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kirkstall.bsky.social
Kirkstall Ltd
@kirkstall.bsky.social
30 followers 44 following 21 posts
Pioneering innovation in cell culture systems. Our Quasi Vivo® technology delivers dynamic, physiologically relevant environments that bridge the gap between in vitro and in vivo models, enabling breakthroughs in science and industrial applications.
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92% of drugs that pass animal tests fail in humans. 🚫
The cost? Years of research + billions wasted.
Human-on-chip models like Quasi Vivo® give data that actually translates.
#DrugDiscovery #OrganOnChip #MPS
Your body is a system, not isolated parts.
Quasi Vivo® connects multiple organs under gentle, lifelike flow, revealing interactions single-organ models miss.
Model the whole, not just the parts.

#OrganOnChip #HumanOnChip #MPS
Metastasis causes 90% of cancer deaths, yet remains incredibly hard to study because lab models can't accurately replicate tumour spread between human organs.

A new approach could finally change this.

#CancerResearch #Metastasis #OrganOnChip #Innovation
Every 90-day drug safety study can sacrifice 80 animals—but there’s a better way. Kirkstall's Quasi Vivo® offers low-shear, human-cell systems, accurately modeling human biology without animals.

Discover ethical, reliable research at: kirkstall.com

#AnimalFreeResearch #QuasiVivo #OrganOnChip
Pushing organ-on-a-chip from cool demo to everyday research tool takes shared standards everyone can trust. 🧬⚙️

Kirkstall dives into why harmonised protocols and familiar well-plate formats will boost reproducibility and cut reliance on animal tests.

kirkstall.com/supporting-e...
Supporting Emerging Standards for Organ on a Chip - Kirkstall Ltd
Organ-on-a-chip (OOAC) and microphysiological systems (MPS) are revolutionising in vitro biology and new challenges. Read more.
kirkstall.com
Perfusion flow cell culture brings lab experiments closer to real-life conditions. 📚 One key insight: Cells thrive when nutrient flow and waste removal mimic the body's natural environment.

🔗Our article explains why this matters for your research:
kirkstall.com/an-introduct...
An Introduction to Perfusion Flow Cell Culture - Kirkstall Ltd
This simple guide is designed for cell biologists who are newcomers to the use of perfusion systems for cell culture.
kirkstall.com
MPSs bridge critical gaps between lab models and human biology. To unlock their full potential, the field must focus on:

• Multi-organ integration
• Patient-derived cells for personalised insights
• Clinical validation for real-world relevance

#MPS #PrecisionMedicine
📚 New MPS Roadmap: A fresh review (Hartung et al., ALTEX) outlines challenges holding back organ-on-chip adoption: need for standards, validation benchmarks, regulatory clarity, data sharing… and calls for global collaboration to solve them. Essential read for OOC folks! 🔗 doi:10.14573/altex.2504091
🎯 From liver & brain to tumour microenvironment —Quasi Vivo does it all. Modular circuits 🔁 link multiple organs to realistically study systemic diseases like diabetes right on your benchtop. Healthy tissues, predictive human data, and powerful simplicity in one system.
🧱 Imagine organ-on-a-chip tech as simple as a LEGO kit! Quasi Vivo’s plug‐and‐play, modular design lets you set up advanced 3D cell cultures in minutes. ILow-shear flow keeps tissues thriving, minus the hassle of complex fabrication. Explore more at kirkstall.com
AI-driven drug discovery is rapidly generating countless new molecules. Microphysiological systems are essential to quickly and reliably evaluate their safety and effectiveness, accelerating precision medicine and advancing research.

📖 pmc.ncbi.nlm.nih.gov/articles/PMC...
Are research tools getting too complex for their own good?

MPSs could transform drug discovery, but many are too costly, complex, or specialised for everyday labs.
We believe that better science starts with:
✔️ Simpler workflows
✔️ Realistic costs
✔️ Usability first
🚀 New tech doesn’t adopt itself.

Microphysiological systems must earn their place by proving:
✅ Human relevance
✅ Clear application
✅ Validation & benchmarking

We are committed to these criteria, ensuring Quasi Vivo meets the standards needed for widespread adoption.
We know more about curing diseases in animals than in humans. With 90% of drugs failing in human trials after animal testing, it’s clear: animal models are outdated, inefficient, and unethical. Human-relevant systems like #QuasiVivo can save human lives and reduce animal testing.
🚨 Exciting update! Yesterday, Malcolm Wilkinson gave an inspiring talk at the #BITEG conference in Sheffield on creating physiologically relevant in vitro models. 🧬 Huge thanks to the organizers for a great event! 💡 #Kirkstall #InVitroModels #TissueEngineering #RegenerativeMedicine
Discover how Kirkstall’s bioreactor is enabling groundbreaking research on pancreatic cancer at @uclofficial.bsky.social. Professor Eirini Velliou explains how her team is studying cell behaviour and chemotherapy responses using advanced in vitro models. Full video: kirkstall.com/quasi-vivo-c...
🌟 We’re excited to join the Bluesky community! At Kirkstall, we’re advancing research and industry with Quasi Vivo® systems, providing ethical, innovative alternatives to animal testing.

#DrugDiscovery #OrganOnChip #Innovation #PersonalisedMedicine #MicrophysiologicalSystems