Calcium Saccharate Analysis Service

Calcium Saccharate Analysis Service

Rely on CD BioGlyco for Trusted Calcium Saccharate Analysis

CD BioGlyco offers a range of Pharmaceutical and Biological Analysis Services, including Pharmaceutical Analysis Service, Biological Evaluation Service, and Pharmaceutical Excipient Analysis Services. We provide tests and analysis for various pharmaceutical ingredients, such as calcium saccharate. Calcium saccharate, derived from D-glucose, is the calcium salt form of glucaric acid found in fruits and vegetables. With its ability to inhibit beta-glucuronidase activity, it shows promise as an anticancer agent. By supplementing it, one can regulate estrogen metabolism and lower lipid levels thereby enhancing enterohepatic circulation and reducing cholesterol synthesis. It's worth mentioning that calcium saccharate is utilized as an excipient, stabilizer, and acidifier.

The structure of calcium saccharate. (CD BioGlyco)

  • Specific optical rotation

The light produces optical rotation, which results in a plane of polarization that shifts between the two directions and we call this optical rotation. We utilize a polarimeter to analyze the specific optical rotation of the sample. This measurement is intended to help identify or assess the purity of optically active substances and determine their contents. We conduct optical rotation measurements within 30 minutes of preparing the solution. The measuring tube is washed several times with the test solution to measure optical rotation, and then the test solution is slowly injected into the tube to prevent the formation of bubbles. In order to obtain the optical rotation of the test solution, place the tube in the polarimeter for reading.

  • Identification

We carry out rigorous identification of the samples to enable the accuracy and reliability of results. Two methods of identification will be used for the identification of the calcium saccharate sample, thereby reducing the risk of misinterpretation.

  • Dissolve the sample in hydrochloric acid and water, and perform the calcium salt identification reaction.
  • We will use an infrared spectrometer to measure the absorption of infrared light at various wavelengths. Afterwards, we will contrast the infrared absorption spectrum of the item with that of the standard.

 The simplified process for measuring infrared absorption spectra. (CD BioGlyco)

  • Assay

We have the expertise to carry out comprehensive content analyses using a range of methodologies, making sure our findings are as precise and reliable as possible.

Our methods for determining the content. (CD BioGlyco)

  • Chloride and sulfate

We will dissolve the sample in the mixture of dilute nitric acid and water, and compare it with the control solution prepared from standardized sodium solution and standardized potassium sulfate solution, respectively.

  • Sucrose and reducing sugars
    • First, dissolve the sample in a mixture of hydrochloric acid and water, and then heat it to boiling.
    • After cooling, we will add sodium carbonate solution and let it sit before filtering.
    • Mix the filtrate with alkaline copper tartrate solution, then heat again to see if red precipitates form.
  • Heavy metals

We test to measure the levels of heavy metals, like lead, cadmium, and mercury in the sample.

  • Microbial Limits

To prevent the spread of pathogens that may pose a health threat, we will investigate the existence of microorganisms, like bacteria, yeast, E. Coli, and mold.

Publication Data

Technology: Computer simulation

Journal: Nutrients

IF: 5.9

Published: 2023

Results: In this study, authors used computer simulations to analyze the positive effect of the supplementation of calcium saccharate and their metabolite D-glucaric acid on mitigation of liver detoxification. The authors used CytoSolve to integrate these molecular mechanisms, constructing a computational framework for conducting in-silico experiments. This framework quantified the impact of GA on specific biomarkers of liver toxicity through four primary mechanisms. It was shown that D-glucaric acid enhances liver detoxification by decreasing hepatocyte apoptosis, lowering glucuronide deconjugate levels, reducing ROS production, and inhibiting the β-glucuronidase enzyme, thereby preventing toxin reabsorption in hepatocytes.

Applications

  • Our service can be used in the process of drug formulation research and development to ensure the purity and quality of the pharmaceutical ingredients used. We also help clients to analyze the effects of drug release and activity in different drug ingredients.
  • Our service can be used in the production of drugs to help clients guarantee consistency and stability between batches. Because in the manufacture of drugs, it is necessary to monitor the quality of drug excipients at different times.
  • Our analysis service can also used to analyze the stability of excipients under various conditions, thereby predicting the shelf-life and storage requirements of pharmaceutical products.

Advantages

  • We offer a mass of analysis services tailored to the pharmaceutical and biological industries, ensuring that clients can choose the services they are interested in.
  • We use diverse advanced analytical techniques, such as polarimeter, infrared spectrometry, and chromatography to deliver accurate and reliable results.
  • A variety of methodologies for content analysis are employed by us, allowing for precise and reliable determination of the composition and purity of calcium saccharate samples.

CD BioGlyco possesses various advanced methodologies to support our clients develop and research innovative pharmaceutical formulations. Based on different applications, a series of unique analysis schemes will be made by our research team. Our research team has the expertise in dealing with complex drug development issues. Contact us if you need to know whether excipients are compatible with the medicinal product or check their stability in formulations that have been modified according to different conditions.

References

  1. Armstrong, R.D.; et al. How to synthesize high purity, crystalline d-glucaric acid selectively. European journal of organic chemistry. 2017, (45): 6811-6814.
  2. Ayyadurai, V.S.; et al. Mechanistic understanding of D-Glucaric acid to support liver detoxification essential to muscle health using a computational systems biology approach. Nutrients. 2023, 15(3): 733.
This service is for Research Use Only, not intended for any clinical use.

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