Commercial Breeding for Laboratories Debate

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Department: Home Office

Commercial Breeding for Laboratories

Emma Hardy Excerpts
Monday 16th January 2023

(1 year, 3 months ago)

Westminster Hall
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Emma Hardy Portrait Emma Hardy (Kingston upon Hull West and Hessle) (Lab)
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It is a pleasure to serve under your chairmanship, Mr Efford. I congratulate the hon. Member for Carshalton and Wallington (Elliot Colburn) on his excellent opening speech.

It might come as a surprise—it certainly did to me—that animal experimentation is on the increase in the UK. As we have heard, according to the Government’s own figures, in 2021 over 3 million scientific procedures were conducted on animals in Great Britain, which is an increase of 6% on 2020. The use of dogs increased by 3%, cats by 6%, horses by 29% and monkeys by 17%. Some 80% of experiments on animals were for research-only purposes. Commercial breeding exists to meet the demands and needs of this industry in animal experimentation; without that demand, commercial breeding would not exist, and there would be no need to have this debate.

I think it is fair to say that when I talk to members of the public about this issue, those who do accept animal research think that we have to have it because it is the only option and it really benefits humans. They therefore support commercial breeding for the same reason. However, I think most of those people are unaware that, when it comes to treatment for humans, there is a growing body of evidence that animal procedures produce poor-quality results, and in some cases can actually hold back progress.

Scientific progress has shown us that many assumptions we held as common sense were wrong; the discovery of DNA and the sequencing of entire genomes has shown the amazing close relatedness between the genetic make-up of different mammals. However, when it comes to how those genes actually function—the internal chemistry of animals—our common-sense assumption that humans are not the same as mice, dogs, monkeys, cats, or any other animals used in scientific research and testing, has proven correct. While supporters of animal experiments will point to the successes of the development of the cancer drug Herceptin and diabetic insulin, there are failures as well, such as TGN1412, where a dose 500 times smaller than the “safe and effective” dose used in animals killed five human subjects, and Vioxx; relying solely on its results when tested on monkeys resulted in the deaths of, and injuries to, nearly 8,000 people.

To be of value, a research method must prove reliably predictive results. Animal methods fail to do that, for a number of reasons. Major differences exist between species, relating to anatomy, organ structure and function, metabolism, chemical absorption, genetics and lifespan. A homogenous group of animals living in a controlled experimental setting cannot predict varied human patients with their individual life histories and wide range of environmental factors. Artificially created diseases in animals in laboratories cannot accurately reflect naturally occurring human illnesses. Common adverse reactions from humans, such as nausea, mental disturbance, dizziness, fatigue, depression, confusion and double vision, cannot be detected in animals.

A number of articles have been published in The BMJ and elsewhere criticising the lack of any systematic review of the efficacy of using animals in biomedical research. In fact, a bias in favour of animal research has been shown to be holding back progress in some areas—we have already heard the example of Alzheimer’s treatments. I fear that millions of pounds and tens of thousands of hours of research may have been wasted on a scientific dead end, but worse than the time and money wasted: a drug that damages animals in early tests and is therefore abandoned could be safe and effective in humans. Valuable drugs that were nearly lost because of their toxicity in animals include the breast cancer drug Tamoxifen and the leukaemia drug Gleevec.

We cannot know how many potential treatments have been overlooked in this way, but thankfully, as we have heard, there are alternatives that focus on human biological processes to investigate disease and potential treatments. Those use human cells, tissues and organs, and existing data and technologies such as organ-on-a-chip technology or artificial intelligence, along with other procedures. They are called the new approach methodologies. By providing results that are directly relevant to human patients, NAMs are much more likely to generate breakthroughs than outdated animal-based techniques.

NAMs and human-relevant research is a fast-growing sector, and one in which the UK has the potential to be right at the forefront of innovation, leading the way. At the University of Oxford, for example, Dr Paul Holloway has developed a new, animal-free model of stroke, as we have just heard. Using organ-on-a-chip technology, he was able to replicate the human blood-brain barrier and mimic stroke, enabling new possibilities to test stroke drugs in human cells. A 2021 report by the Centre for Economics and Business Research predicted that the UK NAM industry could contribute £2.5 billion to UK GDP by 2026, an increase of 700% from 2017. There is so much that the Government could and should be doing to promote that area of technology.

I support three of the proposals from Animal Free Research UK, which has urged Members to speak in this debate: to produce an action plan for encouraging the widespread adoption of human-relevant research techniques; to launch a well-resourced programme of practical support and training to improve awareness and knowledge of human-relevant techniques; and to provide funding to improve the human relevance of research on a scale that reflects the urgency and importance of the issue.

I urge the Minister to take whatever steps she can to move research away from the cruel, wasteful and unhelpful focus on animal experimentation, and towards a future of new technologies and research methods focused on human modelling that are better for us, better for animals and better for our economy.

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Sarah Dines Portrait The Parliamentary Under-Secretary of State for the Home Department (Miss Sarah Dines)
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It is a pleasure to appear under your chairmanship, Mr Efford. I thank my hon. Friend the Member for Carshalton and Wallington (Elliot Colburn) for introducing today’s debate, and I thank all other colleagues for their valuable interventions and contributions.

The Government recognise that this is a policy issue of huge importance and high public interest. It is therefore right and proper that there is scrutiny of the matters that we have discussed today. In opening, I would like to clarify the Government’s position on the use of animals in science and make some overall comments on progress in this area.

We all benefit from the use of animals in science. That can be through improved knowledge of how tissues and organs work to help find new treatments for disease and illness; the development and safety testing of medicines before they are trialled and then used in humans; the safety testing of chemicals to protect workers and the environment; veterinary research and medicines to support animal health; and the protection of the natural environment and the preservation of species. When we need medical care, we benefit from medicines and medical technologies that are possible due to knowledge gained from the use of animals in research. We trust those medicines are safe to use because of the rigorous testing requirements, including at times the use of animals.

Emma Hardy Portrait Emma Hardy
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There seem to be an awful lot of presumptions in the opening of the Minister’s speech, including presumption that we all benefit from testing on animals, despite the evidence that many Members have provided. I gave two examples, including a case where animals were used for testing, but when a dose 500 times lower was used on humans, it killed five. I ask the Minister to re-evaluate the assumption that humans always benefit from the testing of products on animals.

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Sarah Dines Portrait Miss Dines
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I will make some progress first. Our approach has two fronts. First, robust regulation will ensure that animals are not used where a non-animal alternative could deliver the benefit sought, and secondly, our strategic aim is to facilitate and promote alternatives to animals in scientific research and testing. I therefore believe that we have a shared aim of fully replacing live animals as soon as possible, where that is safe and scientifically possible.

A number of Departments have a stake in the use of animals in science, including: the Department for Business, Energy and Industrial Strategy, which leads on science, research and innovation, including alternatives to the use of animals; the Department of Health and Social Care, which is responsible for the regulation of medicines; and the Department for Environment, Food and Rural Affairs, which is responsible for chemical safety and veterinary medicine regulations. The Home Office does not require or commission the use of animals in science. Instead, we regulate to ensure that all proposals for work are authorised only where there is justified benefit, that animals are used only where there is no alternative, that the minimum number of animals is used, that harm is minimised, and that the animals are appropriately cared for. I reject the narrative suggesting that that is not the case. My colleague Lord Sharpe has ministerial responsibility for this work.

By way of background, the debate on animals in scientific research has at its centre three critical strategic imperatives: first, the delivery of the benefits of the use of animals in scientific research; secondly, the delivery of a rigorous and robust regulatory system; and thirdly, the development of alternatives to the use of live animals in procedures. Taken together, these imperatives drive the Government’s policy on the use of animals in science. I will focus my comments on the issues raised by Members in this interesting debate.

Emma Hardy Portrait Emma Hardy
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Will the Minister give way?

Sarah Dines Portrait Miss Dines
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I will make a little more progress, and then I will, of course, come back. The issues raised include the use of animals in science and its regulation, the commercial breeding of laboratory animals, and the development, promotion and acceptance of non-animal methodologies. To be clear, as was said, the UK has never set out to use animals in science. Instead, we have set out to deliver public safety, world-class health innovations and breakthroughs, and to make life-changing discoveries, from new vaccines and medicines to transplant procedures, anaesthetics and blood transfusions. Indeed, the development of the covid-19 vaccine was possible because of the use of animals in research. The use of animals in science must always be considered in the broader context. Animal research and testing is only ever a small part of a wider programme.