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Vascularize 3D Tissue Models with Native Human Microvessels

Improve physiological relevance, tissue maturation, and model performance with ready-to-use human adipose microvessels

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Organoids and other 3D tissue models have changed how biological research is done, but most still fall short of fully replicating native human tissue. Without a functional microvasculature, these systems struggle with nutrient and oxygen delivery, limited tissue maturation, and reduced physiological relevance, especially as constructs increase in size and complexity.

Angiomics® Human Adipose Microvessels (haMVs) provide a practical way to introduce native human vascular components directly into existing 3D culture workflows, supporting more realistic tissue development and improved model performance without requiring you to rebuild your system from the ground up.

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Problems With Traditional Endothelial Cells

Traditional Organoids Lack Native Vasculature

  • Limited nutrient transport

  • Poor tissue maturation

  • Reduced physiological relevance

  • Inconsistent experiemental outcomes

Benefits of Angiomics®  Microvessels 

Traditional Organoids Lack Native Vasculature

  • Native human microvasculature

  • Ready-to-use cryopreserved isolates 

  • Integrates with existing workflows 

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Features & Benefits

Angiomics® Human Adipose Microvessels (haMVs) introduce intact, native human microvascular structures into 3D tissue models, going beyond endothelial cells to provide a full complement of vascular and perivascular cell types. These microvessels are phenotypically dynamic, integrating and adapting within the tissue environment to support true parenchyma–stroma interaction and more in vivo–like vascularization. Delivered in ready-to-use cryovials and incorporated using standard workflows, haMVs enable researchers to enhance organoids and tissue constructs without changing how they work. Simply resulting in better biology.

  • Native human microvessels

  • Full complement of microvascular cells

  • Phenotypically plastic & dynamic with tissue environment

  • Parenchyma/stromal cell microvessel cooperativity

  • Recapitulates in vivo vascularization

  • Available in 20K, 50K or 100K microvessels/vial

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With 

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You Get:

Download Our Free Technical Brief: Vascularizing 3D Tissue Models with Native
Human Microvessels

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