physiological 3d tissue model of the airway wall and mucosa melanie m. choe alice a. tomei

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Physiological 3D Tissue Model of the Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei Melody A. Swartz Press return to

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Physiological 3D Tissue Model of the Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei Melody A. Swartz. Press return to continue. Cells & reagents needed for 6 models. PBS trypsin for HLFs trypsin for NHBE co-culture media hemacytometer 6 well transwell plate - PowerPoint PPT Presentation

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Page 1: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Physiological 3D Tissue Model of the Airway Wall and Mucosa

Melanie M. ChoeAlice A. Tomei

Melody A. Swartz

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Page 2: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Normal human bronchial epithelial cells (NHBEs)

2 x T175

Fetal human lung fibroblasts (HLFs)

4 x T175

70% confluent

70% confluent

• PBS

• trypsin for HLFs

• trypsin for NHBE

• co-culture media

• hemacytometer

• 6 well transwell plate

• at least 12 ml collagen solution (7.25 < pH < 7.3)

• 6 porous PE cylindrical inserts (acid treated to make hydrophilic)

Cells & reagents needed for 6 models

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Page 3: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

1. Harvest fibroblasts

(> 6*106 cells)

2. Dissociate pellet in 1 ml co-culture

medium

1 ml

3. Add collagen and co-culture medium to make a final solution of

500,000 cells /ml and 2.5 mg/ml collagen

>12 ml

4. Mix well by gently pipetting up and down

Avoid bubbles

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Page 4: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Place the PE constructs into each transwell insert

Pipette 100 µl HLF suspension in collagen into each insert to create a plug

Incubate (37°C, 5% CO2)

5 min

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Page 5: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Pipette the HLF-collagen suspension to completely fill insert (~2 ml/insert)

Avoid bubblesIncubate

(37°C, 5% CO2)15 min

(collagen turns opaque upon gelation)

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Page 6: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Coat the top of collagen gel with a thin layer of acellular collagen (2.5 mg/ml)

Avoid bubbles

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Page 7: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Gently level the surface of the gel with a cell scraper

Incubate (37°C, 5% CO2)

5 min

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Page 8: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Aspirate excess fluid from the bottom of the well

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Page 9: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Gently pipette 2 ml medium to the bottom chamber

Incubate (37°C, 5% CO2)

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Page 10: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

PAUSE POINTThe model can be stored in the incubator for several hours

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Page 11: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

2. Dissociate pellet in 1 ml co-culture

medium

1 ml

1. Harvest NHBE

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Page 12: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Pipet 500,000 NHBE cells (200 µl) onto each PE well

Incubate (37°C, 5% CO2)

2 hours

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Page 13: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Every ~20 minutes, examine the wells to ensure the top surface is covered by medium (otherwise pipet extra

medium, ~100µl)

Incubate (37°C, 5% CO2)

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Page 14: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

After 2 hours, add medium to cover the surface and submerge the model

Incubate (37°C, 5% CO2)Culture in submersion for at least 7

days

Refresh medium every 2 days

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Page 15: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Check every few days under phase contrast to determine when epithelium

is confluent

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Page 16: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

When the epithelium is confluent,

create air-liquid interface (ALI)

Aspirate the medium

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Page 17: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Wash the epithelial surface with warm PBS (~500µl) gently (not directly on the cells)

Aspirate the PBS

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Page 18: Physiological 3D Tissue Model of the  Airway Wall and Mucosa Melanie M. Choe Alice A. Tomei

Change medium in the bottom well daily

(maintain level for ALI)

Wash epithelial surface with PBS daily

Culture in air liquid interface for at least 7 days (21 days of optimal epithelial differentiation)

END