
iPSC Cardiomyocytes: Plasma Membrane Staining Guide
Learn how to optimise plasma membrane immunofluorescence imaging in iPSC derived cardiomyocytes, organoids, and complex co culture models.

Learn how to optimise plasma membrane immunofluorescence imaging in iPSC derived cardiomyocytes, organoids, and complex co culture models.

Summary The field of cancer therapy is undergoing transformative changes, driven by the following trends: iPSC-derived MSCs, MSCs-derived EVs, and Cas9-mediated gene editing in MSCs.

Organoids are three-dimensional (3D) multicellular in vitro tissue cultures that mimic the architecture, microenvironment, and functions of organs or tissues. Organoids can be derived from

Neurospheres and organoids are both used for disease modeling, but they have their differences. Discover which one is better suited for your research needs.

Adoptive Cell Therapy (ACT) represents a promising approach for the treatment of cancer. It is a process in which immune cells such as T-cells

iPSCs have a wide range of applications in research and medicine. One of the most promising areas of research is disease modelling.

Acne model is based on human iPSC-derived sebocytes. Identify active ingredients among hundreds on our innovative high-throughput assays. Validate or study mechanism of action with dedicated bioassays.

Pigmentation model is based on human iPSC-derived melanocytes. Identify active ingredients among hundreds on our innovative high-throughput assays. Validate or study mechanism of action with dedicated bioassays.

Anti-aging model is based on human dermal fibroblast. Identify active ingredients among hundreds on our innovative high-throughput assays. Validate or study mechanism of action with dedicated bioassays.

Our Dry AMD model combines blue light and A2E treatment of iPSC-derived RPE cells. Screen small molecule librairies with high-throughput assays. Test and validate your active coumpound with dedicated in vitro bioassays.

Stem cells are a subset of biological cells in the human body that are capable of self-renewal, tissue repair, differentiation, and division into different cell lineage.
It is divided into embryonic stem cells, adult stem cells and induced pluripotent stem cells.
We provide solutions with related materials from Minerva Biotechnologies and xcell therapeutics

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