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Structure-function relationships in the adipose cell. I. Ultrastructure of the isolated adipose cell

Samuel W. Cushman
- 01 Aug 1970 - 
- Vol. 46, Iss: 2, pp 326-341
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TLDR
Structural responses of the isolated adipose cell to hormones, if such occur, must be dynamic rather than qualitative in nature; the extensive system of smooth surfaced membranes is suggestive of compartmentalized transport and metabolism.
Abstract
A method is described for preparing isolated rat adipose cells for electron microscopy. The ultrastructure of such cells and their production of 14CO2 from U-glucose-14C were studied simultaneously in the presence of insulin or epinephrine. Each adipose cell consists of a large lipid droplet surrounded by a thin rim of cytoplasm. In addition to typical subcellular organelles, a variety of small lipid droplets and an extensive system of membranes characterize the cell's cytoplasm. A fenestrated envelope surrounds the large, central lipid droplet. Similar envelopes surround cytoplasmic lipid droplets occurring individually or as aggregates of very small, amorphous droplets. Groups of individual droplets of smaller size also occur without envelopes. The system of membranes consists of invaginations of the cell membrane, vesicles possibly of pinocytic origin, simple and vesiculated vacuoles, vesicles deeper in the cytoplasm, flattened and vesicular smooth surfaced endoplasmic reticulum, and Golgi complexes. Neither insulin nor epinephrine produced detectable ultrastructural alterations even when cells were incubated under optimal conditions for the stimulation of 14CO2 evolution. Structural responses of the isolated adipose cell to hormones, if such occur, must, therefore, be dynamic rather than qualitative in nature; the extensive system of smooth surfaced membranes is suggestive of compartmentalized transport and metabolism.

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Historical perspectives in fat cell biology: the fat cell as a model for the investigation of hormonal and metabolic pathways

TL;DR: This review focuses on the very early approaches that used the fat cell as a tool to discover and understand various cellular mechanisms that led to the discovery of major events related to hormone action and mechanisms involved in metabolite processing.
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Electron microscopic demonstration of insulin receptors on adipocyte plasma membranes utilizing a ferritin-insulin conjugate.

TL;DR: Biochemical and electron microscopic studies support the concept that penetration of the insulin into the cytosol of the cell is not necessary for the hormone to exert its biological effects on adipocytes.
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Clonal preadipocyte cell lines with different phenotypes derived from murine marrow stroma: factors influencing growth and adipogenesis in vitro.

TL;DR: The cell lines were found to be insensitive to insulin as a signal of adipocyte differentiation, and the ultrastructural characteristics of the preadipocytes and fat cells are also similar to those of the fat cells developing in long‐term bone marrow culture.
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Microscopy tools for the investigation of intracellular lipid storage and dynamics

TL;DR: In situ identification of intracellular lipids is now possible and promises to add a new dimensionality to analysis of lipid biochemistry, and its relation to (patho)physiology.
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Formation and disappearance of triglyceride droplets in strain L fibroblasts: An electron microscopic study

TL;DR: Formation of lipid droplets in strain L fibroblasts exposed to either oleic or linolenic acid for 5 min to 18 h was studied by ultrastructural morphometry and triglyceride analysis to characterize morphologically the resulting triglyceride droplets.
References
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Journal ArticleDOI

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TL;DR: Epoxy embedding methods of Glauert and Kushida have been modified so as to yield rapid, reproducible, and convenientembedding methods for electron microscopy.
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A simplified lead citrate stain for use in electron microscopy.

TL;DR: This communication reports the use of a commercially available lead citratO to eliminate the lead citrate stain in electron microscopy.
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Staining of Tissue Sections for Electron Microscopy with Heavy Metals

TL;DR: Certain hitherto unobserved details are revealed and some sort of specificity exists, although the factors involved are not yet understood.
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Cell junctions in amphibian skin

TL;DR: Interpreted in the light of current physiological data, these findings suggest that the diffusion of water, ions, and small, water-soluble molecules is impeded along the intercellular spaces of the epidermis by zonulae occludentes while it is facilitated from cell to cell within the epidesis by z onulae and maculae OccludENTes.
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