市場調查報告書
商品編碼
1403488
2030 年前列腺癌診斷市場預測:按測試類型、癌症類型、最終用戶和地區進行的全球分析Prostate Cancer Diagnostics Market Forecasts to 2030 - Global Analysis By Test Type, Cancer Type, End User and by Geography |
根據 Stratistics MRC 的數據,2023 年全球前列腺癌診斷市場規模為 87.7 億美元,預計 2030 年將達到 152.5 億美元,預測期內複合年成長率為 8.23%。
前列腺癌診斷採用多方面的方法來識別和描述階段前列腺癌。直腸指檢 (DRE)、超音波(TRUS)、磁振造影(MRI) 和攝護腺特異性抗原 (PSA) 血液檢查是重要的診斷技術。此外,PSA 測試可測量前列腺分泌的蛋白質量,高水平通常表示需要進行額外的測試。直腸指檢可有效評估前列腺的大小和質地。
根據美國美國癌症研究所的數據,2019 年美國新診斷出超過 174,650 例前列腺癌。此外,根據相同來源的資料,2019 年有超過 31,620 人死於攝護腺癌。
癌症檢測技術的進步、人口高齡化和生活方式的改變是前列腺癌發生率在全球範圍內穩步上升的主要原因。此外,對能夠在階段準確識別和表徵前列腺癌的先進診斷工具的需求日益成長,並且隨著篩檢計劃的廣泛實施和醫療保健意識的提高,市場不斷成長,這是其背後的驅動力。
由於磁振造影(MRI) 等先進神經影像設備的成本高昂,醫療機構面臨巨大的財務障礙。購買和維護最先進的設備所需的大量資本支出可能會限制對高級診斷工具的訪問,尤其是在資源有限的環境中。此外,需要創造性的資金籌措策略和負擔得起的替代方案來緩解這一限制。
只要神經影像成像技術不斷進步,市場就會大幅成長。腦磁圖 (MEG)、正子斷層掃描 (PET) 和功能性磁振造影(fMRI) 等診斷技術的進步為提高靈敏度、解析度和診斷能力提供了機會。此外,投資研究和開發以整合這些最尖端科技可以為準確和深入的神經成像創造新的機會。
傳統的神經影像學正受到新的和替代診斷技術的威脅,例如穿戴式神經技術和腦脊髓液生物標記分析。此外,市場的既定地位正受到非成像方式的威脅,需要持續創新和差異化才能保持相關性並維持市場佔有率。
COVID-19 的爆發對神經影像市場產生了重大影響。全球健康危機的突然爆發擾亂了常規診斷測試、選擇性篩檢和非緊急就診等醫療服務。隨著社會疏離措施的落實以及為流行病管理分配資源,神經影像學的使用減少。此外,醫療機構的採購能力受到供應鏈中斷和經濟不確定性的影響,從而推遲了最先進的診斷成像設備的購買。
市場佔有率最大的細分市場是前列腺癌。大多數診斷出的前列腺癌病例是前列腺癌。前列腺腺泡細胞是癌症的起源部位,其表現為多種臨床和侵襲性形式。年齡、遺傳和荷爾蒙影響是與前列腺腺癌高發生率相關的因素。此外,如果不使用 PSA 測試、直腸指檢 (DRE) 和先進成像技術等診斷技術,前列腺腺癌就很難診斷和表徵。
在市場上,複合年成長率最高的細分市場是診斷實驗室。對早期檢測的需求和疾病的流行增加了對診斷服務的需求,從而推動了診斷檢測設施的成長。這些設施對於提供廣泛的診斷測試至關重要,包括生物標記評估和癌症篩檢。此外,由於診斷技術的進步和對個人化醫療的重視,診斷測試實驗室在醫療保健環境中的重要性日益增加。
在前列腺癌診斷方面,北美擁有最大的市場佔有率。前列腺癌在該地區非常常見,該地區很早就引入了尖端診斷技術,而且醫療保健基礎設施也很發達。此外,早期檢測和診斷的可靠方法是強力的篩檢計劃,例如 PSA 檢測。北美的地位因其積極主動的癌症研究方法、強力的政府支持以及高度的公眾和專業意識而得到進一步加強。
就前列腺癌診斷市場而言,亞太地區的複合年成長率最高。這一成長的推動因素包括前列腺癌發病率上升、早期檢測的普及知識以及中國、印度和日本等國家不斷發展的醫療保健系統。該地區高齡化和生活方式的改變是導致前列腺癌發病率上升的因素,也增加了對先進診斷試劑的需求。此外,政府措施、醫療保健投資以及與跨國診斷公司的合作正在加速尖端診斷技術的採用。
According to Stratistics MRC, the Global Prostate Cancer Diagnostics Market is accounted for $8.77 billion in 2023 and is expected to reach $15.25 billion by 2030 growing at a CAGR of 8.23% during the forecast period. In order to identify and describe prostate cancer in its early stages, prostate cancer diagnostics employ a multifaceted approach. Digital rectal examination (DRE), transrectal ultrasound (TRUS), magnetic resonance imaging (MRI), and the prostate-specific antigen (PSA) blood test are important diagnostic techniques. Moreover, the PSA test gauges the amount of a protein secreted by the prostate gland; high levels frequently signal the need for additional research. The evaluation of the prostate's size and texture is aided by a digital rectal examination.
According to the National Cancer Institute, in 2019, over 174,650 new cases of prostate cancer were diagnosed in the U.S. Additionally, data from the same source also suggests that over 31,620 deaths occurred in 2019 due to prostate cancer.
Improved cancer detection techniques, aging populations, and altered lifestyles are the main causes of the prostate cancer incidence that has been rising steadily throughout the world. Furthermore, there is a growing need for sophisticated diagnostic tools that can precisely identify and characterize prostate cancer at its earliest stages, which is driving market growth as screening programs become more widely implemented and healthcare awareness increases.
Healthcare facilities face a major financial obstacle due to the prohibitive cost of sophisticated neuroimaging equipment, such as magnetic resonance imaging (MRI) machines. Access to advanced diagnostic tools may be restricted by the significant capital outlay necessary for purchasing and maintaining state-of-the-art machinery, especially in environments with limited resources. Additionally, it will take creative financing strategies and affordable substitutes to lessen this constraint.
The market is poised for substantial growth as long as neuroimaging technologies continue to progress. Advancements in diagnostic techniques like magnetoencephalography (MEG), positron emission tomography (PET), and functional magnetic resonance imaging (fMRI) present opportunities for increased sensitivity, resolution, and diagnostic power. Furthermore, putting money into research and development to incorporate these state-of-the-art technologies can lead to new opportunities for precise and thorough neuroimaging diagnosis.
Traditional neuroimaging diagnostics are under threat from emerging alternative diagnostic technologies like wearable neurotechnology and cerebrospinal fluid biomarker analysis. Moreover, the market's established position is under threat from non-imaging modalities, so continued innovation and differentiation are necessary to stay relevant and hold onto market share.
In the neuroimaging diagnostics market, the COVID-19 pandemic has had a significant effect. Healthcare services, such as regular diagnostic tests, elective screenings, and non-emergency medical visits, were disrupted by the abrupt start of the global health crisis. The application of social distancing measures and the allocation of resources to pandemic management led to a decrease in the use of neuroimaging diagnostics. Furthermore, healthcare facilities ability to make purchases was also impacted by supply chain disruptions and economic uncertainty, which caused delays in the purchase of cutting-edge imaging equipment.
The segment with the largest market share is prostate adenocarcinoma. The majority of cases of prostate cancer that are diagnosed are prostatic adenocarcinoma, which is the most common type of the disease. The prostate's glandular cells are the cancer's original site, and it can present in a variety of ways, both clinically and aggressively. Age, heredity, and hormonal influences are among the factors linked to the high incidence of prostatic adenocarcinoma. Moreover, prostatic adenocarcinoma is difficult to diagnose and characterize without the use of diagnostic techniques such as PSA testing, digital rectal examination (DRE), and advanced imaging technologies.
In the market, the segment with the highest CAGR is diagnostic laboratories. The need for early detection and rising disease prevalence are driving up demand for diagnostic services, which in turn is fueling the growth of diagnostic laboratories. These establishments are crucial in offering an extensive array of diagnostic examinations, such as biomarker evaluations and cancer screenings. Additionally, diagnostic laboratories are becoming increasingly important in the healthcare environment as a result of improvements in diagnostic technologies and a focus on personalized medicine.
Concerning prostate cancer diagnostics, North America holds the largest market share. Prostate cancer is very common in the area; cutting-edge diagnostic technologies were adopted early; and the region has a strong healthcare infrastructure. Furthermore, a reliable means of early detection and diagnosis is through robust screening programs, like PSA testing. Further strengthening North America's position is proactive approaches to cancer research, robust government backing, and high levels of public and professional awareness.
In terms of the market for prostate cancer diagnostics, the Asia-Pacific region has the highest CAGR. The rising incidence of prostate cancer, growing knowledge of early detection, and the development of the healthcare system in nations like China, India, and Japan are some of the reasons driving this growth. The need for sophisticated diagnostics is being driven by the region's aging population and changing lifestyles, which are factors in the rising incidence of prostate cancer. Additionally, the adoption of cutting-edge diagnostic technologies is being accelerated by government initiatives, healthcare investments, and partnerships with multinational diagnostic companies.
Some of the key players in Prostate Cancer Diagnostics market include Danaher Corporation, Abbott Laboratories, BioMerieux SA, F. Hoffman La Roche Ltd., Bayer Aktiengesellschaft, Myriad Genetics Inc., Genomic Health, Inc., Agilent Technologies, Siemens Healthcare GmbH, Vyant Bio Inc., Biocept Inc., DiaSorin S.p.A, AstraZeneca Plc., OPKO Health, Inc., Becton Dickinson and Company, MDx Health, Foundation Medicine Inc. and Telo Genomics Corp (3D Signatures).
In December 2023, Danaher Corp., a global life sciences and diagnostics provider based in Washington D.C., has completed its $5.7 billion acquisition of Abcam plc, a supplier of protein research tools for life sciences based in Cambridge, England. Abcam has become an indirect wholly owned subsidiary of Danaher. Danaher's Life Sciences businesses provide tools and technologies to support the advancement of pharmaceuticals and biopharmaceuticals.
In December 2023, Roche announced the entry into a definitive merger agreement to acquire Carmot Therapeutics, Inc., a privately owned US company based in Berkeley, California. Carmot's R&D portfolio includes clinical stage subcutaneous and oral incretins with best-in-class potential to treat obesity in patients with and without diabetes, as well as a number of preclinical programs.
In September 2023, Abbott has entered a definitive agreement for the acquisition of Bigfoot Biomedical, which develops smart insulin management systems for individuals with diabetes. Together, the companies have worked on connected diabetes solutions since 2017. Developed by Bigfoot Biomedical, Bigfoot Unity is a smart insulin management system. It features connected insulin pen caps that use integrated continuous glucose monitoring (iCGM) data and healthcare provider instructions.