海角破解版

New Approach Methodologies

Advancing Human-Relevant Research with In Vitro Innovation

New Approach Methodologies (NAMs) represent a modern set of approaches that brings together powerful tools and technologies to enable faster, more human-relevant research, while supporting the reduction, replacement and refinement of animal use in scientific studies. A key subset of NAMs are based on in vitro human tissue models, including primary and induced pluripotent stem cell (iPSC)-derived cultures, organoids, co-cultures, and air-liquid interface (ALI) systems. These in vitro models enable researchers to expand, bank, and culture cells at varying levels of complexity to generate human-specific data for investigating disease mechanisms, assessing toxicity, and identifying new scientific insights. By improving in vitro-to-human translation and reducing reliance on animals, NAMs help accelerate scientific advancement and increase confidence in data-driven decisions.

Leverage 30 Years of In Vitro Modeling Expertise to Drive NAMs Forward

The shift towards more human-relevant research models highlights the growing need for reliable resources to successfully adopt and scale NAMs effectively. For over 30 years, 海角破解版 Technologies has been a trusted global leader in developing reagents that empower researchers to build physiologically relevant tissue and organoid models that underpin NAMs. With reliable cell sources, innovative culture solutions, and a proven legacy in developing human-relevant systems, 海角破解版 provides the tools and expertise to design robust NAMs that deliver impactful data.

Explore the curated resources below to learn more about how our in vitro modeling solutions can support your NAMs research.

Cell culture media bottle surrounded by glowing intestinal organoids

Optimized Media for Organoids and Other Complex In Vitro Models

Culture organoids that capture key aspects of human tissue function and architecture with our portfolio of optimized media, helping you obtain reproducible, biologically meaningful data.

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Human body graphic to highlight products for each organ system.

Reproducible hPSC Differentiation with STEMdiff鈩 Cell Culture Media

Generate 40+ cell types and organoids with our comprehensive STEMdiff鈩 portfolio of cell culture medium kits for the reproducible differentiation of human embryonic and induced pluripotent stem cells (hPSCs).

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Human primary cell

High-Quality, Ethically Sourced Human Primary Cells

Discover the benefits of incorporating primary cells into your research and how working with a dependable cell supplier can help streamline your cell-based assays.

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iPSC and iPSC-derived forebrain precursor cells

Assay-Ready hiPSC-Derived Models for Standardized Research

Fast-track your experiments with high-quality human induced pluripotent stem cell (hiPSC)-derived cells and organoids for consistent, human-relevant models that follow the ISSCR Standards for Human Stem Cell Use in Research.

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Collage of ICC stained organoids

Resources for Drug Discovery & Toxicity Testing

Get help with streamlining your drug discovery and toxicity testing program and advancing your lead candidates through the drug development pipeline with this list of curated resources.

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Pluripotent stem cell culture

Tools and Insights for Pluripotent Stem Cell-Based Research

Discover protocols, expert guidance, and practical resources to support every stage of your pluripotent stem cell-based research.

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