|
市場調查報告書
HIV疫苗最新資訊:最近挫折後的重要R&D創新
HIV Vaccine Update: R&D Innovation Critical in the Wake of Recent Setbacks
|
本報告已在2011年12月21日停止出版。
在過去長達25年的研究當中,HIV疫苗仍有未達成的目標,因此目前急需更加創新的疫苗開發對策。
本報告書內容包括:HIV概要、HIV市場概要、目前的疫苗設計策略、今後的策略、未來展望等分析。內容綱要摘記如下:
第1章 實施概要
第2章 介紹
第3章 理解HIV疫苗的必要性
第4章 HIV疫苗的市場潛力
第5章 HIV疫苗開發課題及策略考量事項
第6章 疫苗設計的現有策略
第7章 現在的可能疫苗候選
- 置換病毒載體
- 腺病毒病毒載體
- 金絲雀痘病毒載體
- 修飾牛痘病毒載體
- 雞痘病毒載體
- DNA疫苗
- 置換蛋白質
- 胜肽及脂胜類
第8章 疫苗設計的未來策略
- 利用黏膜免疫
- 置換載體
- 類病毒粒子
- 生/弱毒化疫苗
- 全成份使用/非活化病毒性疫苗
- 合成胜肽免疫原
- 基因治療
- 反義寡核甘酸
第9章 展望
- 大規模製藥公司的展望
- 生物科技企業的展望
- 慈善團體的角色
Abstract
Introduction
Despite 25 years of extensive research, an HIV vaccine remains an elusive
target. More-innovative approaches to vaccine development are urgently needed.
Although this high-risk, high-profi le area of development is crucial to world
health, it is unlikely to offer fi nancial rewards for Big Pharma. Therefore,
smaller biotechs and charitable organizations also play key roles.
Get the Answers You Need to Shape Your Strategy
- The recent failure of Merck' s T-cell vaccine for HIV may mark a turning
point in HIV development across the industry. Which other HIV vaccines in
the pipeline use this same approach? What other approaches to vaccine
development might offer greater potential for success in the future?
- Despite the critical importance of addressing the HIV pandemic, the market
potential of a vaccine will be limited in the near term. Where is the
greatest market potential? What strategies are pharmaceutical and biotech
companies pursuing to solve this world health problem while also maximizing
returns?
- Given the market limitations associated with HIV vaccine development,
government and charitable organizations are funding many of the development
efforts. Which organizations are providing the greatest amount of funding?
How is the pharmaceutical industry working with these organizations to achieve
scientifi c breakthroughs and gain a competitive advantage?
Scope
- Understanding HIV: background on the virus, the immune response,
the need for a vaccine.
- HIV market: market potential, possible target populations,
challenges, strategic considerations.
- Current approaches to vaccine design: neutralizing antibodies,
cell-mediated immunity.
- Current vaccine candidates: recombinant viral vectors, DNA
vaccines, recombinant proteins, peptides and lipopeptides.
- Future approaches to vaccine design: mucosal immunity, recombinant
vectors, virus-like particles, live attenuated vaccines, whole inactivated
viral vaccines, synthetic peptide immunogens, gene therapy, antisense
oligonucleotides.
- Outlook: Big Pharma, biotech companies, governments, charitable
organizations.
Table of Contents
- Executive Summary
- Strategic Considerations
- Stakeholder Implications
- Introduction
- Understanding the Need for Vaccination Against HIV
- The Virus
- The Immune Response
- The Need for an HIV Vaccine
- Market Potential of an HIV Vaccine
- Challenges and Strategic Considerations in Developing an HIV Vaccine
- Current Approaches to Vaccine Design
- Neutralizing Antibodies
- Cell-Mediated Immunity
- Current Vaccine Candidates
- Recombinant Viral Vectors
- Adenoviral Vectors
- Canarypox Vectors
- Modifi ed Vaccinia Vectors
- Fowlpox Viral Vectors
- DNA Vaccines
- Recombinant Proteins
- Peptides and Lipopeptides
- Future Approaches to Vaccine Design
- Harnessing Mucosal Immunity
- Recombinant Vectors
- Virus-Like Particles
- Live, Attenuated Vaccines
- Whole, Inactivated Viral Vaccines
- Synthetic Peptide Immunogens
- Gene Therapy
- Antisense Oligonucleotides
- Outlook
- Outlook for Large Pharmaceutical Companies
- Outlook for Biotechnology Companies
- Role of Philanthropic Organizations
Sidebars
- Heterologous Prime-Boost Approach
- Adjuvants
Tables
- 1. HIV Proteins and Their Functions
- 2. Recombinant Vector HIV Vaccines in Development, 2007
- 3. DNA HIV Vaccines in Development, 2007
- 4. Recombinant Protein HIV Vaccines in Development, 2007
- 5. Peptide and Lipopeptide HIV Vaccines in Development, 2007
- 6. Mucosal Adjuvants in Development for Use with HIV Vaccines
Figures
- 1. Human Immunodefi ciency Virus Structure
- 2. Distribution of Worldwide Prevalent Cases of HIV, 2006
|