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The aim of the 5th International Conference on Retinal Proteins was to present the findings of the interdisciplinary fields where photochemical, biophysical, molecular biology and physiological aspects are intimately linked. This title covers nearly all the presentations given during this symposium.
Liposomes are cellular structures made up of lipid molecules. Important as a cellular model in the study of basic biology liposomes are also used in clinical applications such as drug delivery and virus studies.*Liposomes in Immunology*Liposomes in Diagnostics*Liposomes in Gene Delivery and Gene Therapy
Liposomes are cellular structures made up of lipid molecules. Important as a cellular model in the study of basic biology, liposomes are also used in clinical applications such as drug delivery and virus studies. - Liposomes in Biochemistry - Liposomes in Molecular Cell Biology - Liposomes in Molecular Virology
Recent years have seen a growing interest in and activity at the interface between physics and biology, with the realization that both subjects have a great deal to learn from and to teach to one another. A particularly promising aspect of this interface concerns the area of cooperative phenomena and phase transitions. The present book addresses both the structure and motion of biological materials and the increasingly complex behaviour that arises out of interactions in large systems, giving rise to self organization, adaptation, selection and evolution: concepts of interest not only to biology and living systems but also within condensed matter physics. The approach adopted by Physics of Biomaterials: Fluctuations, Self Assembly and Evolution is tutorial, but the book is fully up to date with the latest research. Written at a level appropriate to graduate researchers, preferably with a background either in condensed matter physics or theoretical or physically-oriented experimental biology.
Designed as a research-level guide to current strategies and methods of membrane protein production on the small to intermediate scale, this practice-oriented book provides detailed, step-by-step laboratory protocols as well as an explanation of the principles behind each method, together with a discussion of its relative advantages and disadvantages. Following an introductory section on current challenges in membrane protein production, the book goes on to look at expression systems, emerging methods and approaches, and protein specific considerations. Case studies illustrate how to select or sample the optimal production system for any desired membrane protein, saving both time and money on the laboratory as well as the technical production scale. Unique in its coverage of "difficult" proteins with large membrane-embedded domains, proteins from extremophiles, peripheral membrane proteins, and protein fragments.
This daring attempt to juxtapose the histories of Britain, western science, and imperialism shows how colonial expansion, from the age of Alexander the Great to the 20th century, led to complex kinds of knowledge.
This study examines how authors responded to the Haitian Revolution with revisionist narratives that seek to support empire or rebellion, while focusing on the ethical ramifications of colonialism and slavery in the Americas. Narrative texts include Leonora Sansay’s Secret History, or the Horrors of Santo Domingo, Germaine de Stael’s Mirza, Fanny Burney’s The Wanderer, Jane Austen’s Mansfield Park and Sanditon, Harriet Martineau’s The Hour and the Man, and Elizabeth Barrett Browning’s poems, "A Curse for a Nation" and "The Runaway Slave at Pilgrim’s Point." Additional authors include Lucien Bonaparte, Chateaubriand, Raynal, Edmund Burke and Rousseau. Each author’s narrative is examined within the context of the cultural and political factors that influenced the author, as well as their personal ties to the abolitionist movement or to the institution of slavery.