Introducing the Multi-System CAP by Beonchip Universal. Reliable. Easy to use. Say hello to the ultimate sealing solution for your 15 mL tubes. The new Multi-System CAP is designed to simplify and secure your microfluidic workflows—no matter the setup. ✅ One cap fits all – Compatible with flexible and semi-rigid tubing. ✅ Seamless integration – Works effortlessly with syringe pumps, peristaltic systems, or pressure-driven perfusion setups ✅ Smart design – Lightweight, ultra-durable, and reusable ✅ Multi-purpose – Supports sterile conditions, open or closed-to-atmosphere setups, and both recirculating and one-way flow circuits. Whether you're running complex perfusion assays or need a reliable closure for your reservoirs, the Multi-System CAP adapts to your system. Take a closer look here: https://xmrrwallet.com/cmx.plnkd.in/dgzYTZbD 💥 Launch offer: Get yours with an exclusive discount until June 1st or while stocks last. 📩 Have questions? Reach out—no commitment.
Sobre nosotros
Beonchip offers disposable systems to recreate in-vitro biological enviroments using microtechnologies Our different products are easy to handle for researchers not initiated in microfluidic. BE-Flow: is our most easy-to-use device dedicated to cell culture under flow. It allows the performance of long term 2D or 3D culture in two independent channels. BE-Flow is compatible with any microfluidic pump system and can be used simply with a rocker, thanks to its fluid reservoirs situated by the inlets/outlets. This is an optimal device for vascular research where shear stress plays a major role in gene expression. BE-Gradient: is our device designed for the application of electrochemical gradients to 3D cell cultures. BE-Gradient is compatible with any type of optical microscopy (inverted phase contrast, confocal, fluorescence..). Be-Gradient consists of a central chamber for cell culture and two lateral channels connecting to the central chamber through 5 small microchannels. 2D culture is also possible for adherent cells not only in the central chamber but also in the lateral channels. BE-Transflow is our most versatile cell culture platform. It allows the study of complex culture configurations by joining a culture well with a microfluidic channel via a porous membrane. This is the optimal device for Air Liquid Interface (ALI) culture, endothelium/epithelium barrier and crosstalk studies. BE-Doubleflow: is our most advanced device. It consists of two perfusable channels connected via a porous membrane. Explore the crosstalk between different 2D and 3D cultures in a biomimetic environment and control the efficiency of the interaction by selecting the optimal pore size for your application. This is the optimal device when a hypoxia environment is needed, for studying the effect of circulating particles (bacteria, immune system, circulating tumor cells) and for endothelium/epithelium barrier when no ALI is needed or when flux plays a role in both sides of the coculture
- Sitio web
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http://xmrrwallet.com/cmx.pwww.beonchip.com/
Enlace externo para Beonchip
- Sector
- Servicios de investigación
- Tamaño de la empresa
- De 2 a 10 empleados
- Sede
- ZARAGOZA, State
- Tipo
- De financiación privada
- Fundación
- 2016
Ubicaciones
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Principal
CEMINEM. C/Mariano Esquillor s/n
ZARAGOZA, State 50018, ES
Empleados en Beonchip
Actualizaciones
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📣 Exciting news for those like Beonchip, who have been working since day one to develop in vitro models as true alternatives to animal testing! The National Institutes of Health (NIH) has just announced that future funding opportunities will prioritize human-based research and will no longer support projects relying exclusively on animal models. This is a significant shift aimed at promoting more relevant and predictive models of human health and disease. For the organ-on-a-chip (OoC) field, this marks a major milestone. It reinforces the momentum already set by the FDA’s efforts to validate advanced in vitro systems that can replicate human physiology and replace animal experimentation. This move aligns perfectly with Beonchip’s mission to develop technology that can offer more ethical, accurate, and human-relevant research tools. We’re excited to continue contributing to this transformation in biomedical research. 🔗 For more details on the NIH's announcement, check out the link below: https://xmrrwallet.com/cmx.plnkd.in/eiMwezUf #NonAnimalModels #OoC #Biotec #NIH #FDA #InVitroModels #Beonchip
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Yesterday, Claudia O. presented part of her PhD research at the VI Young Researchers Conference of Aragon Institute of Engineering Research (I3A), hosted by the Escuela de Ingeniería y Arquitectura - Universidad de Zaragoza. Her poster, titled “Beyond Barriers: Redefining Organ-on-Chip Architecture Through Emerging Designs,” highlighted innovative approaches to advancing this cutting-edge field. It was a fantastic opportunity to share her work, connect with fellow researchers, and explore the latest developments in organ-on-chip technology. #OrganOnChip #Bioengineering #PhDResearch #MicrofluidicDevices #EmergingTechnologies
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Last week, we had the pleasure of attending MPS World Summit 2025 in Brussels! It was a fantastic opportunity to reconnect with our clients, meet with distributors, and explore exciting new partnerships. We truly appreciated hearing feedback from our users and were proud to present our latest products to the community. Thank you to everyone who stopped by — your support and insights mean a lot to us! See you next year at EUROoCS 2026 in Portugal! #Beonchip #MPS2025 #OrganOnChip #MicrophysiologicalSystems #Biotech #Innovation #Networking #ScientificCommunity
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📢 Poster Session Announcement – MPS World Summit 2025 We’re excited to share that Beonchip’s devices will be featured in an upcoming poster session at MPS 2025! 🗓 Thursday, June 12th |16:30 – 18:00 📍 Poster Session 4 Poster #185 | Abstract #498 "A novel multicompartment barrier-free microfluidic device to study the immune-tumor interaction in glioblastoma" Come by to learn more from Claudia O. about this new device and how our technology is enabling cutting-edge research in microphysiological systems! Looking forward to connecting with you there! #Beonchip #MPS2025 #OrganOnChip #MicrophysiologicalSystems #Biotech #PosterSession #ScientificResearch
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Want to replicate anaerobic intestinal environments under realistic flow conditions? In our latest technical note, we demonstrate how to recreate a low-oxygen intestinal microenvironment using the Be-Doubleflow device combined with PreSens Precision Sensing GmbH oxygen sensors. This setup offers a reliable platform for: -Monitoring oxygen levels -Simulating physiological shear stress -Studying anaerobic conditions relevant to gut health and disease 🔬 Perfect for microbiome, gut-on-chip, and host-microbe interaction research. Take a look here (https://xmrrwallet.com/cmx.plnkd.in/d2_ev98M) and feel free to reach out—we’re happy to answer your questions! #OrganOnChip #GutModel #AnaerobicCulture #MicrobiomeResearch #LabInnovation #Beonchip #Presens #Microfluidics
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📣 Exciting News! We are thrilled to announce our participation in the MPS World Summit 2025 Conference in Brussels, from June 9th to 13th! 🔬 📍 You’ll find us at Booth #204, where Rosa Monge Prieto, PhD, MBA, Luis Enrique Serrano Ramón, Sandra González Lana and Inês Pereira will be ready to connect, share insights, and showcase our latest innovations in organ-on-chip technology. We’re especially excited to unveil some brand-new products during the event — don’t miss the chance to see them in action for the first time! We’re also available for one-to-one meetings throughout the conference — a great opportunity to dive deeper into what we do and explore potential collaborations. Book your meeting with us here: https://xmrrwallet.com/cmx.plnkd.in/dqwsKUds We can’t wait to meet you in Brussels! #Beonchip #MPS2025 #OrganOnChip #Biotech #Innovation #MicrophysiologicalSystems #NewProducts #LifeSciences #Networking
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We're exciting to be present in the second Consortium Meeting of UNLOOC Chips JU Project, at Leiden, The Netherlands. It has been two full days of interesting conversations, shared experiences and scientific updates. 💫 #UNLOOCProject #EUProjects #ConsortiumMeeting
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Last Wednesday, we had the pleasure of being represented by Claudia O. at the VI Symposium on Cancer Immunotherapy in Zaragoza. Claudia presented a segment of her PhD research in a poster titled: "A Novel Multicompartment Barrier-Free Microfluidic Device Reveals the Impact of Extracellular Matrix Stiffening and Temozolomide on Immune-Tumor Interactions in Glioblastoma". It was a great opportunity to showcase her groundbreaking work and stay up to date with the latest developments in this field. Her research has been published and is available here: https://xmrrwallet.com/cmx.plnkd.in/eu6JSkZy #Beonchip #Symposium #Poster #Immunotherapy
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🚀 Biotech meets space—right here in Zaragoza! Tomorrow, researcher Sara García-Alonso will be giving a fascinating talk on the connection between biotechnology and space exploration. This event is part of the Girl's Day celebrations organized by School of Engineering and Architecture, and it's an inspiring opportunity to learn from one of the leading voices in the field. 🗓️ Don’t miss it—join it online through this link: https://xmrrwallet.com/cmx.plnkd.in/dw2msB5j 🔗 Check out the full event post by EINA here:
🚀🔬 El próximo miércoles, 9 de abril, la investigadora Sara García-Alonso (Spanish National Cancer Research Centre (CNIO) y miembro de la reserva de astronautas de la European Space Agency - ESA, Agencia Espacial Española), será la estrella de una nueva sesión del #AteneoEINA, enmarcada en la Semana de Ingeniería y Arquitectura #SIA_EINA y celebrando el Girls' Day. El título de su charla es “(Bio)Tecnología: desde el laboratorio hasta el espacio exterior”. 📅Miércoles 9/04 🕔 17h. 📍 Salón de Actos, Edificio Betancourt, Campus Río Ebro (Aforo completo) 👉 Si no rellenaste el formulario para asistir de manera presencial, podrás seguir la sesión online en https://xmrrwallet.com/cmx.plnkd.in/dw2msB5j ℹ️ https://xmrrwallet.com/cmx.plnkd.in/dHH-khhm #CátedraSAMCAdt Instituto de Investigación en Ingeniería de Aragón Universidad de Zaragoza Alberto J. Schuhmacher Maria Villarroya Gaudó Foto: © ESA - A. Conigli
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