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The Endocrine System AP Chapter 45
[object Object],[object Object]
Chemical signals ,[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
 
Fig. 45-2 Blood vessel Response Response Response Response (a) Endocrine signaling (b) Paracrine signaling (c) Autocrine signaling (d) Synaptic signaling Neuron Neurosecretory cell (e) Neuroendocrine signaling Blood vessel Synapse Response
Chemical Classes of Hormones ,[object Object],[object Object],[object Object],[object Object]
Fig. 45-3 Water-soluble Lipid-soluble Steroid: Cortisol Polypeptide: Insulin Amine: Epinephrine Amine: Thyroxine 0.8 nm
[object Object],[object Object]
[object Object],[object Object]
Fig. 45-5-1 NUCLEUS Signal receptor (a) (b) TARGET CELL Signal receptor Transport protein Water- soluble hormone Fat-soluble hormone
Fig. 45-5-2 Signal receptor TARGET CELL Signal receptor Transport protein Water- soluble hormone Fat-soluble hormone Gene regulation Cytoplasmic response Gene regulation Cytoplasmic response OR (a) NUCLEUS (b)
Multiple Effects of Hormones ,[object Object],[object Object],[object Object],[object Object],[object Object]
Fig. 45-8-1 Glycogen deposits    receptor Vessel dilates. Epinephrine (a) Liver cell Epinephrine    receptor Glycogen breaks down and glucose is released. (b) Skeletal muscle blood vessel Same receptors but different intracellular proteins (not shown)
Fig. 45-8-2 Glycogen deposits    receptor Vessel dilates. Epinephrine (a) Liver cell Epinephrine    receptor Glycogen breaks down and glucose is released. (b) Skeletal muscle blood vessel Same receptors but different intracellular proteins (not shown) Epinephrine    receptor Different receptors Epinephrine    receptor Vessel constricts. (c) Intestinal blood vessel
Negative feedback and antagonistic hormone pairs are common features of the endocrine system ,[object Object],[object Object],[object Object]
Fig. 45-11 Pathway Example Stimulus Low pH in duodenum S cells of duodenum secrete secretin (  ) Endocrine cell Blood vessel Pancreas Target cells Response Bicarbonate release Negative feedback –
Insulin and Glucagon: Control of Blood Glucose – an example of antagonistic hormone pairs ,[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object]
Fig. 45-12-2 Homeostasis: Blood glucose level (about 90 mg/100 mL) Insulin Beta cells of pancreas release insulin into the blood. STIMULUS: Blood glucose level rises. Liver takes up glucose and stores it as glycogen. Blood glucose level declines. Body cells take up more glucose.
Fig. 45-12-4 Homeostasis: Blood glucose level (about 90 mg/100 mL) Glucagon STIMULUS: Blood glucose level falls. Alpha cells of pancreas release glucagon. Liver breaks down glycogen and releases glucose. Blood glucose level rises.
Diabetes Mellitus ,[object Object],[object Object],[object Object]
[object Object],[object Object]
Fig. 45-10 Major endocrine glands: Adrenal glands Hypothalamus Pineal gland Pituitary gland Thyroid gland Parathyroid glands Pancreas Kidney Ovaries Testes Organs containing endocrine cells: Thymus Heart Liver Stomach Kidney Small intestine
Coordination of Endocrine and Nervous Systems in Vertebrates ,[object Object],[object Object]
[object Object],[object Object]
Fig. 45-14 Spinal cord Posterior pituitary Cerebellum Pineal gland Anterior pituitary Hypothalamus Pituitary gland Hypothalamus Thalamus Cerebrum
Hypothalamus ,[object Object],[object Object],[object Object]
Fig. 45-15 Posterior pituitary Anterior pituitary Neurosecretory cells of the hypothalamus Hypothalamus Axon HORMONE Oxytocin ADH Kidney tubules TARGET Mammary glands, uterine muscles
The anterior pituitary gland secretes releasing hormones and inhibiting hormones. ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Fig. 45-17 Hypothalamic releasing and inhibiting hormones Neurosecretory cells of the hypothalamus HORMONE TARGET Posterior pituitary Portal vessels Endocrine cells of the anterior pituitary Pituitary hormones Tropic effects only: FSH LH TSH ACTH Nontropic effects only: Prolactin MSH Nontropic and tropic effects: GH Testes or ovaries Thyroid FSH and LH TSH Adrenal cortex Mammary glands ACTH Prolactin MSH GH Melanocytes Liver, bones, other tissues
Tropic Hormones ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Thyroid Gland ,[object Object],[object Object]
Parathyroid Gland ,[object Object]
Fig. 45-20-2 PTH Parathyroid gland (behind thyroid) STIMULUS: Falling blood Ca 2+  level Homeostasis: Blood Ca 2+  level (about 10 mg/100 mL) Blood Ca 2+   level rises. Stimulates Ca 2+ uptake in kidneys Stimulates  Ca 2+  release  from bones Increases  Ca 2+  uptake  in intestines Active vitamin D
Adrenal medulla ,[object Object],[object Object]
Adrenal cortex ,[object Object],[object Object],[object Object]
Fig. 45-21c (b) Long-term stress response Effects of mineralocorticoids: Effects of glucocorticoids: 1. Retention of sodium   ions and water by   kidneys 2. Increased blood   volume and blood   pressure 2. Possible suppression of   immune system 1. Proteins and fats broken down   and converted to glucose, leading   to increased blood glucose Adrenal gland Kidney Adrenal cortex
Testes ,[object Object]
Ovaries ,[object Object],[object Object]
Pineal Gland ,[object Object]
Hormonal pathways work with the hypothalamus and anterior pituitary to coordinate responses ,[object Object],[object Object]
 
Which endocrine gland? ,[object Object],THYROID
[object Object],Anterior Pituitary
[object Object],Adrenal Glands
[object Object],PANCREAS
[object Object],Pituitary Gland
[object Object],Pancreas
[object Object],Parathyroid Gland
[object Object],Gonads
[object Object],Pineal Gland

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Ap chap 45 hormones and

  • 1. The Endocrine System AP Chapter 45
  • 2.
  • 3.
  • 4.
  • 5.
  • 6.  
  • 7. Fig. 45-2 Blood vessel Response Response Response Response (a) Endocrine signaling (b) Paracrine signaling (c) Autocrine signaling (d) Synaptic signaling Neuron Neurosecretory cell (e) Neuroendocrine signaling Blood vessel Synapse Response
  • 8.
  • 9. Fig. 45-3 Water-soluble Lipid-soluble Steroid: Cortisol Polypeptide: Insulin Amine: Epinephrine Amine: Thyroxine 0.8 nm
  • 10.
  • 11.
  • 12. Fig. 45-5-1 NUCLEUS Signal receptor (a) (b) TARGET CELL Signal receptor Transport protein Water- soluble hormone Fat-soluble hormone
  • 13. Fig. 45-5-2 Signal receptor TARGET CELL Signal receptor Transport protein Water- soluble hormone Fat-soluble hormone Gene regulation Cytoplasmic response Gene regulation Cytoplasmic response OR (a) NUCLEUS (b)
  • 14.
  • 15. Fig. 45-8-1 Glycogen deposits  receptor Vessel dilates. Epinephrine (a) Liver cell Epinephrine  receptor Glycogen breaks down and glucose is released. (b) Skeletal muscle blood vessel Same receptors but different intracellular proteins (not shown)
  • 16. Fig. 45-8-2 Glycogen deposits  receptor Vessel dilates. Epinephrine (a) Liver cell Epinephrine  receptor Glycogen breaks down and glucose is released. (b) Skeletal muscle blood vessel Same receptors but different intracellular proteins (not shown) Epinephrine  receptor Different receptors Epinephrine  receptor Vessel constricts. (c) Intestinal blood vessel
  • 17.
  • 18. Fig. 45-11 Pathway Example Stimulus Low pH in duodenum S cells of duodenum secrete secretin ( ) Endocrine cell Blood vessel Pancreas Target cells Response Bicarbonate release Negative feedback –
  • 19.
  • 20.
  • 21. Fig. 45-12-2 Homeostasis: Blood glucose level (about 90 mg/100 mL) Insulin Beta cells of pancreas release insulin into the blood. STIMULUS: Blood glucose level rises. Liver takes up glucose and stores it as glycogen. Blood glucose level declines. Body cells take up more glucose.
  • 22. Fig. 45-12-4 Homeostasis: Blood glucose level (about 90 mg/100 mL) Glucagon STIMULUS: Blood glucose level falls. Alpha cells of pancreas release glucagon. Liver breaks down glycogen and releases glucose. Blood glucose level rises.
  • 23.
  • 24.
  • 25. Fig. 45-10 Major endocrine glands: Adrenal glands Hypothalamus Pineal gland Pituitary gland Thyroid gland Parathyroid glands Pancreas Kidney Ovaries Testes Organs containing endocrine cells: Thymus Heart Liver Stomach Kidney Small intestine
  • 26.
  • 27.
  • 28. Fig. 45-14 Spinal cord Posterior pituitary Cerebellum Pineal gland Anterior pituitary Hypothalamus Pituitary gland Hypothalamus Thalamus Cerebrum
  • 29.
  • 30. Fig. 45-15 Posterior pituitary Anterior pituitary Neurosecretory cells of the hypothalamus Hypothalamus Axon HORMONE Oxytocin ADH Kidney tubules TARGET Mammary glands, uterine muscles
  • 31.
  • 32. Fig. 45-17 Hypothalamic releasing and inhibiting hormones Neurosecretory cells of the hypothalamus HORMONE TARGET Posterior pituitary Portal vessels Endocrine cells of the anterior pituitary Pituitary hormones Tropic effects only: FSH LH TSH ACTH Nontropic effects only: Prolactin MSH Nontropic and tropic effects: GH Testes or ovaries Thyroid FSH and LH TSH Adrenal cortex Mammary glands ACTH Prolactin MSH GH Melanocytes Liver, bones, other tissues
  • 33.
  • 34.
  • 35.
  • 36. Fig. 45-20-2 PTH Parathyroid gland (behind thyroid) STIMULUS: Falling blood Ca 2+ level Homeostasis: Blood Ca 2+ level (about 10 mg/100 mL) Blood Ca 2+ level rises. Stimulates Ca 2+ uptake in kidneys Stimulates Ca 2+ release from bones Increases Ca 2+ uptake in intestines Active vitamin D
  • 37.
  • 38.
  • 39. Fig. 45-21c (b) Long-term stress response Effects of mineralocorticoids: Effects of glucocorticoids: 1. Retention of sodium ions and water by kidneys 2. Increased blood volume and blood pressure 2. Possible suppression of immune system 1. Proteins and fats broken down and converted to glucose, leading to increased blood glucose Adrenal gland Kidney Adrenal cortex
  • 40.
  • 41.
  • 42.
  • 43.
  • 44.  
  • 45.
  • 46.
  • 47.
  • 48.
  • 49.
  • 50.
  • 51.
  • 52.
  • 53.

Editor's Notes

  1. Figure 45.2 Intercellular communication by secreted molecules
  2. Figure 45.3 Hormones differ in form and solubility
  3. Figure 45.5 Receptor location varies with hormone type
  4. Figure 45.5 Receptor location varies with hormone type
  5. Figure 45.8 One hormone, different effects
  6. Figure 45.8 One hormone, different effects
  7. Figure 45.11 A simple endocrine pathway
  8. Figure 45.12 Maintenance of glucose homeostasis by insulin and glucagon
  9. Figure 45.12 Maintenance of glucose homeostasis by insulin and glucagon
  10. Figure 45.10 Major human endocrine glands
  11. Figure 45.14 Endocrine glands in the human brain
  12. Figure 45.15 Production and release of posterior pituitary hormones
  13. Figure 45.17 Production and release of anterior pituitary hormones
  14. Figure 45.20 The roles of parathyroid hormone (PTH) in regulating blood calcium levels in mammals
  15. Figure 45.21b Stress and the adrenal gland