Submicroscopic Cytochemistry, Volume I: Proteins and Nucleic Acids presents laboratory findings and theoretical aspects involved or derived from submicroscopic cytochemistry study of proteins and nucleic acids. It is a two-volume book, encompassing 14 chapters covering three major topics: the pattern of distribution of nucleic acids at the molecular level in various cells and states of activity and in relation to protein synthesis; the molecular and macromolecular organization of cellular membranes; and the origin and distribution of the major macromolecular aggregates of connective tissue. After a brief introduction to the aspects of submicroscopic cytochemistry, the book discusses morphology, with emphasis on the distribution of cell components and their organization in cells at the macromolecular level. It then presents developed methods to preserve and selectively identify proteins, nucleic acids, lipids, acid mucopolysaccharides, and molecular aggregates very nearly in the position they occupied in the living state. Chapters 8 to 12 describe DNA molecular patterns during cell differentiation and cell maturation, and the alteration of these patterns in certain mouse cells. A discussion on DNA molecular patterns during metaplasia of stratified squamous mouse epithelium and of spinal ganglion cells during regeneration is provided. The concluding chapters examine DNA organization during mitotic cycle in Drosophila eggs and the persistence of chromosome individuality during interphase. This book is a valuable source of information for cytochemists, cell biologists, cell researchers, and protein nucleic acid enthusiasts who wish to expand their knowledge on comprehensive cytochemistry laboratory study.
Submicroscopic Cytochemistry, Volume II: Membranes, Mitochondria, and Connective Tissues presents laboratory findings and theoretical aspects of the cytochemistry of cellular membranes, mitochondria, and connective tissues. Emphasis is on the molecular and macromolecular organization of cellular membranes, along with the origin and distribution of the major macromolecular aggregates of connective tissue. This volume consists of 11 chapters and begins by discussing the results of cytochemical studies on lipid and protein components of membranes in acinar and hepatic cells of the murine pancreas. The following chapters focus on densitometric studies of lipid membranes in pancreatic acinar cells of the mouse; the distribution of lipids and proteins in mitochondria of hepatic and exocrine pancreatic cells of adult mice, and of nucleic acids in mitochondria of embryonic cells; and possible precursor granules in fibroblasts, chondrocytes, and osteoblasts. The distribution of DNA and of soluble and insoluble RNAs in chondrocytes of the epiphyseal plate of the rat tibia is also examined, along with vascularity in tendons of young rats. This monograph will be of interest to cytochemists, biochemists, and molecular biologists.
Submicroscopic Cytochemistry, Volume I: Proteins and Nucleic Acids presents laboratory findings and theoretical aspects involved or derived from submicroscopic cytochemistry study of proteins and nucleic acids. It is a two-volume book, encompassing 14 chapters covering three major topics: the pattern of distribution of nucleic acids at the molecular level in various cells and states of activity and in relation to protein synthesis; the molecular and macromolecular organization of cellular membranes; and the origin and distribution of the major macromolecular aggregates of connective tissue. After a brief introduction to the aspects of submicroscopic cytochemistry, the book discusses morphology, with emphasis on the distribution of cell components and their organization in cells at the macromolecular level. It then presents developed methods to preserve and selectively identify proteins, nucleic acids, lipids, acid mucopolysaccharides, and molecular aggregates very nearly in the position they occupied in the living state. Chapters 8 to 12 describe DNA molecular patterns during cell differentiation and cell maturation, and the alteration of these patterns in certain mouse cells. A discussion on DNA molecular patterns during metaplasia of stratified squamous mouse epithelium and of spinal ganglion cells during regeneration is provided. The concluding chapters examine DNA organization during mitotic cycle in Drosophila eggs and the persistence of chromosome individuality during interphase. This book is a valuable source of information for cytochemists, cell biologists, cell researchers, and protein nucleic acid enthusiasts who wish to expand their knowledge on comprehensive cytochemistry laboratory study.
Submicroscopic Cytochemistry, Volume II: Membranes, Mitochondria, and Connective Tissues presents laboratory findings and theoretical aspects of the cytochemistry of cellular membranes, mitochondria, and connective tissues. Emphasis is on the molecular and macromolecular organization of cellular membranes, along with the origin and distribution of the major macromolecular aggregates of connective tissue. This volume consists of 11 chapters and begins by discussing the results of cytochemical studies on lipid and protein components of membranes in acinar and hepatic cells of the murine pancreas. The following chapters focus on densitometric studies of lipid membranes in pancreatic acinar cells of the mouse; the distribution of lipids and proteins in mitochondria of hepatic and exocrine pancreatic cells of adult mice, and of nucleic acids in mitochondria of embryonic cells; and possible precursor granules in fibroblasts, chondrocytes, and osteoblasts. The distribution of DNA and of soluble and insoluble RNAs in chondrocytes of the epiphyseal plate of the rat tibia is also examined, along with vascularity in tendons of young rats. This monograph will be of interest to cytochemists, biochemists, and molecular biologists.