Se prevé que el mercado aumente debido a la expansión de plataformas de análisis de secuencias tecnológicamente superiores. El descubrimiento de miRNA no caracterizados previamente es posible gracias al análisis de secuencias de miRNA, que también ayuda a la evaluación de isoformas de miRNA, el estudio de correlaciones con enfermedades y el análisis de patrones de expresión específicos de tejidos. Dado que la secuenciación de próxima generación ofrece una mejor relación señal-ruido y facilita una secuenciación eficiente, generalmente se prefiere a los microarrays para el análisis de secuencias de miRNA. Además, los ARN pequeños como siRNA, piRNA y miRNA desempeñan un papel en la diferenciación y el crecimiento de las células , así como en el control epigenético mediado por ARN de procesos celulares como la expresión y la muerte génica. Encontrar nuevos miRNA y otros ARN pequeños se simplifica mediante el análisis de secuencias de ARN cortas, al igual que determinar si estos ácidos nucleicos se expresan de manera diferente en otras muestras. Este enfoque es útil para el análisis de miRNA sin conocimiento previo de su estructura o secuencia secundaria, así como para la identificación con resolución de una sola base de variaciones como los isomiR.
Además, el uso cada vez mayor de técnicas de análisis de secuenciación ha impulsado importantes inversiones por parte de importantes empresas del mercado. Como resultado, el mercado ha experimentado una rápida expansión de una importante línea de productos. La mayoría de estos artículos son mejoras respecto de los productos biotecnológicos que ya se encuentran en el mercado. Como resultado, la competencia puede ahora lanzar y desarrollar productos más rápidamente que los nuevos participantes.
The COVID-19 pandemic has had a substantial influence on the healthcare sector, increasing the need for specialized diagnostic equipment and personalized treatment. The pandemic has brought attention to the necessity for precise and quick diagnostic procedures that can locate the virus and monitor its progress. As a result, medical professionals have made significant investments in cutting-edge diagnostic techniques, such as molecular diagnostic procedures like PCR and fast antigen tests.
The pandemic has also brought attention to the value of personalized medicine, which entails modifying medical procedures and treatments for specific patients in light of their genetic makeup and other distinguishing traits. In the treatment of complex diseases like cancer, where different people may respond differently to the same medication, personalized medicine is becoming more and more crucial.
ATTRIBUTE | DETAILS |
Study period | 2020-2030 |
Base year | 2022 |
Estimated year | 2023 |
Forecasted year | 2023-2030 |
Historical period | 2019-2021 |
Unit | Value (USD Million) |
Segmentation | By Product, By Technology, By Application, By End-user, By Region |
By Product |
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By Technology |
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By Application |
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By End-user |
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By Region |
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The miRNA sequencing and assay market is expected to grow at 13.61% CAGR from 2023 To 2030. It is expected to reach above USD 778.83 Million by 2030 from USD 318.80 Million in 2023.
The driving factors for the market growth include the expansion of technologically advanced sequence analysis, the introduction of new technology and the launch of various techniques to assess the miRNA sequence.
Thermo Fisher Scientific, Inc., Illumina, Inc., QIAGEN N.V., PerkinElmer, Inc., Abcam plc, New England Biolabs, Takara Bio Inc., Lexogen GmbH, Norgen Biotek Corp., Maravai LifeSciences, HTG Molecular Diagnostics, Inc., Meridian Bioscience, Inc., System Biosciences, LLC, TriLink Biotechnologies Inc, Oxford Nanopore Technologies, Rosetta Genomics Ltd. are the major miRNA sequencing and assay market players.
The region's largest share is in North America. Product that is manufactured in nations like US and Canada that perform similarly and are inexpensively accessible to the general public have led to the increasing appeal.
The miRNA sequencing and assay market is segmented based on product, product, application, end-user, and region.
Based on the product, the miRNA sequencing and assay market segmentation has been divided into library preparation and sequencing consumables. The library preparation is expected to dominate the product segmentation. In the miRNA sequencing and assay industry, library preparation is a crucial stage and is regarded as the leading product category. RNA samples are transformed into a sequencing library as part of the library preparation procedure so that they may be sequenced on an NGS platform. RNA isolation, enrichment, fragmentation, adapter ligation, and PCR amplification are all steps in the lengthy process of preparing libraries. To provide precise and repeatable results, this method needs top-notch reagents and tools. The market for miRNA sequencing and assays is expanding quickly, propelled by rising interest in personalized medicine and the discovery of novel disease biomarkers.
[caption id="attachment_30420" align="aligncenter" width="1920"]The miRNA sequencing and assay market has been segmented into sequencing by synthesis, nanopore sequencing, ion semiconductor sequencing, and sequencing by oligonucleotide ligation and detection (SOLiD). The sequencing by synthesis segment is expected to dominate the technology category in the projected period. With the help of the high-throughput sequencing method known as SBS, millions of DNA or RNA molecules can be simultaneously sequenced in a single run. SBS involves first attaching a single-stranded DNA or RNA template to a stable support, like a glass slide or a microfluidic chip. Then, fluorescently labeled nucleotides are inserted one at a time, and a camera or another imaging equipment records each incorporation event.
[caption id="attachment_30422" align="aligncenter" width="1920"]The miRNA sequencing and assay market is segmented into categories based on application, cancer, polyglutamine diseases, and schizophrenia. The miRNA sequencing and assay market's leading application category at the moment is cancer. Due to miRNAs' function in regulating gene expression and their involvement in the onset and development of cancer, miRNA sequencing and assay technology has become a crucial tool in cancer research and diagnostics. Small, non-coding RNA molecules known as miRNAs are essential for controlling the expression of genes. The onset and spread of numerous cancers, including breast, lung, prostate, and colon cancer, have been associated to dysregulated miRNA expression.
[caption id="attachment_30424" align="aligncenter" width="1920"]The miRNA sequencing and assay market is segmented into research institutes, academics, CRO (contract research organizations). The end-user sector for miRNA sequencing and assays is currently dominated by research institutes. Research institutes are crucial in advancing our understanding of miRNA function and their involvement in a variety of diseases, including cancer, cardiovascular disease, and neurological disorders. miRNA sequencing and assay technology have become indispensable tools in molecular biology research. MiRNA sequencing and assay technology is used by research institutions for a variety of purposes, including the discovery of biomarkers, the diagnosis of diseases, the creation of new drugs, and fundamental studies.
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