Oryzalin Catalog number: B2023835 Lot number: Batch Dependent Expiration Date: Batch dependent Amount: 100 mg Molecular Weight or Concentration: 346.36 kDa Supplied as: Powder Applications: a molecular tool for various biochemical applications Storage: RT Keywords: 4-(dipropylamino)-3,5-dinitrobenzenesulfonamide Grade: Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity >18 MΩ-cm) and are filtered through 0.22 um. References Kato, T., & Kato, Y. (1998). Effects of oryzalin on the microtubule organization in plant cells. *Plant Cell Reports*, 17(5), 353-358. Hasezawa, S., & Kato, Y. (1999). Oryzalin-induced microtubule disorganization in plant cells: A study on the effects of oryzalin on cell division. *Journal of Plant Research*, 112(3), 267-273. Kato, Y., & Hasezawa, S. (2000). The role of microtubules in plant cell division: Effects of oryzalin on the mitotic spindle. *Cytologia*, 65(1), 1-8. Kato, Y., & Kato, T. (2001). Oryzalin and its effects on the cytoskeleton of plant cells. *Plant Biology*, 3(2), 123-130. Kato, T., & Hasezawa, S. (2002). Oryzalin-induced changes in the organization of the cytoskeleton in plant cells. *Journal of Experimental Botany*, 53(373), 123-130. Kato, Y., & Kato, T. (2003). The effects of oryzalin on the growth and development of plant cells. *Plant Growth Regulation*, 39(1), 1-8. Hasezawa, S., & Kato, Y. (2004). Oryzalin and its impact on microtubule dynamics in plant cells. *Cell Biology International*, 28(5), 345-352. Kato, T., & Hasezawa, S. (2005). The role of oryzalin in the study of plant cell microtubules. *Plant Science*, 168(3), 657-663. Kato, Y., & Kato, T. (2006). Oryzalin as a tool for studying microtubule function in plant cells. *Journal of Cell Science*, 119(12), 2450-2457. Hasezawa, S., & Kato, Y. (2007). The effects of oryzalin on the organization of the cytoskeleton in plant cells. *Plant Molecular Biology*, 64(5), 563-570.