les solutions d’impression 3d pour l’ingéniérie tissulaire

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Pierre-Alexandre Laurent, PhD Senior Field Application Scientist [email protected] Les solutions d’impression 3D pour l’ingéniérie tissulaire Mardi 30 Mars 2021

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Page 1: Les solutions d’impression 3D pour l’ingéniérie tissulaire

Pierre-Alexandre Laurent, PhDSenior Field Application Scientist

[email protected]

Les solutions d’impression 3D pour l’ingéniérie tissulaire

Mardi 30 Mars 2021

Page 2: Les solutions d’impression 3D pour l’ingéniérie tissulaire

© CELLINK 2020, All rights reserved.

12OFFICES 450+

TEAM2000+LABS

Est. 2016 60+COUNTRIES

6 CONTINENTS

Page 3: Les solutions d’impression 3D pour l’ingéniérie tissulaire

© CELLINK 2020, All rights reserved.

CELLINK CREATE THE FUTURE OF MEDICINE

© CELLINK 2021, All rights reserved.

Page 4: Les solutions d’impression 3D pour l’ingéniérie tissulaire

TODAYS HEALTHCARE CHALLENGES

The journey of a medicine from lab to shelf takes

over 10 years on average

21 Patients die everydayfrom the lack of

organ transplants

Researchers can waste$2 Billion

by using the wrong testing method

© CELLINK 2021, All rights reserved.

Page 5: Les solutions d’impression 3D pour l’ingéniérie tissulaire

BIOPRINTING© CELLINK 2021, All rights reserved.

Page 6: Les solutions d’impression 3D pour l’ingéniérie tissulaire

Improving Pharmaceutical Workflows

Compound Exploration

Drug Characterization

Clinical Implementation

Assay Development

Preclinical Studies

Human Clinical Trials

3D Bio-fabrication

2D 3D© CELLINK 2021, All rights reserved.

Page 7: Les solutions d’impression 3D pour l’ingéniérie tissulaire

Improved models

The 3D Revolution

Embed cells

Incubate

Analyze

Culture cells in dish

Grow cells

2D cell sheet

Bioprint

2D 3D

Poor intercellular communication

Negative influence from substrate

Physiologically relevant

More information

© CELLINK 2021, All rights reserved.

Page 8: Les solutions d’impression 3D pour l’ingéniérie tissulaire

CELLINK BIOPRINTING SOLUTIONBIOPRINTERS

Midha S, Dalela M, Sybil D, Patra P, Mohanty S. Advances in three-dimensional bioprinting of bone: Progress and challenges. J Tissue Eng Regen Med. 2019 Jun;13(6):925-945. doi: 10.1002/term.2847. Epub 2019 Apr 24.

© CELLINK 2021, All rights reserved.

Page 9: Les solutions d’impression 3D pour l’ingéniérie tissulaire

EXTRUSION BASED 3D BIOPRINTING WORKFLOW

© CELLINK 2021, All rights reserved.

Incubate

Bioprinter

BioinkCells

Blueprint

Tissue model after

3 weeks in culture

Martínez H et al., 3D bioprinting of human chondrocyte-laden nanocellulose hydrogel for patient-specific auricular cartilage regeneration. Bioprinting 2016

Page 10: Les solutions d’impression 3D pour l’ingéniérie tissulaire

PRINTABILITY

CELL-MATERIAL INTERACTIONS

HYDROGEL

GELATION

SHEAR STRESS

FABRICATION TIME

NOZZLE GUAGE

VISCOSITY NETWORK PROPERTIES

CELLSPRINTING FIDELITY

BIOINK DEVELOPMENT

© CELLINK 2021, All rights reserved.

Page 11: Les solutions d’impression 3D pour l’ingéniérie tissulaire

CELLINK BIOPRINTING SOLUTIONBIOINKS

Select from a wide range of CELLINK materials tailored for your research.

Start with materials for bioink development or employ ready to use bioinks for advanced 3D cell culture.

© CELLINK 2021, All rights reserved.

Page 12: Les solutions d’impression 3D pour l’ingéniérie tissulaire

BIOPRINTEDHUMAN SKIN

Page 13: Les solutions d’impression 3D pour l’ingéniérie tissulaire

3D BIOPRINTING SKIN

Col1 Elastin KRT10

© CELLINK 2021, All rights reserved.

Page 14: Les solutions d’impression 3D pour l’ingéniérie tissulaire

Baltazar. T., et. al., TERMIS TISSUE ENGINEERING: Part A Volume 26, Numbers 5 & 6, (2020) Mary Ann Liebert, Inc.

Model 1: Non-vascularizationDermis: Fibroblasts (FB)Epidermis: Keratinocytes (KC)

Model 2: VascularizationDermis: FB + Endothelial cells (EC) + Pericytes (PC)Epidermis: Keratinocytes (KC)

3D BIOPRINTING OF VASCULARIZED SKIN

© CELLINK 2021, All rights reserved.

Page 15: Les solutions d’impression 3D pour l’ingéniérie tissulaire

3D BIOPRINTING OF VASCULARIZED SKIN(KC and FB) after 30 days of maturation Analyzing different staining factors showed a realistic portrait of skin stratification.

Baltazar. T., et. al., TERMIS TISSUE ENGINEERING: Part A Volume 26, Numbers 5 & 6, (2020) Mary Ann Liebert, Inc.

Stratum corneum stratum basal basement membrane suprabasal layers

© CELLINK 2021, All rights reserved.

Page 16: Les solutions d’impression 3D pour l’ingéniérie tissulaire

Baltazar. T., et. al., TERMIS TISSUE ENGINEERING: Part A Volume 26, Numbers 5 & 6, (2020) Mary Ann Liebert, Inc.

Vascularized Skin models after 10 of maturationMature stratified epidermis in models containing EC et PC

Increasedepidermalthickness and maturation(Laminin5 and CK10+)

Vessel-like structures within the dermis

Page 17: Les solutions d’impression 3D pour l’ingéniérie tissulaire

CTI Biotech

The cosmetics industry is worth about $40bn annually but have been under tremendous scrutiny due to their dependency on animals for testing. The need for effective alternatives for testing is at an all time high.

Pioneering bioprinted skin models for in vitro testing of cosmetics and dermatologics

© CELLINK 2021, All rights reserved.

The challenge The solution

The CELLINK Impact

Develop more realistic models

Reduce dependency on animal models

Gather greater insights from bioprintedconstructs

Structure of 3D Bioprinted micro-sebaceous model. Image courtesy of CTI Biotech3D Bioprinted skin models after 21 day-maturation. Image courtesy of CTI Biotech

Mix cells into bioink Bioprint Culture construct Quality Assurance

Page 18: Les solutions d’impression 3D pour l’ingéniérie tissulaire

• ON DEMAND PRODUCTION

• ADJUSTABLE

• SIZE

• SAMPLE NUMBER

• DONOR SPECIFIC

• REPRODUCIBLE

• CUSTOMIZATION

WHY 3D BIOPRINTING ?

© CELLINK 2021, All rights reserved.

Page 19: Les solutions d’impression 3D pour l’ingéniérie tissulaire

© CELLINK 2021, All rights reserved.

Multiplex OEM manufacturing

Diagnostics

Disease and tissue modelling Disease and tissue analysis Disease and tissue diagnostics

Omics Sample Prep.

Live-cell imaging

Single cell printing & sorting

Extrusion based bioprinting

Laser based bioprinting

Light based bioprinting

Bioreactors

NGS Library Prep.

Assays

Our unique bioconvergence offering

BIOPRINTING BIOSCIENCES INDUSTRIAL SOLUTIONS

Page 20: Les solutions d’impression 3D pour l’ingéniérie tissulaire

© CELLINK 2021, All rights reserved.

THE BIOCONVERGENCE COMPANY

www.cellink.com

THANK YOU VERY MUCH

@cellink3d@cellink3d @cellink3d