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Cell Lysis Disruption Market Size

ID: MRFR//6886-HCR | 111 Pages | Author: Rahul Gotadki| May 2024

The Cell Lysis and Disruption Market is made dynamic by a number of factors and considerations that shape its dynamics and growth. A major thing is the increasing applications of cell lysis as well as disruption procedures in different life sciences research, diagnostic and therapeutic processes. The deepening into cell biology has brought about an increase in demand for cellular components as well as biomolecules which necessitates the development of efficient and reliable methods for cell lysis or disruption to meet these demands.

Technologies also determine the shape of Cell Lysis and Disruption Market. Inventions on equipments, reagents, methodologies continuously improve efficiency of cell lysis/disruption and make them accurate. Advanced technologies such as bead milling, ultrasonication or high pressure homogenization contribute to better cell membrane disruption giving rise to improved quality cellular components that can be used extensively in genomics, proteomics or drug development.

Additionally, government regulations significantly affect market dynamics in products used for cell lysis & disruption. Regulatory authorities like U.S.A Food & Drug Administration (FDA) & European Medicines Agency (EMA) have established guidelines whose aim is to ensure safety & efficacy of products employed for cell lysis&disruption. Approval for use within research laboratories & clinical applications will only be awarded if manufacturers adhere to these regulations.

The focus on personalized medicine along with developments in biopharmaceuticals is driving the growth of the Cell Lysis And Disruption Market. For instance; production of biopharmaceuticals which include monoclonal antibodies among other recombinant proteins require successful use of cell lysis techniques. The increased targeting towards personalized therapies has resulted into higher requirements for efficient means through which cells are lysed hence driving market expansion.

Additionally, there will be more demand for cell lysis & disruption items due to tremendous growth registered in biotechnology & pharmaceutical sectors. Such industries widely employ several forms of intracellular component extraction that include cell lysis in vaccine making, drug discovery and gene therapy among others. The expanded range of biotechnological & pharmaceutical research undertakings has contributed to the continuous growth of the Cell Lysis And Disruption Market.

Cell Lysis and Disruption Market Forecast


The Cell Lysis and Disruption market is anticipated to reach USD 4454.01 Million by 2030 at 8.90% CAGR during the forecast period 2022-2030


Cell Lysis and Disruption Market Synopsis


Cell lysis & disruption is a method in which the cell membrane is broken down in order to extract the nucleic acids or proteins from a cell. The choice of cell lysis method depends on the type of cells, concentration, application (post-processing) and efficiency required. The demand for cell lysis & disruption is increasing due to the rising number of research & development activities in the biotechnology industry. This is majorly attributed to the increasing adoption of biotech processes in the pharmaceutical, agricultural sector.


Cell Lysis and Disruption Market Influencer


The expansion of the biopharmaceutical sector and growing advancements in personalized medicine is positively influencing the cell lysis and disruption market. Moreover, the rising demand for novel therapeutics and the increasing prevalence of diseases is responsible for positive cell lysis and disruption market growth.


Market Drivers



  • Expanding biotechnology and biopharmaceutical industries. For example, the biotechnology industry in India is growing at a high pace. It comprises about 800 companies, is expected to be valued at USD 11.6 billion in 2017. Moreover, the government of India has invested USD 5 billion to initiate research in the field of biotechnology.

  • The increasing prevalence of chronic diseases, including cancer. The incorporation of genetic and molecular techniques in personalized medicine via human genome research helps to determine best treatment options which are expected to drive the growth of cell lysis and disruption market.

  • Increasing government funding for research

  • Rising focus on personalized medicine

  • Technological advancements in cell disruption techniques


Market Restraints



  • Shortage of skilled personnel

  • The high maintenance cost of equipment


Segmentation


By Technique



  • Reagent Based: The largest segment, higher biological specificity of enzymatic disruption is attributive to the growth of this segment size. The reagent based segment is further segmented into detergent and enzymatic.



  • Physical Disruption: Physical or mechanical methods of cell disruption have traditionally been the method of choice for cell lysis. Physical disruption method includes mechanical homogenization, ultrasonic homogenization, pressure homogenization, and temperature treatments.


By Product



  • Consumables: The fastest-growing segment owing to the increasing prevalence of diseases and rise in funding of cell-based research is a crucial factor for the growth of the segment. Consumables are further divided into reagent and kits, beads, and disposables.



  • Instruments: The commercial availability and reliability of tools that are used in cell disruption & lysis are boosting the growth of this segment. The instrument segment is further categorized as sonicators, homogenizers, French press, microfluidizer, and others.


By Cell Type



  • Mammalian Cells: The largest segment, this is attributable to Increased investments in R&D linked to biotechnology by government organizations and the private sector. Furthermore, the primary vital players have developed reagents that specifically work on mammalian cells, which is attributing to the growth of this segment. For instance, Merck offers a wide range of mammalian cell lysis reagents which are used for the preparation of mammalian phosphorylated, cytosolic, and nuclear proteins.

  • Microbial Cells: The expansion of the biopharmaceutical sector and increasing research is responsible for positive growth.

  • Others: This segment covers plant cells.


By End-User



  • Research Laboratories and Institutes: The largest segment, increased use of cell disruption techniques in research facilities is projected to drive the growth of this segment during the forecast period.

  • Pharmaceutical and Biotechnology Companies: A small segment due to the rising occurrence of diseases and growing research & development is projected to boost the growth of this segment.

  • Others: This segment includes academic and research institutions.


By Region



  • Americas: The largest regional market, increasing government initiatives to promote research in the pharmaceutical and biotech sector will boost the cell lysis and disruption market growth in this region. Firms in the US conduct over half the world's R&D in pharmaceuticals, which is about $75 billion and hold intellectual property rights on most new medicines.



  • Europe: Technological advancements in personalized medicine and proteomic field is leading to a rise in the adoption of cell lysis & disruption techniques.



  • Asia-Pacific: The fastest-growing regional market, Asia-Pacific is seeing a surge in the clinical trials and contract research and manufacturing activities owing to the growth in the bio-services sector is expected to boost the cell lysis and disruption market growth.



  • Middle East & Africa: The smallest market due to limited healthcare infrastructure in this region.


Key Players



  • Thermo Fisher Scientific, Inc. (US)

  • Merck KGAA (Germany)

  • Bio-Rad Laboratories, Inc. (US)

  • Danaher Corporation (US)

  • Becton Dickinson & Company (US)

  • Cell Signaling Technology, Inc. (US)

  • Miltenyi Biotec (Germany)

  • Hoffmann–La Roche Ltd. (Switzerland)

  • Qiagen N.V. (Netherlands)

  • Qsonica, LLC (US)

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