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Human Lung Fibroblasts

Human lung fibroblasts

Accelerate your lead compound selection by using a validated human lung fibroblast

1.

Primary, low passage and validated human lung fibroblasts

2.

Available from healthy donor and IPF donor

3.

Validated for high-content, high-sensitivity imaging and advanced image analysis

Human lung fibroblasts to assess the potential of anti-fibrotic therapeutics.

Newcells’  human primary lung fibroblasts undergo rigorous quality controls (QCs) as they form the basis for a high-throughput, high-sensitivity (HTHS) assay.

As part of the quality controls, the lung fibroblasts are tested for their ability to replicate in vitro  fibroblast-to-myofibroblast (FMT) transition by stimulation with TGF-β1, mimicking fibroblast activation and extracellular matrix deposition. The fibroblasts are also validated for high-content, high-sensitivity imaging and advanced image analysis.

Application

Available analytical readouts from assays using activated primary lung fibroblasts

High-throughput Imaging
  • Cell count
  • Quantification of extracellular collagen I deposition
  • Quantification of α-SMA expression
  • Quantification of α-SMA strand perimeter
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Human Lung Fibroblasts stimulated with TGF-β for 72 hours and immunostained to detect collagen I, as a measure of extracellular matrix production and deposition.
Human Lung Fibroblasts stimulated with TGF-β1 and immunostained to detect extracellular collagen I, as a marker of extracellular matrix deposition.

Origin

Healthy and IPF donor

Assay window

72 h

Lead time

4 to 6 weeks

Applications

  • High-throughput High Sensitivity (HTHS) FMT Assay (384-well format)

Cell types

  • Primary human lung fibroblasts

Origin

  • Human (Healthy donor)
  • Human (Idiopathic pulmonary fibrosis (IPF) donor)
Services using Newcells’ primary human lung fibroblasts  Close Open

Accelerate your compound selection by understanding compound efficacy against fibrosis 

Newcells have developed a high-throughput, high-sensitivity model of lung FMT with validated human primary lung fibroblasts  for the study of fibroblast activation and extracellular collagen I production following stimulation with the well-established fibrotic mediator, TGF-β1. The assay set-up allows testing of small molecules for their ability to prevent fibroblast activation and ECM deposition. The FMT assay enables further understanding of compound efficacy to advance drug-discovery programs:

  • Evaluate the effectiveness of therapeutic candidates targeting lung fibrosis
  • Determine compound efficacy using physiologically relevant assay conditions and high-throughput screening
  • Gather detailed insights with high-content, high-sensitivity imaging and advanced image analysis

 

Validated Human Lung Fibroblast model Close Open
  • Primary, low passage, fibroblasts isolated from adult donor lung tissue (healthy donor or IPF-diseased donor)
  • Validated donors respond to TGF-β1 stimulation and reproducibly undergo lung FMT
  • Assay setup uses multiple donors to better evaluate donor-to-donor variability
Human lung fibroblast description Close Open
  1. Low passage normal human primary fibroblasts isolated from adult lung tissue
  2. Available from multiple donors including both healthy and IPF donors

Images

Fibroblasts to Myofibroblast transition
Human Lung Fibroblasts stimulated with TGF-β1 and immunostained to detect α-SMA, as a measure of fibroblast to myofibroblast transition.
Human Lung Fibroblasts stimulated with TGF-β for 72 hours and immunostained to detect collagen I, as a measure of extracellular matrix production and deposition.
Human Lung Fibroblasts stimulated with TGF-β1 and immunostained to detect Collagen I, as a measure of extracellular matrix production and deposition.

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