Lab space race

Finding lab space for startups and independent researchers in Houston needs to be easier, according to this expert

Rentable lab space is hard to come by. Getty Images

Finding coworking space is getting easier and easier for startups, but the same can't be said for startups looking for lab space. If Houston wants to continue to grow and develop its innovation ecosystem — specifically within research and development in the health sciences industry — the city needs more opportunities for small lab space real estate.

A little history

Houston has increasingly become a magnet for innovative life science companies, seeking to benefit from the Texas Medical Center's cadre of connections and the city's deep talent pool. While cutting edge research and licensed technology has long been a part of the TMC institutions and Houston landscape, until 2016, independent lab users had few options to start and grow their companies.

In March of 2016, JLabs at TMCx opened its doors, offering 34,000 square feet of shared office space, 22 private labs and two shared lab spaces. University of Houston's Innovation Center, located in a repurposed Schlumberger campus, began operation in September of the same year, offering 16 private labs and two shared lab spaces.

These two alternatives are fit out with benches and other specialized equipment and price their space similar to a furnished coworking model. However, both facilities have a preference for certain users.

In the case of UH's space, its priority is to accommodate companies that are licensing and commercializing university technology. JLabs also has a curated tenant pool — drawn from the local and national companies that fit their specific profile. Sharing lab space is not a fit for every company — especially those that are regulated or prohibited from doing so. What appears to be an unmet need is affordable independent lab space for companies ready to launch from shared space.

Unique requirements

Aside from equipment that must be purchased and installed, lab users require more electrical power, plumbing, and air-conditioning than typically found in available suites in independent office parks. Second generation lab space under 2,000 square feet is extremely hard to find, and traditional landlords prefer a 5-year lease commitment.

While several new projects have been announced — and a new crop of landlords are trying to capitalize on the city's increased demand for specialized space — their pricing model is a better fit for established companies. From a user perspective, given the capital constraints of early stage life science companies, it is worth exploring the option to convert traditional warehouse space for lab use in exchange for a medium term commitment.

Buyer beware

Migrating from a full service lab to an independent suite does come with a warning, however, especially if a company is regulated and the condition of the space is subject to inspection. Lab tenants are well advised to factor in issues like the age of the air-conditioning units, whether a future backup power source is permitted, and the method for removal of medical waste. For firms that are in the pre-revenue stage, they should also be prepared to pay some amount of prepaid rent and the cost of customized alterations.

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Julie King is president of NB Realty Partners. She has mentored and provided commercial real estate advice to technology, biotech, and early-stage companies for over 20 years.

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At-home COVID-19 testing is about to get lit. Photo via Getty Images

A Houston-based research team is tapping glow-in-the-dark materials to upgrade at-home rapid COVID-19 testing.

Researchers at the University of Houston have been rethinking the lateral flow assay (LFA) test used for at-home COVID-19 diagnostics. The traditional method indicates the sample's results with colored lines.

“We are making those lines glow-in-the-dark so that they are more detectable, so the sensitivity of the test is better,” says Richard Willson, a professor at the University of Houston, in a UH news release. He previously created a smartphone-based diagnostics app.

Willson's inspiration came from a familiar and nostalgic method — the glow-in-the-dark stars in a child's bedroom. In Willson's case, it was his daughter's bedroom, and within a few days his team of students and postdocs was designing a test featuring glowing nanoparticles made of phosphors.

The team evolved into a spin-off company called Clip Health, originally founded as Luminostics by two of the researchers. The operation is again evolving with new glowing applications.

“In this new development, there are two tricks. First, we use enzymes, proteins that catalyze reactions, to drive reactions that emit light, like a firefly. Second, we attached those light-emitting enzymes onto harmless virus particles, along with antibodies that bind to COVID proteins,” says Willson in the Royal Society of Chemistry’s journal Analyst.

The test now also can be read with a smartphone app. The group is also entertaining additional tests for other diseases.

“This technology can be used for detecting all kinds of other things, including flu and HIV, but also Ebola and biodefense agents, and maybe toxins and environmental contaminants and pesticides in food,” says Willson.

In addition to Willson, the original technology was explained in a paper with co-authors:

  • Katerina Kourentzi, University of Houston research associate professor of chemical and biomolecular engineering
  • Jacinta Conrad, Frank M. Tiller Associate Professor of Chemical and Biomolecular Engineering,
  • UH researchers Maede Chabi, Binh Vu, Kristen Brosamer, Maxwell Smith, and Dimple Chavan

Researcher Richard Willson says he was inspired by the glow-in-the-dark scars on his daughter's bedroom ceiling. Photo via UH.edu

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