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在 DKSH,我们在材料科学、生命科学及化学分析领域拥有深厚的专业积累。凭借对分析技术的深入理解以及对多种材料的丰富经验,我们能够精准识别您的分析需求,并交付值得信赖的结果。
我们的实验室配备了来自国际领先品牌的先进仪器设备,专家团队在各自专业领域拥有多年实战经验。我们可根据您的具体要求开发并验证分析方法,并在方法确认与转移过程中为您提供全方位支持。
Widely used technique in drug discovery, genomics, immunoprofiling for expression of surface protein and intracellular molecules, sorting cell populations, proliferation, cyto toxicity and cell death.
Particle size analysis in the range 0.01-3500 microns. For nanoparticle analysis see dedicated section.
Morphological analysis of particles in the range 0.5-10000 microns (size, shape, and transparency of particles). Integrated Raman chemical analysis with MDRS (Morphologically Directed Raman Spectroscopy).
Size, concentration, and zeta potential anlysis of nano-systems using light scattering techniques such as DLS, ELS and NTA techniques.
Viscosity measurement and visco-elastic properties characterization of liquid dispersions, complex fluids, and semi-solid materials.
Rapid and objective quantification of concentrated dispersion real stability using Multiple Light Scattering.
High pressure homogenizing technique to produce stable nanoemulsions, reduce particle size or molecular weight of polysaccharides, nanoencapsulation, de-agglomeration, etc.
Multiparametric characterization of exosomes and EVs including Sizing, Concentration per size range, Count, Phenotyping, Cargo, Integrity, Purity, etc.
Biomolecular interactions of proteins, antibodies, nucleic acids, lipids, and other biomolecules using ITC Microcalorimetry or BioLayer Interferometry BLI techniques.
SEC is the standard method for protein aggregate analysis. The choice of pore size is related to the size of the molecule to be separated.
Gel permeation chromatography (GPC) that separates analytes on the basis of size, typically in organic solvents. The technique is often used for the analysis of polymers.
XRF provides both qualitative and quantitative information on a wide variety of sample types. It can quantify elements from beryllium (Be) up to americium (Am) in concentrations from 100% down to sub-ppm level.
Phase identification is the most important application of X-ray diffraction (XRD). It is not only applied on powder samples but also on polycrystalline solids, suspensions, and thin films.
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