3D Printing
News Videos Newsletter Contact us
Home / News / New 3D Printing Method Combines PLA and TPU for Tissue Scaffolds
revopoint

New 3D Printing Method Combines PLA and TPU for Tissue Scaffolds

August 30, 2023

Researchers from Monash University (Australia) and the Arts et Métiers Institute of Technology (France), have published a paper on tissue engineering in the Advanced Functional Materials journal. This study highlights a new approach that combines top-down co-extrusion and bottom-up 3D printing to create biomaterials with intricate layered architecture.

Traditionally, mimicking complex biological structures while fostering cell growth has proven challenging. However, the study presents a two-step method: utilizing multilayer co-extrusion to produce alternating layers of biodegradable poly(lactic acid) (PLA) and elastic thermoplastic polyurethane (TPU), and then using 3D printing to build sophisticated tissue engineering scaffolds.

New 3D Printing Method Combines PLA and TPU for Tissue Scaffolds
Schematic diagram showing the multilayer co-extrusion process by forced assembly of two polymer melts through a series of layer multiplying elements, and also multilayered print examples. (Image Credit: Monash University)

Importantly, this approach maintains the layered structure during printing, resulting in continuous interfaces between polymer phases. By adjusting the co-extrusion process, researchers have achieved filaments with varying layer thicknesses, enabling the creation of 3D constructs with nanoscale polymer layers. Mechanical assessments demonstrated improved properties in certain architectures, blending the strengths of both PLA and TPU.

The study’s impact extends to cardiac tissue engineering, where the multilayered scaffolds influenced the alignment, morphology, and functionality of rat heart muscle cells (cardiomyocytes). The research holds significant promise for heart health, as optimal cardiomyocyte growth and function are vital.

Beyond its cardiovascular applications, the study’s innovative fusion of fabrication techniques offers a versatile approach applicable to diverse tissue engineering endeavors, from bone regeneration to wound healing.

You can read the full paper, titled “Fabrication of Architectured Biomaterials by Multilayer Co-Extrusion and Additive Manufacturing” at this link.

Source: onlinelibrary.wiley.com

Come and let us know your thoughts on our Facebook, Twitter, and LinkedIn pages, and don’t forget to sign up for our weekly additive manufacturing newsletter to get all the latest stories delivered right to your inbox.

Share:
WhatsApp Twitter Facebook LinkedIn Buffer Reddit E-mail
About the author | Phillip Keane
Phillip is an aerospace engineer from UK. He is a graduate of Coventry University (UK), International Space University (France) and Nanyang Technological University (Singapore), where he studied Advanced Manufacturing at the Singapore Centre for 3D Printing.
Join our newsletter

Our newsletter is free & you can unsubscribe any time.

Latest posts

3D Printed Resin Combines Rubber Flexibility with Plastic Strength, Surprising Scientists

Researchers at the University of Texas at Austin have developed a 3D printing method that can create objects with both soft and hard... read more »

News
3D Printed Resin Combines Rubber Flexibility with Plastic Strength, Surprising Scientists

LPE Supports Queen’s Propulsion Laboratory with 3D Printed Rocket Engine Chamber

Students at Queen's University Belfast have developed what they describe as Ireland's first student-built liquid rocket engine. The Kelvin Mk.1, named after Belfast-born... read more »

3D Printing Metal
LPE Supports Queen’s Propulsion Laboratory with 3D Printed Rocket Engine Chamber

Dassault Systèmes and Patrick Jouin Unveil New 3D Printed Chair

Dassault Systèmes and French designer Patrick Jouin have unveiled Ta.Tamu, a 3D-printed chair developed using the company's 3DEXPERIENCE platform. The project represents a... read more »

News
Dassault Systèmes and Patrick Jouin Unveil New 3D Printed Chair

Endemic Architecture Debuts 3D Printed Homes in Rural California

A development of five 3D-printed homes called Corduroy Castles is currently under construction in Olivehurst, California, a rural town in Yuba County located... read more »

Construction
Endemic Architecture Debuts 3D Printed Homes in Rural California

3D Printed Replica of a 500-year-old Prosthetic Hand Hints at Life of a Renaissance Amputee

Researchers at Auburn University are using 3D printing technology to recreate Renaissance-era prosthetic devices, providing new insights into historical amputee experiences. The interdisciplinary... read more »

News
3D Printed Replica of a 500-year-old Prosthetic Hand Hints at Life of a Renaissance Amputee

United Utilities Expands 3D Printing for Water Infrastructure Operations

United Utilities is incorporating 3D printing technology into its operations following the completion of a two-year Water Industry Printfrastructure project. The initiative, funded... read more »

News
United Utilities Expands 3D Printing for Water Infrastructure Operations

New Frontier Aerospace Successfully Tests 3D-Printed Rocket Engine

New Frontier Aerospace has completed a series of hot-fire tests of its 3D-printed Mjölnir rocket engine, the company announced from its Kent, Washington... read more »

Aerospace
New Frontier Aerospace Successfully Tests 3D-Printed Rocket Engine

FRCE Innovation Lab Creates Rapid Solution for F-35 Fleet

Fleet Readiness Center East (FRCE) has produced 2,000 O-ring installation tools for F-35 Lightning II aircraft using 3D printing technology. The project was... read more »

Military
FRCE Innovation Lab Creates Rapid Solution for F-35 Fleet

Social

  • Facebook Facebook 3D Printing
  • Linkedin Linkedin 3D Printing
Join our newsletter

Our newsletter is free & you can unsubscribe any time.

Featured Industries

  • Automotive
  • Aerospace
  • Construction
  • Dental
  • Environmental
  • Electronics
  • Fashion
  • Medical
  • Military
  • QIDI Tech Q1 Pro

    • - Print size: 245 x 245 x 245 mm
    • - 600mm/s max speed
    More details »
    $449.00 QIDI Store
    Buy Now
  • Snapmaker Artisan Premium 3-in-1

    • - Print size: 400 x 400 x 400 mm
    • - comes with enclosure
    More details »
    $2,999.00 Snapmaker
    Buy Now
  • QIDI Tech X-Max 3

    • - Print size: 325 x 325 x 315 mm
    • - fully enclosed
    More details »
    $799.00 QIDI Store
    Buy Now
  • QIDI Plus4

    • - Print size: 305 x 305 x 280 mm
    • - print temperature of 370°C
    More details »
    $799.00 QIDI Store
    Buy Now

Company Information

  • What is 3D Printing?
  • Contact us
  • Join our mailing list
  • Advertise with us
  • Media Kit
  • Nederland 3D Printing

Blog

  • Latest News
  • Use Cases
  • Reviews
  • 3D Printers
  • 3D Printing Metal

Featured Reviews

  • Anycubic Photon Mono M5s
  • Creality Ender 5 S1
  • The Mole 3D Scanner
  • Flashforge Creator 3 Pro

Featured Industries

  • Automotive
  • Aerospace
  • Construction
  • Dental
  • Environmental
  • Electronics
  • Medical
  • Military
  • Fashion
  • Art
2025 — Strikwerda en Dehue
  • Home
  • Join our mailing list
  • Contact us
Blog
  • Latest News
  • Use Cases
  • Reviews
  • 3D Printers
  • 3D Printing Metal
Featured Industries
  • Automotive
  • Aerospace
  • Construction
  • Dental
  • Environmental
  • Electronics
  • Medical
  • Military
  • Fashion
  • Art
Company Information
  • What is 3D Printing?
  • Contact us
  • Join our mailing list
  • Advertise with us
  • Media Kit
  • Nederland 3D Printing