In a recent book review for JCOM, I outlined a few of the ethical, social and legal issues that make synthetic biology a potentially fascinating topic from a public engagement perspective. ‘Synthetic Biology Analysed’ (Englehard, 2016) draws together contributions from experts in ethics, law, risk analysis and sociology. In doing so, it provides a fairly accessible discussion of the nature of synthetic biology – what the field encompasses and how we might think about different types of synthetic biology (from those that are essentially developments of genetic engineering to approaches that incorporate non-naturally occurring nucleotides (components of DNA)). These raise different challenges when it comes to assessing risk, for example to the environment, posed by these developments.
Shortly after reading Englehard’s (2016) book, I had the opportunity to explore synthetic biology further, through a participatory theatre project – Invincible – initiated by the University of Bristol’s SynBio group and produced by Kilter theatre company. Both Englehard’s book and ‘Invincible’ the theatre production point to a need for public engagement in this area.
Speaking to the members of the Invincible production team, I learned much about the process of developing this work and the learning curve that had to be climbed in order to understand the research. Kilter were also keen to address other STEM issues, such as presenting women as scientists to counter gender stereotypes.
One aspect of the performance I found particularly refreshing was the way that actual researchers were included. They may not have had ‘acting’ roles, but they were present throughout and engaged in discussion with the audience at the end of the performance (when their presence was revealed). Their inclusion, and the setting of the performances in a flat both worked to highlight the pervasiveness of science in our lives.
In a chapter focusing specifically on public engagement in Synthetic Biology Analysed, Pardo and Hagen point out the low salience of synthetic biology with the public. While this is not uncommon, with many scientific topics taking place silently and behind closed doors, the potential impacts (social and environmental) of synthetic biology highlighted in Englehard’s book suggest it is time for a public discussion. It is nice to see that University of Bristol’s SynBio group are beginning to hold this conversation.
ENGELHARD, M. ED. (2016). SYNTHETIC BIOLOGY ANALYSED: TOOLS FOR DISCUSSION AND EVALUATION. SPRINGER INTERNATIONAL.
The last 6 months have been a busy time for the Unit, we are now fully in the swing of the 2016/17 teaching programme for our MSc Science Communication and PgCert Practical Science Communication students, we’ve been working on a number of exciting research projects and if that wasn’t enough to keep us busy, we’ve also produced a number of exciting publications.
We wanted to share some of these recent publications to provide an insight into the work that we are involved in as the Science Communication Unit.
Science for Environment Policy
Science for Environment Policy is a free news and information service published by Directorate-General Environment, European Commission. It is designed to help the busy policymaker keep up-to-date with the latest environmental research findings needed to design, implement and regulate effective policies. In addition to a weekly news alert we publish a number of longer reports on specific topics of interest to the environmental policy sector.
Recent reports focus on:
Ship recycling: The ship-recycling industry — which dismantles old and decommissioned ships, enabling the re-use of valuable materials — is a major supplier of steel and an important part of the economy in many countries, such as Bangladesh, India, Pakistan and Turkey. However, mounting evidence of negative impacts undermines the industry’s contribution to sustainable development. This Thematic Issue presents a selection of recent research on the environmental and human impacts of shipbreaking.
Environmental compliance assurance and combatting environmental crime: How does the law protect the environment? The responsibility for the legal protection of the environment rests largely with public authorities such as the police, local authorities or specialised regulatory agencies. However, more recently, attention has been focused on the enforcement of environmental law — how it should most effectively be implemented, how best to ensure compliance, and how best to deal with breaches of environmental law where they occur. This Thematic Issue presents recent research into the value of emerging networks of enforcement bodies, the need to exploit new technologies and strategies, the use of appropriate sanctions and the added value of a compliance assurance conceptual framework.
Synthetic biology and biodiversity: Synthetic biology is an emerging field and industry, with a growing number of applications in the pharmaceutical, chemical, agricultural and energy sectors. While it may propose solutions to some of the greatest challenges facing the environment, such as climate change and scarcity of clean water, the introduction of novel, synthetic organisms may also pose a high risk for natural ecosystems. This future brief outlines the benefits, risks and techniques of these new technologies, and examines some of the ethical and safety issues.
Socioeconomic status and noise and air pollution: Lower socioeconomic status is generally associated with poorer health, and both air and noise pollution contribute to a wide range of other factors influencing human health. But do these health inequalities arise because of increased exposure to pollution, increased sensitivity to exposure, increased vulnerabilities, or some combination? This In-depth Report presents evidence on whether people in deprived areas are more affected by air and noise pollution — and suffer greater consequences — than wealthier populations.
We’ve published several research papers exploring the role and impact of science outreach. Education outreach usually aims to work with children to influence their attitudes or knowledge about STEM – but there are only so many scientists and engineers to go around. So what if instead we influenced the influencers? In this publication, Laura Fogg-Rogers describes her ‘Children as Engineers’ project, which paired student engineers with pre-service (student) teachers.
Fogg-Rogers, L. A., Edmonds, J. and Lewis, F. (2016) Paired peer learning through engineering education outreach. European Journal of Engineering Education. ISSN 0304-3797 Available from: http://eprints.uwe.ac.uk/29111
Teachers have been shown in numerous research studies to be critical for shaping children’s attitudes to STEM subjects, and yet only 5% of primary school teachers have a STEM higher qualification. So improving teacher’s science teaching self-efficacy, or the perception of their ability to do this job, is therefore critical if we want to influence young minds in science.
The student engineers and teachers worked together to perform outreach projects in primary schools and the project proved very successful. The engineers improved their public engagement skills, and the teachers showed significant improvements to their science teaching self-efficacy and subject knowledge confidence. The project has now been extended with a £50,000 funding grant from HEFCE and will be run again in 2017.
And finally, Dr Emma Weitkamp considers how university outreach activities can be designed to encourage young people to think about the relationships between science and society. In this example, Emma worked with Professor Dawn Arnold to devise an outreach project on plant genetics and consider how this type of project could meet the needs of both teachers, researchers and science communicators all seeking (slightly) different aims.
A Cross Disciplinary Embodiment: Exploring the Impacts of Embedding Science Communication Principles in a Collaborative Learning Space. Emma Weitkamp and Dawn Arnold in Science and Technology Education and Communication, Seeking Synergy. Maarten C. A. van der Sanden, Delft University of Technology, The Netherlands and Marc J. de Vries (Eds.) Delft University of Technology, The Netherlands.
We hope that you find our work interesting and insightful, keep an eye on this blog – next week we will highlight our publications around robots, robot ethics, ‘fun’ in science communication and theatre.
Details of all our publications to date can be found on the Science Communication Unit webpages.