Bone and Cartilage Cells

Our bone and cartilage cell portfolio provides primary human-derived models representing key components of the joint microenvironment, including synovial fluid and synovial membrane-derived cells. These resources support studies focused on musculoskeletal biology, joint inflammation, cartilage degeneration, and orthopedic disease research.

With access to synovial tissue-related cell resources, researchers can investigate cellular responses within the joint environment, including inflammatory signaling, tissue remodeling, and disease mechanisms associated with conditions such as osteoarthritis and rheumatoid arthritis.

Product List

Our Bone and Cartilage Cell Portfolio Highlights

Joint Tissue Cell Resources

Our collection provides human synovial-derived cell models for investigating joint biology, inflammation, and cartilage-related disorders.

  • Synovial-Derived Cell Models
    • Human synovial fluid cells
    • Human synovial membrane cells
    • Human synovial fluid membrane-derived resources
  • Joint Disease Research Applications
    • Inflammatory joint disease studies
    • Cartilage degradation and tissue remodeling research
    • Musculoskeletal disease mechanism investigations
  • Primary Human Cell Resources
    • Human-derived tissue-associated models
    • Flexible sourcing options for research requirements

Musculoskeletal Research Support

We support studies involving joint homeostasis, inflammatory responses, and cartilage-associated disease pathways.

  • Joint Microenvironment Studies

    Suitable cell resources for investigating interactions between synovial components, inflammatory factors, and joint tissue responses.

  • Inflammation and Disease Modeling

    Support for research involving osteoarthritis, rheumatoid arthritis, synovitis, and other joint-related disorders.

  • Cell-Based Functional Research

    Applicable for studies involving cytokine responses, cellular signaling, tissue remodeling, and therapeutic evaluation.

  • Customized Project Support

    Flexible solutions for exploratory studies, disease modeling projects, and translational musculoskeletal research.

4 +
Synovial-Derived
Cell Resources

100 %
Mycoplasma-Free
Tested

24-72 h
Rapid
Delivery

Frequently
Asked
Questions

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What bone and cartilage-related cell resources are available?

Our portfolio includes human synovial fluid cells and synovial membrane-derived cell resources, providing models for studies of joint tissue biology and musculoskeletal disease mechanisms.

What are synovial-derived cells commonly used for?

Synovial-derived cells are commonly used in research involving joint inflammation, synovitis, cartilage degeneration, osteoarthritis, rheumatoid arthritis, and evaluation of therapeutic approaches targeting joint disorders.

Can these cells support inflammatory joint disease studies?

Yes. Synovial cell models are widely used to investigate inflammatory responses, cytokine signaling, immune-related interactions, and cellular changes associated with inflammatory joint diseases.

Are these models suitable for cartilage and tissue remodeling research?

Yes. Synovial-derived cells can support studies of extracellular matrix regulation, tissue remodeling processes, and mechanisms involved in cartilage maintenance and degeneration.

What technical support is available for selecting joint-related cell models?

Our scientific team can provide guidance on selecting appropriate synovial-derived models based on research objectives, including inflammation studies, disease modeling, and cell-based assay development.

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Species

  • Human (797)
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Description: Human Synovial Fluid Membrane Fibroblasts are derived from Rheumatoid Arthritis. Each vial contains ...

Cat#: CSC-C5436S INQUIRY

Description: Origin: HumanDesease: Rheumatoid Arthritis (RA)

Cat#: CSC-C8109L INQUIRY

Description: Origin: HumanDesease: Osteoarthritis (OA)

Cat#: CSC-C8120L INQUIRY

Description: Human Synovial Membrane Fibroblasts (HSMF) provided by Creative Bioarray are isolated from human ...

Cat#: CSC-C9339W INQUIRY

For research use only. Not for any other purpose.