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Cytoskeletal Collection (#2)

"Cytoskeletal Wonders: Exploring the Intricate World of Nerve and Glial Cells" Delving into the fascinating realm of nerve and glial cells

Background imageCytoskeletal Collection: Cell structure, fluorescent micrograph

Cell structure, fluorescent micrograph
Cell structure. Fluorescent light micrograph of cultured cells from a cell line derived from African green monkey kidney cells. Microtubules, part of the cells cytoskeleton, are red

Background imageCytoskeletal Collection: Lung cells, fluorescent micrograph

Lung cells, fluorescent micrograph
Lung cells. Immunofluorescence light micrograph of pulmonary endothelial cells. Endothelial cells are specialized epithelial cells that line the inner surface of blood vessels

Background imageCytoskeletal Collection: Microtubules, artwork

Microtubules, artwork
Microtubules, 3D computer artwork. Microtubules are polymers of the protein tubulin. They are a component of the cytoskeleton, which maintains a cells shape

Background imageCytoskeletal Collection: Cytoskeleton, TEM

Cytoskeleton, TEM
Cytoskeleton. Coloured transmission electron micrograph (TEM) of the cytoskeleton of a human skin cell. The cell nucleus is at centre right

Background imageCytoskeletal Collection: Protein, microtubules and cell, artwork

Protein, microtubules and cell, artwork
3D computer artwork of a protein attached to microtubules, transporting vesicles and other important parts of the cell. Microtubules are polymers of the protein tubulin

Background imageCytoskeletal Collection: Cytoskeleton, SEM

Cytoskeleton, SEM
Cytoskeleton. Coloured scanning electron micrograph (SEM) of the cytoskeleton of a human skin cell. The cell nucleus is oval. The rest of the cells contents have been biochemically extracted

Background imageCytoskeletal Collection: Keratinocyte skin cells, light micrograph

Keratinocyte skin cells, light micrograph
Keratinocyte skin cells. Fluorescent light micrograph of the cytoskeleton of human keratinocyte skin cells. Cell nuclei are oval. The rest of the cells contents have been biochemically extracted

Background imageCytoskeletal Collection: Fibroblast cells, fluorescent micrograph

Fibroblast cells, fluorescent micrograph
Fibroblast cells. Immunofluorescence deconvolution micrograph of fibroblast cells. The cell nuclei, which contain the cells genetic information, are blue




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"Cytoskeletal Wonders: Exploring the Intricate World of Nerve and Glial Cells" Delving into the fascinating realm of nerve and glial cells, this light micrograph captures their intricate cytoskeletal structures in stunning detail. Witness the beauty of HeLa cells under a microscope with these captivating light micrographs (C017 / 8299) that unveil the complexity of their cytoskeleton. Unveiling another glimpse into HeLa cells' hidden world, this mesmerizing light micrograph (C017 / 8298) showcases their unique cytoskeletal patterns. Behold the breathtaking process of mitosis through this captivating light micrograph, where every stage is meticulously captured to reveal the dynamic nature of cell division. In an artistic representation, witness how proteins intricately interact with microtubules within a cell's cytoskeleton, forming a complex network crucial for cellular functions. Embark on a visual journey as embryonic smooth muscle cells come to life in this striking image (C018 / 8595), showcasing their well-organized cytoskeletal arrangement. Explore the formation of microtubules within cells through an illuminating illustration (C018 / 0804), shedding light on one aspect dynamics essential for cellular structure and function. Through imaginative artwork (C013 / 5001), delve into the mysterious world of intracellular transport as it navigates along intricate pathways within a cell's bustling interior. Immerse yourself in another artistic depiction (C013 / 4997) that unravels the enigmatic process of intracellular transport, highlighting its significance in maintaining cellular homeostasis and communication. Capturing yet another facet of intracellular transport's complexity, this intriguing artwork (C013 / 4995) unveils how vital molecules navigate through crowded cellular highways to reach their destinations.