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市場調查報告書
商品編碼
1352091
全球生物相容性塗料市場評估:按類型、等級、材料、最終用戶、地區、機會、預測(2016-2030)Biocompatible Coatings Market Assessment, By Type, By Grade, By Materials, By End-user, By Region, Opportunities and Forecast, 2016-2030F |
全球生物相容性塗料市場規模預計將從2022年的154億美元增加到2030年的412億美元,2023-2030年預測期間複合年增長率為13.1%。生物相容性塗料專注於醫療器材領域所需塗料技術的開發,預計該領域將在未來幾年取得重大發展。
市面上已有的產品對於醫療級應用的血液相容性不足。血液相容性塗層解決方案在抑制醫療設備上的血液凝固方面在醫療領域獲得了巨大的關注。
隨著城市化的快速發展,對衛生產品的需求不斷增加,推動了消費品和家居產品中生物相容性塗料的市場需求。確保病患安全和產品品質的嚴格法規和政府要求正在推動生物相容性塗層的引入。政府機構的法規迫使醫療器材製造商在產品獲得批准和商業化之前遵守嚴格的指導方針並提供生物相容性保證。醫療相關感染 (HAI) 會使患者病情加重,導致醫療費用增加、長期心理創傷和更嚴重的後果。世界各地的政府機構,例如 EMA 和 FDA,優先考慮治療的安全性,並制定了具體的法規,以確保製造的醫療器材符合生物相容性標準。抗菌塗層在對抗病原體和減少傳染病的傳播方面非常有效。
對病人安全的日益擔憂迫使政府機構在開發醫療級組件時採取嚴格的指導方針。將生物相容性標準應用於此類設備使公司能夠創建創新的解決方案來滿足法規要求。因此,政府監管透過鼓勵更多醫療保健公司競爭創造有效的解決方案並推動創新來實現所規定的條件,釋放了巨大的市場潛力。
COVID-19大流行導致全球口罩和醫療產品嚴重短缺,嚴重擾亂全球供應鏈。醫療設備對於積極救治患者至關重要,整個醫院都高度關注。生物相容性塗層的引入透過利用該技術來製造更多的醫療器材和設備,徹底改變了醫療應用。使用相關材料的生物相容性塗層市場爆炸性成長,為獲得各個醫療領域的經驗創造了絕佳的機會。疫情期間,隨著對生物相容性醫療器材的需求增加,醫療產業蓬勃發展。這使得生物相容性塗料產業獲得最大程度的收入。
俄羅斯吞併烏克蘭引發了全球健康危機,導致大量人員死亡、流離失所以及缺乏資金來支持受戰爭影響的人們。儘管情況困難,但來自鄰國和已開發國家的醫療設備和藥品等援助對烏克蘭來說卻變得極為重要。滿足需求的需求增加了生物相容性醫療器材和食品包裝產品的產量,最終導致了全球生物相容性塗料市場。包括生物相容性塗料在內的各個醫療領域的市場機會正在顯著成長。
本報告研究分析了全球生物相容性塗料市場,提供市場規模和預測、市場動態、主要參與者的現狀和前景等。
Global biocompatible coatings market size was valued at USD 15.4 billion in 2022, which is expected to reach USD 41.2 billion in 2030, with a CAGR of 13.1% for the forecast period between 2023 and 2030. Biocompatible coating emphasizes developing coating technologies, which are required in the medical devices sector which is expected to incur major development in the coming years. With the concern of patient safety biocompatible coatings become crucial in enhancing the functionality and biocompatibility of medical devices, implants, and prominent equipment.
Biocompatible coatings are used for imparting antimicrobial activities using development of cementless hydroxyapatite (HA)-coated titanium orthopedic prostheses. Hemocompatible coatings are significantly related to thrombogenic and thromboembolic complications where the coating is applied on medical-grade materials. Hemocompatible coatings comprises of active and passive types which have their specific characteristics. Ceramic oxide coatings for biomedical purposes are extensively used for damaged bone tissue and joint replacement. Aumina and zirconia are suitable ceramic materials used, because of their unique characteristics such as excellent wear resistance and biocompatibility. The progressive drivers for biocompatible coatings materials carry enormous potential for global market and create massive opportunities to expand in different segmentation.
Hemocompatible has high tolerance with blood, which is associated to thrombogenic and thromboembolic complications induced by biomaterial surfaces. Commercial products in the market products possess inadequate hemocompatibility for application in the medical grade. Hemocompatible coating solutions are tremendously driving the medical sector in inhibiting blood coagulation on the medical device. Health-driven companies are significantly producing such effective devices using biocompatible coatings, creating huge market opportunities as the technology requires prominent usage of materials.
Surmodics's proprietary PhotoLink UV curing technology can successfully develop coatings for all medical-grade materials using light-activated chemistry that generate bonds rapidly. Their exceptional coating solutions can easily integrate into existing manufacturing systems and enhance medical device functioning. Active (heparin) and passive (non-heparin) hemocompatible coatings inhibit thrombin generation and reduce protein adsorption. The significance of biocompatible coatings can be explored in different medical devices which will open global market opportunities by introducing more innovations for such coatings.
Rapid urbanization along with demand for hygienic products has raised concerns which is driving the market demand for biocompatible coatings in consumer and household products. Stringent regulations and government conditions on ensuring patient safety and product quality encourages to implement biocompatible coatings. Regulations by government entities have bounded medical device manufacturers to adhere stringent guidelines and provide assurance about biocompatibility before products can be approved and commercialized. Healthcare-associated infections (HAIs) can exacerbate the patient's conditions, increasing healthcare costs, prolonged mental trauma, and more severe outcomes. Global government agencies like European Medicines Agency (EMA) and U.S. Food and Drug Administration (FDA) have created specific regulations that prioritize safety in treatments and ensure manufactured medical devices should meet the biocompatibility standards. Antibacterial coatings are highly effective in combating pathogens and restricting the transmission of infections.
The rising concerns for patient safety is forcing government agencies to incorporate stringent guidelines for developing medical grade components. Applying biocompatibility standards on such devices encourages companies to generate innovative solutions to meet the regulations. Consequently, government regulations can also create huge market potential as more medical companies compete to generate effective solutions and drive innovation in achieving the imposed conditions.
The COVID-19 pandemic severely led to shortage of masks and healthcare products across the globe and global supply chain was prominently disrupted. The indispensable need for medical devices was serious concerns across the hospitals to provide active patient treatment. Incorporation of biocompatible coatings significantly revolutionized medical applications by utilizing the technology in building more medical devices and equipment. The market for biocompatible coating using relevant materials exploded and generated excellent opportunities to gain experience in various medical segmentation. The pandemic time was a boom for medical industries by increasing requirement of biocompatible medical devices which has created immense potential for building devices that biocompatible norms must regulate. This has taken the biocompatible coating industry to the utmost level of revenue generation.
The annexation of Russia on Ukraine has sparked global health crises which led to enormous decease, displacement of people, and lack in sufficient funds to support people affected from the war. Despite the prevailing difficulties, aid from other neighboring and developed countries such as medical devices, useful medicines, etc. has significantly became crucial for Ukraine. The demand to fulfill the needs has increased the production of biocompatible medical devices and food packaged products which ultimately derived the biocompatible coatings market across the globe. The market opportunities have grown prominently in various health care sectors including biocompatible coatings.
The advancement in biocompatible coating technologies has prominently gained interest to incorporate in various medical applications such as device-based therapies, blood-contacted equipment, etc. Evonik has successfully commenced proprietary surface modification technology called Endexo, which is based on low molecular weight fluoro-oligomers which significantly assist in enhancing the biocompatibility of medical devices making direct contact with blood, tissue, and other body fluids. It possesses surface modifying characteristics that impart permanent and durable modification of surface properties without altering or impacting the device dimensions or its functionality. Surface modification using Endexo biocompatible coating technology can effectively reduce around 99% platelet adhesion and thrombus formation from blood contacting-devices such as vascular stents, catheters, etc. The importance of biocompatible coating technologies in medical applications can be recognized which has immense potential for global market to grow non-linearly.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work