Chip-S1 Basic Research Kit (12-pack)

EmulateBRK-S1-WER-12

Chip-S1® Stretchable Chip The pioneering Organ-Chip design that started a revolution in human-relevant in vitro modeling

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Average Rating 5.0

|2Scientists have reviewed this product

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Organ-on-Chip Modeling of Cancer Therapeutic Response in a Vascularized and Immune-Competent Microenvironment

 

Average Rating 5.0

Application Area:

Cancer therapeutics

I have used S1 Chips to develop a prostate cancer-on-a-chip model to study tumor response to therapy in the context of immune interactions under the control of vascular dynamics. Using the dual-channel design, I established a compartment of vascular endothelial cells to mimic the in vivo vasculature. I introduced immune cells in the adjacent channel to simulate their trafficking and interaction with tumor cells. This setup enabled me to observe treatment-induced changes under more physiologically relevant conditions. The platform provided the flexibility to adapt complex co-culture systems and the robustness to support long-term studies. With the support of Emulate’s technical team and detailed documentation, I was able to streamline protocol optimization and focus on capturing meaningful biological data. Looking ahead, I am interested in further improving the experimental design to study the immune system’s role in greater detail. This includes incorporating downstream flow cytometry to profile immune cell lineages and functional changes, and proteomic analysis of secreted factors to understand cellular communication across compartments better. Overall, the S1 Chips have significantly advanced my ability to model therapeutic responses in a microenvironment that can closely mirror human prostate cancer biology.

Review Date: 25 Jul 2025 | Emulate

Validated protocols. Ease of use. Allows laboratories with organoid chip experience to quickly enter the field.

 

Average Rating 5.0

Application Area:

Lung-on-a-Chip Modeling of Ischemia Reperfusion Injury

I've used this system for 3 years performing lung-on-a-chip experiments with the S1 chips. We began with the validated protocol provided by Emulate and, with the help of their professionals, added elements to create a new and more representative cell culture model of lung ischemia reperfusion injury. Using the CM2 culture module allowed us to jump over the initial hurdles of designing and troubleshooting an in-house organoid system so that we could quickly begin addressing the more interesting scientific questions relevant to our research. Additionally, by using a customer facing system we hope that this will improve the replicability and impact of our work.

Review Date: 14 Jul 2025 | Emulate

This kit provides users the essential components needed to create a vast array of Organ-Chip models based on the Chip-S1® Stretchable Chip. The Chip-S1 consumable enables users to build robust organ models with a tissue-vascular interface and has been validated for a variety of organ models and applications. Kit components include Chip-S1 Stretchable Chips, Pod® Portable Modules, ER-1® / ER-2®, and Steriflip Filters. Users will need to supply their own biological components (cells, ECM, and media). Organ-Chips created using this kit can be cultured on the Human Emulation System for precise control of culturing conditions (media flow rates and stretch frequency).

Building an Endometrium-on-a-Chip to study the earliest stages of pregnancy

Thursday, October 1 at 16:00 BST | 17:00 CEST | 11:00 EDT | 08:00 PDT

Understanding how the embryo and endometrium interact during the earliest stages of pregnancy is a major focus of reproductive research. As increasingly sophisticated human-relevant models become available, researchers are gaining new opportunities to investigate embryo implantation, endometrial receptivity, and the biological processes that support successful pregnancy.

In this SelectScience® webinar, Sofia Zaragozano, Doctoral Researcher at the Carlos Simon Foundation for Women's Health, will share how her work to better understand human embryo adhesion led to the development of a pioneering Endometrium-on-a-Chip model using Emulate's organ-on-a-chip technology. Designed to recreate the dynamic endometrial microenvironment during the earliest stages of implantation, the platform provides researchers with a more physiologically relevant in vitro approach for studying embryo-endometrium interactions.

Zaragozano will share how her team developed the Endometrium-on-a-Chip, and will demonstrate how the platform is helping researchers investigate endometrial receptivity, embryo attachment, and the impact of pharmacological modulation on early implantation events.

By attending this free webinar, you will discover how organ-on-a-chip technology is advancing the study of embryo implantation, providing new insights into reproductive biology and enabling more physiologically relevant models for fertility research, endometrial disorders, and future therapeutic development.

Certificate of attendance

If you attend the live webinar, you will automatically receive a certificate of attendance, including a learning outcomes summary, for continuing education purposes.

If you view the on-demand webinar, you can request a certificate of attendance by emailing editor@selectscience.net.

Webinar details

Cost: Free to attend

Location: Online

Duration: 60 minutes

Registration is required to secure your place. If you register but can’t attend live, you will receive a link to the on‑demand recording once it becomes available.

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