PRESS-NEWS.org - Press Release Distribution
PRESS RELEASES DISTRIBUTION

Engineering the development of the pancreas

Researchers found that the shape of the fluid-filled cavities in the developing pancreas is controlled by pressure and the rate cells divide.

2026-01-09
(Press-News.org) To the point:

Tissue engineering the pancreas: Working with three-dimensional pancreatic models (organoids), derived from mouse cells, researchers combined computer simulations with experiments to find out what controls the shape of lumens (fluid-filled cavities) during the development of the pancreas.

Proliferation, Pressure, Permeability: The shape of the lumen depends on the balance between the cell proliferation rate and the pressure in the lumen. Low pressure and high proliferation produce more complex or ‘star-shaped’ lumens. The pressure in lumens remain low because the surrounding pancreatic tissue is permeable. 

Implications for organ development and disease: The discovered mechanisms can be potentially relevant to other organs with complex ductal systems and to common cystic diseases. Furthermore, these findings could be used to develop new therapeutic strategies, including testing the effects of drugs for diseases.

Organs often have fluid-filled spaces called lumens, which are crucial for organ function and serve as transport and delivery networks. Lumens in the pancreas form a complex ductal system, and its channels transport digestive enzymes to the small intestine. Understanding how this system forms in embryonic development is essential, both for normal organ formation and for diagnosing and treating pancreatic disorders. Despite their importance, how lumens take certain shapes is not fully understood, as studies in other models have largely been limited to the formation of single, spherical lumens. Organoid models, which more closely mimic the physiological characteristics of real organs, can exhibit a range of lumen morphologies, such as complex networks of thin tubes.
 
Researchers in the group of Anne Grapin-Botton, director at the Max Planck Institute of Molecular Cell Biology and Genetics (MPI-CBG) in Dresden, Germany, and also Honorary Professor at TU Dresden, teamed up with colleagues from the group of Masaki Sano at the University of Tokyo (Japan), Tetsuya Hiraiwa at the Institute of Physics of Academia Sinica (Taiwan), and with Daniel Rivéline at the Institut de Génétique et de Biologie Moléculaire et Cellulaire (France) to explore the processes involved in complex lumen formation. Working with a combination of computational modeling and experimental techniques, the scientists were able to identify the crucial factors that control lumen shape. 

Star-shaped lumen resembles real panceas
“Three-dimensional pancreatic structures, also called pancreatic organoids, can form either large spherical lumen or narrow complex interconnected lumen structures, depending on the medium in the dish,” says Byung Ho Lee, postdoctoral researcher in the group of Anne Grapin-Botton and lead author of the study. “By adding specific chemical drugs altering cell proliferation rate and pressure in the lumen, we were able to change lumen shape. We also found that making the epithelial cells surrounding the lumen more permeable reduces pressure and can change the shape of the lumen as well.”
 
“Our model can measure and predict which parameters account for the transitions of the lumen shapes, enabling feedback into the experiments themselves” says Kana Fuji, doctoral student in the research group of Masaki Sano. To understand how individual cells grow and divide and how this affects the formation of the lumen, the research team used a mathematical model in addition to the experiments to simulate the process.

“Our study shows that the shape and structure of the lumen in pancreatic organoids depend on three main factors: how fast cells proliferate, the pressure inside the lumen, and how permeable the cells around the lumen are,” says Anne Grapin-Botton, who supervised the study together with Byung Ho Lee. “This discovery could help us understand how other organs with narrow interconnected ducts develop and how common cystic diseases affect them. Our model system could further research in the field of organ development and tissue engineering and also potentially be used to test how different drugs affect diseases, which could lead to new treatments. This could help us better understand and treat diseases that affect the pancreas and other organs with branching ducts.”

END


ELSE PRESS RELEASES FROM THIS DATE:

The Journal of Nuclear Medicine ahead-of-print tip sheet: Jan. 9, 2026

2026-01-09
Reston, VA (January 9, 2026)—New research has been published ahead-of-print by The Journal of Nuclear Medicine (JNM). JNM is published by the Society of Nuclear Medicine and Molecular Imaging, an international scientific and medical organization dedicated to advancing nuclear medicine, molecular imaging, and theranostics—precision medicine that allows diagnosis and treatment to be tailored to individual patients in order to achieve the best possible outcomes. Summaries of the newly published research articles are provided below. New Imaging Approach for Aggressive Breast Cancer Researchers tested specialized amino acid PET tracers to image triple-negative ...

Mount Sinai researchers help create largest immune cell atlas of bone marrow in multiple myeloma patients

2026-01-09
NEW YORK, (January 9, 2026) – Scientists at the Icahn School of Medicine at Mount Sinai, in partnership with the Multiple Myeloma Research Foundation (MMRF) and in collaboration with leading institutions across the country, have helped generate the largest single-cell immune cell atlas of the bone marrow in patients with multiple myeloma, a blood cancer that, while treatable, remains incurable. The findings, published in Nature Cancer, provide unprecedented insight on immune dysfunction in myeloma and could lead to improved tools for predicting which patients are at higher risk ...

Why it is so hard to get started on an unpleasant task: Scientists identify a “motivation brake”

2026-01-09
Background Most of us know the feeling: maybe it is making a difficult phone call, starting a report you fear will be criticized, or preparing a presentation that’s stressful just to think about. You understand what needs to be done, yet taking that very first step feels surprisingly hard. When this difficulty becomes severe, it is known medically as avolition. People with avolition are not lazy or unaware: they know what they need to do, but their brain seems unable to push the "go" ...

Body composition changes after bariatric surgery or treatment with GLP-1 receptor agonists

2026-01-09
About The Study: In this single-center cohort study, both bariatric surgery and semaglutide or tirzepatide treatment were associated with substantial fat mass loss, moderate fat-free mass (FFM) loss, and improved FFM to fat mass ratio. These findings provide evidence to guide interventions aimed at preserving FFM while promoting fat loss. Corresponding Authors: To contact the corresponding authors, email Jason M. Samuels, MD, (jason.m.samuels@vumc.org) and Danxia Yu, PhD, (danxia.yu@vumc.org). To access the embargoed study: Visit our For The Media website ...

Targeted regulation of abortion providers laws and pregnancies conceived through fertility treatment

2026-01-09
About The Study: The findings of this study suggest an increase in maternal morbidity among patients using fertility care in states that passed targeted regulation of abortion providers (TRAP) laws relative to states that did not. Corresponding Author: To contact the corresponding author, Samuel J. F. Melville, MD, email melvills@ohsu.edu. To access the embargoed study: Visit our For The Media website at this link https://media.jamanetwork.com/ (doi:10.1001/jamahealthforum.2025.5920) Editor’s ...

Press registration is now open for the 2026 ACMG Annual Clinical Genetics Meeting

2026-01-09
BETHESDA, MD – January 9, 2026 | The American College of Medial Genetics and Genomics (ACMG) announced today that press registration is now open for the  2026 ACMG Annual Clinical Genetics Meeting, taking place in Baltimore, Maryland on March 10-14, 2026. Join us “Where Genetics Meets Innovation” and experience first-hand the transformation of clinical genetics, from primarily a diagnostic field to one increasingly driven by treatment and precision therapeutics. This premier medical and scientific conference brings together leading experts in medical genetics ...

Understanding sex-based differences and the role of bone morphogenetic protein signaling in Alzheimer’s disease

2026-01-09
Alzheimer’s disease (AD) is a serious neurodegenerative disease largely affecting older adults. Apart from age, it also shows sex-based differences, with women being more at risk. However, the origin of these differences remains unknown. While bone morphogenetic proteins (BMPs) play an important role in adult neurogenesis, their role in AD remains elusive. To address this, researchers have investigated sex-based differences and role of BMP signaling in neurogenesis in AD mice models, uncovering novel therapeutic targets. Alzheimer’s disease (AD) is one of the main causes of dementia, characterized by progressive neurodegeneration, typically beginning at or after 65 years ...

Breakthrough in thin-film electrolytes pushes solid oxide fuel cells forward

2026-01-09
Under the threat of climate change and geopolitical tensions related to fossil fuels, the world faces an urgent need to find sustainable and renewable energy solutions. While wind, solar, and hydroelectric power are key renewable energy sources, their output strongly depends on environmental conditions, meaning they are unable to provide a stable electricity supply for modern grids. Solid oxide fuel cells (SOFCs), on the other hand, represent a promising alternative; these devices produce electricity on demand directly from clean electrochemical reactions involving hydrogen and oxygen. However, ...

Clues from the past reveal the West Antarctic Ice Sheet’s vulnerability to warming

2026-01-09
The Thwaites and Pine Island glaciers, located in the Amundsen Sea sector of the West Antarctic Ice Sheet (WAIS), are among the fastest-melting glaciers on Earth. Together, they are losing ice more rapidly than any other part of Antarctica, raising serious concerns about the long-term stability of the ice sheet and its contribution to future sea-level rise. To better understand the risks that warmer conditions pose to the WAIS, researchers are looking back to the Pliocene Epoch (5.3–2.58 million years ago), when global temperatures were about 3–4 ...

Collaborative study uncovers unknown causes of blindness

2026-01-09
Researchers from Radboud university medical center and University of Basel have discovered new genetic causes of inherited blindness. Their study shows that changes in specific pieces of DNA, which play a role in processing genetic information, can lead to retinitis pigmentosa. This eye condition affects about 1 in 5,000 people worldwide, causing ‘tunnel vision’ and often leads to legal blindness. The discovery provides clarity for dozens of families globally and opens new possibilities for diagnostics and counseling in hereditary conditions.      Retinitis ...

LAST 30 PRESS RELEASES:

The vast majority of US rivers lack any protections from human activities, new research finds

Ultrasound-responsive in situ antigen "nanocatchers" open a new paradigm for personalized tumor immunotherapy

Environmental “superbugs” in our rivers and soils: new one health review warns of growing antimicrobial resistance crisis

Triple threat in greenhouse farming: how heavy metals, microplastics, and antibiotic resistance genes unite to challenge sustainable food production

Earthworms turn manure into a powerful tool against antibiotic resistance

AI turns water into an early warning network for hidden biological pollutants

Hidden hotspots on “green” plastics: biodegradable and conventional plastics shape very different antibiotic resistance risks in river microbiomes

Engineered biochar enzyme system clears toxic phenolic acids and restores pepper seed germination in continuous cropping soils

Retail therapy fail? Online shopping linked to stress, says study

How well-meaning allies can increase stress for marginalized people

Commercially viable biomanufacturing: designer yeast turns sugar into lucrative chemical 3-HP

Control valve discovered in gut’s plumbing system

George Mason University leads phase 2 clinical trial for pill to help maintain weight loss after GLP-1s

Hop to it: research from Shedd Aquarium tracks conch movement to set new conservation guidance

Weight loss drugs and bariatric surgery improve the body’s fat ‘balance:’ study

The Age of Fishes began with mass death

TB harnesses part of immune defense system to cause infection

Important new source of oxidation in the atmosphere found

A tug-of-war explains a decades-old question about how bacteria swim

Strengthened immune defense against cancer

Engineering the development of the pancreas

The Journal of Nuclear Medicine ahead-of-print tip sheet: Jan. 9, 2026

Mount Sinai researchers help create largest immune cell atlas of bone marrow in multiple myeloma patients

Why it is so hard to get started on an unpleasant task: Scientists identify a “motivation brake”

Body composition changes after bariatric surgery or treatment with GLP-1 receptor agonists

Targeted regulation of abortion providers laws and pregnancies conceived through fertility treatment

Press registration is now open for the 2026 ACMG Annual Clinical Genetics Meeting

Understanding sex-based differences and the role of bone morphogenetic protein signaling in Alzheimer’s disease

Breakthrough in thin-film electrolytes pushes solid oxide fuel cells forward

Clues from the past reveal the West Antarctic Ice Sheet’s vulnerability to warming

[Press-News.org] Engineering the development of the pancreas
Researchers found that the shape of the fluid-filled cavities in the developing pancreas is controlled by pressure and the rate cells divide.