二重特異性抗体市場(第5版):治療領域別分布(自己免疫疾患、遺伝子疾患、血液悪性腫瘍、眼科疾患、皮膚癌、固形癌)、作用機序(サイトカイン再標的化/中和、Dual Ligands Blocking, Resistance Factors Co-Targeting, Targeting Tumor Angiogenesis, T-Cell Retargeting / Activation and Others), Target Antigen (C5-Albumin, CD20 x CD3, CD3 x BCMA, CD3 x CD19, EGFR x cMET, EpCAM x CD3、Factor IXa x Factor X、gp100 x CD3、HER2 x HER2、PD-1 x CTLA-4、PD-L1 x TGF、TNF- x HAS、VEGF x DLL4、VEGF-A x ANG2)、抗体フォーマット(非対称およびフラグメント)、主要プレーヤー(Akeso Biopharma、Alexion、Amgen、Genmab、Immunocore、Janssen Research & Development、Linton Pharm、Merck、OncXerna Therapeutics、Pfizer、Roche、大正製薬、Zymeworks)、主要地域(北米、欧州、アジア、その他の地域):産業動向と世界予測、2023-2035年Bispecific Antibodies Market (5th Edition): Distribution by Therapeutic Area (Autoimmune Disorders, Genetic Disorders, Hematological Malignancies, Ophthalmic Disorders, Skin Cancers And Solid Tumors), Mechanism of Action (Cytokines Retargeting / Neutralization, Dual Ligands Blocking, Resistance Factors Co-Targeting, Targeting Tumor Angiogenesis, T-Cell Retargeting / Activation and Others), Target Antigen (C5-Albumin, CD20 x CD3, CD3 x BCMA, CD3 x CD19, EGFR x cMET, EpCAM x CD3, Factor IXa x Factor X, gp100 x CD3, HER2 x HER2, PD-1 x CTLA-4, PD-L1 x TGF, TNF- x HAS, VEGF x DLL4 and VEGF-A x ANG2), Antibody Format (Asymmetric And Fragments), Key Players (Akeso Biopharma, Alexion, Amgen, Genmab, Immunocore, Janssen Research & Development, Linton Pharm, Merck, OncXerna Therapeutics, Pfizer, Roche, Taisho Pharmaceutical and Zymeworks) and Key Geographical Regions (North America, Europe, Asia and Rest of the World): Industry Trends and Global Forecasts, 2023-2035 二重特異性抗体市場は2023年までに56億ドルに達すると予測され、予測期間2023-2035年の年平均成長率は9.5%と予測されている。 二特異性抗体(BsAbs)は、2つの異なる抗原または同じ抗原上の個別のエピトープに... もっと見る
サマリー二重特異性抗体市場は2023年までに56億ドルに達すると予測され、予測期間2023-2035年の年平均成長率は9.5%と予測されている。二特異性抗体(BsAbs)は、2つの異なる抗原または同じ抗原上の個別のエピトープに同時に作用することに長けた免疫治療薬のカテゴリーとして、ますます注目を集めている。これらの生物学的製剤は、抗体依存性細胞媒介性細胞傷害(ADCC)、抗体依存性細胞貪食(ADCP)、補体依存性細胞傷害(CDC)などの様々なメカニズムを通じて、免疫エフェクター細胞を活性化し、がん細胞と効果的に闘うように機能する。重要なことは、二重特異性抗体医薬はユニークな生物学的・薬理学的特性を示し、多様なフォーマットで利用可能であることで、治療応用の大きな可能性が期待される。 最近承認されたものでは、規制当局が9つの二重特異性抗体を治療薬として承認している:Tecvayli™(2022年10月)、Nanozora®(2022年9月)、AK104(2022年6月)、Lunsumio®(2022年6月)、VABYSMO™(2022年2月)、KIMMTRAK®(2022年1月)、RYBREVANT™(2021年5月)、Hemlibra®(2017年11月)、Blincyto®(2014年12月)である。さらに、二重特異性抗体を研究する臨床試験が近年顕著に急増している。このような治療薬の候補が臨床段階に進んだり、規制当局のお墨付きを得たりするにつれて、二重特異性抗体治療薬市場は力強い拡大と持続的な成長を遂げることが予測される。 レポート対象範囲 本レポートでは、治療領域、作用機序、標的抗原、抗体フォーマット、主要プレイヤー、地域などの様々な側面に焦点を当て、二重特異性抗体市場を分析しています。 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)を評価しています。 市場における潜在的な優位性とハードルを評価し、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の収益に関する予測を行っている。 本レポートでは、二重特異性抗体市場について、承認済み、開発中、前臨床段階の抗体を網羅した詳細な調査結果を掲載しています。本レポートでは、二重特異性抗体の歴史的背景、構造バリエーション、作用機序、多様な用途を探求しています。220以上の既存の抗体と180以上の前臨床段階の抗体について、開発者の詳細、開発段階、標的抗原、治療用途を考慮した分析を網羅しています。 開発段階、疾患セグメント、抗体の本社所在地を図解し、現在の市場動向を概説している。さらに、二重特異性抗体作製に使用される80以上の技術プラットフォームを評価し、開発力、企業経験、規模、所在地に基づく比較分析を提供しています。 本レポートでは、スパイダーウェブやヒートマップなどの分析を用いて、競合、臨床試験、提携、技術ポートフォリオを評価し、この分野の主要な製薬企業を調査している。主要開発企業の詳細なプロフィールでは、その経歴、経営陣、財務情報、医薬品ポートフォリオ、最近の開発状況、将来の展望を紹介しています。 さらに、同領域におけるパートナーシップを調査し、パートナーシップのタイプ、疾患セグメント、支払いモデル、取引額、積極的なプレーヤーなどのパラメータを精査している。また、二重特異性抗体の製造プロセスにおける課題と考慮点について、適切な製造受託機関や研究機関のリストとともに論じている。 Blincyto®やHemlibra®のような承認済み抗体について、進行中および計画中の研究、著名機関による規制ガイドライン、プロモーション戦略の包括的な概要が記載されている。最後に、2035年までの市場予測分析では、治療領域、作用機序、標的抗原、抗体フォーマット、主要企業、地域別の売上予測を提示しています。 業界動向、市場促進要因、課題をSWOTの枠組みでまとめ、ハーベイ・ボール表現を用いた定性分析により、これらのパラメータが市場全体に与える相対的な影響を明らかにする。 主要市場企業 アケソバイオファーマ アレクシオン アムジェン ジェンマブ イムノコア ヤンセン・リサーチ・アンド・ディベロップメント リントンファーマ メルク オンセルナ・セラピューティクス ファイザー ロシュ 大正製薬 ザイムワークス 目次1. PREFACE1.1. 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. Introduction to Antibodies 3.2.1. Structure 3.2.2. Functions 3.2.3. Mechanism of Action 3.3. Antibody Therapeutics 3.3.1. Historical Evolution of Antibody Therapeutics 3.3.2. Key Approved Antibody Therapeutics 3.3.3. Advanced Antibody Therapeutics 3.3.3.1. Fc Engineered and Glycoengineered Antibodies 3.3.3.2. Antibody Fragments 3.3.3.3. Fusion Proteins 3.3.3.4. Intrabodies 3.3.3.5. Bispecific Antibodies 3.4. Bispecific Antibody Formats 3.4.1. Single-Chain-based Formats (Fc Independent Antibody Formats) 3.4.1.1. Tandem scFvs (single-chain variable fragments) and Triple bodies 3.4.1.2. Bispecific Single-Domain Antibody Fusion Proteins 3.4.1.3. Diabodies / Diabody Derivatives 3.4.1.4. Fusion Proteins 3.4.1.5. Fusion Proteins Devoid of Fc Regions 3.4.2. Immunoglobulin G Based Formats (Fc Dependent Antibody Formats) 3.4.2.1. Quadromas 3.4.2.2. Knobs-Into-Holes 3.4.2.3. Dual Variable Domain Ig 3.4.2.4. IgG-scFv 3.4.2.5. Two-in-one or Dual Action Fab (DAF) Antibodies 3.4.2.6. Half Molecule Exchange 3.4.2.7. κλ- Bodies 3.5. Mechanism of Action of Bispecific Antibody Therapeutics 3.5.1. Retargeting Immune Effectors (NK Cells and T Cells) to Tumor Cells 3.5.2. Directly Targeting Malignant / Tumor Cells 3.5.3. Retargeting of Toxins 3.5.4. Targeting Tumor Angiogenesis 3.5.5. Other Mechanisms 3.6. Applications of Bispecific Antibodies 4. MARKET LANDSCAPE OF APPROVED AND CLINICAL THERAPIES 4.1. Chapter Overview 4.2. Approved and Clinical Bispecific Antibody Therapeutics: Overall Market Landscape 4.2.1. Analysis by Phase of Development 4.2.2. Analysis by Target Antigen 4.2.3. Analysis by Type of Therapy 4.2.4. Analysis by Route of Administration 4.2.5. Analysis by Method of Administration 4.2.6. Analysis by Target Indication 4.2.7. Analysis by Therapeutic Area 4.2.8. Analysis by Disease Segment 4.3. Approved and Clinical Bispecific Antibody Therapeutics: Overall 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 5. MARKET LANDSCAPE OF PRECLINICAL THERAPIES 5.1. Chapter Overview 5.2. Preclinical Bispecific Antibody Therapeutics: Overall Market Landscape 5.2.1. Analysis by Stage of Development 5.2.2. Analysis by Target Antigen 5.2.3. Analysis by Disease Segment 5.3. Preclinical Bispecific Antibody Therapeutics: Overall Developer Landscape 5.3.1. Analysis by Year of Establishment 5.3.2. Analysis by Company Size 5.3.3. Analysis by Location of Headquarters 6. KEY INSIGHTS 6.1. Chapter Overview 6.2. Approved and Clinical Stage Bispecific Antibody Therapeutics Landscape: Key Insights 6.2.1. Analysis by Phase of Development and Route of Administration 6.2.2. Analysis by Phase of Development and Disease Segment 6.2.3. Analysis by Phase of Development and Location of Developer’s Headquarters 6.3. Preclinical Stage Bispecific Antibody Therapeutics Landscape: Key Insights 6.3.1. Analysis by Stage of Development and Therapeutic Area 6.3.2. Analysis by Stage of Development and Location of Developer Headquarters 6.4. Bispecific Antibody Therapeutics Developers Landscape: Key Insights 6.4.1. Distribution by Stage of Development 6.4.2. Distribution by Stage of Development and Region of Developer Headquarters 7. TECHNOLOGY ASSESSMENT FRAMEWORK 7.1. Chapter Overview 7.2. Bispecific Antibody Therapeutics: List of Technology Platforms 7.3. Bispecific Antibody Technology Platforms: Comparative Analysis 7.3.1. Analysis by Technologies for Approved and Clinical Drugs 7.3.2. Analysis by Technologies for Preclinical Drugs 7.4. Most Popular Technology Platforms: Analysis by Stage of Development 7.5. Bispecific Antibody Technology Platform Developers: Analysis by Location of Headquarters 8. BIG PHARMA PLAYERS: BENCHMARKING ANALYSIS 8.1. Chapter Overview 8.2. Big Pharma Players: Benchmarking Analysis (Spider Web Representation) 8.3. Big Pharma Players: Comparative Clinical Pipeline Analysis 8.3.1. Analysis by Target Antigen 8.3.2. Analysis by Antibody Format 8.3.3. Analysis by Mechanism of Action 8.3.4. Analysis by Therapeutic Area 9. COMPANY PROFILES 9.1. Chapter Overview 9.2. Akeso Biopharma 9.2.1. Company Overview 9.2.2. Financial Performance 9.2.3. Drug Portfolio 9.2.4. Recent Developments and Future Outlook 9.3. Alphamab Oncology 9.3.1. Company Overview 9.3.2. Financial Performance 9.3.3. Drug Portfolio 9.3.4. Recent Developments and Future Outlook 9.4. Amgen 9.4.1. Company Overview 9.4.2. Financial Performance 9.4.3. Drug Portfolio 9.4.4. Recent Developments and Future Outlook 9.5. Merck 9.5.1. Company Overview 9.5.2. Financial Performance 9.5.3. Drug Portfolio 9.5.4. Recent Developments and Future Outlook 9.6. Regeneron 9.6.1. Company Overview 9.6.2. Financial Performance 9.6.3. Drug Portfolio 9.6.4. Recent Developments and Future Outlook 9.7. Roche 9.7.1. Company Overview 9.7.2. Financial Performance 9.7.3. Drug Portfolio 9.7.4. Recent Developments and Future Outlook 9.8. Xencor 9.8.1. Company Overview 9.8.2. Financial Performance 9.8.3. Drug Portfolio 9.8.4. Recent Developments and Future Outlook 10. PARTNERSHIPS AND COLLABORATIONS 10.1. Chapter Overview 10.2. Partnership Models 10.3. Bispecific Antibody Therapeutics: Partnerships and Collaborations 10.3.1. Analysis by Year of Partnership 10.3.2. Analysis by Type of Partnership 10.3.3. Analysis by Year and Type of Partnership 10.3.4. Analysis by Disease Segment 10.3.5. Analysis by Type of Payment Model Employed and Deal Amount 10.3.6. Analysis by Year of Agreement, Type of Payment Model Employed and Deal Amount 10.3.7. Analysis by Disease Segment, Type of Payment Model Employed and Deal Amount 10.3.8. Most Active Players: Analysis by Number of Partnership Instances 10.3.9. Most Popular Technologies: Analysis by Number of Partnership Instances 10.3.10. Analysis by Region 10.3.11. Intercontinental and Intracontinental Agreements 11. CONTRACT SERVICES FOR BISPECIFIC ANTIBODY THERAPEUTICS 11.1. Chapter Overview 11.2. Manufacturing of Bispecific Antibody Therapeutics 11.2.1. Key Considerations for Manufacturing and Associated Challenges 11.2.2. Contract Manufacturing Organizations (CMOs) 11.2.2.1. Bispecific Antibody Therapeutics: List of CMOs 11.2.3. Contract Research Organizations (CROs) 11.2.3.1. Bispecific Antibody Therapeutics: List of CROs 11.3. Key Considerations for Selecting a Suitable CMO / CRO Partner 12. CLINICAL TRIAL ANALYSIS 12.1. Chapter Overview 12.2. Key Assumptions and Methodology 12.3. Bispecific Antibody Therapeutics: Clinical Trial Analysis 12.3.1. Analysis by Trial Registration Year 12.3.2. Analysis of Enrolled Patient Population by Trial Registration Year 12.3.3. Analysis by Trial Phase 12.3.4. Analysis of Enrolled Patient Population by Trial Phase 12.3.5. Analysis by Trial Recruitment Status 12.3.6. Analysis by Trial Registration Year and Trial Recruitment Status 12.3.7. Analysis by Type of Study 12.3.8. Analysis by Study Design 12.3.9. Analysis by Type of Sponsor / Collaborator 12.3.10. Leading Industry Players: Analysis by Number of Registered Trials 12.3.11. Leading Non-Industry Players: Analysis by Number of Registered Trials 12.3.12. Clinical Trial Analysis: Key Focus Areas (Word Cloud Representation) 12.3.13. Analysis by Geography 12.3.14. Analysis by Trial Recruitment Status and Geography 12.3.15. Analysis of Enrolled Patient Population by Trial Recruitment Status and Geography 13. CASE STUDY: REGULATORY GUIDELINES FOR BISPECIFIC ANTIBODIES 13.1. Chapter Overview 13.2. Guidelines Issued by Regulatory Authorities 13.2.1. US Food and Drug Administration (FDA) 13.2.1.1. Pharma Companies’ Response to the FDA Draft Guidance 13.2.2. World Health Organization (WHO) 14. CASE STUDY: PROMOTIONAL / MARKETING STRATEGIES 14.1. Chapter Overview 14.2. Key Channels Used for Promotional Campaigns 14.2.1. Product Websites 14.2.2. Patient Assistance Programs 14.2.3. Participation in Conferences 14.2.4. Collaboration with Stakeholders 14.2.5. Drug Approval Across Multiple Geographies 14.3. Other Channels Used for Promotional and Marketing Strategies 14.4. Summary: Promotional and Marketing Strategy Leveraged by Bispecific Antibody Developers 14.5. Promotional Analysis: Blincyto® 14.5.1. Drug Overview 14.5.2. Product Website analysis 14.5.2.1. Messages for Healthcare Professionals 14.5.2.1.1. For MRD Positive B cell precursor ALL 14.5.2.1.2. For Relapsed or Refractory B-cell precursor ALL 14.5.2.2. Messages for Patients 14.5.3. Patient Support Services and Informative Downloads 14.5.4. Other Promotional Strategies 14.5.4.1. Presence in Conferences 14.6. Promotional Analysis: Hemlibra® 14.6.1. Drug Overview 14.6.2. Product Website Analysis 14.6.2.1. Messages for Healthcare Professionals 14.6.2.1.1. For Hemophilia A without Factor VIII Inhibitors 14.6.2.1.2. For Hemophilia A with Factor VIII Inhibitors 14.6.2.3. Messages for Patients 14.6.3. Patient Support Services and Informative Downloads 14.6.3.1. Co-pay Program 14.6.3.2. Independent Co-pay Assistance Foundation 14.6.3.3. Genentech Patient Foundation 14.6.4. Other Promotional Strategies 14.6.4.1. Presence in Conferences 15. MARKET FORECAST AND OPPORTUNITY ANALYSIS 15.1. Chapter Overview 15.2. Scope and Limitations 15.3. Forecast Methodology and Key Assumptions 15.4. Global Bispecific Antibody Therapeutics Market, 2023-2035 15.4.1. Bispecific Antibody Therapeutics Market: Analysis by Therapeutic Area, 2023 and 2035 15.4.2. Bispecific Antibody Therapeutics Market: Analysis by Mechanism of Action, 2023 and 2035 15.4.3. Bispecific Antibody Therapeutics Market: Analysis by Target Antigen, 2023 and 2035 15.4.4. Bispecific Antibody Therapeutics Market: Analysis by Antibody Format, 2023 and 2035 15.4.5. Bispecific Antibody Therapeutics Market: Analysis by Key Players, 2023 and 2035 15.4.6. Bispecific Antibody Therapeutics Market: Analysis by Geography, 2023 and 2035 15.5. Bispecific Antibody Market: Value Creation Analysis 15.6. Bispecific Antibody Therapeutics Market: Product-wise Sales Forecasts 15.6.1. AK104 (Akeso Biopharma) 15.6.1.1. Target Patient Population 15.6.1.2. Sales Forecast 15.6.1.3. Net Present Value 15.6.1.4. Value Creation Analysis 15.6.2. Blincyto™ (Amgen) 15.6.2.1. Target Patient Population 15.6.2.2. Sales Forecast 15.6.2.3. Net Present Value 15.6.2.4. Value Creation Analysis 15.6.3. Hemlibra® (Roche) 15.6.3.1. Target Patient Population 15.6.3.2. Sales Forecast 15.6.3.3. Net Present Value 15.6.3.4. Value Creation Analysis 15.6.4. Kimmtrak® (Immunocore) 15.6.4.1. Target Patient Population 15.6.4.2. Sales Forecast 15.6.4.3. Net Present Value 15.6.4.4. Value Creation Analysis 15.6.5. Lunsumio® (Roche) 15.6.5.1. Target Patient Population 15.6.5.2. Sales Forecast 15.6.5.3. Net Present Value 15.6.5.4. Value Creation Analysis 15.6.6. Nanozora® (Taisho Pharmaceutical) 15.6.6.1. Target Patient Population 15.6.6.2. Sales Forecast 15.6.6.3. Net Present Value 15.6.6.4. Value Creation Analysis 15.6.7. Rybrevant™ (Janssen Research & Development) 15.6.7.1. Target patient Population 15.6.7.2. Sales Forecast 15.6.7.3. Net Present Value 15.6.7.4. Value Creation Analysis 15.6.8. Tecvayli™ (Janssen Research & Development) 15.6.8.1. Target Patient Population 15.6.8.2. Sales Forecast 15.6.8.3. Net Present Value 15.6.8.4. Value Creation Analysis 15.6.9. Vabysmo™ (Roche) 15.6.9.1. Target Patient Population 15.6.9.2. Sales Forecast 15.6.9.3. Net Present Value 15.6.9.4. Value Creation Analysis 15.6.10. AK112 (Akeso Biopharma) 15.6.10.1. Target Patient Population 15.6.10.2. Sales Forecast 15.6.10.3. Net Present Value 15.6.10.4. Value Creation Analysis 15.6.11. ALXN1720 (Alexion) 15.6.11.1. Target Patient Population 15.6.11.2. Sales Forecast 15.6.11.3. Net Present Value 15.6.11.4. Value Creation Analysis 15.6.12. GEN3013 (Genmab) 15.6.12.1. Target Patient Population 15.6.12.2. Sales Forecast 15.6.12.3. Net Present Value 15.6.12.4. Value Creation Analysis 15.6.13. Glofitamab (Roche) 15.6.13.1. Target Patient Population 15.6.13.2. Sales Forecast 15.6.13.3. Net Present Value 15.6.13.4. Value Creation Analysis 15.6.14. LP000 (Linton Pharm) 15.6.14.1. Target Patient Population 15.6.14.2. Sales Forecast 15.6.14.3. Net Present Value 15.6.14.4. Value Creation Analysis 15.6.15. M7824 (Merck) 15.6.15.1. Target Patient Population 15.6.15.2. Sales Forecast 15.6.15.3. Net Present Value 15.6.15.4. Value Creation Analysis 15.6.16. OMP 305B83 (Mereo BioPharma) 15.6.16.1. Target Patient Population 15.6.16.2. Sales Forecast 15.6.16.3. Net Present Value 15.6.16.4. Value Creation Analysis 15.6.17. PF-06863135 (Pfizer) 15.6.17.1. Target Patient Population 15.6.17.2. Sales Forecast 15.6.17.3. Net Present Value 15.6.17.4. Value Creation Analysis 15.6.18. ZW25 (Zymeworks) 15.6.18.1. Target Patient Population 15.6.18.2. Sales Forecast 15.6.18.3. Net Present Value 15.6.18.4. Value Creation Analysis 15.7. Concluding Remarks 16. SWOT ANALYSIS 16.1. Chapter Overview 16.2. Strengths 16.2.1. Enhanced Specificity 16.2.2. Diverse Application Areas 16.2.3. Lower Drug Resistance 16.2.4. Success of Approved Products 16.3. Weaknesses 16.3.1. Uncertainties with Safety of Therapeutic Candidates 16.3.2. Complex Purification and Downstream Processing 16.3.3. Dimerization in Antibodies with Fc-region 16.4. Opportunities 16.4.1. Life Cycle Management of Novel Therapies 16.4.2. Growing Number of High Value Partnerships 16.4.3. Expertise Available with Contract Manufacturing Organizations 16.4.4. Emergence of Advanced Technologies 16.5. Threats 16.5.1. Rise in Attrition Rate of Clinical Stage Candidates 16.6. Concluding Remarks 17. CONCLUDING REMARKS 18. EXECUTIVE INSIGHTS 18.1. Chapter Overview 18.2. CytomX Therapeutics 18.2.1. Company Snapshot 18.2.2. Interview Transcript 18.3. F-star 18.3.1. Company Snapshot 18.3.2. Interview Transcript 18.4. Immunai 18.4.1. Company Snapshot 18.4.2. Interview Transcript 18.5. Innovent Biologics 18.5.1. Company Snapshot 18.5.2. Interview Transcript 18.6. SYNIMMUNE 18.6.1. Company Snapshot 18.6.2. Interview Transcript 18.7. University of Freiburg 18.7.1. Company Snapshot 18.7.2. Interview Transcript 19. APPENDIX 1: TABULATED DATA 20. APPENDIX 2: LIST OF COMPANIES AND ORGANIZATION
SummaryThe bispecific antibodies market is expected to reach USD 5.6 billion by 2023 and is anticipated to grow at a CAGR of 9.5% during the forecast period 2023-2035 Table of Contents1. PREFACE1.1. 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. Introduction to Antibodies 3.2.1. Structure 3.2.2. Functions 3.2.3. Mechanism of Action 3.3. Antibody Therapeutics 3.3.1. Historical Evolution of Antibody Therapeutics 3.3.2. Key Approved Antibody Therapeutics 3.3.3. Advanced Antibody Therapeutics 3.3.3.1. Fc Engineered and Glycoengineered Antibodies 3.3.3.2. Antibody Fragments 3.3.3.3. Fusion Proteins 3.3.3.4. Intrabodies 3.3.3.5. Bispecific Antibodies 3.4. Bispecific Antibody Formats 3.4.1. Single-Chain-based Formats (Fc Independent Antibody Formats) 3.4.1.1. Tandem scFvs (single-chain variable fragments) and Triple bodies 3.4.1.2. Bispecific Single-Domain Antibody Fusion Proteins 3.4.1.3. Diabodies / Diabody Derivatives 3.4.1.4. Fusion Proteins 3.4.1.5. Fusion Proteins Devoid of Fc Regions 3.4.2. Immunoglobulin G Based Formats (Fc Dependent Antibody Formats) 3.4.2.1. Quadromas 3.4.2.2. Knobs-Into-Holes 3.4.2.3. Dual Variable Domain Ig 3.4.2.4. IgG-scFv 3.4.2.5. Two-in-one or Dual Action Fab (DAF) Antibodies 3.4.2.6. Half Molecule Exchange 3.4.2.7. κλ- Bodies 3.5. Mechanism of Action of Bispecific Antibody Therapeutics 3.5.1. Retargeting Immune Effectors (NK Cells and T Cells) to Tumor Cells 3.5.2. Directly Targeting Malignant / Tumor Cells 3.5.3. Retargeting of Toxins 3.5.4. Targeting Tumor Angiogenesis 3.5.5. Other Mechanisms 3.6. Applications of Bispecific Antibodies 4. MARKET LANDSCAPE OF APPROVED AND CLINICAL THERAPIES 4.1. Chapter Overview 4.2. Approved and Clinical Bispecific Antibody Therapeutics: Overall Market Landscape 4.2.1. Analysis by Phase of Development 4.2.2. Analysis by Target Antigen 4.2.3. Analysis by Type of Therapy 4.2.4. Analysis by Route of Administration 4.2.5. Analysis by Method of Administration 4.2.6. Analysis by Target Indication 4.2.7. Analysis by Therapeutic Area 4.2.8. Analysis by Disease Segment 4.3. Approved and Clinical Bispecific Antibody Therapeutics: Overall 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 5. MARKET LANDSCAPE OF PRECLINICAL THERAPIES 5.1. Chapter Overview 5.2. Preclinical Bispecific Antibody Therapeutics: Overall Market Landscape 5.2.1. Analysis by Stage of Development 5.2.2. Analysis by Target Antigen 5.2.3. Analysis by Disease Segment 5.3. Preclinical Bispecific Antibody Therapeutics: Overall Developer Landscape 5.3.1. Analysis by Year of Establishment 5.3.2. Analysis by Company Size 5.3.3. Analysis by Location of Headquarters 6. KEY INSIGHTS 6.1. Chapter Overview 6.2. Approved and Clinical Stage Bispecific Antibody Therapeutics Landscape: Key Insights 6.2.1. Analysis by Phase of Development and Route of Administration 6.2.2. Analysis by Phase of Development and Disease Segment 6.2.3. Analysis by Phase of Development and Location of Developer’s Headquarters 6.3. Preclinical Stage Bispecific Antibody Therapeutics Landscape: Key Insights 6.3.1. Analysis by Stage of Development and Therapeutic Area 6.3.2. Analysis by Stage of Development and Location of Developer Headquarters 6.4. Bispecific Antibody Therapeutics Developers Landscape: Key Insights 6.4.1. Distribution by Stage of Development 6.4.2. Distribution by Stage of Development and Region of Developer Headquarters 7. TECHNOLOGY ASSESSMENT FRAMEWORK 7.1. Chapter Overview 7.2. Bispecific Antibody Therapeutics: List of Technology Platforms 7.3. Bispecific Antibody Technology Platforms: Comparative Analysis 7.3.1. Analysis by Technologies for Approved and Clinical Drugs 7.3.2. Analysis by Technologies for Preclinical Drugs 7.4. Most Popular Technology Platforms: Analysis by Stage of Development 7.5. Bispecific Antibody Technology Platform Developers: Analysis by Location of Headquarters 8. BIG PHARMA PLAYERS: BENCHMARKING ANALYSIS 8.1. Chapter Overview 8.2. Big Pharma Players: Benchmarking Analysis (Spider Web Representation) 8.3. Big Pharma Players: Comparative Clinical Pipeline Analysis 8.3.1. Analysis by Target Antigen 8.3.2. Analysis by Antibody Format 8.3.3. Analysis by Mechanism of Action 8.3.4. Analysis by Therapeutic Area 9. COMPANY PROFILES 9.1. Chapter Overview 9.2. Akeso Biopharma 9.2.1. Company Overview 9.2.2. Financial Performance 9.2.3. Drug Portfolio 9.2.4. Recent Developments and Future Outlook 9.3. Alphamab Oncology 9.3.1. Company Overview 9.3.2. Financial Performance 9.3.3. Drug Portfolio 9.3.4. Recent Developments and Future Outlook 9.4. Amgen 9.4.1. Company Overview 9.4.2. Financial Performance 9.4.3. Drug Portfolio 9.4.4. Recent Developments and Future Outlook 9.5. Merck 9.5.1. Company Overview 9.5.2. Financial Performance 9.5.3. Drug Portfolio 9.5.4. Recent Developments and Future Outlook 9.6. Regeneron 9.6.1. Company Overview 9.6.2. Financial Performance 9.6.3. Drug Portfolio 9.6.4. Recent Developments and Future Outlook 9.7. Roche 9.7.1. Company Overview 9.7.2. Financial Performance 9.7.3. Drug Portfolio 9.7.4. Recent Developments and Future Outlook 9.8. Xencor 9.8.1. Company Overview 9.8.2. Financial Performance 9.8.3. Drug Portfolio 9.8.4. Recent Developments and Future Outlook 10. PARTNERSHIPS AND COLLABORATIONS 10.1. Chapter Overview 10.2. Partnership Models 10.3. Bispecific Antibody Therapeutics: Partnerships and Collaborations 10.3.1. Analysis by Year of Partnership 10.3.2. Analysis by Type of Partnership 10.3.3. Analysis by Year and Type of Partnership 10.3.4. Analysis by Disease Segment 10.3.5. Analysis by Type of Payment Model Employed and Deal Amount 10.3.6. Analysis by Year of Agreement, Type of Payment Model Employed and Deal Amount 10.3.7. Analysis by Disease Segment, Type of Payment Model Employed and Deal Amount 10.3.8. Most Active Players: Analysis by Number of Partnership Instances 10.3.9. Most Popular Technologies: Analysis by Number of Partnership Instances 10.3.10. Analysis by Region 10.3.11. Intercontinental and Intracontinental Agreements 11. CONTRACT SERVICES FOR BISPECIFIC ANTIBODY THERAPEUTICS 11.1. Chapter Overview 11.2. Manufacturing of Bispecific Antibody Therapeutics 11.2.1. Key Considerations for Manufacturing and Associated Challenges 11.2.2. Contract Manufacturing Organizations (CMOs) 11.2.2.1. Bispecific Antibody Therapeutics: List of CMOs 11.2.3. Contract Research Organizations (CROs) 11.2.3.1. Bispecific Antibody Therapeutics: List of CROs 11.3. Key Considerations for Selecting a Suitable CMO / CRO Partner 12. CLINICAL TRIAL ANALYSIS 12.1. Chapter Overview 12.2. Key Assumptions and Methodology 12.3. Bispecific Antibody Therapeutics: Clinical Trial Analysis 12.3.1. Analysis by Trial Registration Year 12.3.2. Analysis of Enrolled Patient Population by Trial Registration Year 12.3.3. Analysis by Trial Phase 12.3.4. Analysis of Enrolled Patient Population by Trial Phase 12.3.5. Analysis by Trial Recruitment Status 12.3.6. Analysis by Trial Registration Year and Trial Recruitment Status 12.3.7. Analysis by Type of Study 12.3.8. Analysis by Study Design 12.3.9. Analysis by Type of Sponsor / Collaborator 12.3.10. Leading Industry Players: Analysis by Number of Registered Trials 12.3.11. Leading Non-Industry Players: Analysis by Number of Registered Trials 12.3.12. Clinical Trial Analysis: Key Focus Areas (Word Cloud Representation) 12.3.13. Analysis by Geography 12.3.14. Analysis by Trial Recruitment Status and Geography 12.3.15. Analysis of Enrolled Patient Population by Trial Recruitment Status and Geography 13. CASE STUDY: REGULATORY GUIDELINES FOR BISPECIFIC ANTIBODIES 13.1. Chapter Overview 13.2. Guidelines Issued by Regulatory Authorities 13.2.1. US Food and Drug Administration (FDA) 13.2.1.1. Pharma Companies’ Response to the FDA Draft Guidance 13.2.2. World Health Organization (WHO) 14. CASE STUDY: PROMOTIONAL / MARKETING STRATEGIES 14.1. Chapter Overview 14.2. Key Channels Used for Promotional Campaigns 14.2.1. Product Websites 14.2.2. Patient Assistance Programs 14.2.3. Participation in Conferences 14.2.4. Collaboration with Stakeholders 14.2.5. Drug Approval Across Multiple Geographies 14.3. Other Channels Used for Promotional and Marketing Strategies 14.4. Summary: Promotional and Marketing Strategy Leveraged by Bispecific Antibody Developers 14.5. Promotional Analysis: Blincyto® 14.5.1. Drug Overview 14.5.2. Product Website analysis 14.5.2.1. Messages for Healthcare Professionals 14.5.2.1.1. For MRD Positive B cell precursor ALL 14.5.2.1.2. For Relapsed or Refractory B-cell precursor ALL 14.5.2.2. Messages for Patients 14.5.3. Patient Support Services and Informative Downloads 14.5.4. Other Promotional Strategies 14.5.4.1. Presence in Conferences 14.6. Promotional Analysis: Hemlibra® 14.6.1. Drug Overview 14.6.2. Product Website Analysis 14.6.2.1. Messages for Healthcare Professionals 14.6.2.1.1. For Hemophilia A without Factor VIII Inhibitors 14.6.2.1.2. For Hemophilia A with Factor VIII Inhibitors 14.6.2.3. Messages for Patients 14.6.3. Patient Support Services and Informative Downloads 14.6.3.1. Co-pay Program 14.6.3.2. Independent Co-pay Assistance Foundation 14.6.3.3. Genentech Patient Foundation 14.6.4. Other Promotional Strategies 14.6.4.1. Presence in Conferences 15. MARKET FORECAST AND OPPORTUNITY ANALYSIS 15.1. Chapter Overview 15.2. Scope and Limitations 15.3. Forecast Methodology and Key Assumptions 15.4. Global Bispecific Antibody Therapeutics Market, 2023-2035 15.4.1. Bispecific Antibody Therapeutics Market: Analysis by Therapeutic Area, 2023 and 2035 15.4.2. Bispecific Antibody Therapeutics Market: Analysis by Mechanism of Action, 2023 and 2035 15.4.3. Bispecific Antibody Therapeutics Market: Analysis by Target Antigen, 2023 and 2035 15.4.4. Bispecific Antibody Therapeutics Market: Analysis by Antibody Format, 2023 and 2035 15.4.5. Bispecific Antibody Therapeutics Market: Analysis by Key Players, 2023 and 2035 15.4.6. Bispecific Antibody Therapeutics Market: Analysis by Geography, 2023 and 2035 15.5. Bispecific Antibody Market: Value Creation Analysis 15.6. Bispecific Antibody Therapeutics Market: Product-wise Sales Forecasts 15.6.1. AK104 (Akeso Biopharma) 15.6.1.1. Target Patient Population 15.6.1.2. Sales Forecast 15.6.1.3. Net Present Value 15.6.1.4. Value Creation Analysis 15.6.2. Blincyto™ (Amgen) 15.6.2.1. Target Patient Population 15.6.2.2. Sales Forecast 15.6.2.3. Net Present Value 15.6.2.4. Value Creation Analysis 15.6.3. Hemlibra® (Roche) 15.6.3.1. Target Patient Population 15.6.3.2. Sales Forecast 15.6.3.3. Net Present Value 15.6.3.4. Value Creation Analysis 15.6.4. Kimmtrak® (Immunocore) 15.6.4.1. Target Patient Population 15.6.4.2. Sales Forecast 15.6.4.3. Net Present Value 15.6.4.4. Value Creation Analysis 15.6.5. Lunsumio® (Roche) 15.6.5.1. Target Patient Population 15.6.5.2. Sales Forecast 15.6.5.3. Net Present Value 15.6.5.4. Value Creation Analysis 15.6.6. Nanozora® (Taisho Pharmaceutical) 15.6.6.1. Target Patient Population 15.6.6.2. Sales Forecast 15.6.6.3. Net Present Value 15.6.6.4. Value Creation Analysis 15.6.7. Rybrevant™ (Janssen Research & Development) 15.6.7.1. Target patient Population 15.6.7.2. Sales Forecast 15.6.7.3. Net Present Value 15.6.7.4. Value Creation Analysis 15.6.8. Tecvayli™ (Janssen Research & Development) 15.6.8.1. Target Patient Population 15.6.8.2. Sales Forecast 15.6.8.3. Net Present Value 15.6.8.4. Value Creation Analysis 15.6.9. Vabysmo™ (Roche) 15.6.9.1. Target Patient Population 15.6.9.2. Sales Forecast 15.6.9.3. Net Present Value 15.6.9.4. Value Creation Analysis 15.6.10. AK112 (Akeso Biopharma) 15.6.10.1. Target Patient Population 15.6.10.2. Sales Forecast 15.6.10.3. Net Present Value 15.6.10.4. Value Creation Analysis 15.6.11. ALXN1720 (Alexion) 15.6.11.1. Target Patient Population 15.6.11.2. Sales Forecast 15.6.11.3. Net Present Value 15.6.11.4. Value Creation Analysis 15.6.12. GEN3013 (Genmab) 15.6.12.1. Target Patient Population 15.6.12.2. Sales Forecast 15.6.12.3. Net Present Value 15.6.12.4. Value Creation Analysis 15.6.13. Glofitamab (Roche) 15.6.13.1. Target Patient Population 15.6.13.2. Sales Forecast 15.6.13.3. Net Present Value 15.6.13.4. Value Creation Analysis 15.6.14. LP000 (Linton Pharm) 15.6.14.1. Target Patient Population 15.6.14.2. Sales Forecast 15.6.14.3. Net Present Value 15.6.14.4. Value Creation Analysis 15.6.15. M7824 (Merck) 15.6.15.1. Target Patient Population 15.6.15.2. Sales Forecast 15.6.15.3. Net Present Value 15.6.15.4. Value Creation Analysis 15.6.16. OMP 305B83 (Mereo BioPharma) 15.6.16.1. Target Patient Population 15.6.16.2. Sales Forecast 15.6.16.3. Net Present Value 15.6.16.4. Value Creation Analysis 15.6.17. PF-06863135 (Pfizer) 15.6.17.1. Target Patient Population 15.6.17.2. Sales Forecast 15.6.17.3. Net Present Value 15.6.17.4. Value Creation Analysis 15.6.18. ZW25 (Zymeworks) 15.6.18.1. Target Patient Population 15.6.18.2. Sales Forecast 15.6.18.3. Net Present Value 15.6.18.4. Value Creation Analysis 15.7. Concluding Remarks 16. SWOT ANALYSIS 16.1. Chapter Overview 16.2. Strengths 16.2.1. Enhanced Specificity 16.2.2. Diverse Application Areas 16.2.3. Lower Drug Resistance 16.2.4. Success of Approved Products 16.3. Weaknesses 16.3.1. Uncertainties with Safety of Therapeutic Candidates 16.3.2. Complex Purification and Downstream Processing 16.3.3. Dimerization in Antibodies with Fc-region 16.4. Opportunities 16.4.1. Life Cycle Management of Novel Therapies 16.4.2. Growing Number of High Value Partnerships 16.4.3. Expertise Available with Contract Manufacturing Organizations 16.4.4. Emergence of Advanced Technologies 16.5. Threats 16.5.1. Rise in Attrition Rate of Clinical Stage Candidates 16.6. Concluding Remarks 17. CONCLUDING REMARKS 18. EXECUTIVE INSIGHTS 18.1. Chapter Overview 18.2. CytomX Therapeutics 18.2.1. Company Snapshot 18.2.2. Interview Transcript 18.3. F-star 18.3.1. Company Snapshot 18.3.2. Interview Transcript 18.4. Immunai 18.4.1. Company Snapshot 18.4.2. Interview Transcript 18.5. Innovent Biologics 18.5.1. Company Snapshot 18.5.2. Interview Transcript 18.6. SYNIMMUNE 18.6.1. Company Snapshot 18.6.2. Interview Transcript 18.7. University of Freiburg 18.7.1. Company Snapshot 18.7.2. Interview Transcript 19. APPENDIX 1: TABULATED DATA 20. APPENDIX 2: LIST OF COMPANIES AND ORGANIZATION
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