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Applying the science of measurement to biology: Why bother?

Carmen Helena CoxonColin LongstaffChris Burns
Published in: PLoS biology (2019)
Both basic and translational research are continuously evolving, but the principles that underpin research integrity remain constant. These include rational, hypothesis-driven, and adequately planned and controlled science, which is carried out openly, honestly, and ethically. An important component of this should be minimising experimental irreproducibility. Biological systems, in particular, are inherently variable due to the nature of cells and tissues, as well as the complex molecules within them. As a result, it is important to understand and identify sources of variability and to strive to minimise their influence. In many instances, the application of metrology (the science of measurement) can play an important role in ensuring good quality research, even within biological systems that aren't always amenable to many of the metrological concepts applied in other fields. Here, we introduce the basic concepts of metrology in relation to biological systems and promote the application of these principles to help avoid potentially costly mistakes in both basic and translational research. We also call on funders to encourage the uptake of metrological principles, as well as provide funding and support for later engagement with regulatory bodies.
Keyphrases
  • public health
  • induced apoptosis
  • gene expression
  • social media
  • cell cycle arrest
  • transcription factor
  • signaling pathway
  • oxidative stress
  • quality improvement
  • endoplasmic reticulum stress
  • cell death