▶ 調査レポート

自動プレートハンドラーの世界市場:タイプ別(自動プレートハンドラー、自動プレートスタッカー、自動バーコードラベラー、その他)、エンドユーザー用途別(液体取り扱い、創薬、ゲノミクス、プロテオミクス、生体分析、分析化学、臨床診断、その他)、地域別分析

• 英文タイトル:Global Automated Plate Handlers Market - Segmented by Type (Automated Plate Handler, Automated Plate Stacker, Automated Barcode Labeler), End-User Application (Liquid Handling, Drug Discovery, Genomics, Bio Analysis), and Region- Growth, Trends, and Forecast (2018 - 2023)

Mordor Intelligenceが調査・発行した産業分析レポートです。自動プレートハンドラーの世界市場:タイプ別(自動プレートハンドラー、自動プレートスタッカー、自動バーコードラベラー、その他)、エンドユーザー用途別(液体取り扱い、創薬、ゲノミクス、プロテオミクス、生体分析、分析化学、臨床診断、その他)、地域別分析 / Global Automated Plate Handlers Market - Segmented by Type (Automated Plate Handler, Automated Plate Stacker, Automated Barcode Labeler), End-User Application (Liquid Handling, Drug Discovery, Genomics, Bio Analysis), and Region- Growth, Trends, and Forecast (2018 - 2023) / B-MOR-08049資料のイメージです。• レポートコード:B-MOR-08049
• 出版社/出版日:Mordor Intelligence / 2018年5月5日
• レポート形態:英文、PDF、107ページ
• 納品方法:Eメール(受注後2営業日)
• 産業分類:Automation
• 販売価格(消費税別)
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レポート概要
本資料は、自動プレートハンドラーの世界市場について調べ、自動プレートハンドラーの世界規模、市場動向、市場環境、タイプ別(自動プレートハンドラー、自動プレートスタッカー、自動バーコードラベラー、その他)分析、エンドユーザー用途別(液体取り扱い、創薬、ゲノミクス、プロテオミクス、生体分析、分析化学、臨床診断、その他)分析、アメリカ市場規模、ヨーロッパ市場規模、アジア市場規模、日本市場規模、中国市場規模、関連企業情報などをまとめた調査レポートです。
・イントロダクション
・エグゼクティブサマリー
・自動プレートハンドラーの世界市場インサイト
・自動プレートハンドラーの世界市場環境
・自動プレートハンドラーの世界市場動向
・自動プレートハンドラーの世界市場規模
・自動プレートハンドラーの世界市場規模:タイプ別(自動プレートハンドラー、自動プレートスタッカー、自動バーコードラベラー、その他)
・自動プレートハンドラーの世界市場規模:エンドユーザー用途別(液体取り扱い、創薬、ゲノミクス、プロテオミクス、生体分析、分析化学、臨床診断、その他)
・自動プレートハンドラーの世界市場:地域別市場規模・分析
・自動プレートハンドラーの北米市場規模・予測
・自動プレートハンドラーのアメリカ市場規模・予測
・自動プレートハンドラーのヨーロッパ市場規模・予測
・自動プレートハンドラーのアジア市場規模・予測
・自動プレートハンドラーの日本市場規模・予測
・自動プレートハンドラーの中国市場規模・予測
・自動プレートハンドラーのインド市場規模・予測
・関連企業情報・競争状況

The automated plate handlers market is expected to grow at a CAGR of 3.56% during the forecast period (2018 – 2023). The scope of the report is limited to the type of plate handlers, such as automated plate handler, automated plate stacker, and automated barcode labeler, among others. The report also studies various end-user applications. The regions considered in the report include North America, Europe, Asia-Pacific, and Rest of the World.

Automation is used widely in various life science applications ranging from proteomics to systems biology. Automation is a dominant feature in the diagnostics market, followed by the discovery and research labs. In clinical diagnostics, where profits are based on the number of samples, a high throughput is the core driving factor. Research labs and academic institutions are generally opting for modular automation, wherein, they can reduce human intervention in tedious and repetitive tasks.

The drastic increase in sample throughput and the significant decrease in the time to produce experimental results are the factors driving the automated plate handlers market. Microplate automation instruments are used in laboratories for increased throughput and greater scale in various protocols, such as high throughput screening, next-generation sequencing, cellular analysis, PCR set-up, serial dilution, toxicology, plate labeling, and many more. Apart from reducing the mundane tasks, automated plate handlers market is also driven by the need for consistency in quality as the cost of error is very high in laboratories.

Increasing Lab Automation is the Major Driver for the Market

The primary goal of lab automation is to provide reliable information and quality output, which fulfill the industry needs. The use of manual systems hampers the data quality during the transferring process. Technological advancements and increasing pressure to deliver results have led to the use of automated systems in laboratories. The rate of adoption of lab automation is growing due to its accuracy and advanced data management capabilities, which ultimately reduces human intervention and allows them to think creatively about the implications of their experiments and to design effectively follow-up projects or develop alternative approaches to their work.

Moreover, advancements have been made in the molding of plastics that has reduced the volumes of reagents used, thereby, have enabled easy handling of smaller liquid volumes. These advancements have worked in the favor of the development of microplates and nanoplates to fit in with the automated liquid handling equipment.

Development of Smaller Automated Machines

Clinical research centers on producing quantitative information for drug discovery, diagnostics, and research teams. This discipline has been greatly aided by the technological advances as they have ensured greater reliability and throughput. Automated plate handlers used in laboratories are required to be simple as well as intuitive to use. Developments in this field have yielded a new class of devices that are rugged, reliable, fault tolerant, and can interact with different systems.

Software for the use of automated plate handlers is under development to provide robustness and compatibility with the existing applications. A wide range of automated plate handlers is available in the market suited to perform different applications. Thus, innovations in technology have provided compact systems to meet the requirements of the industry, thereby, driving the growth of the market.

In general, a compound takes many years for moving from a target concept size to a medication that generates revenue. Furthermore, there are many phases involved in the drug discovery and development process (DDD). The steady increase in costs of pharmaceutical products prompted the industry players to modernize the traditional processes. Manual procedures take a considerable amount of time and are very complex as well as expensive. Hence, drug discovery units have pivoted into automating and robotizing their research laboratories.

During the DDD processes for new therapeutic solutions, an automated plate handler is a vital tool that helps in streamlining the laboratory workflow. Procedures that used to take several months manually can now be completed in a day by the use of modular automation systems. Ultra-high throughput screening instruments reduce the number of manual operations, thereby, contributing to the reduction of possible human errors and increasing the productivity. With the help of automated plate handlers, modular systems speed up the synthesis by a factor of 1000.

Key Developments in the Market

•January 2018 – Agilent acquire Luxcel Biosciences to expand its cell analysis portfolio. Luxcel Biosciences develops real-time fluorescence plate-reader based in-vitro cell assay kits.
•October 2017 – Molecular Devices introduced SpectraMax iD5, Multi-Mode Microplate Reader with automatic filter identification and western blot capability. It will assist scientists in increasing their research capabilities and comes with built-in absorbance, fluorescence, luminescence, time-resolved fluorescence (TRF), and tunable fluorescence polarization (FP) read modes.

The major players include – HUDSON ROBOTICS, BECTON DICKINSON, SYNCHRON LAB, AGILENT TECHNOLOGIES and SIEMENS HEALTHCARE, amongst others.

Reasons to Purchase this Report

•Current and future automated plate handlers market outlook in the developed and emerging markets
•Analyzing various perspectives of the market with the help of Porter’s five forces analysis
•Identifying the segment that is expected to dominate the market
•Identifying the regions that are expected to witness the fastest growth during the forecast period
•Identify the latest developments, market shares, and strategies employed by the major market players
•3-month analyst support, along with the Market Estimate sheet (in Excel)

Customization of the Report

•This report can be customized to meet your requirements. Please connect with our representative, who will ensure you get a report that suits your needs.

レポート目次

1. Introduction

1.1 Scope of the Study

1.2 Executive Summary

2. Research Approach and Methodology

2.1 Key Deliverables of the Study

2.2 Study Assumptions

2.3 Analysis Methodology

2.4 Research Phases

3. Market Insights

3.1 Market Overview

3.2 Industry Attractiveness – Porter’s Five Forces Analysis

3.2.1 Bargaining Power of Suppliers

3.2.2 Bargaining Power of Consumers

3.2.3 Threat of New Entrants

3.2.4 Threat of Substitutes

3.2.5 Intensity of Competitive Rivalry

4. Market Dynamics

4.1 Market Drivers

4.1.1 Development of Smaller Automated Machines

4.1.2 Increasing Lab Automation

4.1.3 Need for Higher Reproducibility and Effective Management of the Vast Amounts of Data Generated

4.2 Market Restraints

4.2.1 Initial Setup is Expensive

4.2.2 Loss of Flexibility in Process

4.2.3 Interconnecting Various Platforms across Laboratories

5. Global Automated Plate Handlers Market Segmentation

5.1 By Type

5.1.1 Automated Plate Handler

5.1.2 Automated Plate Stacker

5.1.3 Automated Barcode Labeler

5.1.4 Others

5.2 By End-User Application

5.2.1 Liquid Handling

5.2.2 Drug Discovery

5.2.3 Genomics

5.2.4 Proteomics

5.2.5 Bio Analysis

5.2.6 Analytical Chemistry

5.2.7 Clinical Diagnostics

5.2.8 Others

5.3 By Region

5.3.1 North America

5.3.1.1 US

5.3.1.2 Canada

5.3.2 Europe

5.3.2.1 UK

5.3.2.2 Germany

5.3.2.3 France

5.3.2.4 Others

5.3.3 Asia-Pacific

5.3.3.1 China

5.3.3.2 Japan

5.3.3.3 India

5.3.3.4 Others

5.3.4 Latin America

5.3.4.1 Brazil

5.3.4.2 Mexico

5.3.4.3 Argentina

5.3.4.4 Others

5.3.5 Middle East & Africa

5.3.5.1 UAE

5.3.5.2 Saudi Arabia

5.3.5.3 South Africa

5.3.5.4 Others

6. Competitive Intelligence – Company Profiles

6.1 Hudson Robotics

6.2 Becton Dickinson

6.3 Synchron Lab

6.4 Agilent Technologies

6.5 Siemens Healthcare

6.6 Biosero Inc.

6.7 Molecular Devices, LLC

6.8 Tecan Group Ltd

6.9 PerkinElmer

6.10 Bio Rad

6.11 Eppendorf AG

6.12 Shimadzu

6.13 Aurora Biomed

*List is not Exhaustive

7. Investment Analysis

8. Future Outlook of Automated Plate Handlers Market