Connect with us

Technology

“From Canine Fat Tissue to Insulin-Producing Cells”: Chula Veterinary Researchers Offer New Hope for Diabetes Treatment in Pets

Published

on

While diabetes is commonly associated with humans, the disease also affects dogs and cats. Its impact on the quality of life of both pets and their owners is often greater than many people realize.

BANGKOK, Sept. 2, 2026 /PRNewswire/ — In dogs, diabetes is similar to Type 1 diabetes in humans, in which the beta cells in the pancreas that produce insulin are destroyed or lose their function, resulting in a severe insulin deficiency. In cats, the disease is more similar to Type 2 diabetes, in which insulin resistance develops or the pancreas produces insufficient insulin, leading to abnormally high blood sugar levels.  

Veterinary studies have reported that diabetes is found in approximately one in every 300 dogs and cats receiving treatment, although the rate varies among populations and regions. While the number may seem relatively small, diabetes places a significant burden on both affected animals and their owners. Today, dogs with diabetes require daily insulin injections for the rest of their lives. This is the challenge that a research team from the Faculty of Veterinary Science, Chulalongkorn University, has been working to address over the past decade. Drawing on its expertise in stem cells and regenerative veterinary medicine, the team has pursued new approaches to treating diabetes in companion animals. Most recently, the team succeeded in developing stem cell technology from canine adipose (fat) tissue that may pave the way toward a lasting treatment for diabetes in dogs and cats. 

How the “Canine Fat-Derived Beta Cells” Research Began 

After gaining extensive research experience in stem cells and bioengineering in the United States, Assoc. Prof. Chenphop Sawangmake, DVM, PhD, established the Veterinary Stem Cell and Bioengineering Innovation Center (VSCBIC) at the Faculty of Veterinary Science, Chulalongkorn University, in 2013. Among the center’s early research priorities were diseases in companion animals that have no cure, particularly canine diabetes, which requires lifelong treatment. 

“Why should we settle for managing the disease when advances in stem cell science and biomedical engineering may open the door to a genuine cure?” said Assoc. Prof. Chenphop, recalling the idea that inspired the Canine Fat-Derived Beta Cells research project, which aims to transform the treatment of canine diabetes from lifelong management to a cure. 
“We developed a treatment approach by integrating expertise in stem cell technology, tissue engineering, and genetic engineering.”

Why Canine Adipose Tissue? 

Selecting the right source of stem cells was a critical part of the research. The team spent five to six years comparing cells derived from various sources, including bone marrow, oral tissue, and adipose (fat) tissue, before concluding that adipose tissue offered the most practical solution. 

Dr. Saranyou Oontawee, a member of the research team, explained that mesenchymal stem cells (MSCs) derived from adipose tissue offer several advantages over those obtained from bone marrow or umbilical cord tissue. Adipose tissue is easy to collect, highly safe, and, most importantly, yields far greater numbers of stem cells—up to 500 times more than bone marrow. In addition, the tissue can be collected during routine spay or neuter procedures, making the technology more accessible to pet owners without excessive costs.

“Stem cell therapy is no longer out of reach. A small amount of adipose tissue collected during a routine surgical procedure could become the starting point for a treatment that transforms a dog’s life.”
– Dr. Saranyou Oontawee

How Can Adipose Tissue Cells Be Turned into Insulin-Producing Cells? 

Beta cells are found in the pancreas and play a key role in producing insulin to regulate blood sugar levels. In dogs with diabetes, these cells are destroyed or lose their function. The research team’s goal, therefore, was to create replacement beta cells from stem cells isolated from adipose tissue. 

While the concept sounds straightforward, putting it into practice is highly complex. The researchers adopted a “nature-inspired” approach, mimicking the processes that occur during embryonic development, when stem cells gradually differentiate into various organs through a series of developmental stages. In essence, the team sought to “teach” the cells to take on a new role. 

The process relies on two main mechanisms. The first is cellular reprogramming, in which genes that control beta-cell development are introduced directly into stem cells. The second involves controlling the cellular environment by adding a sequence of stimulating biomolecules to carry the cells to their desired shape and function. The research team combined the two mechanisms to obtain the highest quality and quantity of cells.   

 The resulting cells were capable of secreting insulin at levels comparable to those of the natural pancreas. The researchers also detected glucagon secretion, suggesting that the engineered cells possessed the complete cellular characteristics of pancreatic islets (Islets of Langerhans). In addition, the cells demonstrated the ability to lower blood sugar levels in animal models. 

From a Lifetime of Treatment to the Hope of a Cure 

The concept of transplanting insulin-producing cells to replace lost beta cells in animals is no longer just a distant dream. Evidence from international studies has shown that donor beta-cell transplantation can allow some people with diabetes to remain free from insulin injections for years and lead normal lives.

“If these insulin-producing cells continue to show promising results, our goal is to transplant them to replace the beta cells lost to diabetes in companion animals, restoring the body’s ability to produce insulin naturally.”
– Assoc. Prof. Chenphop

He also shared the results of the team’s animal studies. “The findings have been encouraging. Blood sugar levels improved significantly, and the treatment remained within acceptable safety limits. This marks an important step forward, demonstrating that the concept can work in practice and not just in theory.” 

Regenerative Medicine and the Future of Disease Treatment in Companion Animals 

As regenerative medicine continues to advance and gain wider public attention, the research team faces two challenges simultaneously. The first is developing cells that are effective, safe, and stable after transplantation. The second is building public trust by demonstrating that the research adheres to rigorous scientific standards, ensuring that any treatment brought into practice is both effective and safe. 

“Today, exaggerated claims about stem cell therapies are widespread in the marketplace, despite the lack of scientific evidence supporting their effectiveness and safety,” said Assoc. Prof. Chenphop. “One of our priorities is to help the public understand that stem cell therapy is not a miracle cure for every disease. People need to make informed decisions and critically evaluate whether the information they receive is supported by credible evidence.” 

Assoc. Prof. Chenphop added that even if cell-based therapy for diabetes eventually becomes a reality, the team would not see it as the end goal but rather the beginning of the next phase. The knowledge and techniques developed through this research could be applied to a wide range of diseases caused by organ degeneration, including disorders of the eye, bone, liver, and kidney, without having to start from scratch. 

Moreover, some of this knowledge can be shared between veterinary and human medicine. In certain cases, animal models may provide insights that are difficult to obtain through conventional models used in human medical research, allowing some technologies and approaches to be translated directly between the two fields. 

The Team’s Current Research Progress 

Eight years after the project began, the research has successfully demonstrated its potential in animal models. The team is now moving full speed ahead into the next phase of development. 

“Our team is currently scaling up beta-cell production to the pilot scale, using microfluidics technology to generate millions of beta-cell clusters,” said Dr. Saranyou Oontawee. “In practice, transplantation requires large numbers of beta cells that are robust, functional, and capable of surviving long-term after transplantation,” said Dr. Saranyou. 

The team is also pursuing a complementary approach through exosome therapy, which uses substances secreted by stem cells to help repair damaged pancreatic tissue. The results have shown that damaged pancreases can recover following exosome treatment, with outcomes that exceeded the researchers’ expectations. 

Assoc. Prof. Chenphop added: “Our next step is to further expand production capacity and begin studies in the target animal population.” The team expects that within the next two to three years, it will be able to begin testing the therapy in dogs with diabetes and make the treatment available not long thereafter. 

A New Hope for Companion Animals and Veterinary Medicine in Thailand 

From a small laboratory established 13 years ago to a growing research center with a spin-off company and more than six petty patents, VSCBIC has demonstrated that Thai research can create technologies with global relevance. 

“Our goal is to serve society by generating knowledge and developing technologies that people can truly rely on,” said Assoc. Prof. Chenphop. 

Dr. Saranyou added, “As part of the effort to advance companion animal health technologies in Thailand—particularly Exosome Therapy, an area in which Thailand is currently at the forefront. What gives us the greatest sense of pride is seeing our research translate into meaningful improvements in the lives of pets and their owners.” 

In closing, Assoc. Prof. Chenphop noted that the team continues to welcome young scientists and veterinarians who are interested in joining its research efforts or pursuing careers in regenerative medicine. The field is rapidly growing and needs the energy and commitment of the next generation of researchers. For pet owners whose animals suffer from conditions that are difficult to treat, regenerative medicine may offer new possibilities in the not-too-distant future. 

For more information on regenerative medicine and animal stem cell technology, visit The research team

Website: www.cuvscbic.comSpin-off  http://www.bioinkcu.com/CU Innovation Hub website: https://cuihub.chula.ac.th/?lang=thFaculty of Veterinary Science, Chulalongkorn University website: https://www.vet.chula.ac.th/

Continue reading a full article on the website: https://www.chula.ac.th/en/highlight/421557/

Chulalongkorn University has been ranked Thailand’s No. 1 university for the 17th consecutive year (since 2009) in the newly released QS World University Rankings 2026. The university is ranked 221st in the world and places among the world’s Top 100 in two key indicators: Academic Reputation (89th) and Employment Outcomes (64th).

 

View original content to download multimedia:https://www.prnewswire.com/apac/news-releases/from-canine-fat-tissue-to-insulin-producing-cells-chula-veterinary-researchers-offer-new-hope-for-diabetes-treatment-in-pets-302867364.html

SOURCE Chulalongkorn University

Continue Reading
Click to comment

Leave a Reply

Your email address will not be published. Required fields are marked *

Technology

Epsilor’s New Ultra High Capacity 6T Batteries for Military Vehicles Outperform Market with 4,400Wh/174Ah Energy Capacity

Published

on

By

Epsilor’s COMBATT 6T battery provides the highest energy density and capacity in the world. MIL-PRF-32356C compliant and NATO standard, Epsilor’s newest 6T is currently under production and will be showcased at the International Defence Industry Exhibition (MSPO) in Kielce, Poland, September 8 – 11, 2026.

KIELCE, Poland, Sept. 2, 2026 /PRNewswire/ — Epsilor Electric Fuel Ltd., an Ignium company and world-recognized developer and manufacturer of smart Li-Ion batteries and charging solutions, announced that its flagship COMBATT ELI-52526-GM 6T has entered full production. MIL-PRF- 32565C and NATO-standard compliant, Epsilor’s 6T battery supplies the highest energy in its category at 4,400Wh / 174Ah.

Epsilor’s COMBATT 6T battery is designed for military vehicles, deployable tactical autonomous power systems, mobile command posts, tactical shelters, and deployable weapon systems. The COMBATT ELI-52526-GM 6T with the highest energy in its class enables longer silent watch missions while reducing fuel consumption, maintenance requirements and overall vehicle lifecycle costs. The ruggedized battery pack is designed for harsh military environments to support modern hybrid vehicle architectures, high-power payloads, electronic warfare systems, sensors, and communications equipment.

“Our goal was to redefine what users can expect from their 6T battery on the battlefield,” said Ronen Badichi, General Manager & CEO of Epsilor Electric Fuel. “Growing demand among our defense customers for higher energy 6T batteries pushed us to expedite production and we are proud to introduce this product ahead of schedule.”

“Demand for energy is always a challenge,” said Merav Kolody Shubeli, Sr. Director of International Sales at Epsilor. “We accelerated the scale-up process from development to battery production to meet the needs of our clients.”

The COMBATT 6T will be displayed at MSPO alongside Epsilor’s full range of military batteries and chargers with the highest energy density.

About Epsilor

Epsilor Electric Fuel Ltd. is a world recognized developer and producer of smart batteries, chargers, and mobile power management systems for defense, aerospace, medical, transportation, industrial, and marine applications. 

About Ignium

Ignium is a purpose-built merchant provider of components and solutions for current and next-generation weapons systems to the U.S. and allied defense industrial base.

To learn more, visit Epsilor (www.epsilor.com), or follow us on LinkedIn.

Contact:
Merav Kolody Shubeli,
Senior Director, International Sales & Marketing
Epsilor Electric Fuel Ltd.
merav.ks@epsilor.com
+972-52-8600364

 

View original content:https://www.prnewswire.co.uk/news-releases/epsilors-new-ultra-high-capacity-6t-batteries-for-military-vehicles-outperform-market-with-4-400wh174ah-energy-capacity-302867377.html

Continue Reading

Technology

Fibocom Launches RU311 5G RedCap Module Series for Streamlined 5G Upgrades in Mid-Tier IoT

Published

on

By

SHENZHEN, China, Sept. 2, 2026 /PRNewswire/ — For many IoT devices, upgrading to 5G is not simply about achieving higher bandwidth. Industrial gateways, security and surveillance systems, aftermarket automotive applications, energy applications and MiFi devices often have different priorities. Reliable connectivity, power efficiency, cost and product development efficiency can matter just as much.

To address these requirements, Fibocom has launched the RU311 5G RedCap module series. The new series offers customers a practical option for upgrading mid-tier IoT devices from 4G to a streamlined 5G architecture.

Built on the UNISOC V527 platform, the RU311 supports 5G RedCap and is also compatible with LTE Cat.4. It provides a flexible upgrade path between traditional 4G and higher-end 5G for mid-tier IoT applications.

A Streamlined Path to 5G for Mid-Tier IoT Devices

For these devices, the key to a 5G upgrade is not simply higher speed. The more important question is whether 5G can meet actual application requirements with the right balance of performance, power consumption and cost.

The RU311 supports dual-mode 5G RedCap and LTE Cat.4 connectivity. In 5G RedCap mode, it delivers peak downlink speeds of up to 226 Mbps and uplink speeds of up to 120 Mbps. In LTE mode, peak speeds reach 150 Mbps downlink and 50 Mbps uplink.

These data rates can support applications such as status reporting, remote control, video uplink, mobile broadband access and industrial data transmission.

For customers planning product upgrades, the RU311 balances 5G evolution with power and cost considerations. It helps existing mid-tier IoT devices transition more smoothly from 4G to 5G.

Compatible Design Reduces Upgrade Effort

The challenge of upgrading a device often extends beyond the wireless standard itself. Manufacturers may also need to redesign the motherboard, adapt interfaces, complete testing and validation, and manage a new product introduction cycle.

The RU311 LGA variant comes in a compact 32 mm × 29 mm × 2.4 mm package. Its pin layout is designed with compatibility considerations for Fibocom’s FG132 RedCap module and NL668/L716 Cat.4 modules. This makes it easier for customers to develop 4G and 5G products on compatible hardware designs.

For customers with existing 4G platforms, this approach can reduce hardware migration and repetitive development work. It also allows more development resources to be focused on application experience, use-case adaptation and product introduction.

Multiple Form Factors Accelerate Product Development

The RU311 series is available in LGA, M.2 and Mini PCIe form factors to support different device designs and development stages.

The M.2 variant is suited for rapid validation and platform integration. The Mini PCIe variant can be integrated into industrial gateways, routers, industrial PCs and embedded platforms. These options can reduce hardware adaptation work and accelerate product development.

The RU311 series supports protocols including TCP/UDP, HTTP/HTTPS, SSL and MQTT. It also provides interfaces such as USB, UART, RGMII, SDIO, I2C, SPI and GPIO.

Together, these capabilities support key functions across device connectivity, remote operations and maintenance, data transmission and platform integration.

“RedCap further expands the application potential of 5G in the mid-tier IoT market. It gives more devices a new technology option for balancing performance, power consumption and cost,” said a representative from UNISOC.

“The Fibocom RU311 is built on the UNISOC V527 platform. We will continue to deepen our collaboration with Fibocom and jointly expand the application scope and ecosystem of RedCap technology.”

Kony Li, General Manager of Fibocom’s MTC Business Unit, said, “As IoT devices evolve from 4G to 5G, different types of devices require connectivity capabilities that match their specific business needs. The RU311 further expands Fibocom’s 5G RedCap portfolio.”

“Going forward, Fibocom will continue working with UNISOC to advance RedCap product innovation. We aim to provide customers with a broader range of adaptable 5G connectivity options and support the continued evolution of different types of IoT devices.”

The launch of the RU311 series further strengthens Fibocom’s multi-platform, multi-form-factor 5G RedCap portfolio. It will also help accelerate RedCap adoption across a broader range of mid-tier IoT applications.

About Fibocom

Fibocom, founded in 1999, is China’s first wireless communication module company listed on both the A-share and H-share markets. Fibocom leverages wireless communication and artificial intelligence as its core technologies to provide integrated hardware and software solutions that empower industry applications. These solutions accelerate the transformation from “Connect Everything” to “Intelligent Connectivity” across diverse industries.

Fibocom’s one-stop solutions encompass cellular communication, AI, automotive, and GNSS modules, as well as AI toolchains, supporting industry-side and mainstream large model integration, and providing AI Agent, global connectivity, and cloud services, driving the digital intelligence upgrades in industries such as robotics, consumer electronics, low-altitude economy, intelligent transportation, smart retail, and smart energy.

View original content to download multimedia:https://www.prnewswire.com/news-releases/fibocom-launches-ru311-5g-redcap-module-series-for-streamlined-5g-upgrades-in-mid-tier-iot-302867472.html

SOURCE Fibocom Wireless Inc.

Continue Reading

Technology

BTL Establishes New Laser Division and Introduces EXOLASE ONE® – The World’s First Fused Erbium Laser

Published

on

By

Proprietary technology fuses multiple wavelengths into a single beam to set a new standard of care in laser facial rejuvenation.

PRAGUE, Sept. 2, 2026 /PRNewswire/ — BTL, a global leader in advanced energy-based medical and aesthetic technologies, today announced a major milestone in its corporate history: the official establishment of its dedicated laser division and the upcoming launch of its flagship laser system, EXOLASE ONE®.

EXOLASE ONE® is a major leap in the aesthetic industry as the first-ever application of fused erbium laser technology in medical practice. The system fuses multiple erbium laser wavelengths into a single beam of light, treating the exact same spot simultaneously. This creates a completely new form of laser-tissue interaction that overcomes the traditional limitations of existing facial rejuvenation lasers regarding clinical efficacy, speed of treatment, and patient comfort.

“The technology covers what normally requires multiple ablative and non-ablative systems, transforming it into a remarkably simple procedure that treats the entire face in under 10 minutes while delivering superior results for our patients,” said Dr. Reha Yavuzer, one of the first clinical investigators for the platform.

EXOLASE ONE® is the latest high-tech breakthrough originating from BTL’s extensive R&D infrastructure, which has powered many of the company’s industry-defining innovations.

“This is a historic moment for BTL. From the beginning, we knew that only a genuinely disruptive technology would allow us to build a true laser powerhouse,” said Tomas Schwarz, CEO of BTL Group of Companies. “Based on feedback from pioneering clinical centers worldwide, EXOLASE ONE® represents exactly this kind of breakthrough.”

Following an early-access program for selected key opinion leaders, EXOLASE ONE® will move to a broader global launch in 2027, initially focused on aesthetic medicine and dermatology. The new laser division becomes BTL’s sixth core division, complementing its existing operations in aesthetics, mental wellness, rehabilitation, cardiology, and robotics.

About BTL

Founded in 1993, BTL has grown to become one of the world’s major medical and aesthetic equipment manufacturers. With over 5,000 employees located in more than 90 countries, BTL has revolutionized the industry by offering the most advanced non-invasive solutions for body shaping, skin tightening, facial rejuvenation, mental health, rehabilitation and cardiology. BTL’s pioneering brands include EMSCULPT NEO®, EMFACE®, EMSELLA®, EXOMIND® and many others. For more information about BTL and its portfolio of medical innovations, please visit www.btlaesthetics.com.

Press team: media@btlnet.com 

 

 

View original content to download multimedia:https://www.prnewswire.co.uk/news-releases/btl-establishes-new-laser-division-and-introduces-exolase-one–the-worlds-first-fused-erbium-laser-302867440.html

Continue Reading

Trending