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バッファ製造市場:バッファ製造システムおよびサービスプロバイダにフォーカス - 事業規模別(前臨床/臨床および商業)、システム構成要素タイプ別(シングルユースバッファ混合/調製装置および再利用可能バッファ混合/調製装置)、主要地域別(北米、欧州、アジア太平洋およびその他の地域)の分布:業界動向と世界予測、2023-2035年


Buffer Manufacturing Market: Focus on Buffer Manufacturing Systems and Service Providers - Distribution by Scale of Operation (Preclinical / Clinical and Commercial), Type of System Component (Single-use Buffer Mixing / Preparation Equipment and Reusable Buffer Mixing / Preparation Equipment) and Key Geographical Regions (North America, Europe, Asia-Pacific and Rest of the World): Industry Trends and Global Forecasts, 2023-2035

世界の緩衝材製造市場は予測期間2023-2035年にCAGR 5.9%で成長すると予測される 医薬品製造におけるpH調整に不可欠な水溶液である緩衝液は、生物製剤と低分子化合物の製造期間中の安定性維持に重要な役割を担... もっと見る

 

 

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Roots Analysis
ルーツアナリシス
2023年5月1日 US$4,799
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ライセンス・価格情報
注文方法はこちら
156 英語

 

サマリー

世界の緩衝材製造市場は予測期間2023-2035年にCAGR 5.9%で成長すると予測される

医薬品製造におけるpH調整に不可欠な水溶液である緩衝液は、生物製剤と低分子化合物の製造期間中の安定性維持に重要な役割を担っている。緩衝液は、培養における安定したpHを確保し、収量を最適化し、精製条件を維持し、製品の機能性を維持するために、バイオプロセスの段階にわたって広く使用されている。しかし、従来の緩衝液製造法は複雑で、大きなスペースと熟練した労働力を必要とする。これらの工程は時間がかかり、多段階であるため、製造コストが高くなり、バッチにばらつきが生じる。BioPharma社の報告によれば、2,000Lの緩衝液の製造には従来35時間以上かかっていた。

これらの課題に対処するため、製薬会社は革新的な社内緩衝液調製システムを採用するか、第三者プロバイダーに委託している。最近の傾向では、スペース効率と先端技術の統合により、下流工程での安定したバッファー条件を確保できるため、これらのシステムが急速に普及している。ポール・コーポレーションによれば、これらの斬新なシステムは2,000Lのバッファーを40~50分で生産できる。バッファーマネージメントシステムを導入することにより、人件費を50%削減し、バッファーの製造費用を12%削減することができる。緩衝液製造のアウトソーシングにより、年間約90,000米ドルが節約され、緩衝液の調製時間が75%短縮される見込みである。バッファーに対する需要の高まりとその製造における複雑さにより、バッファー調製システム市場は今後10年間で安定した成長を遂げるだろう。

レポート範囲
 本レポートでは、業務規模、システムコンポーネントの種類、主要地域に焦点を当て、バッファ調製市場を調査している。
 市場成長に影響を与える要因(促進要因、阻害要因、機会、課題など)について分析を行っています。
 市場内の潜在的な優位性と障壁を評価し、主要市場プレイヤーの競争環境に関する洞察を提供します。
 主要4地域の市場セグメントについて収益予測を提供しています。
 バッファー製造に関する包括的な調査により、従来の方法と革新的な方法の両方を網羅し、関連する課題とアウトソーシングの利点を取り上げています。また、アウトソーシング・パートナーを選択する際の重要な考慮事項や、今後の市場展望についても論じています。
 緩衝剤の調製および製造システムの評価には、システムのタイプ、操作モード、スケール、容器材料、移動性オプション、特徴、統合技術、製造プロセス、緩衝剤の形態、およびバイオプロセス法におけるそれらの応用を考慮した多面的な分析が含まれる。
 この分析には、設立年、企業規模、本社所在地、バッファ製造システム提供への関与に基づくバッファ製造システムプロバイダーの詳細な評価が含まれる。
 緩衝材製造システムの徹底的な製品競争力分析では、開発者の経験や、システムの種類、操作モード、容器材料、移動性オプション、機能、統合技術、製造プロセス、緩衝材の形態、バイオプロセス方法、GMP製造の可用性、シングルユースコンポーネントなどの要因を考慮しています。
 緩衝液調製システムの開発に携わる主要企業の詳細なプロフィールは、特定の基準に基づき、企業概要、製品ポートフォリオ、最近の開発、将来の展望を網羅しています。
 緩衝剤製造サービスプロバイダーの広範な評価では、設立年、企業規模、本社所在地、施設所在地、事業規模、製造される緩衝剤、製剤、包装形態、適合する生物製剤、応用分野、サービスタイプ、同領域における積極的なプレーヤーなどのパラメータを考慮しています。
 北米、欧州、アジアの緩衝液製造サービスプロバイダーの包括的な企業競争力分析では、サプライヤーの経験や施設数、所在地、事業規模、提供する緩衝液、製剤、包装形態、適合する生物製剤、応用分野、サービスタイプ、GMP製造の可用性などの要因を考慮しています。
 緩衝剤製造サービスを提供する主要企業の詳細なプロフィールには、会社概要、主要幹部、ポートフォリオ、最近の動向、独自の基準に基づく将来の見通しが含まれています。
 最後に、2017年以降の業界関係者のパートナーシップの詳細分析では、パートナーシップ年、タイプ(買収、協定、提携など)、パートナーのタイプ、企業規模、最も活発なプレーヤー、業界内のパートナーシップ活動の地域分布を網羅しています。


主要市場企業
 旭化成
 Avantor
 キャンバックス
 Cytiva
 ロンザ
 メルク
 ポール・コーポレーション
 サーモフィッシャーサイエンティフィック
 ユニオゲン

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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. Key Questions Answered
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Buffer Manufacturing
3.2.1. Conventional Methods of Buffer Manufacturing
3.2.2. Novel Methods of Buffer Manufacturing
3.3. Challenges Associated with Buffer Manufacturing
3.4. Advantages of Outsourcing Buffer Manufacturing
3.5. Key Considerations While Selecting an Outsourcing Partner
3.6. Future Perspectives
4 .MARKET LANDSCAPE: BUFFER MANUFACTURING SYSTEMS
4.1. Chapter Overview
4.2 Buffer Manufacturing System: Overall Market Landscape
4.2.1. Analysis by Type of System
4.2.2. Analysis by Mode of Operation
4.2.3. Analysis by Scale of Operation
4.2.4. Analysis by Vessel Fabrication Material(s)
4.2.5. Analysis by System Mobility Option
4.2.6. Analysis by Feature(s) of Buffer Manufacturing System
4.2.7. Analysis by Integrated Technique(s)
4.2.8. Analysis by Buffer Manufacturing Process
4.2.9. Analysis by Type of Buffer Form(s)
4.2.10. Analysis by Bioprocessing Method
4.3. Buffer Manufacturing System Providers Landscape
4.3.1. Analysis by Year of Establishment
4.3.2. Analysis by Location of Headquarters
4.3.3. Analysis by Company Size
4.3.4. Most Active Players: Analysis by Number of Products Offered
5. PRODUCT COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions and Key Parameters
5.3. Methodology
5.4. Product Competitiveness Analysis
5.4.1. Buffer Manufacturing Systems Offered by Companies based in North America
5.4.2. Buffer Manufacturing Systems Offered by Companies based in Europe
5.4.3. Buffer Manufacturing Systems Offered by Companies based in Asia
6. COMPANY PROFILES: BUFFER MANUFACTURING SYSTEM PROVIDERS
6.1. Chapter Overview
6.2. Asahi Kasei
6.2.1. Company Overview
6.2.2. Product Portfolio
6.2.3. Recent Developments and Future Outlook
6.3 Cytiva
6.3.1. Company Overview
6.3.2. Product Portfolio
6.3.3. Recent Developments and Future Outlook
6.4. Pall Corporation
6.4.1. Company Overview
6.4.2. Product Portfolio
6.4.3. Recent Developments and Future Outlook
6.5 Thermo Fisher Scientific
6.5.1. Company Overview
6.5.2. Product Portfolio
6.5.3. Recent Developments and Future Outlook
7. MARKET LANDSCAPE: BUFFER MANUFACTURING SERVICE PROVIDERS
7.1. Chapter Overview
7.2. Buffer Manufacturing Service Providers: Overall Market Landscape
7.2.1. Analysis by Year of Establishment
7.2.2. Analysis by Company Size
7.2.3. Analysis by Location of Headquarters
7.2.4. Analysis by Location of Facilities
7.2.5. Analysis by Scale of Operation
7.2.6. Analysis by Type of Buffer(s) Provided
7.2.7. Analysis by Buffer(s) Manufactured
7.2.8. Analysis by Buffer Formulation
7.2.9. Analysis by Buffer Packaging Format
7.2.10. Analysis by Compatible Biologic(s)
7.2.11. Analysis by Application Area(s)
7.2.12. Analysis by Type of Service
7.2.13. Most Active Players: Analysis by Number of Facilities
7.2.14. Most Active Players: Analysis by Number of Services
8. COMPANY COMPETITIVENESS ANALYSIS
8.1. Chapter Overview
8.2. Assumptions and Key Parameters
8.3. Methodology
8.4. Company Competitiveness Analysis
8.4.1. Buffer Manufacturing Service Providers based in North America
8.4.2. Buffer Manufacturing Service Providers based in Europe
8.4.3. Buffer Manufacturing Service Providers based in Asia
9. COMPANY PROFILES: BUFFER MANUFACTURING SERVICE PROVIDERS
9.1. Chapter Overview
9.2. Avantor
9.2.1. Company Overview
9.2.2. Buffer Manufacturing Service Portfolio
9.2.3. Recent Developments and Future Outlook
9.3 Canvax
9.3.1. Company Overview
9.3.2. Buffer Manufacturing Service Portfolio
9.3.3. Recent Developments and Future Outlook
9.4. Lonza
9.4.1. Company Overview
9.4.2. Buffer Manufacturing Service Portfolio
9.4.3. Recent Developments and Future Outlook
9.5 Merck
9.5.1. Company Overview
9.5.2. Buffer Manufacturing Service Portfolio
9.5.3. Recent Developments and Future Outlook
9.6. Uniogen
9.6.1 Company Overview
9.6.2. Buffer Manufacturing Service Portfolio
9.6.3 Recent Developments and Future Outlook
10. PARTNERSHIPS AND COLLABORATIONS
10.1. Chapter Overview
10.2. Partnership Models
10.2.1. Buffer Manufacturing System Providers: List of Partnerships and Collaborations
10.2.2. Analysis by Year of Partnership
10.2.3. Analysis by Type of Partnership
10.2.4. Analysis by Type of Partner
10.2.5. Analysis by Company Size
10.2.6. Analysis by Geography
10.2.6.1. Local and International Agreements
10.2.6.2. Intracontinental and Intercontinental Agreements
10.2.7. Most Active Players: Analysis by Number of Partnerships
11. MARKET FORECAST
11.1. Chapter Overview
11.2. Key Assumptions and Methodology
11.3. Global Buffer Preparation Systems Market: Historical, Base and Forecasted Scenario, 2018-2035
11.3.1. Buffer Preparation Systems Market: Distribution by Scale of Operation, 2023 -2035
11.3.1.1. Buffer Preparation Systems Market for Preclinical / Clinical Scale, 2023-2035
11.3.1.2. Buffer Preparation Systems Market for Commercial Scale, 2023-2035
11.3.2. Buffer Preparation Systems Market: Distribution by Type of System Component, 2023-2035
11.3.2.1. Buffer Preparation Systems Market for Single-use Buffer Mixing / Preparation Equipment, 2023-2035
11.3.2.2. Buffer Preparation Systems Market for Reusable Buffer Mixing / Preparation Equipment, 2023-2035
11.3.3. Buffer Preparation Systems Market: Distribution by Key Geographical Regions, 2023-2035
11.3.3.1. Buffer Preparation Systems Market in North America, 2023-2035 (USD Billion)
11.3.3.2. Buffer Preparation Systems Market in Europe, 2023-2035 (USD Billion)
11.3.3.3. Buffer Preparation Systems Market in Asia-Pacific, 2023-2035 (USD Billion)
11.3.3.4. Buffer Preparation Systems Market in Rest of the World, 2023-2035 (USD Billion)
12. CONCLUSION
13. APPENDIX I: TABULATED DATA
14. APPENDIX II: LIST OF COMPANIES AND ORGANIZATIONS

 

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Summary

The global buffer manufacturing market is anticipated to grow at a CAGR of 5.9% during the forecast period 2023-2035

Buffers, aqueous solutions essential for pH regulation in drug manufacturing, hold a crucial role in maintaining stability for both biologics and small molecules throughout production. They are extensively used across bioprocessing stages, ensuring stable pH in cultures, optimizing yield, maintaining purification conditions, and preserving product functionality. However, conventional buffer manufacturing methods are complex, requiring significant space and skilled labor. These processes are time-consuming, multi-step, leading to high production costs and batch inconsistencies. Crafting a 2,000 L buffer traditionally takes over 35 hours, as reported by BioPharma.

To address these challenges, pharmaceutical companies are either adopting innovative in-house buffer preparation systems or outsourcing to third-party providers. Recent trends show a rapid uptake of these systems due to their space efficiency and integration of advanced technologies, ensuring stable buffer conditions during downstream processes. These novel systems can produce a 2,000 L buffer in 40-50 minutes, according to Pall Corporation. Implementing buffer management systems could reduce labor costs by 50% and buffer manufacturing expenses by 12%. Outsourcing buffer manufacturing is expected to save around USD 90,000 annually and cut buffer preparation time by 75%. With growing demand for buffers and the complexities in their manufacturing, the buffer preparation systems market is set for steady growth in the coming decade.

Report Coverage
 The report examines the buffer preparation market, focusing on operational scale, system component types, and major geographical regions.
 An analysis is conducted on the factors influencing market growth, including drivers, restraints, opportunities, and challenges.
 It evaluates the potential advantages and barriers within the market, providing insights into the competitive landscape for leading market players.
 Revenue forecasts are provided for market segments across four major regions.
 A comprehensive exploration of buffer manufacturing encompasses both conventional and innovative methods, addressing associated challenges and the benefits of outsourcing. It also discusses critical considerations for selecting outsourcing partners and explores future market prospects.
 The evaluation of buffer preparation and manufacturing systems involves a multifaceted analysis, considering system types, operation modes, scales, vessel materials, mobility options, features, integrated techniques, manufacturing processes, buffer forms, and their applications in bioprocessing methods.
 This analysis includes an in-depth assessment of buffer manufacturing system providers based on establishment year, company size, headquarters location, and involvement in offering buffer manufacturing systems.
 A thorough product competitiveness analysis of buffer manufacturing systems considers developer experience and factors like system types, operation modes, vessel materials, mobility options, features, integrated techniques, manufacturing processes, buffer forms, bioprocessing methods, GMP manufacturing availability, and single-use components.
 Detailed profiles of key players involved in developing buffer preparation systems cover company overviews, product portfolios, recent developments, and future outlooks based on specific criteria.
 An extensive evaluation of buffer manufacturing service providers considers parameters such as establishment year, company size, headquarters location, facility locations, operation scales, manufactured buffers, formulations, packaging formats, compatible biologics, application areas, service types, and active players in the domain.
 A comprehensive company competitiveness analysis of buffer manufacturing service providers in North America, Europe, and Asia considers supplier experience and factors like facility numbers, locations, operation scales, provided buffers, formulations, packaging formats, compatible biologics, application areas, service types, and GMP manufacturing availability.
 Detailed profiles of key companies offering buffer manufacturing services include company summaries, key executives, portfolios, recent developments, and future outlooks based on proprietary criteria.
 Lastly, a detailed analysis of industry stakeholder partnerships since 2017 covers partnership years, types (acquisitions, agreements, alliances, etc.), partner types, company sizes, most active players, and regional distribution of partnership activities within the industry.


Key Market Companies
 Asahi Kasei
 Avantor
 Canvax
 Cytiva
 Lonza
 Merck
 Pall Corporation
 Thermo Fisher Scientific
 Uniogen



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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. Key Questions Answered
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Buffer Manufacturing
3.2.1. Conventional Methods of Buffer Manufacturing
3.2.2. Novel Methods of Buffer Manufacturing
3.3. Challenges Associated with Buffer Manufacturing
3.4. Advantages of Outsourcing Buffer Manufacturing
3.5. Key Considerations While Selecting an Outsourcing Partner
3.6. Future Perspectives
4 .MARKET LANDSCAPE: BUFFER MANUFACTURING SYSTEMS
4.1. Chapter Overview
4.2 Buffer Manufacturing System: Overall Market Landscape
4.2.1. Analysis by Type of System
4.2.2. Analysis by Mode of Operation
4.2.3. Analysis by Scale of Operation
4.2.4. Analysis by Vessel Fabrication Material(s)
4.2.5. Analysis by System Mobility Option
4.2.6. Analysis by Feature(s) of Buffer Manufacturing System
4.2.7. Analysis by Integrated Technique(s)
4.2.8. Analysis by Buffer Manufacturing Process
4.2.9. Analysis by Type of Buffer Form(s)
4.2.10. Analysis by Bioprocessing Method
4.3. Buffer Manufacturing System Providers Landscape
4.3.1. Analysis by Year of Establishment
4.3.2. Analysis by Location of Headquarters
4.3.3. Analysis by Company Size
4.3.4. Most Active Players: Analysis by Number of Products Offered
5. PRODUCT COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions and Key Parameters
5.3. Methodology
5.4. Product Competitiveness Analysis
5.4.1. Buffer Manufacturing Systems Offered by Companies based in North America
5.4.2. Buffer Manufacturing Systems Offered by Companies based in Europe
5.4.3. Buffer Manufacturing Systems Offered by Companies based in Asia
6. COMPANY PROFILES: BUFFER MANUFACTURING SYSTEM PROVIDERS
6.1. Chapter Overview
6.2. Asahi Kasei
6.2.1. Company Overview
6.2.2. Product Portfolio
6.2.3. Recent Developments and Future Outlook
6.3 Cytiva
6.3.1. Company Overview
6.3.2. Product Portfolio
6.3.3. Recent Developments and Future Outlook
6.4. Pall Corporation
6.4.1. Company Overview
6.4.2. Product Portfolio
6.4.3. Recent Developments and Future Outlook
6.5 Thermo Fisher Scientific
6.5.1. Company Overview
6.5.2. Product Portfolio
6.5.3. Recent Developments and Future Outlook
7. MARKET LANDSCAPE: BUFFER MANUFACTURING SERVICE PROVIDERS
7.1. Chapter Overview
7.2. Buffer Manufacturing Service Providers: Overall Market Landscape
7.2.1. Analysis by Year of Establishment
7.2.2. Analysis by Company Size
7.2.3. Analysis by Location of Headquarters
7.2.4. Analysis by Location of Facilities
7.2.5. Analysis by Scale of Operation
7.2.6. Analysis by Type of Buffer(s) Provided
7.2.7. Analysis by Buffer(s) Manufactured
7.2.8. Analysis by Buffer Formulation
7.2.9. Analysis by Buffer Packaging Format
7.2.10. Analysis by Compatible Biologic(s)
7.2.11. Analysis by Application Area(s)
7.2.12. Analysis by Type of Service
7.2.13. Most Active Players: Analysis by Number of Facilities
7.2.14. Most Active Players: Analysis by Number of Services
8. COMPANY COMPETITIVENESS ANALYSIS
8.1. Chapter Overview
8.2. Assumptions and Key Parameters
8.3. Methodology
8.4. Company Competitiveness Analysis
8.4.1. Buffer Manufacturing Service Providers based in North America
8.4.2. Buffer Manufacturing Service Providers based in Europe
8.4.3. Buffer Manufacturing Service Providers based in Asia
9. COMPANY PROFILES: BUFFER MANUFACTURING SERVICE PROVIDERS
9.1. Chapter Overview
9.2. Avantor
9.2.1. Company Overview
9.2.2. Buffer Manufacturing Service Portfolio
9.2.3. Recent Developments and Future Outlook
9.3 Canvax
9.3.1. Company Overview
9.3.2. Buffer Manufacturing Service Portfolio
9.3.3. Recent Developments and Future Outlook
9.4. Lonza
9.4.1. Company Overview
9.4.2. Buffer Manufacturing Service Portfolio
9.4.3. Recent Developments and Future Outlook
9.5 Merck
9.5.1. Company Overview
9.5.2. Buffer Manufacturing Service Portfolio
9.5.3. Recent Developments and Future Outlook
9.6. Uniogen
9.6.1 Company Overview
9.6.2. Buffer Manufacturing Service Portfolio
9.6.3 Recent Developments and Future Outlook
10. PARTNERSHIPS AND COLLABORATIONS
10.1. Chapter Overview
10.2. Partnership Models
10.2.1. Buffer Manufacturing System Providers: List of Partnerships and Collaborations
10.2.2. Analysis by Year of Partnership
10.2.3. Analysis by Type of Partnership
10.2.4. Analysis by Type of Partner
10.2.5. Analysis by Company Size
10.2.6. Analysis by Geography
10.2.6.1. Local and International Agreements
10.2.6.2. Intracontinental and Intercontinental Agreements
10.2.7. Most Active Players: Analysis by Number of Partnerships
11. MARKET FORECAST
11.1. Chapter Overview
11.2. Key Assumptions and Methodology
11.3. Global Buffer Preparation Systems Market: Historical, Base and Forecasted Scenario, 2018-2035
11.3.1. Buffer Preparation Systems Market: Distribution by Scale of Operation, 2023 -2035
11.3.1.1. Buffer Preparation Systems Market for Preclinical / Clinical Scale, 2023-2035
11.3.1.2. Buffer Preparation Systems Market for Commercial Scale, 2023-2035
11.3.2. Buffer Preparation Systems Market: Distribution by Type of System Component, 2023-2035
11.3.2.1. Buffer Preparation Systems Market for Single-use Buffer Mixing / Preparation Equipment, 2023-2035
11.3.2.2. Buffer Preparation Systems Market for Reusable Buffer Mixing / Preparation Equipment, 2023-2035
11.3.3. Buffer Preparation Systems Market: Distribution by Key Geographical Regions, 2023-2035
11.3.3.1. Buffer Preparation Systems Market in North America, 2023-2035 (USD Billion)
11.3.3.2. Buffer Preparation Systems Market in Europe, 2023-2035 (USD Billion)
11.3.3.3. Buffer Preparation Systems Market in Asia-Pacific, 2023-2035 (USD Billion)
11.3.3.4. Buffer Preparation Systems Market in Rest of the World, 2023-2035 (USD Billion)
12. CONCLUSION
13. APPENDIX I: TABULATED DATA
14. APPENDIX II: LIST OF COMPANIES AND ORGANIZATIONS

 

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注文の手続きはどのようになっていますか?


1)お客様からの御問い合わせをいただきます。
2)見積書やサンプルの提示をいたします。
3)お客様指定、もしくは弊社の発注書をメール添付にて発送してください。
4)データリソース社からレポート発行元の調査会社へ納品手配します。
5) 調査会社からお客様へ納品されます。最近は、pdfにてのメール納品が大半です。


お支払方法の方法はどのようになっていますか?


納品と同時にデータリソース社よりお客様へ請求書(必要に応じて納品書も)を発送いたします。
お客様よりデータリソース社へ(通常は円払い)の御振り込みをお願いします。
請求書は、納品日の日付で発行しますので、翌月最終営業日までの当社指定口座への振込みをお願いします。振込み手数料は御社負担にてお願いします。
お客様の御支払い条件が60日以上の場合は御相談ください。
尚、初めてのお取引先や個人の場合、前払いをお願いすることもあります。ご了承のほど、お願いします。


データリソース社はどのような会社ですか?


当社は、世界各国の主要調査会社・レポート出版社と提携し、世界各国の市場調査レポートや技術動向レポートなどを日本国内の企業・公官庁及び教育研究機関に提供しております。
世界各国の「市場・技術・法規制などの」実情を調査・収集される時には、データリソース社にご相談ください。
お客様の御要望にあったデータや情報を抽出する為のレポート紹介や調査のアドバイスも致します。



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