Results for 'cell biology'

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  1. The Importance of Feminist Critique for Contemporary Cell Biology.the Biology Group & Gender Study - 1988 - Hypatia 3 (1):61-76.
    Biology is seen not merely as a privileged oppressor of women but as a co-victim of masculinist social assumptions. We see feminist critique as one of the normative controls that any scientist must perform whenever analyzing data, and we seek to demonstrate what has happened when this control has not been utilized. Narratives of fertilization and sex determination traditionally have been modeled on the cultural patterns of male/female interaction, leading to gender associations being placed on cells and their components. (...)
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  2.  7
    Philosophy of stem cell biology: knowledge in flesh and blood.Melinda Bonnie Fagan - 2013 - Houndmills, Basingstoke, Hampshire: Palgrave-Macmillan.
    Examining stem cell biology from a philosophy of science perspective, this book clarifies the field's central concept, the stem cell, as well as its aims, methods, models, explanations and evidential challenges. The first chapters discuss what stem cells are, how experiments identify them, and why these two issues cannot be completely separated. The basic concepts, methods and structure of the field are set out, as well as key limitations and challenges. The second part of the book shows (...)
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  3.  8
    Vedic cell biology with life energy & rebirth.Candra Prakāśa Trivedī - 2007 - Delhi: Parimal Publications.
  4.  9
    Cell biology. A laboratory handbook. Edited by J.E. Celis. Academic Press, 4 volume set.John Prins - 1998 - Bioessays 20 (11):965-966.
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  5. Cell biology from a nuclear perspective.Sean Munro - 1999 - Bioessays 21 (7):622-623.
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  6.  20
    Is there a cell-biological alphabet for simple forms of learning?Robert D. Hawkins & Eric R. Kandel - 1984 - Psychological Review 91 (3):375-391.
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  7.  84
    Philosophy of Stem Cell Biology – an Introduction.Melinda Bonnie Fagan - 2013 - Philosophy Compass 8 (12):1147-1158.
    This review surveys three central issues in philosophy of stem cell biology: the nature of stem cells, stem cell experiments, and explanations of stem cell capacities. First, I argue that the fundamental question ‘what is a stem cell?’ has no single substantive answer. Instead, the core idea is explicated via an abstract model, which accounts for many features of stem cell experiments. The second part of this essay examines several of these features: uncertainty, model (...)
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  8.  24
    Model systems in stem cell biology.Jason Scott Robert - 2004 - Bioessays 26 (9):1005-1012.
    Stem cell scientists and ethicists have focused intently on questions relevant to the developmental stage and developmental capacities of stem cells. Comparably less attention has been paid to an equally important set of questions about the nature of stem cells, their common characteristics, their non‐negligible differences and their possible developmental species specificity. Answers to these questions are essential to the project of justly inferring anything about human stem cell biology from studies in non‐human model systems—and so to (...)
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  9.  69
    Social experiments in stem cell biology.Melinda B. Fagan - 2011 - Perspectives on Science 19 (3):235-262.
    Stem cell biology is driven by experiment. Its major achievements are striking experimental productions: "immortal" human cell lines from spare embryos (Thomson et al. 1998); embryo-like cells from "reprogrammed" adult skin cells (Takahashi and Yamanaka 2006); muscle, blood and nerve tissue generated from stem cells in culture (Lanza et al. 2009, and references therein). Well-confirmed theories are not so prominent, though stem cell biologists do propose and test hypotheses at a profligate rate. 1 This paper aims (...)
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  10.  64
    Systems bioethics and stem cell biology.Jason Scott Robert, Jane Maienschein & Manfred D. Laubichler - 2006 - Journal of Bioethical Inquiry 3 (1-2):19-31.
    The complexities of modern science are not adequately reflected in many bioethical discussions. This is especially problematic in highly contested cases where there is significant pressure to generate clinical applications fast, as in stem cell research. In those cases a more integrated approach to bioethics, which we call systems bioethics, can provide a useful framework to address ethical and policy issues. Much as systems biology brings together different experimental and methodological approaches in an integrative way, systems bioethics integrates (...)
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  11.  14
    Microfluidics meet cell biology: bridging the gap by validation and application of microscale techniques for cell biological assays.Amy L. Paguirigan & David J. Beebe - 2008 - Bioessays 30 (9):811-821.
    Microscale techniques have been applied to biological assays for nearly two decades, but haven't been widely integrated as common tools in biological laboratories. The significant differences between several physical phenomena at the microscale versus the macroscale have been exploited to provide a variety of new types of assays (such as gradient production or spatial cell patterning). However, the use of these devices by biologists seems to be limited by issues regarding biological validation, ease of use, and the limited available (...)
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  12.  6
    Another notch in stem cell biology: Drosophila intestinal stem cells and the specification of cell fates.Andrew A. Wilson & Darrell N. Kotton - 2008 - Bioessays 30 (2):107-109.
    Previous work has suggested that many stem cells can be found in microanatomic niches, where adjacent somatic cells of the niche control the differentiation and proliferation states of their resident stem cells. Recently published work examining intestinal stem cells (ISCs) in the adult Drosophila midgut suggests a new paradigm where some stem cells actively control the cell fate decisions of their daughters. Here, we review recent literature(1) demonstrating that, in the absence of a detectable stem cell niche, multipotent (...)
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  13.  21
    Discovering Cell Mechanisms: The Creation of Modern Cell Biology.William Bechtel - 2005 - Cambridge University Press.
    Between 1940 and 1970 pioneers in the new field of cell biology discovered the operative parts of cells and their contributions to cell life. They offered mechanistic accounts that explained cellular phenomena by identifying the relevant parts of cells, the biochemical operations they performed, and the way in which these parts and operations were organised to accomplish important functions. Cell biology was a revolutionary science but in this book it also provides fuel for yet another (...)
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  14. In Search of Mitochondrial Mechanisms: Interfield Excursions between Cell Biology and Biochemistry.William Bechtel & Adele Abrahamsen - 2007 - Journal of the History of Biology 40 (1):1-33.
    Developing models of biological mechanisms, such as those involved in respiration in cells, often requires collaborative effort drawing upon techniques developed and information generated in different disciplines. Biochemists in the early decades of the 20th century uncovered all but the most elusive chemical operations involved in cellular respiration, but were unable to align the reaction pathways with particular structures in the cell. During the period 1940-1965 cell biology was emerging as a new discipline and made distinctive contributions (...)
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  15.  12
    Justifying molecular images in cell biology textbooks: From constructions to primary data.Norberto Serpente - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 55:105-116.
  16. Discovering Cell Mechanisms: The Creation of Modern Cell Biology.William Bechtel - 2007 - Journal of the History of Biology 40 (1):185-187.
    Between 1940 and 1970 pioneers in the new field of cell biology discovered the operative parts of cells and their contributions to cell life. They offered mechanistic accounts that explained cellular phenomena by identifying the relevant parts of cells, the biochemical operations they performed, and the way in which these parts and operations were organised to accomplish important functions. Cell biology was a revolutionary science but in this book it also provides fuel for yet another (...)
     
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  17.  5
    Ubiquitin Dynamics in Stem Cell Biology: Current Challenges and Perspectives.Maud Dieuleveult & Benoit Miotto - 2020 - Bioessays 42 (3):1900129.
    Ubiquitination plays a central role in the regulation of stem cell self‐renewal, propagation, and differentiation. In this review, the functions of ubiquitin dynamics in a myriad of cellular processes, acting along side the pluripotency network, to regulate embryonic stem cell identity are highlighted. The implication of deubiquitinases (DUBs) and E3 Ubiquitin (Ub) ligases in cellular functions beyond protein degradation is reported, including key functions in the regulation of mRNA stability, protein translation, and intra‐cellular trafficking; and how it affects (...)
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  18.  8
    The molecular and cell biology of anion transport by bacteria.Peter C. Maloney - 1992 - Bioessays 14 (11):757-762.
    This article summarizes the study of anion exchange mechanisms in bacteria. Along with defining at least two different families of anion exchange, an examination of such carrier‐mediated antiport reactions has led to techniques that considerably broaden the scope of biochemical methods for examining membrane proteins. Such advances have been exploited to show that anion exchange itself forms the mechanistic base of an entirely new kind of proton pump, one which may shed light on a variety of bacterial events, including methanogenesis. (...)
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  19. Visions of Cell Biology: Reflections Inspired by Cowdry's General Cytology.Karl Matlin, Jane Maienschein & Manfred Laubichler (eds.) - 2018 - University of Chicago Press.
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  20.  8
    Practical pursuit in stem cell biology: Innovation, translation, and incomplete theorization.Grant Fisher - 2023 - Studies in History and Philosophy of Science Part A 97 (C):1-12.
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  21.  6
    Comment on “Microfluidics meets cell biology: bridging the gap by validation and application of microscale techniques for cell biological assays”.Martin Dufva & Michael Stangegaard - 2009 - Bioessays 31 (2):255-255.
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  22.  32
    Philosophy of Cell Biology.William Bechtel & Andrew Bollhagen - 2019 - Stanford Encyclopedia of Philosophy.
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  23.  6
    Ribosomal protein uS3 in cell biology and human disease: Latest insights and prospects.Dmitri Graifer & Galina Karpova - 2020 - Bioessays 42 (12):2000124.
    The conserved ribosomal protein uS3 in eukaryotes has long been known as one of the essential components of the small (40S) ribosomal subunit, which is involved in the structure of the 40S mRNA entry pore, ensuring the functioning of the 40S subunit during translation initiation. Besides, uS3, being outside the ribosome, is engaged in various cellular processes related to DNA repair, NF‐kB signaling pathway and regulation of apoptosis. This review is devoted to recent data opening new horizons in understanding the (...)
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  24.  90
    Integrating sciences by creating new disciplines: The case of cell biology[REVIEW]William Bechtel - 1993 - Biology and Philosophy 8 (3):277-299.
    Many studies of the unification of science focus on the theories of different disciplines. The model for integration is the theory reduction model. This paper argues that the embodiment of theories in scientists, and the institutions in which scientists work and the instruments they employ, are critical to the sort of integration that actually occurs in science. This paper examines the integration of scientific endeavors that emerged in cell biology in the period after World War II when the (...)
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  25. Diagrams as locality aids for explanation and model construction in cell biology.Nicholaos Jones & Olaf Wolkenhauer - 2012 - Biology and Philosophy 27 (5):705-721.
    Using as case studies two early diagrams that represent mechanisms of the cell division cycle, we aim to extend prior philosophical analyses of the roles of diagrams in scientific reasoning, and specifically their role in biological reasoning. The diagrams we discuss are, in practice, integral and indispensible elements of reasoning from experimental data about the cell division cycle to mathematical models of the cycle’s molecular mechanisms. In accordance with prior analyses, the diagrams provide functional explanations of the (...) cycle and facilitate the construction of mathematical models of the cell cycle. But, extending beyond those analyses, we show how diagrams facilitate the construction of mathematical models, and we argue that the diagrams permit nomological explanations of the cell cycle. We further argue that what makes diagrams integral and indispensible for explanation and model construction is their nature as locality aids: they group together information that is to be used together in a way that sentential representations do not. (shrink)
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  26.  19
    Mechanisms of bacterial morphogenesis: Evolutionary cell biology approaches provide new insights.Chao Jiang, Paul D. Caccamo & Yves V. Brun - 2015 - Bioessays 37 (4):413-425.
    How Darwin's “endless forms most beautiful” have evolved remains one of the most exciting questions in biology. The significant variety of bacterial shapes is most likely due to the specific advantages they confer with respect to the diverse environments they occupy. While our understanding of the mechanisms generating relatively simple shapes has improved tremendously in the last few years, the molecular mechanisms underlying the generation of complex shapes and the evolution of shape diversity are largely unknown. The emerging field (...)
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  27.  25
    The evolutionary context of robust and redundant cell biological mechanisms.Marie Delattre & Marie-Anne Félix - 2009 - Bioessays 31 (5):537-545.
    The robustness of biological processes to perturbations has so far been mainly explored in unicellular organisms; multicellular organisms have been studied for developmental processes or in the special case of redundancy between gene duplicates. Here we explore the robustness of cell biological mechanisms of multicellular organisms in an evolutionary context. We propose that the reuse of similar cell biological mechanisms in different cell types of the same organism has evolutionary implications: (1) the maintenance of apparently redundant mechanisms (...)
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  28. The Third Lens: Metaphor and the Creation of Modern Cell Biology.Andrew S. Reynolds - 2018 - Chicago: University of Chicago Press.
  29.  28
    The cell as nexus: connections between the history, philosophy and science of cell biology.Maureen A. O’Malley & Staffan Müller-Wille - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):169-171.
    Although the cell is commonly addressed as the unit of life, historians and philosophers have devoted relatively little attention to this concept in comparison to other fundamental concepts of biology such as the gene or species. As a partial remedy to this neglect, we introduce the cell as a major point of connection between various disciplinary approaches, epistemic strategies, technological vectors and overarching biological processes such as metabolism, growth, reproduction and evolution. We suggest that the role of (...)
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  30.  15
    The limbal epithelium of the eye – A review of limbal stem cell biology, disease and treatment.Charles Osei-Bempong, Francisco C. Figueiredo & Majlinda Lako - 2013 - Bioessays 35 (3):211-219.
    The limbus is a narrow band of tissue that encircles the cornea, the transparent ‘window’ into the eye. The outermost layer of the cornea is the epithelium, which is necessary for clear vision. The limbus acts as a ‘reservoir’ for limbal stem cells which maintain and regenerate the corneal epithelium. It also functions as a barrier to the conjunctiva and its blood vessels. Limbal stem cell deficiency is a general term for diseases which are characterised by the impairment of (...)
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  31.  34
    Super‐resolution imaging prompts re‐thinking of cell biology mechanisms.Sinem Saka & Silvio O. Rizzoli - 2012 - Bioessays 34 (5):386-395.
    The use of super‐resolution imaging techniques in cell biology has yielded a wealth of information regarding cellular elements and processes that were invisible to conventional imaging. Focusing on images obtained by stimulated emission depletion (STED) microscopy, we discuss how the new high‐resolution data influence the ways in which we use and interpret images in cell biology. Super‐resolution images have lent support to some of our current hypotheses. But, more significantly, they have revealed unexpectedly complex processes that (...)
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  32.  71
    Mitochondrial structure and the practice of cell biology in the 1950s.Nicolas Rasmussen - 1995 - Journal of the History of Biology 28 (3):381-429.
  33.  25
    Single‐cell microinjection technology in cell biology.Yan Zhang & Long-Chuan Yu - 2008 - Bioessays 30 (6):606-610.
    Single‐cell microinjection has been successfully used to deliver exogenous proteins, cDNA constructs, peptides, drugs and particles into transfection‐challenged cells. With precisely controlled delivery dosage and timing, microinjection has been used in many studies of primary cultured cells, transgenic animal production, in vitro fertilization and RNA inference. This review discusses the advantages and limits of microinjection as a mechanical delivery method and its applications to attached and suspended cells. BioEssays 30:606–610, 2008. © 2008 Wiley Periodicals, Inc.
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  34.  64
    Experimental standards: Evaluating success in stem cell biology.Melinda Fagan - unknown
    This paper aims to bring the epistemic dimensions of stem cell experiments out of the background, and show that they can be critically evaluated. After introducing some basic concepts of stem cell biology, I set out the current “gold standard” for experimental success in that field (§2). I then trace the origin of this standard to a 1988 controversy over blood stem cells (§3). Understanding the outcome of this controversy requires attention to the details of experimental techniques, (...)
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  35.  2
    Visions of Cell Biology: Reflections Inspired by Cowdry’s “General Cytology.”[REVIEW]Andrew J. Hogan - 2018 - Isis 109 (4):866-868.
  36.  4
    How Many Individuals Consider Themselves to Be Cell Biologists but Are Informed by the Journal That Their Work Is Not Cell Biology.Hanna Lucia Worliczek - 2022 - Berichte Zur Wissenschaftsgeschichte 45 (3):344-354.
    Berichte zur Wissenschaftsgeschichte, Volume 45, Issue 3, Page 344-354, September 2022.
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  37.  4
    How Many Individuals Consider Themselves to Be Cell Biologists but Are Informed by the Journal That Their Work Is Not Cell Biology.Hanna Lucia Worliczek - 2022 - Berichte Zur Wissenschaftsgeschichte 45 (3):344-354.
    Berichte zur Wissenschaftsgeschichte, Volume 45, Issue 3, Page 344-354, September 2022.
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  38.  7
    Fluorescence microscopy Methods in Cell Biology 29 Fluorescence microscopy of living cells in culture. Part A: Fluorescence analogs, labeling cells and basic microscopy (1989). Edited by Y.‐L. Wang & D. L. Taylor. Academic Press, New York. Pp 333. $59.00. [REVIEW]David M. Schotten - 1990 - Bioessays 12 (1):50-51.
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  39.  18
    Book review: Essential Cell Biology Volume 1: Cell Structure and Volume 2: Cell Function, A Practical Approach. [REVIEW]Linda Amos - 2004 - Bioessays 26 (11):1255-1256.
  40.  27
    Stem cell epistemological issues. Chapter in Charbord P and Durand C (eds) Stem cell biology and regenerative medicine.Lucie Laplane - 2015 - River Publishers.
    This chapter brings a philosophical perspective to the concept of stem cell. Three general questions both clarify the concept of stem cell and emphasize its ambiguities: (1) How should we define stem cells? (2) What makes them different from non-stem cells? (3) What is their ontology? (i.e. what kind of property is “stemness”?) Following this last question, the Chapter distinguishes four conceptions of stem cells and highlights their respective consequences for the cancer stem cell theory. Determining what (...)
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  41.  16
    Cellular introspection. Cell biology. By N EAL O. T HORPE. Wiley, New York, Chichester, 1984. Pp. 752. £14.70 (paperback). [REVIEW]Adam Curtis - 1984 - Bioessays 1 (5):236-237.
  42.  23
    Fax at your fingertips cell biology - Lab Fax . Edited by G. B. Dealtry and D. Rickwood. Bios Scientific Publishers, Oxford. Pp. xvi+254. ISBN 1-872748-60-0. £24.95 ringbound. [REVIEW]R. Ian Freshney - 1993 - Bioessays 15 (7):496-496.
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  43.  24
    Gene technology and cell biology. Recombinant DNA and cell proliferation. Edited by G. S. STEIN and J. L. STEIN, Academic Press, 1984. Pp. 360. $49.50. [REVIEW]Timothy J. Burland - 1985 - Bioessays 3 (2):87-88.
  44.  30
    Deciding on the Data: Epistemological Problems Surrounding Instruments and Research Techniques in Cell Biology.William Bechtel - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:167 - 178.
    The question whether research techniques are producing artifacts or data is often a crucial one for scientists. The potential for artifacts results from the fact that generating data often requires numerous procedures that are often brutal, poorly understood, and very sensitive to details of the procedure. Through a case-study of the introduction of electron microscopy as a tool for studying cells, I examine how scientists judge whether new techniques are introducing artifacts. Three factors seem to be most salient in their (...)
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  45.  1
    Book Review: Cell Biology [REVIEW]James R. Bamburg - 2003 - Bioessays 25 (6):623-625.
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  46.  1
    Book Review: Cell Biology [REVIEW]James R. Bamburg - 2003 - Bioessays 25 (6):623-625.
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  47.  27
    Aims and achievements of the reductionist approach in biochemistry/molecular biology/cell biology: A response to Kincaid.Joseph D. Robinson - 1992 - Philosophy of Science 59 (3):465-470.
    Kincaid argues that molecular biology provides little support for the reductionist program, that biochemistry does not reveal common mechanisms, indeed that biochemical theory obstructs discovery. These assertions clash with biologists' stated advocacy of reductionist programs and their claims about the consequent unity of experimental biology. This striking disagreement goes beyond differences in meaning granted to the terms. More significant is Kincaid's misunderstanding of what biochemists do, for a closer look at scientific practice-- and one of Kincaid's examples--reveals substantial (...)
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  48.  10
    : Crossing the Boundaries of Life: Günter Blobel and the Origins of Molecular Cell Biology.Caterina Schürch - 2024 - Isis 115 (1):204-205.
  49. The philosophy of stem cells: Melinda Bonnie Fagan: Philosophy of stem cell biology: Knowledge in flesh and blood. Basingstoke and New York: Palgrave Macmillan, 2013, xx+274pp, £66.00 HB. [REVIEW]Stavros Ioannidis - 2015 - Metascience 24 (2):285-288.
    Melinda Fagan’s book on the philosophy of stem cell biology is a superb discussion of this exciting field of contemporary science, and the first book-length philosophical treatment of the subject. It contains a detailed and insightful examination of stem cell science, its structure, methods, and challenges.The book does not require any previous knowledge of stem cell biology—all the relevant scientific details and concepts, the central experimental procedures and results, as well as the historical development of (...)
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  50.  16
    High‐throughput localization of organelle proteins by mass spectrometry: a quantum leap for cell biology.Denise J. L. Tan & Alfonso Martinez Arias - 2006 - Bioessays 28 (8):780-784.
    Cells are the fundamental building blocks of organisms and their organization holds the key to our understanding of the processes that control Development and Physiology as well as the mechanisms that underlie disease. Traditional methods of analysis of subcellular structure have relied on the purification of organelles and the painstaking biochemical description of their components. The arrival of high‐throughput genomic and, more significantly, proteomic technologies has opened hereto unforeseen possibilities for this task. Recently two reports(1,2) show how much can be (...)
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