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市場調查報告書

癌症治療中抗體技術的發展

The Deployment of Antibody Technologies for the Advancement of Cancer Therapeutics

出版商 BioSeeker Group AB
出版日期 2008年04月 商品編碼 64862
內容資訊 英文 163 pages
價格
US $ 3335 PDF by E-mail (Single User License)


癌症治療中抗體技術的發展 是由出版商BioSeeker Group AB在2008年04月所出版的。 這份英文市場調查報告書包含163 pages 價格從美金3335起跳。

簡介

本報告書內容包括:癌症治療中單株抗體市場的動向及主要抗體技術、新一代治療用抗體的競爭、抗體發現、傳輸、改良上的競爭動向等。內容綱要摘記如下:

第1章 實施概要

第2章 關於癌症

第3章 方法論

第4章 目次

第5章 癌症抗體:藥品市場中的成長動力

第6章 單株抗體技術:蛋白質工程及資訊儲存與搜尋平台

第7章 單株抗體別技術平台分類

第8章 利用單株抗體的主動免疫療法平台

第9章 單株免疫克隆抗體

第10章 單株抗體的發現平台

第11章 不以蛋白質為標的的單株抗體平台

第12章 展開後的改良平台

第13章 單株抗體傳輸的新策略

第14章 利用非IgG1免疫球蛋白結構的單株

第15章 替代非抗體蛋白質結合技術

第16章 單株抗體技術介紹

第17章 技術平台索引

第18章 企業索引

目錄

Abstract

Introduction

The discovery of new cancer therapeutics has seen a significant shift towards biologicals as an alternative to small molecule drugs. Targeted biologics utilizing monoclonal antibody (mAb)-based technologies have rapidly developed into one of the major market segments of the pharmaceutical industry. By analyzing R&D pipelines and the platform technologies in use today, it is possible to better predict where the market will be in the next decade and to envisage which new innovative therapies will become market successes.

Research highlights

The second wave of therapeutic antibody technologies, encompassing optimized full size, fully human antibodies as well as the bits and pieces of individual antibody fragments and alternative binding domains/scaffolds is driving the formation of innovative technology platforms. While biotechs have led the race towards the discovery of novel technologies, big pharma has taken over the reigns for the development of many of these future therapeutic drugs.

In this report, BioSeeker Group has surveyed and categorized the technology platform status of over 100 companies and identified over 150 unique platforms that are shaping the current and future pipeline of monoclonal antibody therapeutics.

Scope of this report:

  • A single source for market wide competing monoclonal antibody technologies in oncology
  • Thorough examination of the leading cancer therapeutic antibody technologies
  • The race towards the next generation of therapeutic antibodies
  • Competing platforms for expression, delivery, and modification of antibodies

This report will:

  • improve your competitor analysis
  • allow you to assess the strengths/weaknesses of competing technologies
  • outline R&D alignments
  • allow you to assess the direction of future technologies

Pages: 163

Table of Contents

1 Executive Summary

2 About Cancer Highlights

3 Methodologies

4 Table of Contents

  • 4.1 List of Boxes
  • 4.2 List of Figures
  • 4.3 List of Tables

5 Cancer Antibodies: The Growth Engine of the Pharmaceutical Market

  • 5.1 Where We Stand Today
  • 5.2 The Current Antibody Cancer Pipeline of Big Pharma and Biotech
  • 5.3 Recent Changes in the Competitive Landscape of Monoclonal Antibody Technologies
    • 5.3.1 Big Pharma' s Race for Monoclonal Technologies
    • 5.3.2 The Race to the First Approved Miniature Antibody
  • 5.4 Technology Platform Approaches to Monoclonal Antibody Therapeutics
  • 5.5 Drug Discovery and Development Platforms

6 Monoclonal Antibody Technologies- Protein Engineering and Library Platforms

  • 6.1 From Mouse to Human Mabs
  • 6.2 Human Antibodies from Transgenic Mice
  • 6.3 Library Display Platforms
  • 6.4 Antibodies Blown to Bits: From Full Length to Fragments

7 Classification of Technology Platforms by Monoclonal Antibody Specifics

  • 7.1 Monoclonal Antibody Sources
    • 7.1.1 B cells
    • 7.1.2 Plasma
    • 7.1.3 Cancer Stem Cells and Tumor Tissue

8 Active Immunotherapeutic Platforms Using Monoclonal Antibodies

  • 8.1 Antigen Presenting Cells/Dendritic Cells
  • 8.2 T cells

9 Monoclonal Immuoconjugates: Strategies and Platforms

  • 9.1 Cytotoxin-Conjugated Antibody Platforms
  • 9.2 Radioisotope-Conjugated Antibody Platforms
  • 9.3 Antibody-Linker Platforms
  • 9.4 Vasculature-Targeting Platforms

10 Monoclonal Antibody Expression Platforms

  • 10.1 Mammalian Cell, Bacterial and Hybridoma Platform Technologies
  • 10.2 Plant and Animal Platforms of Antibody Production
  • 10.3 Monoclonal Antibody Processing Platforms

11 Monoclonal Antibody Platforms for Non-Protein Targets

  • 11.1 Monoclonal Antibody Platforms for Carbohydrate
  • 11.2 Monoclonal Antibody Platforms for Lipid

12 Post-Translational Modification Platforms

  • 12.1 Glycosylation modification

13 Novel Strategies for Monoclonal Antibody Delivery

  • 13.1 Gene Delivery and Transfer Technologies
  • 13.2 Epidermal Delivery

14 Monoclonals Based on Non-IgG1 Immunoglobulin Structures

15 Alternative Non-Antibody Protein Binding Technologies

16 Monoclonal Antibody Technology Profiles _____(Truncated list)

  • 16.1 AbGenomics
    • 16.1.1 AbProt™
    • 16.98.1 Human Engineering™ Technology HE™ technology
    • 16.98.2 Microbial Expression Technology

18 Technology Platform Index

19 Company Index

4.1 List of Boxes

  • Box 1: Desirable Immunogenicity from a Murine Antibody
  • Box 2: mAb Competition for CD200
  • Box 3: Using mAb Fragments to Bind Intracellular Targets
  • Box 4: Cancer Stem Cells: A New Paradigm in Cancer Therapeutics
  • Box 5: Potential Advantages in Local, Controlled-Release for Therapeutic Antibodies

4.2 List of Figures

  • Figure 1: Developmental Status of the Antibody-based Pharmaceutical Pipeline in Oncology
  • Figure 2: Top 10 Big Pharma Cancer mAb Pipeline
  • Figure 3: Top 10 Biotech Company Cancer mAb Pipeline
  • Figure 4: Investigator Country of Origin
  • Figure 5: Company Breakdown by Platform Classification

4.3 List of Tables

  • Table 1: Monoclonal Antibody Therapeutics Approved for Cancer Indications
  • Table 2: Recent Noteworthy Acquisitions and Mergers in the mAb-based Oncology Therapeutic Market
  • Table 3: TechPlatforms of Investigators Involved in Monoclonal Antibody Therapy of Cancer
  • Table 4: Selected Companies and their Antibody Species Specificity
  • Table 5: Pipeline of the Four Investigators with Transgenic Mouse Technology
  • Table 6: Library Display Platform Technologies
  • Table 7: Full Size Antibodies vs Antibody Fragments
  • Table 8: Research Platforms for Cancer Immunotherapy using Antibody Fragments/Formats
  • Table 9: Developmental Stage of Selected Bispecific Antibodies
  • Table 10: Developmental Stage of Selected Trispecific Antibodies
  • Table 11: Human Source Material for Monoclonal Antibody Platforms
  • Table 12: Monoclonal Antibody Technology Platforms for Immune Cell Activation
  • Table 13: Monoclonal Antibody Immunoconjugates Aprroved for Cancer Indications
  • Table 14: Monoclonal Antibody Immunoconjugation Technologies
  • Table 15: Radioisotope Platforms for mAb Technology
  • Table 16: Technology Platforms Categorized by mAb-based Expression System
  • Table 17: Non-Protein Targets of Monoclonal Antibody Platforms
  • Table 18: Technology Platforms for Post-Translational Modification of Monoclonal Antibodies
  • Table 19: Technology Platforms Specific for mAb Delivery
  • Table 20: Company Platforms Based on Non-IgG1 Immunoglobulin Structures
  • Table 21: Selected Companies with Cancer-Targeting Protein Therapeutics Based on Non-IgG Domains
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