首頁 產業/市場分類 出版商一覽 Email 通知 GII媒體代理會議 公司簡介 聯絡我們
- English Japanese Korean
首頁 > 市場調查報告書 > 生物科技 > 以基因為基之藥物開發 > 單細胞組學:進展與革命
產業/市場分類
生物科技 (1574)
分子標靶治療學 (131)
生技設備 (354)
生物材料 (53)
生物標記 (155)
以基因為基之藥物開發 (202)
再生醫學 (119)
抗體和免疫 (189)
個人化醫學 (51)
基因治療學和RNAi (102)
市場調查報告書

單細胞組學:進展與革命

Single Cell Omics: Evolution and Revolution

出版商 Select Biosciences, Ltd.
出版日期 2011年05月 商品編碼 196216
內容資訊 英文 167 Pages
價格
US $ 4205 PDF by E-mail ( Site License)


單細胞組學:進展與革命 是由出版商Select Biosciences, Ltd.在2011年05月所出版的。 這份英文市場調查報告書包含167 Pages 價格從美金4205起跳。

簡介

本報告書為單細胞組學的主要技術與應用領域、為滿足需求動向等整理,概述如下。

第1章 總綱

第2章 歷史的展望

  • 單細胞
  • 組學
  • 組學與少數細胞
  • 組學與單細胞

第3章 細胞的不均一性

  • 導論
  • 不均一性案例
    • RNA干渉
    • C.Elegans的基因發現檔案
  • 不均一性的其他事例

第4章前端技術

  • 技術概要
  • 前端導論
  • 調査項目
  • FACS調整細胞排序
  • 磁珠調整細胞排序
  • 顯微鏡的擷取/微操作
  • 雷射擷取顯微解剖

第5章 後端技術

  • 導論
  • 最新動向
  • 技術概要
  • 調査項目
  • 最新事例
  • 將來方向性

第6章 前端與後端的橋梁

  • 導論
  • 第1世代平台案例
  • 第2世代平台案例
  • 調査項目

第7章 新興的應用

  • 導論
  • 文獻分析
  • 確立/新興應用
    • 幹細胞
    • 免疫學
    • 神經生物學
  • 新興應用領域
    • 循環腫瘤細胞
    • 系統生物學

第8章 市場模式

  • 方法
  • 文獻分析
  • 調査項目
  • 市場模型

第9章 競爭環境

  • 導論
  • 循環腫瘤細胞/稀少細胞
  • DNA測序
  • 微流體
  • 顯微鏡擷取與其他

目錄

Abstract

The single cell Omics revolution is the potential transformation of cellular heterogeneity from a source of noise to a source of new, as yet hidden discoveries. No longer will the variability from one cell to the next confound researchers and force them to average results into irrelevance. Researchers may find, in fact, that this variability is critical for cells to respond to and interact with their environments. But even without the complete revolution, single cell Omics offer significant evolutionary advances in fields of biology and medicine that are already based on single cell analysis, such as immunology, neurobiology, stem cell biology, circulating tumor cells and preimplantation genetic diagnosis. Moreover, the ongoing evolution of single cell Omics technologies provides improvements in sensitivity and throughput that will enable researchers to generate more data from smaller numbers of cells, which can be enabling in cases of precious samples. The result of this (r)evolution is a market for Omics technologies that is projected to grow from $60 million in sales in 2010 to $525 million in 2016, according to Single Cell Omics 2011, a new report published by Select Biosciences and written by BioPerspectives.

Survival of the fittest requires a detailed understanding of this emerging market. Single Cell Omics 2011 explains the key technologies, applications, unmet needs and trends. The 167-page report includes an Internet survey administered to a large stratified database; analyses of front-end separation technologies, back-end Omics technologies and integrated platforms to bridge the gap; profiles of 30 companies; and a quantitative market model segmented by technologies. In addition, the report comes with a reprint of the Trends in Biotechnology cover article written by two of the report authors. Moreover, the report also comes with one hour of consulting (in the form of a conference call) with report authors Dr. Bodovitz, Principal of BioPerspectives or Antje Plaschke-Schluetter, Head of Application at Molecular Machines & Industries AG. To order a copy of the report and increase your fitness, please click here.

Table of Contents

Chapter 1: Executive Summary

  • Introduction
  • Cellular Heterogeneity
  • Front-End Isolation of Single Cells
  • Back-End Isolation of Single Cells
  • Bridging Front- and Back-End
  • Applications
  • Competitive Environment
  • Trends in Usage
  • Prediction of Market Inflections
  • Market Model

Chapter 2: Historical Perspective

  • Single Cells
  • Omics
  • Omics and Small Numbers of Cells
  • Omics and Single Cells

Chapter 3: Cellular Heterogeneity

  • Introduction
  • Specific Examples of Heterogeneity
    • RNA Interference
    • Gene Expression Profiles in C. Elegans
  • More Examples of Heterogeneity
  • Root Cause
  • Survey Question
  • Significance
  • From Noise to Discoveries
  • The Trend
  • Survey Question

Chapter 4: Front-End Technologies

  • Overview of Technologies
  • Introduction to the Front-End
  • Survey Question
  • FACS-Mediated Cell Sorting
    • Introduction
    • Competition
  • Magnetic Bead-Mediated Cell Sorting
    • Introduction
    • Competition
  • Microscopic Capture/Micromanipulation
    • Introduction
    • Competition
  • Laser Capture Microdissection
    • Introduction
    • Competition

Chapter 5: Back-End Technologies

  • Introduction
  • State-of-the-Art
  • Technology Overview
  • Survey Question
  • Examples of State of the Art
    • Genomics
    • Survey Question
    • Metabolomics
    • Survey Questions
    • Microfluidic Interface with Mass Spectrometry
  • Future Directions
    • Evolution
    • Revolution

Chapter 6: Bridging the Front- and Back-Ends

  • Introduction
  • Examples of First-Generation Platforms
    • Beckman Coulter
    • MMI
  • Examples of Second-Generation Platforms
    • Silicon Biosystems
    • Microcavity Array
    • Single Cell Microarray
  • Survey Question

Chapter 7: Emerging Applications

  • Introduction
  • Literature Analysis
    • Established
    • Preimplantation Genetic Diagnosis/Screening
  • Established/Emerging
    • Stem Cells
    • Immunology
    • Neurobiology
  • Emerging
    • Cancer
    • Circulating Tumor Cells
      • Introduction
      • Workflow 1
      • Workflow 2
      • Workflow 3
      • Workflow 4
      • Workflow 5
  • Systems Biology

Chapter 8: Market Model

  • Methodology
    • 2010
    • Growth
  • Literature Analysis
  • Survey Questions
  • Market Model
    • Overall Technology Markets
    • Top-Down Analysis for 2010
    • Growth Projections

Chapter 9: Competitive Environment

  • Introduction
  • Circulating Tumor Cells/Rare Cells
    • Adnagen
    • Biocept
    • Cytotrack
    • Rarecells
    • Silicon Biosystems
    • Veridex
  • DNA Sequencing
    • IBM
    • IonTorrent
    • Oxford Nanopore Technologies
    • Pacific Biosciences
  • Microfluidics
    • BioNanomatrix
    • Cyntellect
    • Fluidigm
    • Fluxion Biosciences
    • IntegenX
    • Mathies Lab
    • Microfluidic ChipShop
    • RainDance Technologies
  • Microscopic Capture
    • Eppendorf
    • Hacker Instruments
    • Ibidi
    • Leica Microsystems
    • MMI
    • Narishige
    • Zeiss
  • Multifaceted
    • Life Technologies
    • Miltenyi Biotec
    • Roche Applied Science
    • TATAA Biocenter
  • Outside-the-Box
    • LBNL
    • UC Irvine
  • Preimplantation Genetic Diagnosis
    • Reprogenetics

Appendix: Methodology

  • Author Credentials
  • Sources
  • Market Model
  • Literature Analysis
  • Internet Survey
    • Background Question 1
    • Background Question 2
    • Background Question 3
    • Background Question 4
Back to Top