Abstract
Cardiovascular diseases, such as heart valve dysfunction and coronary artery stenosis, are next to cancer the leading cause of death in the US. Treatments involve replacement of the heart valve or bypassing the obstructed coronary artery with a small-diameter vascular graft. The major limitation of currently used replacements is their inability to grow, adapt and repair in the patient. Considering the increasing age of the population and the subsequent increase in cardiovascular disease incidence, efforts to improve existing replacements and unraveling novel types of replacements are of paramount importance. Cardiovascular tissue engineering represents a rapid evolving field of research, providing living heart valve and small-diameter vascular substitutes with the ability to grow, adapt and repair after implantation. Various tissue engineering approaches are being employed, based on in vivo and/or in vitro tissue formation. This review provides an overview of the current heart valve and small-diameter vascular replacements and presents the status and future developments within the various tissue engineering approaches. The potential of tissue engineering for the development of living heart valve and small-diameter vascular substitutes is reflected in the numerous patents related to this emerging field of research.
Keywords: Tissue engineering, heart valve, blood vessel, in vitro, in vivo
Recent Patents on Biotechnology
Title: Living Heart Valve and Small-Diameter Artery Substitutes - An Emerging Field for Intellectual Property Development
Volume: 2 Issue: 1
Author(s): Anita Mol, Mirjam P. Rubbens, Maria Stekelenburg and Frank P.T. Baaijens
Affiliation:
Keywords: Tissue engineering, heart valve, blood vessel, in vitro, in vivo
Abstract: Cardiovascular diseases, such as heart valve dysfunction and coronary artery stenosis, are next to cancer the leading cause of death in the US. Treatments involve replacement of the heart valve or bypassing the obstructed coronary artery with a small-diameter vascular graft. The major limitation of currently used replacements is their inability to grow, adapt and repair in the patient. Considering the increasing age of the population and the subsequent increase in cardiovascular disease incidence, efforts to improve existing replacements and unraveling novel types of replacements are of paramount importance. Cardiovascular tissue engineering represents a rapid evolving field of research, providing living heart valve and small-diameter vascular substitutes with the ability to grow, adapt and repair after implantation. Various tissue engineering approaches are being employed, based on in vivo and/or in vitro tissue formation. This review provides an overview of the current heart valve and small-diameter vascular replacements and presents the status and future developments within the various tissue engineering approaches. The potential of tissue engineering for the development of living heart valve and small-diameter vascular substitutes is reflected in the numerous patents related to this emerging field of research.
Export Options
About this article
Cite this article as:
Mol Anita, Rubbens P. Mirjam, Stekelenburg Maria and Baaijens P.T. Frank, Living Heart Valve and Small-Diameter Artery Substitutes - An Emerging Field for Intellectual Property Development, Recent Patents on Biotechnology 2008; 2 (1) . https://dx.doi.org/10.2174/187220808783330956
DOI https://dx.doi.org/10.2174/187220808783330956 |
Print ISSN 1872-2083 |
Publisher Name Bentham Science Publisher |
Online ISSN 2212-4012 |
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
Related Articles
-
Fundamental Concepts of the Angiogenic Process
Current Molecular Medicine Age-related Changes in Pharmacodynamics: Focus on Drugs Acting on Central Nervous and Cardiovascular Systems
Current Drug Metabolism Therapeutic efficacy of different iron chelators in Egyptian children with Beta Thalassemia with iron overload
Infectious Disorders - Drug Targets Recent Advances in Ozonation of Vegetable Oils
Recent Patents on Materials Science Nanocarriers Assisted siRNA Gene Therapy for the Management of Cardiovascular Disorders
Current Pharmaceutical Design Role of Oxidative Stress and Mitochondrial Dysfunction in Skeletal Muscle in Type 2 Diabetic Patients
Current Pharmaceutical Design Innovative Therapeutic Potential of Cannabinoid Receptors as Targets in Alzheimer’s Disease and Less Well-Known Diseases
Current Medicinal Chemistry Hypertension and Atrial Fibrillation: Any Change with the New Anticoagulants
Current Pharmaceutical Design The Effect of Chronic Co-Administration of Morphine and Verapamil on Isoproterenol-Induced Heart Injury
Cardiovascular & Hematological Agents in Medicinal Chemistry Hypertensive Pharmacogenomics in African Americans
Current Pharmacogenomics The Journey of the Non-Vascular Relief for Migraine: From ‘Triptans’ To ‘Ditans’
Current Clinical Pharmacology Cholesterol Homeostasis Failure in the Brain: Implications for Synaptic Dysfunction and Cognitive Decline
Current Medicinal Chemistry Targeting Soluble Epoxide Hydrolase for Inflammation and Pain - An Overview of Pharmacology and the Inhibitors
Inflammation & Allergy - Drug Targets (Discontinued) Kawasakis Disease, Acrodynia, and Mercury
Current Medicinal Chemistry Potential Cell Signalling Mechanisms Involved in Differential Placental Angiogenesis in Mild and Severe Pre-Eclampsia
Current Vascular Pharmacology Serum Amyloid A and Its Potential Physiological / Pathological Functions - an Overview of Patents
Recent Patents on Endocrine, Metabolic & Immune Drug Discovery (Discontinued) Stem Cell Therapy in Chronic Ischemic Heart Dysfunction with and Without Viability
Cardiovascular & Hematological Disorders-Drug Targets Impact of COX-2 Inhibitors in Common Clinical Practice a Gastroenterologists Perspective
Current Topics in Medicinal Chemistry Nanomaterial Based Approaches for the Diagnosis and Therapy of Cardiovascular Diseases
Current Pharmaceutical Design Mechanical Support in Cardiogenic Shock Complicating Acute Coronary Syndrome: Ready for Prime Time?
Current Vascular Pharmacology