Technical Articles

Technical Articles


Smart Valve Module to Enhance Laboratory Automation

Smart Valve Module to Enhance Laboratory Automation

3D cell culture systems, such as organ-on-chip,  aim to revolutionize the drug development process. The 3D structure replicates the natural environment of cells. For example in human body, cells are supplied with nutrients and oxygen through the heart and blood vessels. Thus, in 3D cell culture models, this function can be performed by a microfluidics system.  In vitro experiments with 3D cell culture models can better simulate the body environment than conventional 2D cell culture experiments, thus help to accelerate drug development process and reduce cost and animal experiments as well.  Miniature valve from MEMETIS offers a variety of advantages in this cell culture application and other diagnostics applications, such as point-of-care and mobile health care. 

HPLC Analysis of Aldehydes and Ketones in Air Samples

HPLC Analysis of Aldehydes and Ketones in Air Samples

Aldehydes and ketones from industrial and automotive emission can pollute the environment.  Also, as a lot of these compounds are carcinogens, several US EPA and state methods have been developed for their analysis in air and drinking water.  This application note describes a HPLC method to analyze 15 commonly analyzed aldehydes and ketones in environmental air and auto exhaust.  Prior to analysis, aldehydes and ketones are converted to hydrazone derivatives when the air sample passes through a solid phase extraction (SPE) cartridge composed of silica gel coated with 2,4-dinitrophenylhydrazine (DNPH).  Then, the aldehyde/ketone DNPH derivatives are eluted from the SPE cartridge and analyzed by HPLC separation using a Uitisil® XB-C18 column and UV detection at 360 nm.  

Introduction of FTIR, ATR, Fiber Optics, and ATR Probes in Spectroscopy and Associated Designs - Part II

Introduction of FTIR, ATR, Fiber Optics, and ATR Probes in Spectroscopy and Associated Designs - Part II

This article describes the basic principles of FTIR, Attenuated Total Reflection-Infrared Spectroscopy (ATR-IR), Fiber Optical Spectroscopy techniques and their applications in in-line reaction monitor and process control.  The design and selection of fiber coupler, fiber optical cable and fiber probe are briefly introduced.  This is the Part II. 

Introduction of FTIR, ATR, Fiber Optics, and ATR Probes in Spectroscopy and Associated Designs - Part I

Introduction of FTIR, ATR, Fiber Optics, and ATR Probes in Spectroscopy and Associated Designs - Part I

This article describes the basic principles of FTIR, Attenuated Total Reflection-Infrared Spectroscopy (ATR-IR), Fiber Optical Spectroscopy techniques and their applications in in-line reaction monitor and process control.  The design and selection of fiber coupler, fiber optical cable and fiber probe are briefly introduced.  This is the Part I. 

Counting Blood Cells with Dino-Lite Microscopes

Counting Blood Cells with Dino-Lite Microscopes

Dino-Lite handheld models combined with a stand facilitate the laboratory capability to capture images and videos.  Setup A provides precise XYZ movements when using a proper combination of coaxial lighting.   Both the AM73515MT8A and BL-CDW back light offer dark field and bright field options which allow users to easily identify bacteria, protozoans, and distinguish between red and white blood cells.  The AM73515MT8A also offers 5MP high resolution and a magnification range of 700x-950X.  Using the full-screen 2X Digital Zoom feature found in the free imaging software at 950X mag with 5MP resolution, users can achieve 1900X magnification with 1.3MP resolution.  Three setup combinations are recommended:   

Introduction of LC, HPLC, UPLC, MS and LC-MS and Flow Control Techniques- Part II

Introduction of LC, HPLC, UPLC, MS and LC-MS and Flow Control Techniques- Part II

This article describes the basic principles of Liquid Chromatography (LC), High performance Liquid Chromatography (HPLC), Ultra performance Liquid Chromatography (UPLC), Mass spectrometry (MS), Liquid Chromatography-Mass Spectrometry (LC-MS) techniques in analytical chemistry and their applications. The role of HPLC columns and sample injection are briefly introduced.  This is part II of this article.

Introduction of LC, HPLC, UPLC, MS and LC-MS and Flow Control Techniques- Part I

Introduction of LC, HPLC, UPLC, MS and LC-MS and Flow Control Techniques- Part I

This article describes the basic principles of Liquid Chromatography (LC), High performance Liquid Chromatography (HPLC), Ultra performance Liquid Chromatography (UPLC), Mass spectrometry (MS), Liquid Chromatography-Mass Spectrometry (LC-MS) techniques in analytical chemistry and their applications. The role of HPLC columns and sample injection are briefly introduced.  This is part I of this article. 

Innovative NIRaman Combi Fiber Probe

Innovative NIRaman Combi Fiber Probe

Art Photonics introduces a new combined fiber optic probe (NIRaman) enabling simultaneous real time measurements at the same point with Near-infrared spectroscopy (1000-2500nm) and Raman spectroscopy  (785 – 1000nm) methods.    The wavelength ranges of both channels are separated but both channels can work simultaneously.   NIRaman Combi fiber probe, which not only significantly expands the capabilities of the well-known FlexiSpec® product line, but also opens up new opportunities for the development of various Combi-probes. Raman and NIR spectra contain qualitative and quantitative information on the chemical composition and physical properties of the substance. 

Analysis of Organic Acids with Ultisil OAA Column

Analysis of Organic Acids with Ultisil OAA Column

Organic acids refer to organic compounds with acidic properties. The most common ones are associated with functional groups of carboxyl (-COOH), sulfonic group (-SO3H), sulfinic group (-SO2H), such as malic acid, tartaric acid, oxalic acid, formic acid, etc. Organic acids have wide applications in oil and gas well stimulation treatments, food preservation, nutrition, animal feed and biological system. 

Reversed phase high performance liquid chromatography (HPLC) is the most widely used method for the separation and analysis of organic acids. Usually, acidic aqueous mobile phase is used to prevent the dissociation of organic acids and improve the retention in the hydrophobic column. 


Analysis of Amino Acids with Ultisil Amino Acids Plus HPLC Column

Analysis of Amino Acids with Ultisil Amino Acids Plus HPLC Column

Amino acids are the basic constituents of proteins and also intermediates in metabolic pathways. Analysis of amino acids is high demanded in the pharmaceutical research and food industry for protein characterization, cell culture monitoring, and nutritional analysis of foods and feeds. Reverse phase HPLC was widely used for the separation of the amino acids. However, direct HPLC analysis of amino acids has some challenges:

  • Most of amino acids are very polar due to their carboxyl group(-COOH) and amino group (NH2). This results in poor retention in Conventional reversed-phase conditions.
  • Most of the amino acids and their substituent groups have poor UV absorbance and poor sensitivity in detection. 

Showing 51 to 60 of 61 (7 Pages)