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Biology subjects

Fraser, A. G.

Publications and source records attributed to Fraser, A. G..

2 recordsLinked to original sources

Acute effects of drugs on C. elegans movement reveal complex responses and plasticity

Many drugs act very rapidly -- they can turn on or off their targets within minutes in a whole animal. What are the acute effects of drug treatment and how does an animal respond to these? We developed a simple assay to measure the acute effects of drugs on C.elegans movement and examined the effects of a range of compounds including neuroactive drugs, toxins, environmental stresses and novel compounds on worm movement over a time period of 3 hours. We find that many treatments show complex acute responses -- a phase of rapid paralysis is followed by one or more recovery phases. The recoveries are not the result of some generic stress response but are specific to the drug e.g. recovery from paralysis due to a neuroactive drug requires neurotransmitter pathways whereas recovery from a metabolic inhibitor requires metabolic changes. Finally, we also find that acute responses can vary greatly across development and that there is extensive and complex natural variation in acute responses. In summary, acute responses are sensitive probes of the ability of biological networks to respond to drug treatment and these responses can reveal the action of unexplored pathways.\n\nAuthor SummaryDrugs are powerful tools that let us switch on or off key pathways in whole animals and watch the effects. Here we set up a simple assay to measure how drugs affect the movement of the simple nematode C.elegans -- crucially, we look how those responses change over time. We find that worms have complex responses to many different drugs -- they go through clear phases of paralysis and recovery. The recovery from the initial effect of any drug is not due to a generic stress response but is specific to the way each drug acts. We find for example that worms can recover from paralysis driven by one neurotransmitter pathway by activating a different neurotransmitter pathway or from paralysis caused by loss of one metabolic pathway by turning on a second one. These complex responses show how the basic genetic networks that are needed for normal behaviour and function can rewire and respond to the effect of many drugs.\n\nImportantly, the responses can vary in many ways -- different aged worms or different individuals can have different responses and capturing how drug responses change over time is critical to dissect this complexity.

genetics

What can an evolutionary perspective on women’s health provide to the current public health paradigm? A case study on redefining thyroid cancer as a reproductive cancer

Incidence rates of non-communicable diseases in women are increasing worldwide and now contributing more to mortality and morbidity than reproductive health. Despite this universal trend, there is no recognition by the WHO of this phenomenon in womens health. Additionally, thyroid cancer is considered a non-sex specific cancer despite female incidence rates being triple those of males. To understand why there are such conceptual limitations to womens health, biomedicine - and its prevalence in western public health authorities - will be analysed from an anthropological perspective. In mind of these conceptual limitations, insights from evolutionary perspectives on health are introduced as well as how they may alleviate the conceptual barriers in the current biomedical paradigm. Using the example of breast cancer, the difference between a reproductive cancer in women, and cancer located in the reproductive tract will be explored. From this, the possibility that a cancer outside the reproductive tract can be directly influenced by reproductive function is explored in the specific case of thyroid cancer. Thyroid cancer and current public health approaches to preventing malignancies of the thyroid are examined to show the limitations of their scope. Furthermore, evidence supporting the direct link between thyroid function and reproductive function is presented. Current academic studies into the link between thyroid cancer and womens reproductive function are analysed to show they are subject to the same conceptual limitations of womens reproductive function as found previously in biomedicine. To conclude, I will introduce a new hypothesis for exploring the impact of womens reproductive function on thyroid cancer incidence rates. This hypothesis will allow womens health to be viewed holistically, and allows reproductive function to be investigated beyond parity. Thus, the conceptual limitations of womens health in the public health paradigm will be alleviated.

evolutionary biology