NovaSterilis is the global leader in supercritical CO2 sterilization and solutions that help our partners create safe, innovative products that improve lives.
#SterilizationValidation involves multiple pathways, data requirements, and regulatory decision points.
This resource is your guide to designing a #sterilization process that aligns with standards of safety, efficacy, and security.
Download now: https://t.co/Lg5HOcRr1K
Allograft #sterilization methods matter when evaluating tissue options for ACL reconstruction.
This study examines 2-year outcomes using #scCO2-sterilized allografts.
The findings add context to how sterilization methods factor into graft selection. https://t.co/8JwDJ9Lqty
In-chamber visualization reveals #scCO2 flow dynamics, phase mixing, and material response during processing.
Explore how this can inform process parameters, material selection, and #sterilization strategy: https://t.co/Mdg9DX8C9C
#SterilizationValidation can use overkill, bioburden, or combined overkill/bioburden indicator approaches.
Selecting the best approach depends on product characteristics, bioburden data, and process requirements. https://t.co/apsEicoxy3
A reusable-device study evaluated spore inactivation within long, narrow lumens.
The Nova Process achieved sterility despite hard water and serum challenges.
Check out this white paper for the methods, challenge conditions, and results: https://t.co/B3RIBtuFNm
NovaSterilis’ #supercriticalCO2 sterilization is an eco-friendly solution that achieves a Sterility Assurance Level of 10-6.
Our services are designed to preserve the integrity of sensitive materials across various industries. https://t.co/IjaZi9nbHQ
A cartilage case study reduced #decellularization to 12 hours using scCO2 processing.
Total decellularization, cleaning, and sterilization required 2.5 days.
Explore the workflow comparison and process considerations: https://t.co/Y65cunn32J
Did you know that in addition to sterilization, #supercriticalCO2 can also be used for #decellularization?
This first-of-its-kind paper from the University of Arizona highlights a process developed for decellularizing spinach leaves using scCO2. https://t.co/AIHnhAmggc
E-beam #sterilization remains established in tissue banking but carries recurring costs and long lead times.
This article quantifies cost, throughput, and turnaround differences of E-beam and #scCO2 sterilization. https://t.co/pVKMriv0ac
Contamination control is critical for successful R&D experiments, and the right #sterilization equipment can make all the difference.
Discover how to protect your research with in-lab sterilization that’s efficient, repeatable, and built for innovation: https://t.co/mkpeZmvAsq
By the time this paper was published in 2015, #scCO2 had already been demonstrated to be effective for sterilizing tissue products, but how does scCO2 actually stack up when compared to gamma and e-beam?
Read more: https://t.co/Cmi23fomSi
This white paper evaluates #scCO2 sterilization of amniotic fluid and cytokine preservation.
Analysis shows conservation of most proteins following processing.
The study examines #sterilization performance alongside retention of native cytokine content. https://t.co/z3qSMBOuo5
With the 35th Annual Conference of the European Society for Biomaterials happening next week, innovation is at the center of the conversation. #ESB2026
NovaSterilis is advancing #supercriticalCO2 sterilization to help expand what’s possible for sensitive biomaterials.
Conventional decellularization can require days or weeks of detergent washing.
Our new article examines #scCO2 as an alternative for decellularization, cleaning, and sterilization. https://t.co/Y65cunn32J
See how #NovaKill rapidly dissolves in #supercriticalCO2 within minutes!
This behavior highlights how additive levels and introduction methods can be tuned through cycle parameters to fit the needs of each product.
#SupercriticalCO2 offers distinct advantages for sterilizing sensitive materials.
Controlled processing helps preserve physical, mechanical, and biochemical material properties.
Explore what differentiates scCO2 from other sterilization modalities: https://t.co/VDe9j1rsB2
Biofilms remain a significant sterilization challenge for reusable #MedicalDevices with complex geometries.
#SupercriticalCO2 with NovaKill additive achieved complete eradication of mature S. aureus and P. aeruginosa biofilms in this study. https://t.co/ibVFvsOLxg
Regulatory acceptance of #supercriticalCO2 sterilization continues to expand across global markets.
Medical devices sterilized with scCO2 have progressed through FDA 510(k), TGA, and European regulatory pathways while aligning with ISO 14937 and ISO 11138.
Preserving collagen structure and growth factor activity is critical for implantable #biomaterials.
#Sterilization can influence tissue performance, mechanical integrity, and clinical outcomes.
Explore biomaterial preservation with #scCO2 sterilization: https://t.co/KbKxoy7xLL
#SupercriticalCO2 achieves a sterility assurance level of 10-6 across critical microorganisms.
This technology provides reliable, broad-spectrum #sterilization while maintaining functional integrity for many kinds of products.