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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。

测量类型

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Flow Cytometry

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.

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Particle Size Distribution

Particle size analysis in the range 0.01-3500 microns. For nanoparticle analysis see dedicated section.

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Morphology

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).

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Nanoparticle Characterization

Size, concentration, and zeta potential anlysis of nano-systems using light scattering techniques such as DLS, ELS and NTA techniques. 

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Rheology, Viscosity, and Powder Flowability

Viscosity measurement and visco-elastic properties characterization of liquid dispersions, complex fluids, and semi-solid materials.

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Stability Analysis

Rapid and objective quantification of concentrated dispersion real stability using Multiple Light Scattering.

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High Pressure Homogenizer

High pressure homogenizing technique to produce stable nanoemulsions, reduce particle size or molecular weight of polysaccharides, nanoencapsulation, de-agglomeration, etc.

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Exosomes and EVs Characterization

Multiparametric characterization of exosomes and EVs including Sizing, Concentration per size range, Count, Phenotyping, Cargo, Integrity, Purity, etc.

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Biomolecular Interactions

Biomolecular interactions of proteins, antibodies, nucleic acids, lipids, and other biomolecules using ITC Microcalorimetry or BioLayer Interferometry BLI techniques.

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Protein Aggregate Analysis

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.

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Polymer Characterization

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.

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Elemental Analysis

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.

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Phase Identification

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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