市场调查报告书
商品编码
1552976
心臟组织工程市场 - 市场规模、份额、趋势:按材料、按产品、按应用、按最终用户、按地区 - 预测至 2029 年Cardiac Tissue Engineering Market Size, Share & Trends by Material, Product, Applications, End-User - Global Forecast to 2029 |
全球心臟组织工程市场规模预计将从2024年的6.212亿美元增加到2029年的13.336亿美元,2024年至2029年的复合年增长率为16.5%。
市场成长的驱动力是3D生物列印技术的进步。全球心血管疾病的快速上升也推动了市场的发展。然而,透过心臟组织工程过程治疗心血管疾病的高成本正在影响市场成长。此外,心臟组织工程领域严格的监管政策是限制市场成长的主要因素。
调查范围 | |
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调查年份 | 2021-2029 |
基准年 | 2023年 |
预测期 | 2024-2029 |
考虑单位 | 金额(百万美元) |
按细分市场 | 按材料、产品、应用、最终用户、地区 |
目标区域 | 北美、欧洲、亚太地区、拉丁美洲、中东/非洲、海湾合作委员会国家 |
根据材料,片段分为干细胞和支架。支架部分又分为合成支架和生物支架。生物支架又分为胶原蛋白支架和水凝胶支架。到2023年,在这两种生物支架中,基于水凝胶的支架将占据心臟组织工程市场的较大份额。这是由于其多功能特性,与天然组织的特性非常相似。水凝胶由高度水合的网络组成,类似于细胞外基质,可促进细胞黏附、增殖和分化,这对于组织再生至关重要。水凝胶的机械性质可以在很大范围内调节以适应特定的组织特性,从而提高其在体内的相容性和完整性。这种可调性使我们能够设计具有最佳孔隙率、生物分解性和渗透性的支架,促进细胞生存和组织发育所必需的营养物质和氧气的扩散。
依应用,心臟组织工程市场分为心肌梗塞、心臟瓣膜修復/置换、先天性心臟疾病治疗等。到2023年,先天性心臟疾病治疗将占其中很大一部分。这是由于全球先天性心臟疾病的盛行率和关键医疗保健需求不断增加。例如,在澳大利亚,大约有 65,000 人患有先天性心臟疾病,每年诊断出约 5,900 例先天性心臟病。该疾病每年还导致 79 名婴幼儿死亡,凸显了对公共卫生的严重影响。同样,在美国,每年有近 40,000 名婴儿出生时患有先天性心臟疾病,而且很明显有许多患者需要先进的治疗方法。心臟组织工程透过提供客製化的方法来修復或替换有缺陷的心臟组织,为先天性心臟疾病提供了一种有前景的解决方案。这些创新对于解决先天性心臟疾病独特的解剖学和生理学挑战至关重要,这通常需要从婴幼儿到成年期进行个人化和持久的干预。全球先天性心臟疾病发病率不断上升,推动了对能够改善患者治疗效果和生活品质的治疗方法的需求,导致先天性心臟疾病领域在心臟组织工程市场中的地位不断增加。
该报告研究了全球心臟组织工程市场,包括按材料、产品、应用、最终用户、地区和参与市场的公司概况分類的趋势。
The global cardiac tissue engineering market is projected to reach USD 1,333.6 Million by 2029 from USD 621.2 Million in 2024, at a CAGR of 16.5% from 2024 to 2029. The growth of the market is driven Technological advancement in 3d bioprinting. The market also benefits from the up surge in prevalence of cardiovascular diseases across the globe. However, high cost associated with treating cardiovascular diseases by cardiac tissue engineering process, is impacting the growth of the market. Moreover, the stringent regulatory policies in the field of cardiac tissue engineering are a major factor restraining the market growth.
Scope of the Report | |
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Years Considered for the Study | 2021-2029 |
Base Year | 2023 |
Forecast Period | 2024-2029 |
Units Considered | Value (USD Million) |
Segments | By Material, Product, Application, End User |
Regions covered | North America, Europe, Asia Pacific, Latin America, the Middle East & Africa, and GCC Countries |
"Hydrogel based scaffolds segment to witness the significant growth during the forecast period."
Based on material, the segment is divided into stem cells, and scaffolds. The scaffolds segment is further divided into synthetic scaffolds and biological scaffolds. The biological scaffolds are further segmented into collagen-based scaffolds and hydrogel-based scaffolds. In 2023, among these two biological scaffolds, the hydrogel-based scaffolds accounts for the significant share in cardiac tissue engineering market. This is due to their versatile properties that closely mimic natural tissue characteristics. Hydrogels are composed of highly hydrated networks, like the extracellular matrix, which promotes cell attachment, proliferation, and differentiation critical for tissue regeneration. Their mechanical properties can be tailored across a wide range to match those of specific tissues, enhancing compatibility and integration within the body. This tunability allows for the design of scaffolds with optimal porosity, biodegradability, and permeability, facilitating nutrient and oxygen diffusion essential for cell survival and tissue development. Moreover, hydrogels can be engineered to deliver bioactive molecules and growth factors in a controlled manner, further supporting tissue regeneration processes. Compared to collagen-based scaffolds, which also offer biological compatibility but have more limited mechanical tunability, hydrogels provide a superior platform for creating complex tissue constructs in cardiac tissue engineering and other regenerative medicine applications. These advantages position hydrogel-based scaffolds as the preferred choice, driving their dominance in the biological scaffold segment of the scaffold market.
The segment is separated into scaffolds and stem cells based on the type of material. The material used on scaffolds is subdivided into two categories: biological scaffolds and synthetic scaffolds. Collagen- and hydrogel-based scaffolds are two further categories into which the biological scaffolds are divided. By 2023, the hydrogel-based biological scaffolds will have a larger market share in cardiac tissue engineering than the other two biological scaffolds combined. This is because of its adaptable qualities, which closely resemble those of natural tissue. Similar to the extracellular matrix, hydrogels are made of highly hydrated networks that support cell adhesion, proliferation, and differentiation-all of which are essential for tissue regeneration. Their ability to modify their mechanical characteristics to a large degree in order to match the characteristics of particular tissues improves their compatibility and integration with the body. dominance in the scaffold market's biological scaffold sector. Because of its tunability, scaffolds with the ideal porosity, biodegradability, and permeability may be designed, enabling the flow of nutrients and oxygen-both of which are necessary for tissue formation and cell survival. Hydrogels can also be designed to supply growth factors and bioactive compounds in a regulated way, which will aid in the processes involved in tissue regeneration. For the creation of complex tissue constructs in cardiac tissue engineering and other regenerative medicine applications, hydrogels offer a superior platform than collagen-based scaffolds, which likewise offer biological compatibility but have less mechanical tunability. Because of these benefits, hydrogel-based scaffolds are positioned as the best option and dominate the market for biological scaffolds.
"Congenital heart disease treatment segment accounted for the significant share in the cardiac tissue engineering market during the forecast period."
Based on application, the cardiac tissue engineering market is segmented into myocardial infarction, heart valve repair/replacement, congenital heart disease treatment and others. Among these in 2023, the congenital heart disease treatment accounted for significant share. This is attributed to the rising prevalence and critical medical needs associated with congenital heart defects globally. For instance, in Australia, approximately 65,000 individuals live with congenital heart disease, with around 5,900 cases diagnosed annually as the principal cause. This condition also accounts for 79 infant deaths annually, highlighting its severe impact on public health. Similarly, in the United States, nearly 40,000 infants are born with congenital heart defects each year, underscoring the substantial patient population requiring advanced treatment options. Cardiac tissue engineering offers promising solutions for congenital heart defects by providing tailored approaches to repair or replace defective heart tissues. These innovations are crucial in addressing the specific anatomical and physiological challenges presented by congenital heart diseases, which often require personalized and durable interventions from early infancy throughout adulthood. The increasing incidence of congenital heart defects globally drives demand for innovative therapies that can improve patient outcomes and quality of life, thereby bolstering the congenital heart disease segment's prominence in the cardiac tissue engineering market.
The cardiac tissue engineering market is divided into segments based on application, comprising treatment for congenital heart disease, myocardial infarction, and heart valve repair/replacement. Treatment for congenital cardiac disease accounted for a sizable portion of these in 2023. This is explained by the increased global prevalence of congenital cardiac abnormalities and the urgent medical needs they provide. For example, congenital heart disease affects about 65,000 people in Australia, with 5,900 new instances being diagnosed as the primary cause each year. Its devastating influence on public health is further evidenced by the 79 newborn fatalities that are attributed to this illness each year. Comparably, over 40,000 babies in the US are born with congenital cardiac abnormalities every year, highlighting the sizeable patient population in need of cutting-edge care. Cardiac tissue engineering provides customized methods for replacing or repairing damaged cardiac tissues, which presents promising remedies for congenital heart abnormalities. These advancements are essential for tackling the unique anatomical and physiological problems associated with congenital cardiac disorders, which frequently call for customized and long-lasting therapies from early childhood into adulthood. The need for novel treatments that can enhance patient outcomes and quality of life is being driven by the rising incidence of congenital heart problems worldwide. This is expected to increase the importance of the congenital heart disease segment in the cardiac tissue engineering market.
"APAC is estimated to register the highest CAGR during the forecast period."
In this report, the cardiac tissue engineering market is segmented into five major regional segments, namely, North America, Europe, Asia Pacific, Latin America and Middle East and Africa. The market in APAC is projected to register the highest growth rate during the forecast period attributed to increase in strategic collaborations and robust research initiatives. In June 2023, the establishment of the Asia-Pacific Cardiovascular Disease Alliance (APAC CVD Alliance), involving patient organizations, allied health professionals, academia, corporate partners, and a global health think-tank, underscored a concerted effort across nine health systems in Asia to enhance heart health and mitigate cardiovascular disease (CVD) impacts. Moreover, the presence of esteemed research institutions such as the Heart Research Institute, dedicated to advancing cardiovascular disease pathophysiology and pioneering tissue engineering solutions, enhances the region's capability to innovate in cardiac health technologies. With such collaborative frameworks and research capabilities, the Asia Pacific region is accelerating in scientific advancements for market growth in cardiac tissue engineering, promising significant opportunities for stakeholders in the sector.
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North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa are the five main geographical regions into which the cardiac tissue engineering market is divided in the report. Due to a rise in strategic partnerships and active research projects, the APAC market is anticipated to grow at the fastest rate over the forecast period. The Asia-Pacific Cardiovascular Disease Alliance (APAC CVD Alliance) was founded in June 2023 and represents a coordinated effort across nine Asian health systems to improve heart health and lessen the effects of cardiovascular disease (CVD). Participants in the alliance include patient organizations, allied health professionals, academia, corporate partners, and a global health think-tank. Furthermore, the region's capacity to innovate in heart health technologies is further enhanced by the existence of prestigious research organizations like the Heart Research Institute, which is committed to studying the pathophysiology of cardiovascular illness and developing innovative tissue engineering treatments. The Asia Pacific area is experiencing a notable surge in scientific developments for cardiac tissue engineering market growth, thanks to the presence of collaborative frameworks and research capacities. This presents substantial prospects for industry stakeholders.
List of Companies Profiled in the Report
Research Coverage
This report studies the cardiac tissue engineering market based on product, procedure, technology, application, end user and region. The report also analyses factors (such as drivers, restraints, opportunities and challenges) affecting market growth. It evaluates the opportunities and challenges in the market for stakeholders and provides details of the competitive landscape for market leaders. The report also studies micro markets with respect to their growth trends, prospects, and contributions to the total cardiac tissue engineering market. The report forecasts the revenue of the market segments with respect to five major regions.
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