In situ Hybridization Market Size, Share, Trends | CAGR of 6.8%
收藏market.us2023-12-04 更新2025-03-24 收录
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<h2>Market Overview</h2>
<p>The Global <strong>In situ Hybridization Market</strong> size is expected to be worth around <strong>USD 2.8 Billion</strong> by 2033 from <strong>USD 1.5 Billion</strong> in 2023, growing at a <strong>CAGR of 6.8%</strong> during the forecast period from 2024 to 2033.</p>
<p>In-situ hybridization is a laboratory technique employed by researchers to pinpoint specific DNA/RNA sequences within chromosomes. Molecular hybridization utilizes DNA’s ability to reform or renature under favorable conditions; during this technique a labeled DNA or RNA sequence acts as a probe to identify, locate or quantify naturally occurring sequences in biological samples; the nucleic acid probe must first be synthesized, labeled, purified, then annealed with its target; this technique also plays an integral part in genetic research as well as explorations into gene-based medicine, especially personalized medical.</p>
<p>In-situ hybridization can be divided into two general categories depending on the probes used; FISH uses fluorescence probes while CISH relies on chromogenic probes. FISH allows multiple targets to be seen at once in one sample and is often employed for gene detection and mutation analysis; CISH provides tissue morphological information through genetic profiling, making it especially helpful in molecular pathology diagnostics.</p>
<p><img class="alignnone size-full wp-image-110030" src="https://market.us/wp-content/uploads/2022/08/In-Situ-Hybridization-Market-Size.png" alt="In-Situ Hybridization Market Size" width="1220" height="738"></p>
<p><em><span style="text-decoration: underline;"><strong>*Actual Numbers Might Vary In The Final Report</strong></span></em></p>
<h2>市场概览</h2>
<p>预计到2033年,全球原位杂交市场规模将达到约<strong>28亿美元</strong>,从2023年的<strong>15亿美元</strong>增长,预计在2024年至2033年间的预测期内将以6.8%的复合年增长率增长。</p>
<p>原位杂交是一种实验室技术,研究人员利用该技术确定染色体中的特定DNA/RNA序列。分子杂交利用了DNA在有利条件下的重组或再天然化能力;在此技术中,标记的DNA或RNA序列作为探针用于识别、定位或量化生物样本中自然存在的序列;核苷酸探针必须首先进行合成、标记、纯化,然后与靶标进行退火;该技术还在遗传学研究以及基于基因的医学探索中发挥着至关重要的作用,特别是在个性化医疗方面。</p>
<p>根据所使用的探针,原位杂交可以分为两大类;荧光原位杂交(FISH)使用荧光探针,而染色体原位杂交(CISH)则依赖于染色原位杂交探针。FISH允许在一次样本中同时看到多个目标,常用于基因检测和突变分析;CISH通过基因分析提供组织形态学信息,因此在分子病理学诊断中特别有用。</p>
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