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Worldwide Single-Use Downstream Bioprocessing Technology Industry to 2035 - Players Include 3M, Agilitech, CPC and Cytiva Lifesciences
Friday, June 10, 2022
DUBLIN, June 2, 2022 /PRNewswire/ -- The "Single-Use Downstream Bioprocessing Technology Market by Type of Product, Scale of Operation and Key Geographical Regions: Industry Trends and Global Forecasts, 2022-2035" report has been added to ResearchAndMarkets.com's offering.
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This report features an extensive study of the current landscape and the likely future potential of single-use downstream bioprocessing technology and equipment developers, over the next 13 years. The study also features an in-depth analysis, highlighting the capabilities of various industry stakeholders engaged in this field.
The biopharmaceutical industry has witnessed significant growth over the past few years. Till date, more than 620 biologics have already been approved by the USFDA, while 8,000 are under clinical evaluation. The increased number of approvals and ongoing clinical trials demonstrate the growing popularity of novel treatment options for a variety of ailments and diseases. As a result, several stakeholders have opted to modernize their conventional biomanufacturing technologies in order to cope up with the increasing demand for biologics and to reduce the cost and time involved in bioprocessing.
One such example is the use of single-use technology for various upstream and downstream processes involved in biologics manufacturing. The use of single-use technologies in biopharmaceutical manufacturing has been steadily increasing over the years. Specifically, the adoption of single-use technology in downstream bioprocessing has witnessed a remarkable increase in the last few years. Single-use downstream technologies offer various advantages over the traditional stainless-steel technologies, such as reduction in CO2 emissions (by 35%), reduction in project lead time (by 8 months), removal of cleaning and sterilization expenditure throughout the development stage, increased productivity, less labor intensive, and low risk of contamination.
Given the various benefits of single-use downstream bioprocessing technology and its increasing adoption, several companies have developed and launched their proprietary single-use products, such as single-use chromatography systems, single-use filtration systems, single-use sampling systems, single-use connectors and single-use centrifugation systems, for the faster production of finished and high-quality biologics intended for the treatment of a wide array of disease indications.
In addition, some stakeholders have also taken initiatives to automate their single-use systems, by introducing several key features, such as visual data display, remote accessibility, data processing capability, built-in system control sensors, irradiation (gamma or x-ray), provision for alarms / alerts and input / output compatibility in order to make the equipment more user friendly. Driven by the increasing adoption of single-use technology and the ongoing efforts to enhance features and capabilities of various single-use equipment, the opportunity within this market is likely grow at a noteworthy pace over the coming years.
In addition to other elements, the study includes:
-- A detailed assessment of the market landscape of single-use
chromatography systems based on a number of relevant parameters, such as
product / device dimensions, flow rate, volume range, pressure, weight,
mode of operation (batch, fed-batch and continuous), scale of operation
(preclinical, clinical and commercial), key features (scalability,
visual data display, remote accessibility, data processing capability,
built-in system control sensors, I / O compatibility and provision for
alarms / alerts)and application area (monoclonal antibody production,
vaccine production, cell and gene therapy, therapeutic protein / hormone
and others). In addition, it presents details on the companies
developing single-use chromatography systems, highlighting their year of
establishment, company size, and geographical location.
-- A detailed assessment of the market landscape of single-use filtration
systems based on a number of relevant parameters, such as filter pore
size, type of membrane construction material, type of connector used,
maximum temperature, pressure range, type of filter (membrane, capsule,
cartridge and cassette), scale of operation (preclinical, clinical and
commercial), key features (sterilizability, irradiation (gamma or
x-ray), easy organization and fast aseptic connectors) and application
area (monoclonal antibody production, vaccine production, cell and gene
therapy, therapeutic protein / hormone and others). In addition, it
presents details on the companies developing single-use filtration
systems, highlighting their year of establishment, company size, and
geographical location.
-- A detailed assessment of the market landscape of single-use sampling
systems, based on several relevant parameters, such as type of sampling
unit (bag, bottle, tube-transfer and syringe), type of sterilizability
(irradiation (gamma or x-ray) and autoclavability), key features
(scalability and pre-assembled), volume range and tubing material. The
chapter also presents details on the companies involved in the
development of single-use sampling systems, based on their year of
establishment, company size, and geographical location. In addition, the
chapter presents overview of the overall market landscape of single-use
centrifugation systems.
-- A detailed assessment of the market landscape of single-use connectors
based on number of relevant parameters, such as type of valve / gender
(male, female and genderless), pack size, operating temperature,
termination size, material of construction and application area (fluid
transfer, sampling, process piping). In addition, it presents details on
the companies developing single-use connectors, highlighting their year
of establishment, company size, and geographical location.
-- A detailed competitiveness analysis of single-use chromatography
systems, single-use filtration systems, single-use sampling systems and
single-use connectors, taking into consideration several relevant
parameters. For single-use chromatography systems, the parameters taken
into account include the product strength (key features, mode of
operation, scale of operation, elution method compatibility and
application area) and supplier strength (company size and years of
experience). For single-use filtration systems, the parameters taken
into account include the product applicability (connectors used, type of
filter, scale of operation, key features and application area) and
supplier strength (company size and years of experience). For single-use
sampling systems, the parameters taken into account include the product
strength (sterilizability and key features) and supplier strength
(company size and years of experience). For single-use connectors, the
parameters taken into account include the product strength (type of
valve / gender, easy to use, application area) and supplier strength
(company size and years of experience).
-- Tabulated profiles of the key players providing single-use downstream
bioprocessing technologies, which are headquartered in North America,
Europe and Asia-Pacific. Each profile includes an overview of the
company, information on the financial performance (if available),
service portfolio, product portfolio, recent developments, and an
informed future outlook.
-- An in-depth analysis of various patents that have been filed / granted
for single-use downstream bioprocessing technology, till December 2021,
highlighting key trends associated with these patents, across type of
patents, publication year, application year, issuing authorities
involved, type of organizations, emerging focus area, patent age, CPC
symbols, leading patent assignees (in terms of number of patents granted
/ filed), patent characteristics and geography. It also includes a
detailed patent benchmarking and an insightful valuation analysis.
-- A detailed brand positioning analysis of the key industry players
(including single-use chromatography system developers, single-use
filtration system developers, single-use sampling system developers and
single-use connector developers), highlighting the current perceptions
regarding their proprietary products by taking into consideration
several relevant aspects, such as experience of the manufacturer, number
of products offered, product diversity, and number of patents published.
-- An informed estimate on the current and future demand for biologics and
demand-supply scenario for biologics manufactured using single-use
downstream bioprocessing technologies, for the period 2022-2035.
Key Questions Answered
-- Who are the leading players that offer single-use downstream
bioprocessing technologies?
-- What are the different application areas where single-use downstream
bioprocessing technologies can be employed?
-- In which regions, majority of the single-use downstream bioprocessing
technology are developers located?
-- What is the relative competitiveness of different single-use downstream
bioprocessing equipment?
-- How has the intellectual property landscape of single-use downstream
bioprocessing technologies, evolved over the years?
-- What is the current demand and supply of biologics manufactured using
single-use downstream bioprocessing technology?
-- How is the current and future opportunity likely to be distributed
across key market segments?
Key Topics Covered:
1. PREFACE
2. EXECUTIVE SUMMARY
3. INTRODUCTION
4. MARKET LANDSCAPE: SINGLE-USE CHROMATOGRAPHY SYSTEMS
4.1. Chapter Overview
4.2. Single-use Chromatography Systems: List of Products
4.2.1. Analysis by Product / Device Dimensions (cm)
4.2.2. Analysis by Flow Rate (L/min)
4.2.3. Analysis by Volume Range (L)
4.2.4. Analysis by Working Pressure (Bar)
4.2.5. Analysis by Mode of Operation
4.2.6. Analysis by Weight (Kg)
4.2.7. Analysis by Key Feature(s)
4.2.8. Analysis by Scale of Operation
4.2.9 Analysis by Application Area
4.3. Single-use Chromatography Systems: Developer Landscape
4.3.1. Analysis by Year of Establishment
4.3.2. Analysis by Company Size
4.3.3. Analysis by Location of Headquarters
4.3.4. Leading Developers: Analysis by Number of Single-use Chromatography Systems
5. MARKET LANDSCAPE: SINGLE-USE FILTRATION SYSTEMS
6. MARKET LANDSCAPE: SINGLE-USE SAMPLING AND CENTRIFUGATION SYSTEMS
7. MARKET LANDSCAPE: SINGLE-USE CONNECTORS
8. PRODUCT COMPETITIVENESS ANALYSIS
9. SINGLE-USE DOWNSTREAM BIOPROCESSING TECHNOLOGY PROVIDERS IN NORTH AMERICA: COMPANY PROFILES
9.1. Chapter Overview
9.2. 3M
9.2.1. Company Overview
9.2.2. Financial Information
9.2.3. Company Offerings
9.2.4. Product Portfolio
9.2.5. Recent Developments and Future Outlook
9.3. Agilitech
9.3.1. Company Overview
9.3.2. Company Offerings
9.3.3. Product Portfolio
9.3.4. Recent Developments and Future Outlook
9.4. CPC (Colder Products Company)
9.4.1. Company Overview
9.4.2. Financial Information
9.4.3. Company Offerings
9.4.4. Product Portfolio
9.4.5. Recent Developments and Future Outlook
9.5. Cytiva Lifesciences
9.5.1. Company Overview
9.5.2. Financial Information
9.5.3. Company Offerings
9.5.4. Product Portfolio
9.5.5. Recent Developments and Future Outlook
9.6. Pall Corporation
9.6.1. Company Overview
9.6.2. Company Offerings
9.6.3. Product Portfolio
9.6.4. Recent Developments and Future Outlook
9.7 Pneumatic Scale Angelus
9.7.1. Company Overview
9.7.2. Company Offerings
9.7.3. Product Portfolio
9.8 Thermo Fisher Scientific
9.8.1. Company Overview
9.8.2. Financial Information
9.8.3. Company Offerings
9.8.4. Product Portfolio
9.8.5. Recent Developments and Future Outlook
10. SINGLE-USE DOWNSTREAM BIOPROCESSING TECHNOLOGY PROVIDERS IN EUROPE AND ASIA-PACIFIC: COMPANY PROFILES
10.1. Chapter Overview
10.2. Keofitt
10.2.1. Company Overview
10.2.2. Financial Information
10.2.3. Company Offerings
10.2.4. Product Portfolio
10.2.5. Recent Developments and Future Outlook
10.3. Merck KGaA
10.3.1. Company Overview
10.3.2. Financial Information
10.3.3. Company Offerings
10.3.4. Product Portfolio
10.3.5. Recent Developments and Future Outlook
10.4. Sartorius
10.4.1. Company Overview
10.4.2. Financial Information
10.4.3. Company Offerings
10.4.4. Product Portfolio
10.4.5. Recent Developments and Future Outlook
10.5. Asahi KASEI
10.5.1. Company Overview
10.5.2. Financial Information
10.5.3. Company Offerings
10.5.4. Product Portfolio
10.5.5. Recent Developments and Future Outlook
10.6. MDI (Advanced Microdevices)
10.6.1. Company Overview
10.6.2. Company Offerings
10.6.3. Product Portfolio
10.6.4. Recent Developments and Future Outlook
11. PATENT ANALYSIS
12. BRAND POSITIONING MATRIX
13. DEMAND AND SUPPLY ANALYSIS
14. MARKET FORECAST AND OPPORTUNITY ANALYSIS
15. CONCLUSION
16. APPENDIX 1: TABULATED DATA
17. APPENDIX 2: LIST OF COMPANIES AND ORGANIZATIONS
For more information about this report visit https://www.researchandmarkets.com/r/1d56vm
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Research and Markets
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