Montesinos-Cruz Veronica, Somerville Greg A
School of Veterinary Medicine and Biomedical Sciences, University of Nebraska-Lincoln, Lincoln, NE 68588-0905, USA.
Antibiotics (Basel). 2024 Dec 3;13(12):1164. doi: 10.3390/antibiotics13121164.
Spectrophotometry is widely used in biological sciences. In bacteriology, spectrophotometric monitoring of cell numbers during cultivation provides a rapid assessment of growth. Unfortunately, familiarity with this technique has led scientists to become complacent in its usage. Here, we review some guiding principles of spectrophotometry and practical considerations that may influence the outcome of experiments. This perspective is intended to assist both new and seasoned scientists in presenting robust and reproducible growth data based on spectrophotometric readings.
分光光度法在生物科学中被广泛应用。在细菌学中,培养过程中通过分光光度法监测细胞数量可快速评估生长情况。不幸的是,对这项技术的熟悉使科学家们在使用时变得自满。在此,我们回顾分光光度法的一些指导原则以及可能影响实验结果的实际注意事项。本文旨在帮助新手和经验丰富的科学家基于分光光度读数呈现可靠且可重复的生长数据。