The Progress & Ongoing Challenge of 3D Bioprinting Cardiac Tissue – 3DPrint.com
By daniellenierenberg
In the recently published 3D bioprinting and its potential impact on cardiac failure treatment: An industry perspective, authors Ravi K. Birla and Stuart K. Williams explore the potential for tissue engineering in cardiac medicine, and the eventual assembly of a bioprinted heart.
While heart failure usually requires a transplant, it can be challenging to find a suitable donor. Once a transplant is completed, there is a long road ahead too via a permanent need for immune suppression therapytreatment that is hard on patients. The usual survival rate for patients is typically under 13 years.
There are currently more than 6.2 million patients in the US with heart failure, and heart failure accounted for 78,356 mortalities in 2016, stated the authors.
In this study, the researchers review the challenges of bioprinting for the creation of heart tissue, as well as the logical and systematic process to bioprint human heart.
While medical science is full of progressive tools, treatments, and devicesespecially for heart patientsno technology has been more promising for the eventual fabrication of organs than tissue engineering. With the potential to yield a biofabricated heart, made up of both biologic and artificial construct, a total heart could feasibly emerge with modular parts for easy replacing.
Definition of tissue engineeringthe building blocks of tissue engineering are cells, biomaterials, and bioreactors. Cells are the functional elements of all tissue and organs, while biomaterials are designed to simulate the mammalian extracellular matrix and provide structural support. Bioreactors are custom devices to deliver physiological cues for 3D tissue/organ development and maturation. Electrical stimulation is delivered by parallel electrodes, while uniaxial stretch, illustrated by the single arrow, is designed to apply cyclic movement of the bioengineered tissue.
Cardiac tissue engineering encompasses:
The ability to bioengineer components of the heart or the entire bioartificial heart, both have applications in changing the standard of care for patients with heart disorders, explained the authors. Depending on the severity of the patient, a cardiac patch may be sufficient to augment lost contractile function, while in cases of chronic heart failure, a total bioartificial heart may be required.
In addition to spatial regulation of the cells, bioprinting also allows accurate placement of the biomaterials. This is where 3D bioprinting provides a powerful tool that allows us to accurately position different cell types in a very specific pattern, thereby allowing tight control over the heart bioengineering process.
Overview of cardiac tissue engineeringthe field of cardiac tissue engineering includes methods to bioengineer contractile 3D heart muscle, biological pulsating pumps, bioengineered left ventricles, bioartificial valves and vascular grafts, and biofabricated hearts. Contractile 3D heart muscle is designed to replicate the properties of mammalian heart muscle tissue and can be used as a patch to augment left ventricle pressure after myocardial infarction. Pulsating pumps are designed to generate intra-luminal pressure and can be used as biological pumps. Left ventricles can be used as a component of the heart or to replace under-performing ventricles in pediatric cases of hypoplastic left heart syndrome. Valves and vascular grafts can be used to replaced mammalian valves and blood vessels or as components of the bioengineered heart.
Major components of the human heartthe human heart consists of four chambers, four valves, the cardiac conduction system, contractile cardiomyocytes, and a complex vasculature. The four chambers are the left and right ventricle and aorta, while the four valves are the aortic and mitral valves and pulmonary and tricuspid valves. The cardiac conduction system consists of the SAN, AVN, bundle of His, and the Purkinje fibers. Cardiac vasculature consists of the greater vessels as well as the smaller micro-circulation. Cardiomyocytes are the cells responsible for heart muscle contraction.
So far, most research involving bioprinting of cardiac tissue has shown the initial feasibility of bioprinting hearts. With the amount of research and tools available today, such progress is inevitable.
Based on the current state of the art in whole heart bioengineering, we can safely say that human hearts will be available for clinical transplantation though we cannot assign a specific timeframe for this fate to be accomplished, state the authors.
Bioprinting of the human heart has its beginnings in the initial history of tissue engineering in 2003, and then further in research a few years later.
The 3D bioprinting processisolated cells are suspended in a custom formulated bioink and loaded into a syringe. Examples of cells required to bioprint hearts include contractile cardiomyocytes, conducting pacemaker and Purkinje cells, structural fibroblast cells and vascular smooth muscle cells, and endothelial cells. Pneumatic pressure is used to extrude the cell-loaded bioink through the printing tip, and a layer by layer approach is used to build tissue and/or organ
Scientific breakthroughs for 3D bioprinting human hearts.
There has continued to be rapidly growing success in bioprinting and the subsequent fabrication of heart tissue, allowing scientists to realize less of fantasy in such exercisesand more of a reality.
Process for bioprinting human heartspatient MRI images are used to model the heart. Dermal fibroblasts are isolated from patient skin biopsies and converted to iPS cells and then to cardiomyocytes. Cardiomyocytes are combined with bioinks and used to bioprint patient-specific human hearts. Bioprinted hearts are conditioned in bioreactors and used for transplantation.
The roadmap for bioprinting a heart includes:
The single most important challenge that needs to be overcome in the field, and one that in general staggers the field of cardiac stem cell therapy, is the immaturity of reprogrammed cardiomyocytes, conclude the researchers. Conversion of iPS cells to cardiomyocytes is now standard and reproducible, the differentiated cells resemble an embryonic phenotype, and driving these cells to an adult phenotype remains a critical challenge in the field of cardiac stem cell therapy.
Once reproduced by independent research labs, coupled with the availability of commercial bioreactors for electromechanical stimulation, the availability of mature cardiomyocytes will provide a clear pathway to 3D bioprint human hearts for clinical transplantation.
Bioprinting is used in a wide variety of applications today, from cardiac patches and cellularized hearts to the creation of heart valves, and more, ultimately shaping an overall transformation of cell culture. What do you think of this news? Let us know your thoughts! Join the discussion of this and other 3D printing topics at 3DPrintBoard.com.
Continued here:
The Progress & Ongoing Challenge of 3D Bioprinting Cardiac Tissue - 3DPrint.com
- FDA Grants Orphan Drug Designation to IPS HEARTs GIVI-MPC Stem Cell Therapy for Becker Muscular Dystrophy - Business Wire - January 14th, 2025
- GMP-compliant iPS cell lines show widespread plasticity in a new set of differentiation workflows for cell replacement and cancer immunotherapy -... - January 14th, 2025
- Stem cells head to the clinic: treatments for cancer, diabetes and Parkinsons disease could soon be here - Nature.com - December 27th, 2024
- Exclusive: Cell therapy startup Shinobi adds Borges as science chief, Katz as top medical officer - Endpoints News - December 18th, 2024
- Sumitomo Chemical and Sumitomo Pharma to Establish Regenerative Medicine and Cell Therapy Joint Venture - - December 18th, 2024
- Shinobi Strengthens Leadership to Propel Scalable Immune-Evasive Cell Therapies to the Clinic - The Eastern Progress Online - December 18th, 2024
- BrightPath Bio and Cellistic Announces Process Development and Manufacturing Collaboration for Phase 1 Clinical Trial of iPSC-derived BCMA CAR-iNKT... - December 18th, 2024
- Induced Pluripotent Stem Cells: Problems and Advantages when Applying ... - December 9th, 2024
- How Minaris is Tackling the Scalability Challenge in Cell and Gene Therapy: A Conversation with CEO, Dr. Hiroto Bando - geneonline - November 29th, 2024
- Toward Personalized Cell Therapies by Using Stem Cells 2013: BioMed Research International - Wiley Online Library - November 15th, 2024
- Cell therapy for heart disease and therapeutic cloning: will embryos re-enter the stem cell race? - Genethique - November 15th, 2024
- Cutting-edge stem cell therapy proves safe, but will it ever be ... - AAAS - November 6th, 2024
- Induced pluripotent stem cell - Wikipedia - October 21st, 2024
- What are iPS cells? | For the Public | CiRA | Center for iPS Cell ... - October 21st, 2024
- Nobel Winner Shinya Yamanaka: Cell Therapy Is Very Promising For Cancer, Parkinsons, More - Forbes - October 13th, 2024
- iPSCs Manufacturing for Cell-Based Therapies: A Market Analysis of Cell Types, Therapeutic Applications, Ma... - WhaTech - August 4th, 2024
- Abu Dhabi Stem Cells Center partners with Japan-based Kyoto University and Rege Nephro - ZAWYA - January 14th, 2024
- Eterna Therapeutics Enters Into Option and License Agreement with Lineage Cell Therapeutics to Develop Hypoimmune Pluripotent Cell Lines for Multiple... - March 1st, 2023
- What is an Intrusion Prevention System? Definition ... - Fortinet - January 27th, 2023
- What is an IPS Monitor? Monitor Panel Types Explained ... - January 27th, 2023
- IPS panel - Wikipedia - January 27th, 2023
- Cell and gene therapy products: what is an ATMP? - The Niche - January 3rd, 2023
- Cell Therapy - an overview | ScienceDirect Topics - November 22nd, 2022
- Ayala Pharmaceuticals Reports Third Quarter 2022 Financial Results and Provides Corporate Update - November 6th, 2022
- Aligos Therapeutics Presents Clinical Data for its Capsid Assembly Modulator, ALG-000184, at AASLD’s The Liver Meeting® 2022 - November 6th, 2022
- Correcting and Replacing: CinCor Reports Third Quarter Financial Results and Provides Corporate Update - November 6th, 2022
- NGM Bio Announces Poster Presentation Featuring Preclinical Characterization of NGM936 at Upcoming 2022 ASH Annual Meeting - November 6th, 2022
- Assembly Biosciences Presents New Data at AASLD The Liver Meeting® Highlighting Breadth of Virology Portfolio and Potential of Next-Generation Core... - November 6th, 2022
- CymaBay Therapeutics Presents Additional Analyses from Clinical Studies of Seladelpar for Patients with Primary Biliary Cholangitis at The Liver... - November 6th, 2022
- Immutep Announces Abstract Highlighting Eftilagimod Alpha Selected for SITC 2022 Annual Meeting Press Conference - November 6th, 2022
- Osteal Therapeutics, Inc. Completes Enrollment in APEX Phase 2 Clinical Trial of VT-X7 for Periprosthetic Joint Infection - November 6th, 2022
- PMV Pharmaceuticals Appoints Industry Veteran Dr. Carol Gallagher to Board of Directors - November 6th, 2022
- ORYZON to Give Updates on Corporate Progress in November - November 6th, 2022
- Terns Pharmaceuticals Highlights Results from Phase 1 Clinical Trial of TERN-501 at AASLD The Liver Meeting® 2022 - November 6th, 2022
- Aligos Therapeutics Presents Clinical Data for its NASH Program and Nonclinical Data for its Chronic Hepatitis B Portfolio at AASLD’s The Liver... - November 6th, 2022
- First U.S. patient receives autologous stem cell therapy to treat dry ... - October 29th, 2022
- BREAKTHROUGH TECHNOLOGY FOR IPS-DERIVED CELL THERAPIES TURNED INTO GMP PLATFORM BY TREEFROG THERAPEUTICS & INVETECH - Yahoo Finance - October 13th, 2022
- iPS-Cell Based Cell Therapies for Genetic Skin Disease - October 5th, 2022
- Jcr Pharmaceuticals Co., Ltd. and Sysmex Establish A Joint Venture in the Field of Regenerative Medicine and Cell Therapy - Marketscreener.com - October 5th, 2022
- MeiraGTx Announces the Upcoming Presentation of 15 Abstracts at the European Society of Gene and Cell Therapy (ESGCT) 2022 Annual Congress - Yahoo... - October 5th, 2022
- Stem Cells Market Size Expected to Reach USD 19.31 Billion by 2028: Increasing Number of Clinical Trials Across the Globe - Digital Journal - September 27th, 2022
- Implanting a Patient's Own Reprogrammed Stem Cells Shows Early Positive Results for Treating Dry AMD - Everyday Health - September 19th, 2022
- Current status of umbilical cord blood storage and provision to private biobanks by institutions handling childbirth in Japan - BMC Medical Ethics -... - September 19th, 2022
- Global Induced Pluripotent Stem Cells Market (2022 to 2027) - Growth, Trends, Covid-19 Impact and Forecasts - ResearchAndMarkets.com - Business Wire - September 11th, 2022
- Clinical translation of stem cell therapy for spinal cord injury still premature: results from a single-arm meta-analysis based on 62 clinical trials... - September 11th, 2022
- Improving the differentiation potential of pluripotent stem cells by optimizing culture conditions | Scientific Reports - Nature.com - August 26th, 2022
- New research digs into the genetic drivers of heart failure, with an eye to precision treatments - STAT - August 10th, 2022
- Creative Biolabs Leads the Forefront of iPSC Technology - Digital Journal - August 10th, 2022
- The zinc link: Unraveling the mechanism of methionine-mediated pluripotency regulation - EurekAlert - July 25th, 2022
- Live Cell Metabolic Analysis Paving the Way for Metabolic Research and Cell & Gene Therapy, Upcoming Webinar Hosted by Xtalks - Benzinga - July 16th, 2022
- PROMISING STEM CELL THERAPY IN THE MANAGEMENT OF HIV & AIDS | BTT - Dove Medical Press - July 8th, 2022
- Gene & Cell Therapy FAQs | ASGCT - American Society of Gene & Cell ... - June 30th, 2022
- The benefits and risks of stem cell technology - PMC - June 30th, 2022
- The Future of Parkinson Disease Therapies and the Challenges With Stem Cell Therapies - Neurology Live - June 20th, 2022
- Umoja Biopharma and TreeFrog Therapeutics Announce Collaboration to Address Current Challenges Facing Ex Vivo Allogeneic Therapies in Immuno-Oncology... - June 11th, 2022
- Newsletter April 2022 - Progress in Cline's cell lab and in the stem cell therapy field - Marketscreener.com - April 29th, 2022
- Healios K K : Joint Research with the Division of Regenerative Medicine, the Institute of Medical Science for Developing a Mass Production Method of... - April 3rd, 2022
- A combat with the YAP/TAZ-TEAD oncoproteins for cancer therapy - March 22nd, 2022
- The Pipeline for of iPSC-Derived Cell Therapeutics in 2022 ... - March 22nd, 2022
- Cell Therapy Processing Market CAGR of 27.80% Share, Scope, Stake, Trends, Industry Size, Sales & Revenue, Growth, Opportunities and Demand with... - January 3rd, 2022
- Stem cell therapy for diabetes - PubMed Central (PMC) - November 22nd, 2021
- Stem cells: Therapy, controversy, and research - October 5th, 2021
- How much does stem cell therapy cost in 2021? - The Niche - October 5th, 2021
- "Stem cell-based therapeutics poised to become mainstream option - BSA bureau - October 5th, 2021
- Exclusive Report on Stem Cell Therapy in Cancer Market | Analysis and Opportunity Assessment from 2021-2028 |Aelan Cell Technologies, Baylx, Benitec... - August 6th, 2021
- Asia-Pacific Cell Therapy Market 2021-2028 - Opportunities in the Approval of Kymriah and Yescarta - PRNewswire - August 6th, 2021
- Base Editing as Therapy for Common Inherited Lung and Liver Disease Shows Promise - Clinical OMICs News - July 22nd, 2021
- MoHAP, EHS reveal immunotherapy for cancer, viral infections at Arab Health 2021 - WAM EN - June 25th, 2021
- Kiromic Announces Expansion of In-House Cell therapy cGMP Manufacturing Facility and the Appointment of Industry Veteran Ignacio Nez as Chief... - June 8th, 2021
- Cryopreservation Media helps in Development of a Cell Therapy for Parkinson's Disease - Microbioz India - June 8th, 2021
- Accelerated Biosciences' Immune-Privileged Human Trophoblast Stem Cells (hTSCs) Offer Breakthrough Opportunities in Cancer-Targeting Therapeutics and... - May 15th, 2021
- Factor Bioscience to Deliver Six Digital Presentations at the American Society of Gene & Cell Therapy (ASGCT) 24th Annual Meeting - PRNewswire - May 15th, 2021
- St. Jude's $11.5B, six-year plan aims to improve global outcomes for children with cancer and catastrophic diseases - The Cancer Letter - May 15th, 2021
- Synthego Launches Eclipse Platform to Accelerate Research and Development of Next-generation Medicines - The Scientist - April 19th, 2021
- The Google Play video app will leave Roku, Vizio, LG and Samsung's TV platforms - Yahoo Canada Finance - April 19th, 2021
- New Controversy for Stem Cell Therapy That Repairs Spinal Cords - The Great Courses Daily News - March 8th, 2021
- Brentuximab Vedotin Plus Chemotherapy Works as a Primary Option for Hodgkin Lymphoma - Targeted Oncology - March 8th, 2021
- Induction of muscle-regenerative multipotent stem cells from human adipocytes by PDGF-AB and 5-azacytidine - Science Advances - January 14th, 2021
- A Potential Therapy for One of the Leading Causes of Heart Disease - PRNewswire - December 10th, 2020
- Evotec and Sartorius Partner with Start-Up Curexsys on IPSC-Based Therapeutic Exosome Approach - BioSpace - December 9th, 2020