#MicroPhysiology
🪔✨ This Diwali, let’s celebrate the light of innovation and the spirit of discovery!

Wishing our partners and collaborators a season filled with joy, prosperity, and new possibilities.

Happy Diwali from all of us at Microphysiology! 🌼
#HappyDiwali #Microphysiology
October 18, 2025 at 9:57 AM
Job Alert

Professur (W2) für Mikro-Physiologische Systeme + Abteilungsleiter*in (m/w/d)  

Deadline: 2025-10-31 
Location: Germany, Dresden  

www.academiceurope.com/ads/professu...

#hiring #medicine #pharmacology #toxicology #Professor #biotechnology #microphysiology
September 25, 2025 at 8:25 AM
🌸✨ Wishing everyone a joyful and prosperous Onam! 🌿 May this harvest festival bring happiness, health, and new beginnings. 🌼
From all of us at Microphysiology – Happy Onam! 🌾💫

#HappyOnam #Onam2025 #FestivalOfUnity
September 5, 2025 at 6:57 AM
🇮🇳 Today, we join India in celebrating Independence Day – honoring innovation, resilience, and the spirit of progress.

Here’s to a future where science and collaboration know no boundaries. ✨

#IndependenceDay #India #MicroPhysiology #OrganonChip #3DCellCulture #3dbioprinting
August 15, 2025 at 5:51 AM
A modular microphysiological platform for studying the cervicovaginal epithelium!
We introduce an accessible, PDMS-free organ-on-chip system validated with microbiota, Chlamydia, Gonorrhea, and neutrophils.
📄
#microphysiology #WomensHealth #Organoids #InfectiousDisease
July 31, 2025 at 7:22 PM
🧬 Breakthrough in Regenerative Medicine
Stanford researchers have successfully created heart organoids that not only mimic real human tissues but also interact with each other — a critical step toward building complex, functional tissue systems.

#RegenerativeMedicine #Organoids #Microphysiology
June 10, 2025 at 2:26 PM
🌍 On #WorldEnvironmentDay, we celebrate science that’s ethical and sustainable.

Our organ-on-a-chip, bioprinting & in vitro tools support the #3Rs —reducing animal use and environmental impact.

Let’s build a greener future, one experiment at a time.

#NAMs #LifeSciences #MicroPhysiology
June 5, 2025 at 12:46 PM
🚀 ClinoStar2 by CelVivo is redefining 3D cell culture!
🔬 Grow spheroids/organoids in a low-shear, physiologically relevant environment.
✅ Remote control via CelVivo Cloud
✅ UV-C decon + 6 onboard cameras
✅ Stackable, compact incubator
🔗 www.clinostar.com
#3DCellCulture #ClinoStar #MicroPhysiology
May 24, 2025 at 6:02 AM
CelTox Sampler is a compact, easy-to-use system for air-liquid interface toxicity testing. Precisely delivers gases, vapors & aerosols to cultured cells with full temp/humidity control.
👉 www.microphysiology.com/celtox-sampler
#Toxicology #InVitro #ALI #Microphysiology #CelTox #MedtecBiolabs
May 23, 2025 at 10:05 AM
🚨Whether you’re printing organoids, scaffolds, or future therapies – BIOV1 & REG4Life are engineered to deliver. 🧬🖨️

Let’s print the future.
#BIOV1 #REG4Life #Microphysiology #3DBioprinting
May 21, 2025 at 10:53 AM
🧱 What if organ-on-a-chip tech was as easy as LEGO?
With @kirkstall.bsky.social Quasi Vivo, 3D cell culture is plug-and-play.
🔄 Modular setup
💧 Gentle low-shear flow
🧬 Supports tissue slices & spheroids
Just real physiology—made simple.
🔗 Discover: organonachip.in
#OrganOnAChip #MicroPhysiology
May 19, 2025 at 9:41 AM
🚀 #MicroPhysiology offers cutting-edge tools for #MPS and #OOC applications:

🧫 Regemat3D- Bioprinters
🌫️ Kirkstall- Organ-on-a-Chip
🫁 Medtech- Invitro Exposure
🧫 CelVivo- 3D Cell Culture

Aligned with the #3Rs & #NAMs
#InVitroExposure #3DBioprinting #Organonachip #3dCellCulture
May 17, 2025 at 6:57 AM
This Akshaya Tritiya, may your ventures be as enduring as knowledge and as prosperous as innovation.
Wishing you a day filled with growth, discovery, and new beginnings.🌟🔬
#Organonachip #3DBioprinting #InvitroExposure #Microphysiology #AkshayaTritiya2025
April 30, 2025 at 7:19 AM
Giving in to the action figure trend — complete with organ chips, bioprinters, and in-vitro exposure kits.

Science has never looked this fun. 🔬🧪

#MicroPhysiology #OrganOnAChip #InvitroExposure #3DBioprinting
April 29, 2025 at 11:24 AM
MicroPhysiology represents world-class technologies —supporting the shift toward 3Rs and NAMs with cutting-edge bioprinters, organ-on-a-chip systems, and in vitro inhalation platforms.

#organonachip #bioprinting #3rs #nams #invitroresearch #lifesciences #biomedicalinnovation
April 19, 2025 at 8:49 AM
🌸🐣 Happy Easter! 🐰🔬

These Easter eggs are more than just festive—they’re inspired by the groundbreaking research our partners do every day.

Wishing you a joyful and innovative holiday! 🌱💡
#HappyEaster #OrganOnAChip #3DBioprinting #Microphysiology
April 17, 2025 at 10:39 AM
The FDA is phasing out animal testing for monoclonal antibodies and other drugs 🧪🐾. Instead, they’re turning to cutting-edge methods like organ-on-a-chip technology — a big step forward for ethical, human-relevant science 💊🫁

#OrganOnAChip #AnimalFreeTesting #microphysiology
tinyurl.com/392nspek
April 14, 2025 at 8:49 AM
Join us this Thursday Jan 9th 11am EST/8amPST
@aasld-heptoxsig.bsky.social #Hepatotoxicity seminar " Using human biomimetic liver microphysiology system & quantitative systems toxicology models to study MASLD & DILI" presented by Drs. Vernetti & Miedel register 👇 aasld.zoom.us/meeting/regi...
Welcome! You are invited to join a meeting: Using human biomimetic liver microphysiology system and quantitative systems toxicology models to study MASLD and DILI . After registering, you will receive...
Join us for two insightful presentations on using human biomimetic liver microphysiology system and quantitative systems toxicology models to study MASLD and DILI. The first presentation, led by Lawr...
aasld.zoom.us
January 7, 2025 at 11:09 PM
Interesting! Feels like a useful data point to the microphysiology!
December 19, 2024 at 1:49 PM
Comparison of Wild-Type and High-risk PNPLA3 variants in a Human Biomimetic Liver Microphysiology System for Metabolic Dysfunction-associated Steatotic Liver Disease Precision Therapy https://www.biorxiv.org/content/10.1101/2024.04.22.590608v1
Comparison of Wild-Type and High-risk PNPLA3 variants in a Human Biomimetic Liver Microphysiology System for Metabolic Dysfunction-associated Steatotic Liver Disease Precision Therapy https://www.biorxiv.org/content/10.1101/2024.04.22.590608v1
Metabolic dysfunction-associated steatotic liver disease (MASLD) is a worldwide health epidemic with
www.biorxiv.org
April 26, 2024 at 6:30 PM
Comparison of Wild-Type and High-risk PNPLA3 variants in a Human Biomimetic Liver Microphysiology System for Metabolic Dysfunction-associated Steatotic Liver Disease Precision Therapy https://www.biorxiv.org/content/10.1101/2024.04.22.590608v1
Comparison of Wild-Type and High-risk PNPLA3 variants in a Human Biomimetic Liver Microphysiology System for Metabolic Dysfunction-associated Steatotic Liver Disease Precision Therapy https://www.biorxiv.org/content/10.1101/2024.04.22.590608v1
Metabolic dysfunction-associated steatotic liver disease (MASLD) is a worldwide health epidemic with
www.biorxiv.org
April 26, 2024 at 6:30 PM
A metabolic-dysfunction associated steatotic liver acinus biomimetic induces pancreatic islet dysfunction in a coupled microphysiology system https://www.biorxiv.org/content/10.1101/2024.04.22.590598v1
A metabolic-dysfunction associated steatotic liver acinus biomimetic induces pancreatic islet dysfunction in a coupled microphysiology system https://www.biorxiv.org/content/10.1101/2024.04.22.590598v1
Preclinical and clinical studies suggest that lipid-induced hepatic insulin resistance is a primary
www.biorxiv.org
April 26, 2024 at 5:46 PM
A metabolic-dysfunction associated steatotic liver acinus biomimetic induces pancreatic islet dysfunction in a coupled microphysiology system https://www.biorxiv.org/content/10.1101/2024.04.22.590598v1
A metabolic-dysfunction associated steatotic liver acinus biomimetic induces pancreatic islet dysfunction in a coupled microphysiology system https://www.biorxiv.org/content/10.1101/2024.04.22.590598v1
Preclinical and clinical studies suggest that lipid-induced hepatic insulin resistance is a primary
www.biorxiv.org
April 26, 2024 at 5:46 PM
Trying to explain computational microphysiology to my family from 2005-2011 was unsuccessful.
November 12, 2023 at 10:33 PM