With Clutch, connecting brands with creators has never been easier and more inclusive. Photo courtesy of Clutch

An app that originally launched on Houston college campuses has announced it's now live nationwide.

Clutch founders Madison Long and Simone May set out to make it easier for the younger generation to earn money with their skill sets. After launching a beta at local universities last fall, Clutch's digital marketplace is now live for others to join in.

The platform connects brands to its network of creators for reliable and authentic work — everything from social media management, video creation, video editing, content creation, graphic design projects, and more. With weekly payments to creators and an inclusive platform for users on both sides of the equation, Clutch aims to make digital collaboration easier and more reliable for everyone.

“We’re thrilled to bring our product to market to make sustainable, authentic lifestyles available to everyone through the creator economy," says May, CTO and co-founder of Clutch. "We’re honored to be part of the thriving innovation community here in Houston and get to bring more on-your-own-terms work opportunities to all creators and businesses through our platform.”

In its beta, Clutch facilitated collaborations for over 200 student creators and 50 brands — such as DIGITS and nama. The company is founded with a mission of "democratizing access to information and technology and elevating the next generation for all people," according to a news release from Clutch. In the beta, 75 percent of the creators were people of color and around half of the businesses were owned by women and people of color.

“As a Clutch Creator, I set my own pricing, schedule and services when collaborating on projects for brands,” says Cathy Syfert, a creator through Clutch. “Clutch Creators embrace the benefits of being a brand ambassador as we create content about the products we love, but do it on behalf of the brands to help the brands grow authentically."

The newly launched product has the following features:

  • Creator profile, where users can share their services, pricing, and skills and review inquiries from brands.
  • Curated matching from the Clutch admin team.
  • Collab initiation, where users can accept or reject incoming collab requests with brands.
  • Collab management — communication, timing, review cycles — all within the platform.
  • In-app payments with a weekly amount selected by the creators themselves.
  • Seamless cancellation for both brands and creators.
Clutch raised $1.2 million in seed funding from Precursor Ventures, Capital Factory, HearstLab, and more. Clutch was originally founded as Campus Concierge in 2021 and has gone through the DivInc Houston program at the Ion.

Madison Long, left, and Simone May co-founded Clutch. Photo courtesy of Clutch

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Houston doctor wins NIH grant to test virtual reality for ICU delirium

Virtual healing

Think of it like a reverse version of The Matrix. A person wakes up in a hospital bed and gets plugged into a virtual reality game world in order to heal.

While it may sound far-fetched, Dr. Hina Faisal, a Houston Methodist critical care specialist in the Department of Surgery, was recently awarded a $242,000 grant from the National Institute of Health to test the effects of VR games on patients coming out of major surgery in the intensive care unit (ICU).

The five-year study will focus on older patients using mental stimulation techniques to reduce incidences of delirium. The award comes courtesy of the National Institute on Aging K76 Paul B. Beeson Emerging Leaders Career Development Award in Aging.

“As the population of older adults continues to grow, the need for effective, scalable interventions to prevent postoperative complications like delirium is more important than ever,” Faisal said in a news release.

ICU delirium is a serious condition that can lead to major complications and even death. Roughly 87 percent of patients who undergo major surgery involving intubation will experience some form of delirium coming out of anesthesia. Causes can range from infection to drug reactions. While many cases are mild, prolonged ICU delirium may prevent a patient from following medical advice or even cause them to hurt themselves.

Using VR games to treat delirium is a rapidly emerging and exciting branch of medicine. Studies show that VR games can help promote mental activity, memory and cognitive function. However, the full benefits are currently unknown as studies have been hampered by small patient populations.

Faisal believes that half of all ICU delirium cases are preventable through VR treatment. Currently, a general lack of knowledge and resources has been holding back the advancement of the treatment.

Hopefully, the work of Faisal in one of the busiest medical cities in the world can alleviate that problem as she spends the next half-decade plugging patients into games to aid in their healing.

Houston scientists develop breakthrough AI-driven process to design, decode genetic circuits

biotech breakthrough

Researchers at Rice University have developed an innovative process that uses artificial intelligence to better understand complex genetic circuits.

A study, published in the journal Nature, shows how the new technique, known as “Combining Long- and Short-range Sequencing to Investigate Genetic Complexity,” or CLASSIC, can generate and test millions of DNA designs at the same time, which, according to Rice.

The work was led by Rice’s Caleb Bashor, deputy director for the Rice Synthetic Biology Institute and member of the Ken Kennedy Institute. Bashor has been working with Kshitij Rai and Ronan O’Connell, co-first authors on the study, on the CLASSIC for over four years, according to a news release.

“Our work is the first demonstration that you can use AI for designing these circuits,” Bashor said in the release.

Genetic circuits program cells to perform specific functions. Finding the circuit that matches a desired function or performance "can be like looking for a needle in a haystack," Bashor explained. This work looked to find a solution to this long-standing challenge in synthetic biology.

First, the team developed a library of proof-of-concept genetic circuits. It then pooled the circuits and inserted them into human cells. Next, they used long-read and short-read DNA sequencing to create "a master map" that linked each circuit to how it performed.

The data was then used to train AI and machine learning models to analyze circuits and make accurate predictions for how untested circuits might perform.

“We end up with measurements for a lot of the possible designs but not all of them, and that is where building the (machine learning) model comes in,” O’Connell explained in the release. “We use the data to train a model that can understand this landscape and predict things we were not able to generate data on.”

Ultimately, the researchers believe the circuit characterization and AI-driven understanding can speed up synthetic biology, lead to faster development of biotechnology and potentially support more cell-based therapy breakthroughs by shedding new light on how gene circuits behave, according to Rice.

“We think AI/ML-driven design is the future of synthetic biology,” Bashor added in the release. “As we collect more data using CLASSIC, we can train more complex models to make predictions for how to design even more sophisticated and useful cellular biotechnology.”

The team at Rice also worked with Pankaj Mehta’s group in the department of physics at Boston University and Todd Treangen’s group in Rice’s computer science department. Research was supported by the National Institutes of Health, Office of Naval Research, the Robert J. Kleberg Jr. and Helen C. Kleberg Foundation, the American Heart Association, National Library of Medicine, the National Science Foundation, Rice’s Ken Kennedy Institute and the Rice Institute of Synthetic Biology.

James Collins, a biomedical engineer at MIT who helped establish synthetic biology as a field, added that CLASSIC is a new, defining milestone.

“Twenty-five years ago, those early circuits showed that we could program living cells, but they were built one at a time, each requiring months of tuning,” said Collins, who was one of the inventors of the toggle switch. “Bashor and colleagues have now delivered a transformative leap: CLASSIC brings high-throughput engineering to gene circuit design, allowing exploration of combinatorial spaces that were previously out of reach. Their platform doesn’t just accelerate the design-build-test-learn cycle; it redefines its scale, marking a new era of data-driven synthetic biology.”