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    The main IP address: 141.170.20.15,Your server United Kingdom,Leeds ISP:(AQ) Networks Limited  TLD:org CountryCode:GB

    The description :skip to: page content | site navigation pier luigi research | publications | people | contact | for students research overview | never born proteins | minimal cell | past projects articles | books | l...

    This report updates in 23-Aug-2018

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skip to: page content | site navigation pier luigi research | publications | people | contact | for students research overview | never born proteins | minimal cell | past projects articles | books | list of msc and phd thesis | in italian professor luisi | current lab members | former members home news & conferences the emergence of life (2nd edition) luisi book the systems view of life capra-luisi book mind and life luisi book the emergence of life (1st edition) luisi book cortona week luisi lab the luisi lab research activity focuses on the general area of self-organization and self-reproduction of chemical and biological systems, in the framework of the field of origin of life and cell models. the physical chemistry of surfactant aggregates, the study of reactions in compartments and the molecular biology of phage display provide the theoretical and experimental frameworks for the development of specific research projects. the two main current projects the never born proteins and the minimal cell can generally be ascribed to the domain of synthetic biology. in addition, supporting research themes on the biophysics of surfactant aggregates form an integer part of the groups activity. pier luigi luisi the emergence of life - from chemical origins to synthetic biology (2nd edition) cambridge university press 2016 publisher's website read more fritjof capra and pier luigi luisi the systems view of life: a unifying vision cambridge university press 2014 publisher's website read more the minimal cell the biophysics of cell compartment and the origin of cell functionality pier luigi luisi, pasquale stano (eds.) springer, 1st edition., 2011, x, buy on amazon in the last ten years there has been a considerable increase of interest on the notion of the minimal cell. with this term we usually mean a cell-like structure containing the minimal and sufficient number of components to be defined as alive, or at least capable of displaying some of the fundamental functions of a living cell. in fact, when we look at extant living cells we realize that thousands of molecules are organized spatially and functionally in order to realize what we call cellular life. this fact elicits the question whether such huge complexity is a necessary condition for life, or a simpler molecular system can also be defined as alive. obviously, the concept of minimal cell encompasses entire families of cells, from totally synthetic cells, to semi-synthetic ones, to primitive cell models, to simple biomimetic cellular systems. typically, in the experimental approach to the construction of minimal the main ingredient is the compartment. lipid vesicles (liposomes) are used to host simple and complex molecular transformations, from single or multiple enzymic reactions, to polymerase chain reactions, to gene expression. today this research is seen as part of the broader scenario of synthetic biology but it is rooted in origins of life studies, because the construction of a minimal cell might provide biophysical insights into the origins of primitive cells, and the emergence of life on earth. the volume provides an overview of physical, biochemical and functional studies on minimal cells, with emphasis to experimental approaches. 15 international experts report on their innovative contributions to the construction of minimal cells. chemical synthetic biology pier luigi luisi, cristiano chiarabelli (eds) wiley, may 2011 chemistry plays a very important role in the emerging field of synthetic biology. in particular, chemical synthetic biology is concerned with the synthesis of chemical structures, such as proteins, that do not exist in nature. with contributions from leading international experts, chemical synthetic biology shows how chemistry underpins synthetic biology. the book is an essential guide to this fascinating new field, and will find a place on the bookshelves of researchers and students working in synthetic chemistry, synthetic and molecular biology, bioengineering, systems biology, computational genomics, and bioinformatics. pier luigi luisi the emergence of life - from chemical origins to synthetic biology (1st edition) cambridge university press 2006 publisher's website read more cover stories nature chemistry: commentary synthetic biology: minimal cell mimicry pier luigi luisi and pasquale stano nature chemistry 2011, 3, 755-756. the self-reproduction of a giant lipid vesicle has been linked to the replication of encapsulated dna a promising combination for the construction of a minimalistic synthetic cell. link to the cover dedicated to the sugawara paper chembiochem: article the minimal size of liposome-based model cells brings about a remarkably enhanced entrapment and protein synthesis tereza pereira de souza, pasquale stano and pier luigi luisi chembiochem 2009, 10, 1056-1063 the complex transcription-translation machinery can successfully synthesize enhanced green fluorescent protein inside 100 nm (radius) lipid vesicles. being the smallest synthetic bioreactor, such a model suggests that very small compartments can sustain (minimal) cellular life. since classical poisson statistics fails to predict the spontaneous formation of egfp-expressing liposomes, we propose a possible super-concentration effect. link to the cover chembiochem: review giant vesicles: preparations and applications peter walde, katia cosentino, helen engel, pasquale stano chembiochem 2010, 11, 848-865. there is considerable interest in preparing cell-sized giant unilamellar vesicles from natural or nonnatural amphiphiles because a giant vesicle membrane resembles the self-closed lipid matrix of the plasma membrane of all biological cells. currently, giant vesicles are applied to investigate certain aspects of biomembranes. examples include lateral lipid heterogeneities, membrane budding and fission, activities of reconstituted membrane proteins, or membrane permeabilization caused by added chemical compounds. one of the challenging applications of giant vesicles include gene expressions inside the vesicles with the ultimate goal of constructing a dynamic artificial cell-like system that is endowed with all those essential features of living cells that distinguish them from the nonliving form of matter. although this goal still seems to be far away and currently difficult to reach, it is expected that progress in this and other fields of giant vesicle research strongly depend on whether reliable methods for the reproducible preparation of giant vesicles are available. the key concepts of currently known methods for preparing giant unilamellar vesicles are summarized, and advantages and disadvantages of the main methods are compared and critically discussed. link to the cover site map | ©2014 kate adamala

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http://www.plluisi.org/emergence.html
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http://www.plluisi.org/stud.html
http://www.plluisi.org/www.cambridge.org/9781107011366
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