For years, scientists have predicted that 3-D printingwhich has been used it to make toys, homes, scientific tools and even a plastic bunny that contained a DNA code for its own replicationcould one day be harnessed to print live, human body parts to mitigate a shortage of donor organs. So far, researchers also used 3-D printing in medicine and dentistry to create dental implants, prosthetics, and models for surgeons to practice on before they make cuts on a patient. But many researchers have moved beyond printing with plastics and metalsprinting with cells that then form living human tissues.
No one has printed fully functional, transplantable human organs just yet, but scientists are getting closer, making pieces of tissue that can be used to test drugs and designing methods to overcome the challenges of recreating the bodys complex biology.
A confocal microscopy image showing 3-Dprinted stem cells differentiating into bone cells
The first 3-D printer was developed in the late 1980s. It could print small objects designed using computer-aided design (CAD) software. A design would be virtually sliced into layers only three-thousandths of a millimeter thick. Then, the printer would piece that design into the complete product.
There were two main strategies a printer might use to lay down the pattern: it could extrude a paste through a very fine tip, printing the design starting with the bottom layer and working upward with each layer being supported by the previous layers. Alternatively, it could start with a container filled with resin and use a pointed laser to solidify portions of that resin to create a solid object from the top down, which would be lifted and removed from the surrounding resin.
When it comes to printing cells and biomaterials to make replicas of body parts and organs, these same two strategies apply, but the ability to work with biological materials in this way has required input from cell biologists, engineers, developmental biologists, materials scientists, and others.
So far, scientists have printed mini organoids and microfluidics models of tissues, also known as organs on chips. Both have yielded practical and theoretical insights into the function of the human body. Some of these models are used by pharmaceutical companies to test drugs before moving on to animal studies and eventually clinical trials. One group, for example, printed cardiac cells on a chip and connected it to a bioreactor before using it to test the cardiac toxicity of a well-known cancer drug, doxorubicin. The team showed that the cells beating rate decreased dramatically after exposure to the drug.
However, scientists have yet to construct organs that truly replicate the myriad structural characteristics and functions of human tissues. There are a number of companies who are attempting to do things like 3-D print ears, and researchers have already reported transplanting 3-D printed ears onto children who had birth defects that left their ears underdeveloped, notes Robby Bowles, a bioengineer at the University of Utah. The ear transplants are, he says, kind of the first proof of concept of 3-D printing for medicine.
THE SCIENTIST STAFF
Bowles adds that researchers are still a ways away from printing more-complex tissues and organs that can be transplanted into living organisms. But, for many scientists, thats precisely the goal. As of February 2020, more than 112,000 people in the US are waiting for an organ transplant, according to the United Network for Organ Sharing. About 20 of them die each day.
For many years, biological engineers have tried to build 3-D scaffolds that they could seed with stem cells that would eventually differentiate and grow into the shapes of organs, but to a large extent those techniques dont allow you to introduce kind of the organization of gradients and the patterning that is in the tissue, says Bowles. There is no control over where the cells go in that tissue. By contrast, 3-D printing enables researchers with to very precisely direct the placement of cellsa feat that could lead to better control over organ development.
Ideally, 3-D printed organs would be built from cells that a patients immune system could recognize as its own, to avoid immune rejection and the need for patients to take immunosuppressive drugs. Such organs could potentially be built from patient-specific induced pluripotent stem cells, but one challenge is getting the cells to differentiate into the subtype of mature cell thats needed to build a particular organ. The difficulty is kind of coming together and producing complex patternings of cells and biomaterials together to produce different functions of the different tissues and organs, says Bowles.
To imitate the patterns seen in vivo, scientists print cells into hydrogels or other environments with molecular signals and gradients designed to coax the cells into organizing themselves into lifelike organs. Scientists can use 3-D printing to build these hydrogels as well. With other techniques, the patterns achieved have typically been two-dimensional, Eben Alsberg, a bioengineer at the University of Illinois, tells The Scientist in an email. Three-dimensional bioprinting permits much more control over signal presentation in 3D.
So far, researchers have created patches of tissue that mimic portions of certain organs but havent managed to replicate the complexity or cell density of a full organ. But its possible that in some patients, even a patch would be an effective treatment. At the end of 2016, a company called Organovo announced the start of a program to develop 3-D printed liver tissue for human transplants after a study showed that transplanted patches of 3-D printed liver cells successfully engrafted in a mouse model of a genetic liver disease and boosted several biomarkers that suggested an improvement in liver function.
Only in the past few years have researchers started to make headway with one of the biggest challenges in printing 3-D organs: creating vasculature. After the patches were engrafted into the mouses liver in the Organovo study, blood was delivered to it by the surrounding liver tissue, but an entire organ would need to come prepared for blood flow.
For any cells to stay alive, [the organ] needs that blood supply, so it cant just be this huge chunk of tissue, says Courtney Gegg, a senior director of tissue engineering at Prellis Biologics, which makes and sells scaffolds to support 3-D printed tissue. Thats been recognized as one of the key issues.
Mark Skylar-Scott, a bioengineer at the Wyss Institute, says that the problem has held back tissue engineering for decades. But in 2018, Sbastian Uzel, Skylar-Scott, and a team at the Wyss Institute managed to 3-D print a tiny, beating heart ventricle complete with blood vessels. A few days after printing the tissue, Uzel says he came into the lab to find a piece of twitching tissue, which was both very terrifying and exciting.
For any cells to stay alive, [the organ] needs that blood supply, so it cant just be this huge chunk of tissue.
Courtney Gegg, Prellis Biologics
Instead of printing the veins in layers, the team used embedded printinga technique in which, instead of building from the bottom of a slide upwards, material is extruded directly into a bath, or matrix. This strategy, which allows the researchers to print free form in 3-D, says Skylar-Scott, rather having to print each layer one on top of the other to support the structure, is a more efficient way to print a vascular tree. The matrix in this case was the cellular material that made up the heart ventricle. A gelatin-like ink pushed these cells gently out of the way to create a network of channels. Once printing was finished, the combination was warmed up. This heat caused the cellular matrix to solidify, but the gelatin to liquify so it could then be rinsed out, leaving space for blood to flow through.
But that doesnt mean the problem is completely solved. The Wyss Institute teams ventricle had blood vessels, but not nearly as many as a full-sized heart. Gegg points out that to truly imitate human biology, an individual cell will have to be within 200 microns of your nearest blood supply. . . . Everything has to be very, very close. Thats far more intricate than what researchers have printed so far.
Due to hurdles with adding vasculature and many other challenges that still face 3-Dprinted tissues, laboratory-built organs wont be available for transplant anytime soon. In the meantime, 3-D printing portions of tissue is helping accelerate both basic and clinical research about the human body.
Emma Yasinski is a Florida-based freelance reporter. Follow her on Twitter@EmmaYas24.
Visit link:
On the Road to 3-D Printed Organs - The Scientist
- Congress Gives Stem Cells Another Shot -ASK THE EXPERT- ... [Last Updated On: August 4th, 2011] [Originally Added On: August 4th, 2011]
- Stem Cell Game 3- Grow with the Flow [Last Updated On: August 5th, 2011] [Originally Added On: August 5th, 2011]
- PROSTATE CANCER and stem cells [Last Updated On: August 13th, 2011] [Originally Added On: August 13th, 2011]
- Preview: 21st Century Snake Oil [Last Updated On: September 2nd, 2011] [Originally Added On: September 2nd, 2011]
- Stem cells: the future of medicine? [Last Updated On: September 5th, 2011] [Originally Added On: September 5th, 2011]
- Stem Cells: Politics vs. Medicine [Last Updated On: September 5th, 2011] [Originally Added On: September 5th, 2011]
- Mesenchymal Stem Cells in Regenerative Medicine: Of Hopes and Challenges [Last Updated On: September 5th, 2011] [Originally Added On: September 5th, 2011]
- An amazing story of stem cells, regenerative medicine and healing power: [Last Updated On: September 6th, 2011] [Originally Added On: September 6th, 2011]
- Preserving Stem Cells: Regenerative Medicine [Last Updated On: September 9th, 2011] [Originally Added On: September 9th, 2011]
- TEDxPhoenix - Jane Maienschein - Stem Cells, Regenerative Medicine and Us [Last Updated On: September 11th, 2011] [Originally Added On: September 11th, 2011]
- Personalized Medicine: Stem Cells 1/2 [Last Updated On: September 14th, 2011] [Originally Added On: September 14th, 2011]
- A Century of Stem Cells - Johns Hopkins Medicine [Last Updated On: September 16th, 2011] [Originally Added On: September 16th, 2011]
- What are stem cells? How can they be used for medical benefit? [Last Updated On: September 17th, 2011] [Originally Added On: September 17th, 2011]
- STEM CELLS TRANSLATIONAL MEDICINE Official Announcement [Last Updated On: September 18th, 2011] [Originally Added On: September 18th, 2011]
- Turning Adult Stem Cells into Medicine - Zannos Grekos, MD [Last Updated On: September 18th, 2011] [Originally Added On: September 18th, 2011]
- A New Era in Regenerative Medicine [Last Updated On: September 24th, 2011] [Originally Added On: September 24th, 2011]
- Bruce Conklin: Drug screening with stem cells [Last Updated On: September 27th, 2011] [Originally Added On: September 27th, 2011]
- Professors Chandran and ffrench-constant - Are stem cells the future of regenerative medicine? [Last Updated On: September 27th, 2011] [Originally Added On: September 27th, 2011]
- Hormone Myths vs. Medical Literature and How to Grow Your Own Stem Cells - Ronald Rothenberg, MD [Last Updated On: September 28th, 2011] [Originally Added On: September 28th, 2011]
- Cardiovascular Derivatives of Embryonic Stem Cells in Cardiac Repair and Drug Discovery [Last Updated On: September 29th, 2011] [Originally Added On: September 29th, 2011]
- Jackson Laboratory symposium: What's vital for effective stem cell therapies? [Last Updated On: September 30th, 2011] [Originally Added On: September 30th, 2011]
- Alzheimer's Disease: Spotlight on Stem Cell Research - Rod Shankle [Last Updated On: October 3rd, 2011] [Originally Added On: October 3rd, 2011]
- "StemEnhance" the Biggest Scientific [Last Updated On: October 4th, 2011] [Originally Added On: October 4th, 2011]
- Stem cell medical breakthrough? [Last Updated On: October 4th, 2011] [Originally Added On: October 4th, 2011]
- The Future of Stem Cells and Regenerative Medicine [Last Updated On: October 4th, 2011] [Originally Added On: October 4th, 2011]
- Stem Cell Clinical Trials : University of Miami Miller School of Medicine [Last Updated On: October 4th, 2011] [Originally Added On: October 4th, 2011]
- Medical tourism in Croatia - Regenerative medicine-Stem cells in reconstructive surgery [Last Updated On: October 4th, 2011] [Originally Added On: October 4th, 2011]
- Bioethics Stem Cells and the New Biology [Last Updated On: October 5th, 2011] [Originally Added On: October 5th, 2011]
- Stem Cells: The Hope The Hype and the Science [Last Updated On: October 5th, 2011] [Originally Added On: October 5th, 2011]
- Skin Stem Cells: Their Biology [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Spotlight on Cancer Stem Cell Research [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Lou Gehrig's Disease (ALS): UCSD Team's Stem Cell Therapy Rationale [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Sickle Cell Anemia: Stem Cell Gene Therapy - Donald Kohn [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Stem Cells and Parkinson's Disease [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Stem Cell Research: Macular Degeneration [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- An amazing story of stem cells and regenerative medicine [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Stem Cell City - Lisa Ray [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Stem Cell Therapy: Healing Force of the future [Last Updated On: October 6th, 2011] [Originally Added On: October 6th, 2011]
- Adult Stem Cells in Drug Discovery and Therapeutics [Last Updated On: October 7th, 2011] [Originally Added On: October 7th, 2011]
- Medical Breakthrough: First Stem Cell Procedure [Last Updated On: October 7th, 2011] [Originally Added On: October 7th, 2011]
- Dr. Judith Oppenheim, Chicago on Dental Stem Cells on WGN-TV's Medical Watch. [Last Updated On: October 9th, 2011] [Originally Added On: October 9th, 2011]
- Jerome Zack: Creating iPS Cells - Video [Last Updated On: October 14th, 2011] [Originally Added On: October 14th, 2011]
- Sight for sore eyes - Video [Last Updated On: October 15th, 2011] [Originally Added On: October 15th, 2011]
- Regenerative Medicine Update: Stem Cells and Functional Testing - Mitchell J. Ghen, DO, PhD - Video [Last Updated On: October 15th, 2011] [Originally Added On: October 15th, 2011]
- Stem cells as the future of medicine - Video [Last Updated On: October 18th, 2011] [Originally Added On: October 18th, 2011]
- Neural Stem Cells Reverse Alzheimer's-Like Symptoms - Video [Last Updated On: October 19th, 2011] [Originally Added On: October 19th, 2011]
- Deafness: Spotlight on Stem Cell Research - Ebenezer Yamoah - Video [Last Updated On: October 21st, 2011] [Originally Added On: October 21st, 2011]
- Leukemia: Spotlight on Stem Cell Research - Patient Stories - Video [Last Updated On: October 21st, 2011] [Originally Added On: October 21st, 2011]
- Epidermolysis Bullosa: Corrected iPS Stem Cell-Based Therapy - Video [Last Updated On: October 21st, 2011] [Originally Added On: October 21st, 2011]
- iPS Stem Cell-Based Treatment of Epidermolysis Bullosa - Video [Last Updated On: October 21st, 2011] [Originally Added On: October 21st, 2011]
- Parkinson's Disease: Spotlight on Stem Cell Research - Arnold Kriegstein - Video [Last Updated On: October 21st, 2011] [Originally Added On: October 21st, 2011]
- Closing Remarks, Screening Stem Cells 2009: From Reprogramming to Regenerative Medicine - Video [Last Updated On: October 23rd, 2011] [Originally Added On: October 23rd, 2011]
- The Sue and Bill Gross Stem Cell Regenerative Medicine Center at UCI - Video [Last Updated On: October 26th, 2011] [Originally Added On: October 26th, 2011]
- Stem Cell Institute - Video [Last Updated On: October 28th, 2011] [Originally Added On: October 28th, 2011]
- StemCellTV Special Report - Stem Cell Therapy a "Medical Game Changer" - Video [Last Updated On: October 28th, 2011] [Originally Added On: October 28th, 2011]
- Adult Stem Cells and Regeneration - Video [Last Updated On: November 8th, 2011] [Originally Added On: November 8th, 2011]
- Cloned Embryonic Stem Cells, FIRST (Brainstorm Ep26) - Video [Last Updated On: November 12th, 2011] [Originally Added On: November 12th, 2011]
- Beating Heart Stem Cells - Video [Last Updated On: November 13th, 2011] [Originally Added On: November 13th, 2011]
- Stem Cell Research In Toronto - Video [Last Updated On: November 13th, 2011] [Originally Added On: November 13th, 2011]
- Stem Cells and Their Amazing Potential 2011 trailer - Video [Last Updated On: November 15th, 2011] [Originally Added On: November 15th, 2011]
- Stemcell Research and Aging - Panel 1 - Video [Last Updated On: December 13th, 2011] [Originally Added On: December 13th, 2011]
- Austin Forum - Nov 1st (Part 4 of 4) - Video [Last Updated On: December 13th, 2011] [Originally Added On: December 13th, 2011]
- Vet-Stem Medistem Cellmedicine Rheumatoid Arthritis Stem Cell Video - Video [Last Updated On: December 19th, 2011] [Originally Added On: December 19th, 2011]
- Stem Cell Clinical Trial for Heart Failure: Eduardo Marban - CIRM Spotlight on Disease - Video [Last Updated On: December 26th, 2011] [Originally Added On: December 26th, 2011]
- Stem Cell-Derived Heart Cells: Bruce Conklin - CIRM Science Writer's Seminar - Video [Last Updated On: January 5th, 2012] [Originally Added On: January 5th, 2012]
- Pope gives support to adult stem cells and asks for ethics in scientific research - Video [Last Updated On: January 5th, 2012] [Originally Added On: January 5th, 2012]
- Stem Cell Treatment for Rheumatoid Arthritis - Darnell Morris - Video [Last Updated On: January 5th, 2012] [Originally Added On: January 5th, 2012]
- Personalized Medicine: Stem Cells 2/2 - Video [Last Updated On: January 13th, 2012] [Originally Added On: January 13th, 2012]
- Utilizing Stem Cell-derived Cardiomyocytes for Early Safety Screening - Webinar Presentation - Video [Last Updated On: January 22nd, 2012] [Originally Added On: January 22nd, 2012]
- Stem Cell Stage Bypassed in Skin Cell to Brain Cell Transformation [Last Updated On: February 1st, 2012] [Originally Added On: February 1st, 2012]
- Encouraging Results with Stem Cell Transplant for Brain Injury [Last Updated On: February 1st, 2012] [Originally Added On: February 1st, 2012]
- Stem cell injection successfully treats urinary incontinence [Last Updated On: February 13th, 2012] [Originally Added On: February 13th, 2012]
- ImmunoCellular Therapeutics To Present at Targeting Stem Cells Symposium during 19th Annual Molecular Medicine Tri ... [Last Updated On: February 17th, 2012] [Originally Added On: February 17th, 2012]
- Adult Stem Cell Success Stories - Barry Goudy - Video [Last Updated On: February 21st, 2012] [Originally Added On: February 21st, 2012]
- Stem Cell Treatment for T-6 Spinal Cord Injury - Video [Last Updated On: February 21st, 2012] [Originally Added On: February 21st, 2012]
- Stem Cells China-Switzerland.wmv - Video [Last Updated On: February 21st, 2012] [Originally Added On: February 21st, 2012]
- Stem cell find offers hope for infertility [Last Updated On: February 27th, 2012] [Originally Added On: February 27th, 2012]
- Stem cell fertility treatments could be risky for older women [Last Updated On: February 28th, 2012] [Originally Added On: February 28th, 2012]
- A*STAR Scientists Make Groundbreaking Discovery on Stem Cell Regulation [Last Updated On: March 1st, 2012] [Originally Added On: March 1st, 2012]
- UGA study reveals basic molecular 'wiring' of stem cells [Last Updated On: March 1st, 2012] [Originally Added On: March 1st, 2012]