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Harvey Lodish. Intuitive Biostatistics: A Nonmathematical Guide to Statistical Thinking, 3rd edition. Harvey Motulsky. John M.
The Brewsters. Read more. Product details Loose Leaf: Freeman; Seventh edition May 4, Language: English ISBN Tell the Publisher!
I'd like to read this book on Kindle Don't have a Kindle? Share your thoughts with other customers. Write a customer review. Read reviews that mention cell biology molecular cell molecular biology well written good book end of each chapter much better new edition easy to understand cellular biology great book lot of detail good quality undergraduate or graduate college course reference book hard to read good reference good condition great reference.
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Please try again later. Hardcover Verified download. Although I don't claim to be a molecular biologist, nor have I read beyond chapter 5 of Lodish's "Molecular and Cell Biology", this textbook feels admirably thorough in its treatment of its subject, bringing the reader up to date on a wide range of the detail generated in the field over the past few decades.
The book's authors, furthermore, have addressed the learning needs of their readership; once it moves into its substantive chapters, virtually all points are made simultaneously with textbook prose and colorful, graphic illustrations which are well drawn and accompanied by excellent captions.
This aspect of the book is its great strength. There is a far more serious problem with the book, however, which explains the middling rating I have given it. Like many such textbooks, it is committee-written, which is not a problem when such books are given proper shape by a sharp editor. But the book lacks that editor and as a result dwells on the most trivial developments in its field with exactly the same weight as its bedrock components to a fault.
In aiming to be comprehensive, it drowns the reader in a sea of obnoxious detail that begs the book and its authors not to be taken seriously. The book may have been conceived as a reference, but I fear that it will always be assigned chapter rather than passage at a time, as is customary in graduate school courses.
The corollary to this situation is that the first several chapters of the book describe a host of laboratory processes, each in enormous detail and overall in serial fashion, without adequately describing the use and purpose for each.
The book then explains that each process will be taken up in a later chapter in conjunction with an exploration of the field in which it is mainly used. This is all fine, but does the reader really need to be held accountable for a description of these processes twice, particularly when they are presented so haphazardly initially?
At least in the first five chapters, rote memorization is the only learning strategy possible for the vast majority of the material. And while there is nothing wrong with rote memorization, the unconnectedness of the material, combined with its sprawling volume, make these initial chapters virtually useless as learning tools.
I recommend this book, therefore, with a strict reservation: I am a postdoctoral researcher and bought this as a reference. If you don't need this, don't waste your money. It is triggered by a ligand binding to a receptor. Some cells are specially designed to phagocytize. These cells include Natural Killer cells, macrophages , and neutrophils.
All of these are involved in the immune response and serve to degrade foreign or antigenic material  Exocytosis[ edit ] Exocytosis L and Endocytosis R Exocytosis is when a cell directs the contents of secretory vesicles out of the cell membrane. The vesicles fuse with the cell membrane and their content, usually protein, is released out of the cell.
There are two types of exocytosis: Constitutive secretion and Regulated secretion. In both of these types, a vesicle buds from the Golgi Apparatus and is shuttled to the plasma membrane, to be exocytosed from the cell.
Exocytosis of lysosomes commonly serves to repair damaged areas of the plasma membrane by replenishing the lipid bilayer. This type of secretion is unregulated. The vesicle will eventually travel to the plasma membrane and fuse with it. The contents of the cell will be released into the extra-cellular space while the components of the vesicle membrane plasma membrane lipids and proteins will establish themselves as part of the cell's plasma membrane.
Regulated secretion regulated exocytosis This is when the cell receives a signal from the extra-cellular space, such as a neurotransmitter or hormone, that regulates the fusing of the vesicle to the plasma membrane and the release of its contents. The vesicle is transported to the plasma membrane. There it sits until it receives a signal to fuse with the membrane and release its contents into the extra-cellular space.
An example of this would be when a receptor normally lies on the basal or lateral membrane of an epithelial cell, but needs to be trafficked to the apical side. How does the universe fit within us?
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