Quantifying Microalgae Growth by the Optical Detection of Glucose in the NIR Waveband.
Vimal Angela ThiviyanathanPin Jern KerEric P P AminShirley Gee Hoon TangWilly YeeMd Zaini JamaludinPublished in: Molecules (Basel, Switzerland) (2023)
Microalgae have become a popular area of research over the past few decades due to their enormous benefits to various sectors, such as pharmaceuticals, biofuels, and food and feed. Nevertheless, the benefits of microalgae cannot be fully exploited without the optimization of their upstream production. The growth of microalgae is commonly measured based on the optical density of the sample. However, the presence of debris in the culture and the optical absorption of the intercellular components affect the accuracy of this measurement. As a solution, this paper introduces the direct optical detection of glucose molecules at 940-960 nm to accurately measure the growth of microalgae. In addition, this paper also discusses the effects of the presence of glucose on the absorption of free water molecules in the culture. The potential of the optical detection of glucose as a complement to the commonly used optical density measurement at 680 nm is discussed in this paper. Lastly, a few recommendations for future works are presented to further verify the credibility of glucose detection for the accurate determination of microalgae's growth.
Keyphrases
- high resolution
- high speed
- blood glucose
- loop mediated isothermal amplification
- anaerobic digestion
- real time pcr
- photodynamic therapy
- label free
- type diabetes
- adipose tissue
- climate change
- metabolic syndrome
- sensitive detection
- clinical practice
- skeletal muscle
- current status
- fluorescent probe
- fluorescence imaging
- glycemic control
- tandem mass spectrometry