Human Anatomy & Physiology FIFTH EDITION Elaine N. Marieb PowerPoint ® Lecture Slide Presentation by Vince Austin Copyright © 2003 Pearson Education, Inc.

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Human Anatomy & Physiology FIFTH EDITION Elaine N. Marieb PowerPoint ® Lecture Slide Presentation by Vince Austin Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Chapter 4 Tissue: The Living Fabric Part B

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Glandular Epithelia A gland is one or more cells that makes and secretes an aqueous fluid Classified by: Site of product release – endocrine or exocrine Relative number of cells forming the gland – unicellular or multicellular

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Endocrine Glands Ductless glands that produce hormones Secretions include amino acids, proteins, glycoproteins, and steroids

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Exocrine Glands More numerous than endocrine glands Secrete their products onto body surfaces (skin) or into body cavities Examples include mucous, sweat, oil, and salivary glands The only important unicellular gland is the goblet cell Multicellular exocrine glands are composed of a duct and secretory unit

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Multicellular Exocrine Glands Classified according to: Simple or compound duct type Structure of their secretory units Figure 4.3

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Structural Classification of Multicellular Exocrine Glands Figure 4.4a-d

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Structural Classification of Multicellular Exocrine Glands Figure 4.4e-g

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Modes of Secretion Merocrine – products are secreted by exocytosis (e.g., pancreas, sweat, and salivary glands) Holocrine – products are secreted by the rupture of gland cells (e.g., sebaceous glands) Figure 4.5

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Connective Tissue Found throughout the body; most abundant and widely distributed in primary tissues Connective tissue proper Cartilage Bone Blood

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Connective Tissue Figure 4.6

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Functions of Connective Tissue Binding and support Protection Insulation Transportation

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Characteristics of Connective Tissue Connective tissues have: Mesenchyme as their common tissue of origin Varying degrees of vascularity Nonliving extracellular matrix, consisting of ground substance and fibers

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Structural Elements of Connective Tissue Ground substance – unstructured material that fills the space between cells Fibers – collagen, elastic, or reticular Cells – fibroblasts, chondroblasts, osteoblasts, and hematopoietic stem cells

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Ground Substance Interstitial (tissue) fluid Adhesion proteins – fibronectin and laminin Proteoglycans – glycosaminoglycans (GAGs) Functions as a molecular sieve through which nutrients diffuse between blood capillaries and cells

Copyright © 2003 Pearson Education, Inc. publishing as Benjamin Cummings Fibers Collagen – tough; provides high tensile strength Elastic – long, thin fibers that allow for stretch Reticular – branched collagenous fibers that form delicate networks