I Study Coronavirus in a Highly Secured Biosafety Lab – Here’s Why I Feel Safer Here Than in the World Outside

By Troy Sutton
It's quiet in the laboratory, almost peaceful. But I'm holding live SARS-CoV-2 in my hands and this virus is not to be taken lightly.
As I dilute the coronavirus to infect cultured cells, I hear the reassuring sound of purified air being blown by my respirator into my breathing space. There are three layers of nitrile and protective materials between me and the virus, and every part of my body is wrapped in protective equipment.
Thanks to these precautions and other features of our high containment lab, I'm not nervous about being up close and personal with this dangerous pathogen.
As an expert on respiratory virus transmission and vaccine development, I've halted all other research in my lab so we can devote our expertise to studying SARS-CoV-2, the virus that causes COVID-19. The goal is to understand the virus and develop a vaccine, fast.
We do this research in what's called a high-containment biosafety level 3-enhanced lab, with stringent precautions in place to protect everyone from the potentially deadly pathogens we work with. In addition to SARS-CoV-2, researchers study the microbes that cause diseases including tuberculosis, anthrax and avian influenza in other facilities of this type across the U.S.
As a result of our precautions, many colleagues have told me they feel safer inside the containment lab than they do shopping for groceries during the pandemic. Here's why.
Biosafety levels are defined by how much risk is involved in working with particular pathogens. The Conversation, CC BY-ND
Suiting Up Like You’re on a Space Mission
When performing a SARS-CoV-2 experiment, my days start by coordinating with a least one of my lab members – we always work in pairs inside containment. We outline the experiment step-by-step, check we have all of the required supplies, confirm and review any procedures and communicate with the facility staff.
First thing on site, we check multiple gauges and monitors to ensure the facility is functioning properly. Then we enter the changeroom, where we remove all of our street clothes, including jewelry and underwear. We don't want to bring any potentially contaminated clothing or items out of containment at the end of the day. "You enter and leave containment as you were at birth" is our saying.
We don scrubs, close-toed laboratory shoes, a full-body disposable suit, shoe covers, multiple pairs of gloves and a surgical gown. Most importantly, we also put on our air-purifying respirators. This device includes a Batman-style utility belt that houses a motor attached to an air filter capable of filtering out any infectious agents in the air. Powered by a battery pack that will last at least six hours, the respirator blows purified air up a tube into a hood that covers my entire head and shoulders. The hood is under positive pressure so no air from the environment can enter my breathing space.
Through the clear plastic face shield I can see that we look like astronauts in space suits. Once fully equipped, we enter the containment facility and proceed to our designated virus culture and animal holding rooms. This whole process has taken between 30 and 45 minutes.
Inside the lab, experiments are done under a vented hood that sucks air away to be filtered. Penn State, CC BY-ND
What’s Inside?
The facility itself is a giant vacuum. All of the air flows from outside into the lab. It exhausts through air filters that remove any stray infectious agents. The facility is designed to accommodate failures. If one filter fails, there's a second one, and all work stops until both are working again.
Within this space our work is divided into rooms where we grow virus in cells in plastic dishes. There are separate spaces where we house animals that we use to evaluate how the virus is transmitted and if our vaccines are working.
When we're done for the day, the materials we used are treated with bleach or stored safely. All waste is sealed in plastic bags and treated in a pressurized, high-heat oven called an autoclave to ensure any remaining virus is dead.
To leave the lab, as we move through various anterooms toward the exit, at every stage we remove a layer of gloves and protective equipment. We also regularly spray our suits and respirators with powerful disinfectants. At the last step, we remove our respirator and scrubs and "shower out" of the facility. Even the wastewater from the shower is boiled for an hour under high pressure to kill any microorganisms.
The only living thing that leaves the facility is the scientist.
An exterior view of the Eva J. Pell BSL-3 containment laboratory at Penn State. Penn State, CC BY-ND
Training and Oversight
Many of the safety precautions around working in a high containment facility happen long before a researcher steps foot on the site. To gain access to this laboratory, I underwent an extensive FBI and police background check.
I was subject to a medical exam, and my lung capacity was tested. I was vaccinated against influenza. I'm sure when a COVID-19 vaccine becomes available, I'll get that shot as well.
A rigorous training and testing process made sure I know how to handle agents like SARS-CoV-2 safely, as well as things like what to do during a fire, a bomb threat and even a tornado. Regardless of my over 10 years experience working with viruses, everyone entering the facility is trained from scratch.
Every high containment lab in the U.S. is subject to regular inspections by the U.S. Department of Agriculture, the Centers for Disease Control and Prevention or both. Once open, a facility is reinspected and certified every three years. During the interim, inspectors arrive unannounced to review all aspects of the facility, including maintenance records, inventories of agents and operating procedures. My university also provides oversight.
In addition, there is a myriad of other security features. One of my colleagues once joked that during a zombie apocalypse, the containment lab would be the best place to hide.
Ultimately, all these precautions are in place to help us understand how the SARS-CoV-2 virus is transmitted in animals and determine the optimal vaccine formulation that will prevent transmission. The facility at Penn State, like others throughout the U.S., was built for this type of research so scientists could quickly and safely respond during a pandemic. With a bit of luck, the work done by dedicated researchers in these facilities will help bring the COVID-19 pandemic to an end, sooner than later.
Troy Sutton is an Assistant Professor of Veterinary and Biomedical Sciences, Pennsylvania State University.
Disclosure statement: Troy Sutton receives funding from Centers of Excellence for Influenza Research (CEIRS), the National Institute of Allergy and Infectious Diseases (NIAID), and The Huck Institutes of Life Sciences at Pennsylvania State University.
Reposted with permission from The Conversation.
By Deborah Moore, Michael Simon and Darryl Knudsen
There's some good news amidst the grim global pandemic: At long last, the world's largest dam removal is finally happening.
A young activist for a free-flowing Salween River. A team of campaigners and lawyers from EarthRights International joined Indigenous Karen communities on the Salween in 2018 to celebrate the International Day of Actions for Rivers on March 14. This year, EarthRights joined communities living in the Eu-Wae-Tta internally displaced persons camp for a celebration in solidarity with those impacted by dam projects on the Salween River. EarthRights International
<p>The dam removal project is a sign of the decline of the hydropower industry, whose fortunes have fallen as the <a href="https://www.bbc.com/news/science-environment-46098118" target="_blank" rel="noopener noreferrer">troubling</a> cost-benefit ratio of dams has become clear over the years. The rise of more cost-effective and sustainable energy sources (including wind and solar) has hastened this shift. This is exactly the type of progress envisioned by the <a href="https://www.yumpu.com/en/document/read/17023836/dams-and-development-a-new-framework-for-decision" target="_blank" rel="noopener noreferrer">World Commission on Dams</a> (WCD), a global multi-stakeholder body that was established by the World Bank and International Union for Conservation of Nature in 1998 to investigate the effectiveness and performance of large dams around the world. The WCD released a damning landmark <a href="https://www.un.org/press/en/2000/20001117.dam.pressconferencepm.doc.html" target="_blank" rel="noopener noreferrer">report</a> in November 2000 on the enormous financial, environmental and human costs and the dismal performance of large dams. The commission spent <a href="https://www.un.org/press/en/2000/20001117.dam.pressconferencepm.doc.html" target="_blank" rel="noopener noreferrer">two years</a> analyzing the outcome of the trillions of dollars invested in dams, reviewing dozens of case studies and testimonies from over a thousand communities and individuals, before producing the report.</p><p>But despite this progress, we cannot take hydropower's decline as inevitable. As governments around the world plan for a post-pandemic recovery, hydropower companies sense an opportunity. The industry is eager to recast itself as climate-friendly (<a href="https://www.ecowatch.com/how-green-is-hydropower-1919539525.html" target="_self">it's not</a>) and <a href="https://www.hydropower.org/covid-19" target="_blank">secure</a> precious stimulus funds to revive its dying industry — at the expense of people, the environment and a truly just, green recovery.</p>Hydropower’s Troubling Record
<p>The world's largest hydropower dam removal project on the Klamath River is a significant win for tribal communities. But while the Yurok and Karuk tribes <a href="https://www.karuk.us/images/docs/press/bring_salmon_home.php" target="_blank">suffered</a> terribly from the decline of the Klamath's fisheries, they were by no means alone in that experience. The environmental catastrophe that occurred along the Klamath River has been replicated all over the world since the global boom in hydropower construction <a href="https://www.nationalgeographic.com/environment/article/hydropower" target="_blank">began</a> early in the 20th century.</p><p>The rush to dam rivers has had huge consequences. After decades of rampant construction, only <a href="https://www.nationalgeographic.com/environment/2019/05/worlds-free-flowing-rivers-mapped-hydropower/" target="_blank">37 percent of the world's rivers remain free-flowing</a>, according to <a href="https://www.nature.com/articles/s41586-019-1111-9" target="_blank" rel="noopener noreferrer">one study</a>. River fragmentation has <a href="https://academic.oup.com/bioscience/article/70/4/330/5732594" target="_blank" rel="noopener noreferrer">decimated freshwater habitats and fish stocks</a>, threatening food security for millions of the world's most vulnerable people, and hastening the <a href="https://www.forbes.com/sites/jeffopperman/2020/10/13/freshwater-wildlife-continues-to-decline-but-new-energy-trendlines-suggest-we-can-bend-that-curve/?sh=f9d175a61ee4" target="_blank" rel="noopener noreferrer">decline of other myriad freshwater species</a>, including mammals, birds and reptiles.</p><p>The communities that experienced the most harm from dams — whether in Asia, Latin America or Africa — often lacked political power and access. But that didn't stop grassroots movements from organizing and growing to fight for their rights and livelihoods. The people affected by dams began raising their voices, sharing their experiences and forging alliances across borders. By the 1990s, the public <a href="https://tinyurl.com/y55lnlst" target="_blank" rel="noopener noreferrer">outcry</a> against large dams had grown so loud that it finally led to the establishment of the WCD.</p><p>What the WCD found was stunning. While large dam projects had brought some economic benefits, they had also <a href="https://www.irn.org/wcd/" target="_blank" rel="noopener noreferrer">forcibly displaced an estimated 40 to 80 million people in the 20th century alone</a>. To put that number into perspective, it is more than the current population of present-day <a href="https://data.worldbank.org/indicator/SP.POP.TOTL?locations=FR" target="_blank" rel="noopener noreferrer">France</a> or the <a href="https://data.worldbank.org/indicator/SP.POP.TOTL?locations=GB" target="_blank" rel="noopener noreferrer">United Kingdom</a>. These people lost their lands and homes to dams, and often with no compensation.</p><p>Subsequent research has compounded that finding. A paper published in <a href="https://tinyurl.com/c7uznz" target="_blank" rel="noopener noreferrer">Water Alternatives</a> revealed that globally, more than <a href="https://tinyurl.com/yxw8x7ab" target="_blank" rel="noopener noreferrer">470 million people living downstream from large dams</a> have faced significant impacts to their lives and livelihoods — much of it due to disruptions in water supply, which in turn harm the complex web of life that depends on healthy, free-flowing rivers. The WCD's findings, released in 2000, <a href="https://www.irn.org/wcd/" target="_blank" rel="noopener noreferrer">identified</a> the importance of restoring rivers, compensating communities for their losses, and finding better energy alternatives to save rivers and ecosystems.</p>Facing a New Crisis
<p>Twenty years after the WCD uncovered a crisis along the world's rivers and recommended a new development path — one that advances community-driven development and protects freshwater resources — we find ourselves in the midst of another crisis. The global pandemic has hit us hard, with surging loss of life, unemployment and instability.</p><p>But as governments work to rebuild economies and create job opportunities in the coming years, we have a choice: Double down on the failed, outdated technologies that have harmed so many, or change course and use this transformative moment to rebuild our natural systems and uplift communities.</p><p>There are many reasons to fight for a green recovery. The climate is changing even <a href="https://www.nature.com/articles/d41586-018-07586-5" target="_blank" rel="noopener noreferrer">faster</a> than expected, and some dams — especially those with reservoirs in hot climates — <a href="https://tinyurl.com/w6w29t8" target="_blank" rel="noopener noreferrer">have been found to emit more greenhouse gases than a fossil fuel power plant</a>. Other estimates have put global reservoirs' human-made greenhouse gas emissions each year on par with <a href="https://www.climatecentral.org/news/greenhouse-gases-reservoirs-fuel-climate-change-20745" target="_blank" rel="noopener noreferrer">Canada's</a> total emissions.</p><p>Meanwhile, we now understand that healthy rivers and freshwater ecosystems play a <a href="https://www.environment.gov.au/system/files/resources/b55b1fe4-7d09-47af-96c4-6cbb5f106d4f/files/wetlands-role-carbon-cycle.pdf" target="_blank" rel="noopener noreferrer">critical role in regulating and storing carbon</a>. And at a time when <a href="https://www.un.org/sustainabledevelopment/blog/2019/05/nature-decline-unprecedented-report/" target="_blank" rel="noopener noreferrer">biodiversity loss is soaring</a>, anything we can do to <a href="https://academic.oup.com/bioscience/article/70/4/330/5732594" target="_blank" rel="noopener noreferrer">restore habitat is key</a>. But with <a href="https://www.researchgate.net/publication/271996520_A_Global_Boom_in_Hydropower_dam_Construction" target="_blank" rel="noopener noreferrer">more than 3,700 major dams proposed or under construction</a> in the world (primarily in the Global South, with over <a href="https://news.mongabay.com/2020/08/more-than-500-dams-planned-inside-protected-areas-study/" target="_blank" rel="noopener noreferrer">500 of these in protected areas</a>), according to a 2014 report — and the hydropower industry <a href="https://www.hydropower.org/covid-19" target="_blank" rel="noopener noreferrer">jockeying</a> for scarce stimulus dollars — we must act urgently.</p>Signs of Hope
<img lazy-loadable="true" data-runner-src="https://assets.rebelmouse.io/eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJpbWFnZSI6Imh0dHBzOi8vYXNzZXRzLnJibC5tcy8yNTcxMzUyMS9vcmlnaW4ucG5nIiwiZXhwaXJlc19hdCI6MTYxOTcyNTc3OX0.EbqBVPs2kjhrY5AqnZXOb_GX-s6pw4qyJmmeISzKA6U/img.png?width=980" id="a81d0" class="rm-shortcode" data-rm-shortcode-id="87bc79d69f72e9334a78da8e0355e6ae" data-rm-shortcode-name="rebelmouse-image" data-width="1620" data-height="1068" />Fish catch at the Siphandone on the Mekong River, prior to the completion of the Don Sahong Dam. Pai Deetes / International Rivers
<p>So what would a strong, resilient and equitable recovery look like in the 21st century? Let's consider one example in Southeast Asia.</p><p>Running through six countries, the Mekong River is the world's 12th-longest river, which is home to one of the world's most biodiverse regions, and includes the world's <a href="https://www.worldwildlife.org/places/greater-mekong#" target="_blank" rel="noopener noreferrer">largest</a> inland fishery. Around <a href="https://tinyurl.com/y6jrarjo" target="_blank" rel="noopener noreferrer">80 percent of the nearly 65 million people</a> who live in the Lower Mekong River Basin depend on the river for their livelihoods, according to the Mekong River Commission. In 1994, Thailand built the Pak Mun Dam on a Mekong tributary. <a href="https://tinyurl.com/y5ekfp4h" target="_blank" rel="noopener noreferrer">Six years later</a>, the <a href="https://tinyurl.com/yxcvs6up" target="_blank" rel="noopener noreferrer">WCD studied the dam's performance</a> and submitted its conclusions and recommendations as part of its final report in 2000. According to the WCD report, the Pak Mun Dam did not deliver the peaking energy service it was designed for, and it <a href="https://tinyurl.com/y38p3jaw" target="_blank" rel="noopener noreferrer">physically blocked a critical migration route</a> for a range of fish species that migrated annually to breeding grounds upstream in the Mun River Basin. Cut off from their customary habitat, fish stocks plummeted, and so did the livelihoods of the local people.</p><p>Neighboring Laos, instead of learning from this debacle, followed in Thailand's footsteps, <a href="https://tinyurl.com/y4eaxcq2" target="_blank" rel="noopener noreferrer">constructing two dams on the river's mainstem</a>, Xayaburi Dam, commissioned in 2019, and Don Sahong Dam, commissioned in 2020. But then a sign of hope appeared. In early 2020, just as the pandemic began to spread across the world, the <a href="https://www.theguardian.com/world/2020/mar/20/cambodia-scraps-plans-for-mekong-hydropower-dams" target="_blank" rel="noopener noreferrer">Cambodian government reconsidered its plans to build more dams on the Mekong</a>. The science was indisputable: A government-commissioned report showed that further dams would <a href="https://www.theguardian.com/environment/2018/may/16/leaked-report-warns-cambodias-biggest-dam-could-literally-kill-mekong-river" target="_blank" rel="noopener noreferrer">reduce the river's wild fisheries, threaten critically endangered Irrawaddy dolphins</a> and <a href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2013WR014651" target="_blank" rel="noopener noreferrer">block nutrient-rich sediment from the delta's fertile agricultural lands</a>.</p><p><a href="https://data.opendevelopmentmekong.net/dataset/4f1bb5fd-a564-4d37-878b-c288af460143/resource/5f6fe360-7a68-480d-9ba4-12d7b8b805c9/download/volume-3_solar-alternative-to-sambor-dam.pdf" target="_blank" rel="noopener noreferrer">Studies</a> show that Cambodia didn't need to seek billions of dollars in loans to build more hydropower; instead, it could pursue more cost-effective solar and wind projects that would deliver needed electricity at a fraction of the cost — and <a href="https://www.worldwildlife.org/press-releases/wwf-statement-on-cambodian-government-s-decision-to-suspend-hydropower-dam-development-on-the-mekong-river" target="_blank">without the ecological disasters to fisheries and the verdant Mekong delta</a>. And, in a stunning reversal, Cambodia listened to the science — and to the people — and <a href="https://www.theguardian.com/world/2020/mar/20/cambodia-scraps-plans-for-mekong-hydropower-dams" target="_blank">announced</a> a 10-year moratorium on mainstream dams. Cambodia is now <a href="https://www.voanews.com/east-asia-pacific/cambodia-halts-hydropower-construction-mekong-river-until-2030" target="_blank">reconsidering</a> its energy mix, recognizing that mainstream hydropower dams are too costly and undermine the economic and cultural values of its flagship river.</p>Toward a Green Recovery
<img lazy-loadable="true" data-runner-src="https://assets.rebelmouse.io/eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJpbWFnZSI6Imh0dHBzOi8vYXNzZXRzLnJibC5tcy8yNTcxMzUwOS9vcmlnaW4uanBnIiwiZXhwaXJlc19hdCI6MTY1MTMwMjk0M30.0LZCOEVzgtgjm2_7CwcbFfuZlrtUr80DiRYxqKGaKIg/img.jpg?width=980" id="87fe9" class="rm-shortcode" data-rm-shortcode-id="e6b9bfeb013516f6ad5033bb9e03c5ec" data-rm-shortcode-name="rebelmouse-image" data-width="2100" data-height="3086" />Klamath River Rapids. Tupper Ansel Blake / U.S. Fish and Wildlife Service
<p>Increasingly, governments, civil servants and the public at large are rethinking how we produce energy and are seeking to preserve and restore precious freshwater resources. Dam removals are increasing exponentially across <a href="https://www.americanrivers.org/wp-content/uploads/2020/02/DamsRemoved_1999-2019.pdf" target="_blank">North America</a> and <a href="https://damremoval.eu/wp-content/uploads/2019/03/DRE-policy-Report-2018-digitaal-010319.pdf" target="_blank">Europe</a>, and movements advancing <a href="https://www.rightsofrivers.org/" target="_blank">permanent river protection are growing across Latin America, Asia and Africa</a>.</p><p>We must use the COVID-19 crisis to accelerate the trend. Rather than relying on old destructive technologies and industry claims of newfound "<a href="https://www.hydrosustainability.org/news/2020/11/12/consultation-on-a-groundbreaking-global-sustainability-standard-for-hydropower" target="_blank">sustainable hydropower</a>," the world requires a new paradigm for an economic recovery that is rooted both in climate and economic justice as well as river stewardship. Since December 2020, hundreds of groups and individuals from more than 80 countries have joined the <a href="https://www.rivers4recovery.org/" target="_blank" rel="noopener noreferrer">Rivers4Recovery</a> call for a better way forward for rivers and natural places. This paradigm will protect our rivers as critical lifelines — supporting fisheries, biodiversity, water supply, food production, Indigenous peoples and diverse populations around the world — rather than damming and polluting them.</p><p>The promise of the Klamath dam removals is one of restoration — a move that finally recognizes the immense value of free-flowing rivers and the key role they play in <a href="https://f.hubspotusercontent20.net/hubfs/4783129/LPR/PDFs/Living_Planet_Report_Freshwater_Deepdive.pdf" target="_blank" rel="noopener noreferrer">nourishing both the world's biodiversity and hundreds of millions of people</a>. Healthy rivers — connected to watershed forests, floodplains, wetlands and deltas — are key partners in building resilience in the face of an accelerating climate crisis. But if we allow the hydropower industry to succeed in its <a href="https://www.world-energy.org/article/12361.html" target="_blank" rel="noopener noreferrer">cynical grab for stimulus funds</a>, we'll only perpetuate the 20th century's legacy of suffering and environmental degradation.</p><p>We must put our money where our values are. Twenty years ago, the WCD pointed the way forward to a model of development that takes humans, wildlife and the environment into account, and in 2020, we saw that vision flower along the Klamath River. It's time to bring that promise of healing and restoration to more of the world's rivers.</p><p><em>Deborah Moore is a former commissioner of the <a href="https://www.water-alternatives.org/index.php/alldoc/articles/vol3/v3issue2/79-a3-2-2/file" target="_blank" rel="noopener noreferrer" style="">World Commission on Dams</a>. Michael Simon was a member of the <a href="https://www.hydrosustainability.org/assessment-protocol" target="_blank" rel="noopener noreferrer" style="">Hydropower Sustainability Assessment Forum</a>. Darryl Knudsen is the executive director of <a href="https://www.internationalrivers.org" target="_blank" rel="noopener noreferrer" style="">International Rivers</a>.</em></p><p><em>This article first appeared on <a href="https://truthout.org/articles/damming-rivers-is-terrible-for-human-rights-ecosystems-and-food-security/" target="_blank" rel="noopener noreferrer">Truthout</a> and was produced in partnership with <a href="https://independentmediainstitute.org/earth-food-life/" target="_blank" rel="noopener noreferrer">Earth | Food | Life</a>, a project of the Independent Media Institute.</em></p>EcoWatch Daily Newsletter
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