Nature Biotechnology 是一本致力于发表该领域研究成果的学术期刊 Immunology and Microbiology. Nature Publishing 是这本受人尊敬的期刊的出版商。. P-ISSN 分配给 Nature Biotechnology 是 1087-0156 它的缩写形式是 Nat Biotechnol.
Nature Biotechnology is a monthly journal covering the science and business of biotechnology. It publishes new concepts in technology/methodology of relevance to the biological, biomedical, agricultural and environmental sciences as well as covers the commercial, political, ethical, legal, and societal aspects of this research. The first function is fulfilled by the peer-reviewed research section, the second by the expository efforts in the front of the journal. We provide researchers with news about business; we provide the business community with news about research developments.
The core areas in which we are actively seeking research papers include: molecular engineering of nucleic acids and proteins; molecular therapy (therapeutics genes, antisense, siRNAs, aptamers, DNAzymes, ribozymes, peptides, proteins); large-scale biology (genomics, functional genomics, proteomics, structural genomics, metabolomics, etc.); computational biology (algorithms and modeling), regenerative medicine (stem cells, tissue engineering, biomaterials); imaging technology; analytical biotechnology (sensors/detectors for analytes/macromolecules), applied immunology (antibody engineering, xenotransplantation, T-cell therapies); food and agricultural biotechnology; and environmental biotechnology. A comprehensive list of areas of interest is shown below.
Genetic engineering
Strategies for controlling gene expression Strategies for manipulating gene structure Strategies for gene containment
Large-scale approaches
Technologies for analyzing gene function (e.g., arrays, SAGE) Technologies for analyzing gene structure/organization (e.g., molecular beacons) Chemogenomics or chemical genetics Pharmacogenomics/SNPs Computational analysis
Proteomics
Technologies for analyzing/identifying protein structure/function (e.g., 2-D gels, mass spectrometry, yeast two-hybrid, SPR, NMR, arrays and chips) Structural genomics Computational analysis
Metabolomics
Technologies for analyzing/profiling metabolites (chromatography, mass spectrometry) Computational analysis
Computational biology
Bioinformatics; algorithms; data deconvolution Modeling and systems biology: kinetics-based models and constraints-based models
Molecular engineering
Rational approaches for proteins/antibodies/enzymes/drugs Molecular evolution Molecular breeding approaches
Metabolic engineering
Genetic manipulation of species of interest to modify or allow the production of a commercially or therapeutically relevant compound Computational analysis
Novel expression systems
Mammalian cells Insect cells Bacteria Fungi Plant cells
Delivery of genes, drugs, or cells
Targeting strategies Viral and nonviral vector strategies
Imaging
Reporter molecules Imaging approaches/technologies for visualizing whole animals, cells, or single molecules Computational analysis
Nucleic acid therapeutics
Gene therapy (targeting, expression, integration, immunogenicity) Antisense RNAi DNAzymes and ribozymes Other (e.g., chimeric oligonucleotides/triple helix)
Nanobiotechnology
Nanomaterials for use in drug delivery or as therapeutics Nanomaterials for use in industrial biotechnology Nanosensors Nanosystems for imaging molecules and cells
Vaccines and applied immunology
Antibody engineering T-cell therapies Therapies exploiting innate immunity (e.g. complement) Antigen delivery vectors and approaches Nucleic acid vaccines Computational analysis
Regenerative medicine
Stem cells Tissue engineering Therapeutic cloning (somatic cell nuclear transfer) Xenotransplantation Biomaterials
Biosensors
Approaches for detecting biological molecules Use of biological systems in detecting analytes
Assay systems
Approaches for multiplexing and increasing throughput Selection/screening strategies for gene/proteins/drugs Microfluidics
Biomaterials
Engineering materials for biological application Molecular imprinting Biomimetics Nanotechnology
Agbiotech and transgenic plants
Crop improvement (resistance to stress, disease, pests) Nutraceuticals Forest biotechnology Plant vaccines Plants as bioreactors Gene-containment strategies
Pharming
Transgenic animals Knockouts Reproductive cloning Biopharmaceutical and enzyme production Transgene targeting and expression strategies
Environmental
Bioremediation Biomining Phytoremediation Monitoring
期刊名称 | Nature Biotechnology |
缩写 | Nat Biotechnol |
打印 ISSN | 1087-0156 |
在线的 ISSN | 1546-1696 |
主编 | Barbara Cheifet |
科目 | Immunology and Microbiology |
影响因子 | 68.164 |
SJR | 22.781 |
排行 | 18 |
引用分数 | 71.9 |
H指数 | 491 |
地位 | 🟢 活跃 |
索引于 |
Nature Biotechnology 缩写 : 期刊缩写是指用于表示学术期刊完整标题的缩写形式或首字母缩略词。 它是一种常用的速记方式,有助于在学术出版物、参考书目和数据库中引用、索引和引用期刊。
的缩写 Nature Biotechnology 是 Nat Biotechnol
Nature Biotechnology 排行 : 期刊排名是指对学术期刊进行评估和分类的过程 (Nature Biotechnology) 基于各种标准,例如影响因子、引用指标、专家评估和其他指标。 排名系统旨在提供期刊在特定领域或学科内的质量、影响力和声望的指示。
的排名 Nature Biotechnology 是 18 (2024)
Nature Biotechnology 影响因子 : 影响因子是用来评估学术期刊在各自领域内的影响力和重要性的指标。 它通常每年计算一次,衡量特定时期内期刊上发表的文章收到的平均引用次数。
影响因子 Nature Biotechnology 是 68.164 (2024)
Nature Biotechnology SCImago : SCImago 期刊排名 (SJR) 是由 SCImago Lab 开发的指标和数据库,提供有关学术期刊的科学影响力和声望的信息。 SCImago 是一个位于西班牙的独立研究小组,专注于科学期刊的文献计量分析和排名。
的SCImagoNature Biotechnology 是 22.781
Nature Biotechnology H指数 : 期刊 H 指数是根据学术期刊的出版物以及这些出版物获得的引用次数来衡量学术期刊的影响力和影响力的指标。 它源自作者 h 指数的概念,该指数根据单个研究人员被引用次数最多的论文来评估其影响力。
H 指数 Nature Biotechnology 是 491
Nature Biotechnology 索引 : 期刊索引是指将期刊纳入对学术出版物进行分类和组织的可搜索数据库或索引的过程。 索引服务旨在使研究人员、学者和读者更轻松地发现和访问特定领域或学科内各种期刊的文章。
这 Nature Biotechnology 这 索引于
被索引的期刊表明它已经过期刊索引者的彻底审查过程,以满足特定的标准和要求。
Nature Biotechnology 提交费 : 文章提交费,也称为稿件提交费或处理费,是一些期刊向提交研究论文以供考虑出版的作者收取的费用。 这些费用与可能与接受的稿件相关的任何出版费或文章处理费 (APC) 是分开的。
提交费 Nature Biotechnology 是 €9,750 / $11,690 / £8,490
不, 根据我们最新的记录, Nature Biotechnology 是 不是 列出 在 考研.
是的, 根据我们的记录 Nature Biotechnology 是 索引 在 斯科普斯.
是的, 根据我们的记录 Nature Biotechnology 是 索引 在 教资会.
不, 根据我们最新的记录, Nature Biotechnology 是 不是 索引 在 哥白尼索引.
不, Nature Biotechnology 是 不是 掠夺性的 .