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発酵槽とバイオリアクターの世界市場-製品タイプ別(バイオリアクター、発酵槽)、製造材料別(ガラス、ステンレス、シングルユース)、バイオプロセスタイプ別(バッチ、フェドバッチ、連続)、生物学的製剤タイプ別(抗体、ワクチン、細胞治療、その他の生物学的製剤)、主要地域別(北米、欧州、アジア太平洋地域、中東・北アフリカ、中南米)の分布:業界動向と世界予測、2023-2035年


Global Fermenters and Bioreactors Market- Distribution by Type of Product (Bioreactors and Fermenters), Fabrication Material (Glass, Stainless Steel and Single-use), Type of Bioprocess (Batch, Fed-batch and Continuous), Type of Biologic (Antibodies, Vaccines, Cell Therapies and Other Biologics), and Key Geographical Regions (North America, Europe, Asia-Pacific, Middle East and North Africa, and Latin America): Industry Trends and Global Forecasts, 2023-2035

世界の発酵槽・バイオリアクター市場は、2023年には204億ドルに達し、予測期間2023-2035年には年平均成長率11.3%で成長すると予測されている。 1982年に導入されて以来、生物製剤は、その顕著な治療効果、良... もっと見る

 

 

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Roots Analysis
ルーツアナリシス
2023年3月27日 US$4,799
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ライセンス・価格情報
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165 英語

 

サマリー

世界の発酵槽・バイオリアクター市場は、2023年には204億ドルに達し、予測期間2023-2035年には年平均成長率11.3%で成長すると予測されている。

1982年に導入されて以来、生物製剤は、その顕著な治療効果、良好な安全性プロファイル、幅広い困難な病状に対処する能力により、人気が急上昇している。FDAは過去20年間で、170以上の生物製剤を承認し、現在7,500以上の生物学的介入が臨床試験で評価中である。このような複雑な生体分子の生産には、温度、pHレベル、溶存酸素、流体供給、その他一貫した細胞増殖に不可欠な重要なバイオプロセスパラメーターなど、最適条件を維持するように設計された特殊なバイオプロセス機器が必要である。バイオリアクターは、このような理想的な条件を作り出し、維持することによって、製造工程の上流で重要な役割を果たしている。その設計の目的は、生存細胞の濃度を高め、ワクチン、融合タンパク質、抗体、酵素などの組換えタンパク質の大量生産を可能にすることである。

バイオリアクターは、従来の治療用タンパク質だけに限定されるものではなく、細胞治療や遺伝子治療、遺伝子治療用のレトロウイルスベクター、3D組織工学で使用される細胞成分のような先進医薬品(ATMP)を生産する能力も持っている。逆に、発酵槽は、真菌であれ細菌であれ、微生物細胞集団の嫌気培養に利用され、翻訳後修飾を大きく必要としない生物製剤を生成する。重要なことは、生物製剤製造に発酵槽を利用することは、バイオリアクターに比べて多くの利点を提供することである。このアプローチは、バイオリアクターでの製造と比較して、迅速な開発、より高い品質、生産量の増加、バッチ間のばらつきの減少、拡張性の向上、および全体的な生産コストの低下をもたらす。

レポート範囲
 調査中に得られた洞察のエグゼクティブサマリー。世界のバイオリアクターと発酵槽市場の現状と、中長期的に予想されるその進化に関するハイレベルな見解を提供する。
 バイオリアクターと発酵槽の一般的な紹介と、バイオリアクターの構成要素に関する詳細。さらに、本章では、バイオプロセスの種類と作用様式に基づく様々なタイプのバイオリアクターに関する情報を提示する。さらに、バイオリアクターの用途とこの分野における将来の展望についての考察で締めくくっている。
 設立年、企業規模、本社所在地、地理的範囲、製品タイプ、生産能力、操業規模、拡張性、バイオプロセスのタイプ、細胞培養のタイプ、操業形態、エンドユーザーのタイプなど、いくつかの関連パラメータに基づいて、バイオリアクターと発酵槽を製造する企業の市場概況を詳細に評価。
 メーカー力(経験年数と企業規模)、ポートフォリオ力(地理的リーチ、製品タイプ、ポートフォリオ製品数、バイオリアクターまたは発酵槽のタイプ、容量、運転規模、拡張性、バイオプロセスのタイプ、細胞培養のタイプ、運転モード、エンドユーザーを考慮)に基づくバイオリアクターおよび発酵槽メーカーの詳細な競争力分析。
 バイオリアクターと発酵槽を製造する主要企業の詳細なプロフィール(メーカーの累積力と製品ポートフォリオに基づいてショートリスト化)。各プロフィールには、財務情報(入手可能な場合)、製品ポートフォリオ、最近の開発、情報に基づく将来の見通しに関する情報とともに、企業の簡単な概要が含まれている。
 生物製剤のバイオリアクターと発酵槽の世界的な設置容量の推定値は、様々な業界関係者が公開した情報に基づいている。また、製造材料、細胞培養源、リアクター容量、製造業者のタイプ、主要な地理的地域に基づく利用可能な容量の分布も特徴としている。
 バイオプロセスコントローラーとオートメーションシステムの市場状況に関するケーススタディで、操作規模、主要機能、バイオリアクターシステムとの互換性、バイオプロセスの種類、制御されるプロセスの種類に関する情報を提供します。
 包括的な市場予測分析で、2035年までの市場の将来性を強調。現在と将来の機会を年ごとに予測し、製品のタイプ、製造材料、バイオプロセスのタイプ、生物学的製剤のタイプ、主要地域などの関連パラメータに基づいてさらにセグメント化しています。

主要市場企業
 アプリコン・バイオテクノロジー
 バイオネット
 Cytiva
 エッペンドルフ
 メルク
 オリタルテクノロジー
 パー・インストゥルメント・カンパニー
 ザルトリウス
 上海白雲生物技術
 ソラリスバイオテック
 ソリダバイオテック
 鄭州 Laboao Instrument Equipment (LABAO)

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目次

1. PREFACE
1.1. Introduction
1.2. Key Market Insights
1.3. Scope of the Report
1.4. Research Methodology
1.5. Frequently Asked Questions
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Bioreactors
3.3. Components of a Bioreactor
3.4. Types of Bioreactors
3.4.1. Classification based on Type of Bioprocess
3.4.2. Classification based on Mode of Action
3.5. Applications of Bioreactors
3.6. Future Perspectives
4. FERMENTER AND BIOREACTOR MANUFACTURERS: MARKET LANDSCAPE
4.1. Chapter Overview
4.2. Fermenter and Bioreactor Manufacturers: Overall Market Landscape
4.2.1. Analysis by Year of Establishment
4.2.2. Analysis by Company Size
4.2.3. Analysis by Region of Headquarters
4.2.4. Analysis by Location of Headquarters
4.2.5. Analysis by Year of Establishment and Region of Headquarters
4.2.6. Analysis by Company Size and Region of Headquarters
4.2.7. Analysis by Year of Establishment, Company Size and Region of Headquarters
4.2.8. Analysis by Geographical Reach
4.2.9. Analysis by Region of Headquarters and Geographical Reach
4.2.10. Analysis by Type of Product
4.2.11. Analysis by Capacity
4.2.12. Analysis by Scale of Operation
4.2.13. Analysis by Scalability
4.2.14. Analysis by Type of Bioprocess
4.2.15. Analysis by Type of Cell Culture
4.2.16. Analysis by Mode of Operation
4.2.17. Analysis by Type of End-user
5. COMPANY COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions / Key Parameters
5.3. Methodology
5.4. Company Competitiveness Analysis: Small Companies
5.4.1. Company Competitiveness Analysis: Small Companies based in North America
5.4.2. Company Competitiveness Analysis: Small Companies based in Europe
5.4.3. Company Competitiveness Analysis: Small Companies based in Asia-Pacific and Rest of the World
5.5. Company Competitiveness Analysis: Mid-sized Companies
5.5.1. Company Competitiveness Analysis: Mid-sized Companies based in North America
5.5.2. Company Competitiveness Analysis: Mid-sized Companies based in Europe
5.5.3. Company Competitiveness Analysis: Mid-sized Companies based in Asia-Pacific and Rest of the World
5.6. Company Competitiveness Analysis: Large and Very Large Companies

6. COMPANY PROFILES
6.1. Chapter Overview
6.2. Applikon Biotechnology (acquired by Getinge)
6.2.1. Company Overview
6.2.2. Product Portfolio
6.2.3. Recent Developments and Future Outlook
6.3. Bionet
6.3.1. Company Overview
6.3.2. Product Portfolio
6.3.3. Recent Developments and Future Outlook
6.4. Cytiva
6.4.1. Company Overview
6.4.2. Financial Information
6.4.3. Product Portfolio
6.4.4. Recent Developments and Future Outlook
6.5. Eppendorf
6.5.1. Company Overview
6.5.2. Financial Information
6.5.3. Product Portfolio
6.5.4. Recent Developments and Future Outlook
6.6. Merck
6.6.1. Company Overview
6.6.2. Financial Information
6.6.3. Product Portfolio
6.6.4. Recent Developments and Future Outlook
6.7. Ollital Technology
6.7.1. Company Overview
6.7.2. Product Portfolio
6.7.3. Recent Developments and Future Outlook
6.8. Parr Instrument Company
6.8.1. Company Overview
6.8.2. Product Portfolio
6.8.3. Recent Developments and Future Outlook
6.9. Sartorius
6.9.1. Company Overview
6.9.2. Financial Information
6.9.3. Product Portfolio
6.9.4. Recent Developments and Future Outlook
6.10. Shanghai Bailun Biological Technology
6.10.1. Company Overview
6.10.2. Product Portfolio
6.10.3. Recent Developments and Future Outlook
6.11. Solaris Biotech (acquired by Donaldson Company)
6.11.1. Company Overview
6.11.2. Product Portfolio
6.11.3. Recent Developments and Future Outlook
6.12. Solida Biotech
6.12.1. Company Overview
6.12.2. Product Portfolio
6.12.3. Recent Developments and Future Outlook
6.13. Zhengzhou Laboao Instrument Equipment (LABAO)
6.13.1. Company Overview
6.13.2. Product Portfolio
6.13.3. Recent Developments and Future Outlook
7. CAPACITY ANALYSIS
7.1. Chapter Overview
7.2. Key Assumptions and Methodology
7.2.1 Bioreactors and Fermenters: Global Installed Capacity of Biologics
7.2.1.1. Analysis by Fabrication Material
7.2.1.2. Analysis by Source of Cell Culture
7.2.1.3. Analysis by Reactor Volume
7.2.1.4. Analysis by Type of Manufacturer
7.2.1.5. Analysis by Key Geographical Regions
7.3. Concluding Remarks
8. CASE STUDY: BIOPROCESS CONTROLLERS AND AUTOMATION SYSTEMS
8.1. Chapter Overview
8.2. Bioprocess Control Software: Overall Market Landscape
8.2.1. Analysis by Scale of Operation
8.2.2. Analysis by Key Features
8.2.3. Analysis by Compatibility with System
8.2.4. Analysis by Type of Process Controlled
8.3. Bioprocess Control Software Developers: Overall Market Landscape
8.3.1. Analysis by Year of Establishment
8.3.2. Analysis by Company Size
8.3.3. Analysis by Location of Headquarters
8.4. Upstream Controllers: Overall Market Landscape
8.4.1. Analysis by Scale of Operation
8.4.2. Analysis by Key Features
8.4.3. Analysis by Compatibility with Bioreactor System
8.4.4. Analysis by Type of Bioprocess
8.4.5. Analysis by Type of Process Controlled
8.5. Upstream Controller Developers: Overall Market Landscape
8.5.1. Analysis by Year of Establishment
8.5.2. Analysis by Company Size
8.5.3. Analysis by Location of Headquarters
8.6. Downstream Controller Systems: Overall Market Landscape
8.6.1. Analysis by Scale of Operation
8.6.2. Analysis by Key Features
8.6.3. Analysis by Type of System
8.6.4. Analysis by Type of Bioprocess
8.6.5. Analysis by Application Area
8.7. Downstream Controller System Developers: Overall Market Landscape
8.7.1. Analysis by Year of Establishment
8.7.2. Analysis by Company Size
8.7.3. Analysis by Location of Headquarters
9. MARKET FORECAST
9.1. Chapter Overview
9.2. Key Assumptions and Forecast Methodology
9.3. Global Fermenters and Bioreactors Market, 2023-2035
9.3.1. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Type of Product
9.3.1.1. Global Bioreactors Market, 2023-2035
9.3.1.2. Global Fermenters Market, 2023-2035
9.3.2. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Fabrication Material
9.3.2.1. Global Glass Fermenters and Bioreactors Market, 2023-2035
9.3.2.2. Global Stainless Steel Fermenters and Bioreactors Market, 2023-2035
9.3.2.3. Global Single Use Fermenters and Bioreactors Market, 2023-2035
9.3.3. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Type of Bioprocess
9.3.3.1. Global Fermenters and Bioreactors Market for Batch and Fed-batch Process, 2023-2035
9.3.3.2. Global Fermenters and Bioreactors Market for Continuous Process, 2023-2035
9.3.4. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Type of Biologic
9.3.4.1. Global Fermenters and Bioreactors Market for Antibodies, 2023-2035
9.3.4.2. Global Fermenters and Bioreactors Market for Vaccines, 2023-2035
9.3.4.3. Global Fermenters and Bioreactors Market for Cell Therapies, 2023-2035
9.3.4.4. Global Fermenters and Bioreactors Market for Other Biologics, 2023-2035
9.3.5. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Key Geographical Regions
9.3.5.1. Global Fermenters and Bioreactors Market in North America, 2023-2035
9.3.5.2. Global Fermenters and Bioreactors Market in Europe, 2023-2035
9.3.5.3. Global Fermenters and Bioreactors Market in Asia-Pacific, 2023-2035
9.3.5.4. Global Fermenters and Bioreactors Market in Middle East and North Africa, 2023-2035
9.3.5.5. Global Fermenters and Bioreactors Market in Latin America, 2023-2035
10. EXECUTIVE INSIGHTS
11. CONCLUDING REMARKS
12. APPENDIX 1: TABULATED DATA
13. APPENDIX 2: LIST OF COMPANIES AND ORGANIZATIONS

 

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Summary

The global fermenters and bioreactors market is expected to reach USD 20.4 billion in 2023 anticipated to grow at a CAGR of 11.3% during the forecast period 2023-2035.

Since their introduction in 1982, biologics have experienced a surge in popularity due to their remarkable therapeutic efficacy, favorable safety profiles, and their capacity to address a wide range of challenging medical conditions. The FDA has, in the past two decades, granted approval to over 170 biopharmaceuticals, while more than 7,500 biological interventions are currently undergoing evaluation in clinical trials. The production of these intricate biomolecules requires specialized bioprocessing equipment designed to maintain optimal conditions—such as temperature, pH levels, dissolved oxygen, fluid delivery, and other critical bioprocess parameters essential for consistent cell growth. Bioreactors play a crucial role in the upstream manufacturing processes by creating and sustaining these ideal conditions. Their design aims to amplify the concentration of viable cells, enabling large-scale production of recombinant proteins such as vaccines, fusion proteins, antibodies, and enzymes.

Bioreactors are not limited solely to conventional therapeutic proteins; they also possess the capability to produce advanced medicinal products (ATMPs) like cell and gene therapies, retroviral vectors for gene therapy, and cellular components used in 3D tissue engineering. Conversely, fermenters are utilized for the anaerobic cultivation of microbial cell populations—whether fungal or bacterial—to generate biologics that do not require significant post-translational modifications. Importantly, utilizing fermenters for biologics manufacturing offers numerous advantages over bioreactors. This approach results in faster development, higher quality, increased production output, reduced batch-to-batch variation, enhanced scalability, and lower overall production costs compared to manufacturing in bioreactors.

Report Coverage
 An executive summary of the insights captured during our research, offering a high-level view on the current state of the global bioreactors and fermenters market and its likely evolution in the mid-long term.
 A general introduction to bioreactors and fermenters, along with details related to the components of a bioreactor. Additionally, the chapter presents information on different types of bioreactors based on type of bioprocess and mode of action. Further, it concludes with a discussion on applications of bioreactors and future perspectives in this domain.
 Detailed assessment of the overall market landscape of companies manufacturing bioreactors and fermenters, based on several relevant parameters, such as year of establishment, company size, region of headquarters, geographical reach, type of product, capacity, scale of operation, scalability, type of bioprocess, type of cell culture, mode of operation and type of end user.
 A detailed competitiveness analysis of bioreactor and fermenter manufacturers based on manufacturer strength (in terms of years of experience and company size), portfolio strength (considering geographical reach, type of product, number of products in portfolio, type of bioreactor or fermenter, capacity, scale of operation, scalability, type of bioprocess, type of cell culture, mode of operation and end users).
 Elaborated profiles of key players manufacturing bioreactors and fermenters (shortlisted on the basis of cumulative strength of manufacturers and product portfolio); each profile includes a brief overview of the company, along with information on its financial information (if available), product portfolio, recent developments and an informed future outlook.
 An estimate of the global installed bioreactors and fermenters capacity of biologics, based on information provided by various industry stakeholders in the public domain. It also features distribution of the available capacity on the basis of fabrication material, source of cell culture, reactor volume, type of manufacturer and key geographical regions
 A case study on the market landscape of bioprocess controllers and automation systems, providing information on scale of operation, key features, compatibility with bioreactor system, type of bioprocess, and type of process controlled.
 A comprehensive market forecast analysis, highlighting the future potential of the market till 2035. Our year-wise projections of the current and forecasted opportunity have been further segmented based on relevant parameters, such as type of product, fabrication material, type of bioprocess, type of biologic and key geographical regions.

Key Market Companies
 Applikon Biotechnology
 Bionet
 Cytiva
 Eppendorf
 Merck
 Ollital Technology
 Parr Instrument Company
 Sartorius
 Shanghai Bailun Biological Technology
 Solaris Biotech
 Solida Biotech
 Zhengzhou Laboao Instrument Equipment (LABAO)



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Table of Contents

1. PREFACE
1.1. Introduction
1.2. Key Market Insights
1.3. Scope of the Report
1.4. Research Methodology
1.5. Frequently Asked Questions
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Bioreactors
3.3. Components of a Bioreactor
3.4. Types of Bioreactors
3.4.1. Classification based on Type of Bioprocess
3.4.2. Classification based on Mode of Action
3.5. Applications of Bioreactors
3.6. Future Perspectives
4. FERMENTER AND BIOREACTOR MANUFACTURERS: MARKET LANDSCAPE
4.1. Chapter Overview
4.2. Fermenter and Bioreactor Manufacturers: Overall Market Landscape
4.2.1. Analysis by Year of Establishment
4.2.2. Analysis by Company Size
4.2.3. Analysis by Region of Headquarters
4.2.4. Analysis by Location of Headquarters
4.2.5. Analysis by Year of Establishment and Region of Headquarters
4.2.6. Analysis by Company Size and Region of Headquarters
4.2.7. Analysis by Year of Establishment, Company Size and Region of Headquarters
4.2.8. Analysis by Geographical Reach
4.2.9. Analysis by Region of Headquarters and Geographical Reach
4.2.10. Analysis by Type of Product
4.2.11. Analysis by Capacity
4.2.12. Analysis by Scale of Operation
4.2.13. Analysis by Scalability
4.2.14. Analysis by Type of Bioprocess
4.2.15. Analysis by Type of Cell Culture
4.2.16. Analysis by Mode of Operation
4.2.17. Analysis by Type of End-user
5. COMPANY COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions / Key Parameters
5.3. Methodology
5.4. Company Competitiveness Analysis: Small Companies
5.4.1. Company Competitiveness Analysis: Small Companies based in North America
5.4.2. Company Competitiveness Analysis: Small Companies based in Europe
5.4.3. Company Competitiveness Analysis: Small Companies based in Asia-Pacific and Rest of the World
5.5. Company Competitiveness Analysis: Mid-sized Companies
5.5.1. Company Competitiveness Analysis: Mid-sized Companies based in North America
5.5.2. Company Competitiveness Analysis: Mid-sized Companies based in Europe
5.5.3. Company Competitiveness Analysis: Mid-sized Companies based in Asia-Pacific and Rest of the World
5.6. Company Competitiveness Analysis: Large and Very Large Companies

6. COMPANY PROFILES
6.1. Chapter Overview
6.2. Applikon Biotechnology (acquired by Getinge)
6.2.1. Company Overview
6.2.2. Product Portfolio
6.2.3. Recent Developments and Future Outlook
6.3. Bionet
6.3.1. Company Overview
6.3.2. Product Portfolio
6.3.3. Recent Developments and Future Outlook
6.4. Cytiva
6.4.1. Company Overview
6.4.2. Financial Information
6.4.3. Product Portfolio
6.4.4. Recent Developments and Future Outlook
6.5. Eppendorf
6.5.1. Company Overview
6.5.2. Financial Information
6.5.3. Product Portfolio
6.5.4. Recent Developments and Future Outlook
6.6. Merck
6.6.1. Company Overview
6.6.2. Financial Information
6.6.3. Product Portfolio
6.6.4. Recent Developments and Future Outlook
6.7. Ollital Technology
6.7.1. Company Overview
6.7.2. Product Portfolio
6.7.3. Recent Developments and Future Outlook
6.8. Parr Instrument Company
6.8.1. Company Overview
6.8.2. Product Portfolio
6.8.3. Recent Developments and Future Outlook
6.9. Sartorius
6.9.1. Company Overview
6.9.2. Financial Information
6.9.3. Product Portfolio
6.9.4. Recent Developments and Future Outlook
6.10. Shanghai Bailun Biological Technology
6.10.1. Company Overview
6.10.2. Product Portfolio
6.10.3. Recent Developments and Future Outlook
6.11. Solaris Biotech (acquired by Donaldson Company)
6.11.1. Company Overview
6.11.2. Product Portfolio
6.11.3. Recent Developments and Future Outlook
6.12. Solida Biotech
6.12.1. Company Overview
6.12.2. Product Portfolio
6.12.3. Recent Developments and Future Outlook
6.13. Zhengzhou Laboao Instrument Equipment (LABAO)
6.13.1. Company Overview
6.13.2. Product Portfolio
6.13.3. Recent Developments and Future Outlook
7. CAPACITY ANALYSIS
7.1. Chapter Overview
7.2. Key Assumptions and Methodology
7.2.1 Bioreactors and Fermenters: Global Installed Capacity of Biologics
7.2.1.1. Analysis by Fabrication Material
7.2.1.2. Analysis by Source of Cell Culture
7.2.1.3. Analysis by Reactor Volume
7.2.1.4. Analysis by Type of Manufacturer
7.2.1.5. Analysis by Key Geographical Regions
7.3. Concluding Remarks
8. CASE STUDY: BIOPROCESS CONTROLLERS AND AUTOMATION SYSTEMS
8.1. Chapter Overview
8.2. Bioprocess Control Software: Overall Market Landscape
8.2.1. Analysis by Scale of Operation
8.2.2. Analysis by Key Features
8.2.3. Analysis by Compatibility with System
8.2.4. Analysis by Type of Process Controlled
8.3. Bioprocess Control Software Developers: Overall Market Landscape
8.3.1. Analysis by Year of Establishment
8.3.2. Analysis by Company Size
8.3.3. Analysis by Location of Headquarters
8.4. Upstream Controllers: Overall Market Landscape
8.4.1. Analysis by Scale of Operation
8.4.2. Analysis by Key Features
8.4.3. Analysis by Compatibility with Bioreactor System
8.4.4. Analysis by Type of Bioprocess
8.4.5. Analysis by Type of Process Controlled
8.5. Upstream Controller Developers: Overall Market Landscape
8.5.1. Analysis by Year of Establishment
8.5.2. Analysis by Company Size
8.5.3. Analysis by Location of Headquarters
8.6. Downstream Controller Systems: Overall Market Landscape
8.6.1. Analysis by Scale of Operation
8.6.2. Analysis by Key Features
8.6.3. Analysis by Type of System
8.6.4. Analysis by Type of Bioprocess
8.6.5. Analysis by Application Area
8.7. Downstream Controller System Developers: Overall Market Landscape
8.7.1. Analysis by Year of Establishment
8.7.2. Analysis by Company Size
8.7.3. Analysis by Location of Headquarters
9. MARKET FORECAST
9.1. Chapter Overview
9.2. Key Assumptions and Forecast Methodology
9.3. Global Fermenters and Bioreactors Market, 2023-2035
9.3.1. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Type of Product
9.3.1.1. Global Bioreactors Market, 2023-2035
9.3.1.2. Global Fermenters Market, 2023-2035
9.3.2. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Fabrication Material
9.3.2.1. Global Glass Fermenters and Bioreactors Market, 2023-2035
9.3.2.2. Global Stainless Steel Fermenters and Bioreactors Market, 2023-2035
9.3.2.3. Global Single Use Fermenters and Bioreactors Market, 2023-2035
9.3.3. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Type of Bioprocess
9.3.3.1. Global Fermenters and Bioreactors Market for Batch and Fed-batch Process, 2023-2035
9.3.3.2. Global Fermenters and Bioreactors Market for Continuous Process, 2023-2035
9.3.4. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Type of Biologic
9.3.4.1. Global Fermenters and Bioreactors Market for Antibodies, 2023-2035
9.3.4.2. Global Fermenters and Bioreactors Market for Vaccines, 2023-2035
9.3.4.3. Global Fermenters and Bioreactors Market for Cell Therapies, 2023-2035
9.3.4.4. Global Fermenters and Bioreactors Market for Other Biologics, 2023-2035
9.3.5. Global Fermenters and Bioreactors Market, 2023-2035: Distribution by Key Geographical Regions
9.3.5.1. Global Fermenters and Bioreactors Market in North America, 2023-2035
9.3.5.2. Global Fermenters and Bioreactors Market in Europe, 2023-2035
9.3.5.3. Global Fermenters and Bioreactors Market in Asia-Pacific, 2023-2035
9.3.5.4. Global Fermenters and Bioreactors Market in Middle East and North Africa, 2023-2035
9.3.5.5. Global Fermenters and Bioreactors Market in Latin America, 2023-2035
10. EXECUTIVE INSIGHTS
11. CONCLUDING REMARKS
12. APPENDIX 1: TABULATED DATA
13. APPENDIX 2: LIST OF COMPANIES AND ORGANIZATIONS

 

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