Environmental Microbiology, 22(4), 1370-1380.
          14.Canola cultivars affect nutrition and cold hardiness of Plutella xylostella (L.)(Lepidoptera: Plutellidae). Nouri-Ganbalani, G., Naseri, B., Majd-Marani, S. & Borzoui, E. (2020). International Journal of Tropical Insect Science, 1-10.
          15.Partitioning sources of CO2 emission after soil wetting using high-resolution observations and minimal models. Slessarev, E. W. & Schimel, J. P. (2020). Soil Biology and Biochemistry, 143, 107753.

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