干细胞之家 - 中国干细胞行业门户第一站

 

 

搜索
朗日生物

免疫细胞治疗专区

欢迎关注干细胞微信公众号

  
查看: 869176|回复: 299
go

[生物学相关学科类] PDF电子书《microRNAs From Basic Science to Disease Biology》     [复制链接]

Rank: 7Rank: 7Rank: 7

积分
536 
威望
536  
包包
1170  

优秀版主

楼主
发表于 2010-1-25 11:38 |只看该作者 |正序浏览 |打印
本帖最后由 细胞海洋 于 2010-1-25 11:41 编辑
$ b$ L! B6 |! ^0 B1 a- s
7 C( U0 y, S, `+ R  e9 Y6 B2 T- ]" o8 G% r: Z( f. p7 ?

" r$ t: ^9 O2 R0 o  dmicroRNAs From Basic Science to Disease Biology
4 y2 \2 O; Q7 J1 Z. {. m; S0 p$ P/ `3 u! y
MicroRNAs (miRNAs) are RNA molecules, conserved by evolution, that regulate gene expressions and their discovery has revolutionised both basic biomedical research and drug discovery. Expression levels of MiRNAs have been found to vary between tissues and with developmental stages and hence evaluation of the global expression of miRNAs potentially provides opportunities to identify regulatory points for many different biological processes. This wide-ranging reference work, written by leading experts from both academia and industry, will be an invaluable resource for all those wishing to use miRNA techniques in their own research, from graduate students, post-docs and researchers in academia to those working in R&D in biotechnology and pharmaceutical companies who need to understand this emerging technology. From the discovery of miRNAs and their functions to their detection and role in disease biology, this volume uniquely integrates the basic science with industry application towards drug validation, diagnostic and therapeutic development. 2 O9 \/ b6 W% h) B3 T* u

9 B" k- J5 h$ Y) p1 b, A$ oContents
$ P4 l  ]9 w' r8 J5 m) P  ~$ EForeword; Foreword; Introduction Part I. Discovery of MicroRNAs in Various Organisms: 1. The microRNAs of C. elegans; 2. Non-coding RNAs - development of man-made vector-based intronic microRNAs; 3. Seeing is believing: strategies for studying microRNA expression; 4. MicroRNAs in limb development; 5. Identification of miRNAs in plant oryza sativa; Part II. MicroRNA Functions and RNAi-mediated pathways: 6. Inhibition of translation initiation by a microRNA; 7. In situ analysis of microRNA expression during vertebrate development; 8. MicroRNA function in the nervous system; 9. Micro RNA expression that controls the amount of branched chain α-ketoacid dehydrogenase in mitochondria of human cells; 10. MicroRNAs and the regulation of leaf shape; Part III. Computational Biology of microRNAs: 11. miRBase: a database of microRNA sequences, targets and nomenclature; 12. Computational prediction of microRNA targets in vertebrates, fruitflies and nematodes; 13. Computational approaches to elucidate miRNA biology; 14. The RNA hybrid approach to microRNA target prediction; 15. Machine learning predicts microRNA target sites; 16. Models of microRNA-target coordination; Part IV. Detection and Quantitation of MicroRNAs: 17. Detection and analysis of microRNAs using LNA (locked nucleic acid)-modified probes; 18. Detection and quantitation of microRNAs using the RNA Invader® assay; 19. A single molecule method to quantify miRNA gene expression; 20. Real-time quantification of MicroRNAs by TaqMan® assays; 21. Real-time quantification of miRNAs and mRNAs employing universal reverse transcription; Part V. MicroRNAs in Disease Biology: 22. Dysregulation of microRNAs in human malignancy; 23. High throughput microRNAs profiling in cancers; 24. Roles of microRNAs in cancer and development; 25. miR-122 in mammalian liver; 26. MiRNAs in glioblastoma; 27. Role of microRNA pathway in Fragile X mental retardation; 28. Insertion of miRNA125b-1 into immunoglobulin heavy chain gene locus mediated by V(D)J recombination in precursor B cell acute lymphoblastic leukemia; 29. miRNAs in TPA-induced differentiation of HL-60 cells; 30. MiRNAs in skeletal muscle differentiation; 31. Identification and potential function of viral microRNAs; 32. Lost in translation: regulation of HIV-1 by microRNAs and a key enzyme of RNA-directed RNA polymerase; Part VI. MicroRNAs in Stem Cell Development: 33. MicroRNAs in the stem cells of the mouse Blastocyst; 34. The role of miRNA in hematopoiesis; 35. MicroRNAs in embryonic stem cell differentiation and prediction of their targets; 36. Generation of single cell microRNA expression profile.  U& J. A% c9 R" C9 f; @" E

' G. A$ T1 _/ I& D5 aReviews
8 h' @6 L' f$ X  p0 ?" M5 e: C'…comprehensive and detailed…compiled logically…informative and easy to read.' Microbiology Today  k& e& R$ \. `( [. A: l3 d! ]/ o
) w  T% L4 A7 O, H
'Overall, a useful reference guide for those interested in miRNA …' Immunology News9 M6 f( x( e$ g4 G; q
7 L5 ?, O( f: Z. L  R( y
Contributors
7 }2 r/ ]2 o! j8 SSidney Altman, Victor R. Ambros, Krishnarao Appasani, Ines Alvarez-Garcia, Eric A. Miska, Shao-Yao Ying, Joseph D. Miller, Shi-Lung Lin, Joshua W. Hagen, Eric C. Lai, Danielle M. Maatouk, Jason R. Rock, Brian D. Harfe, Hui Zhou, Yue-Qin Chen, Yu-Chun Luo, Jia-Fu Wang, Liang-Hu Qu, David T. Humphreys, Belinda J. Westman, David I. K. Martin, Thomas Preiss, Diana K. Darnell, Stacey Stanislaw, Simran Kaur, Tatiana A. Yatskievych, Sean Davey, Jay H. Konieczka, Parker B. Antin, Gerhard Schratt, Michael Greenberg, Dean J. Danner, John Barnes, Benjamin Mersey, Ramiro E. Rodriguez, Carla Schommer, Javier Palatnik, Anton J. Enright, Sam-Griffith-Jones, Dominic Grün, Nikolaus Rajewsky, Praveen Sethupathy, Molly Megraw, Artemis G. Hatzigeorgiou, Marc Rehmsmeier, Pål Sætrom, Ola Snøve Jr., Neil R. Smalheiser, Vetle I. Torvik, Sakari Kauppinen, Hatim T. Allawi, Victor I. Lyamichev, Sonal Patel, Joanne Garver, Michael Gallo, Maria Hackett, Stephen McLaughlin, Mark Nadel, John Harris, Duncan Whitney, Lori A. Neely, Yu Liang, Linda Wong, Ruoying Tan, Caifu Chen, Gregory J. Hurteau, Simon D. Spivack, Graham J. Brock, Kathryn A. O'Donnell, Joshua T. Mendell, Muller Fabbri, Ramiro Garzon, Amelia Cimmino, George Adrian, Carlo Maria Croce, Andrea Ventura, Madhu S. Kumar, Tyler Jacks, Jinhong Chang, John M. Taylor, Silvia Anna Ciafrè, Keith Szulwach, Peng Jin, Takashi Sonoki, Norio Asou, Tomoko Kozu, Irina Naguibneva, Anna Polesskaya, Annick Harel-Bellan, Finn Grey, Alec J. Hirsch, Jay A. Nelson, Yoichi Robertus Fujii, Hristo B. Houbaviy, Michaela Scherr, Matthias Eder, Yvonne Tay, Andrew M. Thomson, Bing Lim, Fuchou Tang, Kaiqin Lao, M. Azim Surani+ w# x, Y9 X* w9 v5 ]2 f+ a( m
[hide][/hide]
附件: 你需要登录才可以下载或查看附件。没有帐号?注册
已有 1 人评分威望 包包 收起 理由
细胞海洋 + 10 + 20 极好资料

总评分: 威望 + 10  包包 + 20   查看全部评分

Rank: 2

积分
93 
威望
93  
包包
1706  
300
发表于 2024-5-21 00:35 |只看该作者
我仅代表干细胞之家论坛前来支持,感谢楼主!  

Rank: 2

积分
200 
威望
200  
包包
2560  
299
发表于 2024-5-4 15:43 |只看该作者
佩服佩服啊.  

Rank: 1

积分
威望
0  
包包
1511  
298
发表于 2024-5-2 15:24 |只看该作者
干细胞之家微信公众号
几头雾水…  

Rank: 2

积分
88 
威望
88  
包包
1897  
297
发表于 2024-3-29 17:18 |只看该作者
顶顶更健康,越顶吃的越香。  

Rank: 2

积分
73 
威望
73  
包包
1561  
296
发表于 2024-3-19 10:58 |只看该作者
先看看怎么样!  

Rank: 2

积分
79 
威望
79  
包包
1586  
295
发表于 2024-3-7 12:51 |只看该作者
干细胞库  

Rank: 2

积分
94 
威望
94  
包包
1644  
294
发表于 2024-3-1 21:47 |只看该作者
不知道说些什么  

Rank: 2

积分
123 
威望
123  
包包
1661  
293
发表于 2024-2-17 05:32 |只看该作者
谁能送我几分啊  

Rank: 2

积分
64 
威望
64  
包包
1644  
292
发表于 2024-1-31 11:55 |只看该作者
表观遗传学
‹ 上一主题|下一主题
你需要登录后才可以回帖 登录 | 注册
验证问答 换一个

Archiver|干细胞之家 ( 吉ICP备2021004615号-3 )

GMT+8, 2024-6-7 02:33

Powered by Discuz! X1.5

© 2001-2010 Comsenz Inc.