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Red Polystyrene Particles with Carboxyl Groups (200 nm)
Catalog Number: B2013347 (0.5 mL)
Red Polystyrene Particles with Carboxyl Groups (200 nm) is a high quality 200 nm Red Polystyrene Particles with Carboxyl Groups. This product has been used as molecular tool for various biochemical applications. It has also been used in a wide array of other chemical and immunological applications. Custom bulk amounts of this product are available upon request.
Live enquiry about this product via Text/SMS: 1-858-900-3210.
Product Description
Red Polystyrene Particles with Carboxyl Groups (200 nm)
Catalog number: B2013347
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 0.5 mL
Molecular Weight or Concentration: na
Supplied as: Suspension
Applications: molecular tool for various biochemical applications
Storage: 2-8°C
Keywords: Red polystyrene beads carboxyl active
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:
1: Capanni F, Greco S, Tomasi N, Giulianini PG, Manfrin C. Orally administered nano-polystyrene caused vitellogenin alteration and oxidative stress in the red swamp crayfish (Procambarus clarkii) Sci Total Environ. 2021 Oct 15;791:147984.
2: Srivastava P, Tavernaro I, Genger C, Welker P, Hübner O, Resch-Genger U. Multicolor Polystyrene Nanosensors for the Monitoring of Acidic, Neutral, and Basic pH Values and Cellular Uptake Studies Anal Chem. 2022 Jul 12;94(27):9656-9664.
3: Park HW, Han D, Ahn JP, Kim SH, Kang YJ, Jeong YG, Kim DK. Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes Int J Mol Sci. 2022 Dec 15;23(24):15954.
4: Shupe HJ, Boenisch KM, Harper BJ, Brander SM, Harper SL. Effect of Nanoplastic Type and Surface Chemistry on Particle Agglomeration over a Salinity Gradient Environ Toxicol Chem. 2021 Jul;40(7):1822-1828.
5: He S, Wu S. Ratiometric fluorescent semiconducting polymer dots for temperature sensing Analyst. 2023 Feb 13;148(4):863-868.
6: Tang J, Saito T. Effect of dentine phosphophoryn-derived RGD peptides on odontoblast-like cells Int Endod J. 2016 Jul;49(7):670-83.
7: Yuan X, Fabregat D, Yoshimoto K, Nagasaki Y. High PEGylation efficiency of pentaethylenehexamine-end poly(ethylene glycol) (mPEG-N6) for active-ester surface Colloids Surf B Biointerfaces. 2012 Apr 1;92:25-9.
8: dos Santos T, Varela J, Lynch I, Salvati A, Dawson KA. Quantitative assessment of the comparative nanoparticle-uptake efficiency of a range of cell lines Small. 2011 Dec 2;7(23):3341-9.
9: Liu F, Guo Y, Hu Y, Zhang X, Zheng X. Intracellular dark-field imaging of ATP and photothermal therapy using a colorimetric assay based on gold nanoparticle aggregation via tetrazine/trans-cyclooctene cycloaddition Anal Bioanal Chem. 2019 Sep;411(22):5845-5854.
10: Xu H, Casabianca LB. Dual Fluorescence and NMR Study for the Interaction between Xanthene Dyes and Nanoparticles Langmuir. 2021 Jan 12;37(1):385-390.
Products Related to Red Polystyrene Particles with Carboxyl Groups (200 nm) can be found at Conjugates
Additional Information
Weight | 0.15 oz |
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Dimensions | 2 × 0.5 × 0.5 in |