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A new way to beat jet lag? Engineered cells speed circadian adjustment

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Peer-reviewed publication highlights the use of encapsulated leptin-producing cells to accelerate circadian realignment in preclinical models

HOUSTON, Aug. 14, 2026 /PRNewswire/ — Adjusting to a new time zone or work schedule can leave the body’s internal clock out of sync for days, contributing to sleep disruption, metabolic changes and other health consequences. Researchers at Rice University, with the support of the Rice Biotech Launch Pad, and Northwestern University have developed an implantable cell therapy that may help the body adapt more quickly to these disruptions.

In a recent study titled “Encapsulated Leptin-Producing Cells Facilitate Entrainment of Circadian Rhythms in Rodents and Nonhuman Primates,” encapsulated cells engineered to continuously produce the metabolic hormone leptin reduced the time required for animals to adjust to shifts in the light-dark cycle that mimic jet lag and shift work. Published in Advanced Science, the study’s indings demonstrate a new approach to regulating circadian rhythms through metabolic signaling and provide early evidence that engineered cell therapies could be used to address circadian disruption.

“Current approaches for adjusting circadian rhythms rely heavily on precisely timed behaviors such as light exposure, meal schedules or melatonin administration,” said Omid Veiseh, professor of bioengineering at Rice and faculty director of the Rice Biotech Launch Pad. “We wanted to explore whether a temporary cell therapy could provide a more practical way to help the body adapt to changing schedules.”

The therapy consists of human retinal pigment epithelial cells engineered to produce leptin, a hormone best known for regulating appetite and metabolism. The cells are encapsulated within microscopic alginate spheres that protect them from the immune system while allowing therapeutic proteins to diffuse into the body. Following a simple subcutaneous injection, the encapsulated cells temporarily elevate circulating leptin levels before naturally losing viability over time.

“Metabolism and circadian rhythms are closely connected, but the therapeutic potential of that relationship remains largely unexplored,” said Martha Hotz Vitaterna, professor of neurobiology at Northwestern University and co-corresponding author on the study. “These findings suggest that metabolic signals can be leveraged to accelerate adaptation to circadian disruptions.”

In mouse studies, animals receiving the leptin-producing cell therapy adjusted significantly faster following both phase advances and phase delays in the light-dark cycle. Mice treated with the therapy adapted to a four-hour schedule delay 50% faster days than in control animals.

To evaluate the translational potential of the approach, the researchers tested the therapy in cynomolgus macaques, whose sleep-wake patterns more closely resemble those of humans. The treatment was well tolerated and reduced entrainment time following six-hour schedule shifts by approximately one day compared to controls.

“The fact that we observed similar effects in both rodents and non-human primates suggests that the underlying biology may be conserved across species,” said Fred Turek, director of Northwestern’s Center for Sleep and Circadian Biology and a senior author on the study.

Researchers monitored multiple physiological indicators of circadian alignment, including activity, heart rate and core body temperature. Across these measures, animals receiving the leptin-producing implants adapted more rapidly to the new schedules than untreated controls.

Importantly, the therapy did not negatively affect sleep. Analysis of sleep architecture in non-human primates showed no reduction in total sleep time, rapid eye movement sleep or non-REM sleep. Researchers also observed increases in slow-wave sleep activity following some schedule shifts, suggesting a potential improvement in sleep quality during recovery.

Beyond demonstrating efficacy, the study also evaluated the safety and practicality of the platform. Blood tests and clinical monitoring showed no signs of significant toxicity in non-human primates, and animals receiving multiple doses over the course of a year experienced no long-term adverse effects. The encapsulated cells remained active for several days before naturally declining, creating a temporary and reversible intervention.

“Our goal was not to permanently alter the circadian system,” Samantha Fleury, first author on the publication, said. “We wanted a therapy that could provide short-term support during periods of disruption and then naturally resolve.”

The researchers believe the platform could eventually be explored for applications involving frequent circadian disruption, including shift work, military operations, international travel and other situations where rapid adaptation to changing schedules is important. Ft

“This work provides further evidence that metabolic pathways can be harnessed to influence circadian biology,” said Jonathan Rivnay, professor of biomedical engineering and materials science and engineering at Northwestern University and a senior author on the study. “More broadly, it demonstrates how engineered cell therapies can be used to deliver biologically active molecules in ways that would be difficult to achieve through conventional dosing.”

The team plans to further investigate the mechanisms linking leptin and circadian regulation and explore next-generation versions of the platform capable of providing tunable or repeatable circadian support.

The research was supported by the 711th Human Performance Wing and the Defense Advanced Research Projects Agency under agreement number FA8650-21-1-7119.

This news release can be found online at news.rice.edu.

Follow Rice News and Media Relations via Twitter @RiceUNews.

Peer-reviewed paper:

Encapsulated Leptin-Producing Cells Facilitate Entrainment of Circadian Rhythms in Rodents and Nonhuman Primates | Advanced Science

Authors: Samantha T. Fleury, Xuanyi Lin, Peter D. Rios, Christopher Olker, Eun Joo Song, Alejandra Cobos Perez, Cody Fell, Daisy Lopez, Ira Joshi, Hafsa Nasir, Cecelia Curtis, Danna Muringi, Kaiyuan Wang, José Oberholzer, Fred W. Turek, Isaac B. Hilton, Jonathan Rivnay, Martha Hotz Vitaterna, Omid Veiseh

About Rice:

Located on a 300-acre forested campus in Houston, Texas, Rice University is consistently ranked among the nation’s top 20 universities by U.S. News & World Report. Rice has highly respected schools of architecture, business, continuing studies, engineering and computing, humanities and arts, music, natural sciences and social sciences and is home to the Baker Institute for Public Policy. Internationally, the university maintains the Rice Global Paris Center, a hub for innovative collaboration, research and inspired teaching located in the heart of Paris. With 4,776 undergraduates and 4,104 graduate students, Rice’s undergraduate student-to-faculty ratio is just under 6-to-1. Its residential college system builds close-knit communities and lifelong friendships, just one reason why Rice is ranked No. 1 for lots of race/class interaction and No. 7 for best-run colleges by the Princeton Review. Rice is also rated as a best value among private universities by the Wall Street Journal and is included on Forbes’ exclusive list of “New Ivies.”

If you do not wish to receive news releases from Rice University, reply to this email and write “unsubscribe” in the subject line. Rice University, Office of News and Media Relations–MS 300, 6100 Main St., Houston, TX 77005.

About the Rice Biotech Launch Pad:  

The Rice Biotech Launch Pad is a Houston-based accelerator focused on expediting the translation of Rice University’s health and medical technology discoveries into cures. This initiative is designed to help advance internally discovered platform technologies from concept to clinical studies and commercialization. The Rice Biotech Launch Pad will identify and support highly differentiated projects while driving the expansion of Houston as a world-class medical innovation ecosystem. The accelerator will bring together local researchers with a network of industry executives. For more information, please visit https://biotechlaunchpad.rice.edu/.

Media Contact:

Russo Partners
David Schull or Liz Phillips
(347) 956-7697
david.schull@russopartnersllc.com 
elizabeth.phillips@russopartnersllc.com

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DREO to Unveil New Air Products, Technologies and Air Intelligence at IFA 2026

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CLIFTON, N.J., Aug. 14, 2026 /PRNewswire/ — DREO, a global smart home brand, today announced its participation at IFA 2026 in Berlin, Germany, from September 4 to 8 under the theme “AIR, Mastered.”

At the show, DREO will unveil its new Air Purifier lineup led by its latest flagship model, preview next-generation heating technologies featuring a new adaptive airflow innovation, and introduce DREO Air Intelligence, the company’s AI-powered system for more intelligent home air management.

Visitors to the DREO booth will experience:

New Air Purifier lineup, led by DREO’s latest flagship model and featuring the company’s newest purification technologies, immersive user experiences and connected smart capabilities.Next-generation Heating Technologies, introducing a new adaptive airflow innovation that seamlessly transitions between focused warmth and whole-room heating, offering an early preview of DREO’s upcoming winter innovations.DREO Air Intelligence, an AI-powered system that combines environmental sensing, intelligent reasoning and coordinated device control to enable smarter home air management.

“People don’t experience home wellness through a single product. They experience it through the air around them,” said Olivia Xu, Chief Marketing Officer at DREO. “For us, mastering air has never been just about stronger airflow, faster heating or better purification. It’s about making air itself work more intelligently for people. At IFA, we’re bringing together new air products, breakthrough heating technologies and DREO Air Intelligence to show how air can better understand the home, adapt to changing needs and create a smarter everyday living experience.”

DREO’s new Air Purifier and heating technologies are both designed around how air moves through the home. DREO Air Intelligence extends that same focus across connected devices, coordinating purification, heating and future products around real-time conditions in the home.

Beyond its product and technology showcases, DREO will also take the IFA Dream Stage for a panel discussion titled “How Air, Connectivity and Intelligence Bridge the Last Mile of Home Wellness.”

The session will be moderated by Anna Heim of TechCrunch, with featured speaker Tobin Richardson, President & CEO of the Connectivity Standards Alliance, alongside industry leaders from smart home, connected health and home air management. The discussion will explore how AI, connectivity home air management can move beyond basic automation to make home wellness more responsive, personalized and meaningful in everyday life.

For those attending in person, visit the DREO booth at Hall 9, Stand 130, Messe Berlin from September 4 to 8 and join the Dream Stage panel at Hall 25, Messe Berlin on Friday, September 4, 2026, from 12:45 to 13:15 CEST. Please click here to register the DREO IFA panel. For more information and press materials, visit here

ABOUT DREO

DREO, the home tech pioneer transforming everyday comfort through innovation and elegant design, continues to redefine modern living. Specializing in air comfort and smart kitchen solutions, DREO has earned the trust of over 30 million users. Proudly becoming the No.1 U.S. Home Comfort Growth Brand for Two Consecutive Years* and the No. 1 Household Fan Brand on Amazon U.S.** for Three Consecutive Years, DREO’s products are known for their exceptional performance, energy efficiency, and seamless smart home integration, delivering both convenience and sustainability to households across the globe.

For more details visit: https://www.DREO.com/
Follow us on Facebook: https://www.facebook.com/DREOHome
Follow us on Instagram:
https://www.instagram.com/DREO.home/
https://www.instagram.com/DREO.kitchen/
Follow us on TikTok: https://www.tiktok.com/@DREOhome

*Source: Circana Retail Tracking Service. DREO was named the 2026 Winner in the U.S. Home Comfort category for Top Increase in Market Share (12 months ending October 2025), and the 2025 Winner for the Largest Dollar Share Increase in the U.S. Home Comfort category (12 months ending December 2024).

**Source: Ranking based on Stackline data for Amazon US retail sales of household fans from January 2022 to January 2025.

 

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Hadrian Closes $360 Million Revolving Credit Facility to Accelerate the Buildout of Its U.S. Manufacturing Footprint

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Capital will support the company’s ability to invest in manufacturing infrastructure and meet production goals across critical programs

TORRANCE, Calif., Aug. 14, 2026 /PRNewswire/ — Hadrian, the advanced manufacturing company building highly automated factories for America, today announced the closing of a $360 million revolving credit facility. This facility allows Hadrian to further invest in the advanced manufacturing infrastructure, machinery, and related hardware needed to achieve its production goals.

The financing was arranged by a leading group of financial firms, underscoring strong institutional support for Hadrian’s continued growth. Morgan Stanley Senior Funding Inc. served as Lead Left Arranger and Bookrunner, with additional joint lead arrangers and bookrunners Western Alliance Bank, J. P. Morgan, First Citizens Bank, Customers Bank, HSBC Ventures USA Inc, Axos Bank, and Texas Capital Securities. The additional funds come a week after Hadrian announced its $1.37 billion Series D fundraise, which valued the company at $7.87 billion.

“This facility’s closing represents a key next step in Hadrian’s growth trajectory, and underscores the institutional confidence in our strategic direction,” said Hadrian CEO and Founder Chris Power. “This financing will play a critical role in facilitating Hadrian’s build out of the industrial capacity the United States needs to remain strategically competitive, while creating thousands of high-quality jobs across the country.”

The raise will directly support Hadrian’s continued expansion across its growing network of U.S. factories as the company scales production for defense and aerospace customers.

Kirkland & Ellis was counsel to Hadrian on the transaction.

About Hadrian
Hadrian is rebuilding America’s industrial base with highly automated factories that combine process engineering, AI, and robotics. Its mission is to help space and defense manufacturers produce full programs at scale in the U.S. while giving American workers the tools to compete globally.

The company operates four facilities covering just under 3 million square feet: two in Torrance, California, and newly launched sites in Arizona and Alabama, with additional sites in development across the country. More information at https://www.hadrian.co/.

Media Contact
press@hadrian.co

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Oklahoma National Guard Soldiers Save Tens of Thousands of Work Hours After Two-Day Skillquest AI Readiness Lab

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Participants Recognized by National Guard Leadership; Prototypes Continue Operating After Training Concludes

LAWTON, Okla., Aug. 13, 2026 /PRNewswire/ — Staff Sgt. Herbert Hailey of the Oklahoma Army National Guard attended a two-day Skillquest AI Readiness Lab in May 2026 and left with a deployed AI tool projected to save 61,000 work hours annually across the Guard. The U.S. Army published an independent account of the achievement on army.mil, the official Army news website.

Hailey entered with no prior platform experience. His tool, built on the Army’s Vantage platform, automates military awards eligibility review. Within the Recruiting and Retention Battalion alone, it eliminates 483 hours of administrative work per award cycle.

Hailey’s prototype was one of several that participants continued developing after the lab. Maj. Christopher Hales built a leadership data dashboard during the course that has since been made operational, projected to save hundreds of Senior Leader hours per year. Both Hailey and Hales were formally recognized for their contributions. Soldiers leave the lab with working tools they continue to build on.

“Watching these Soldiers go from zero to working tools against their own data in two days was genuinely impressive,” said Corbin Fonville, CEO of Skillquest. “Staff Sgt. Hailey’s recognition by General Steven S. Nordhaus and the National Guard Bureau is a testament to what these Soldiers can do when they are given the right training.”

“Staff Sgt. Hailey’s initiative demonstrates the kind of innovation that keeps the Oklahoma National Guard moving forward,” said Maj. Gen. Thomas H. Mancino, Adjutant General of Oklahoma. “Guardsmen at every level are finding new ways to solve problems, improve efficiency and allow our Soldiers and Airmen to focus on what matters most: remaining ready to support our state and federal missions.”

Skillquest coordinates AI Readiness Labs for National Guard and other military units across multiple states. Individual registration options are available for Soldiers and units interested in participating. Learn more at skillquest.io/ailab.

About Skillquest

Skillquest (skillquest.io) is an AI and coding education company serving U.S. military personnel. Its AI Readiness Labs bring participants from zero platform experience to working prototypes in two days, using real organizational data. Skillquest is headquartered in Lawton, Oklahoma.

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