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Summary NURS 5060 – Advanced Pathophysiology: Chapters 21, 22, 23 Latest Revised Study Guide

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This document provides a comprehensive study guide for NURS 5060 Advanced Pathophysiology, covering Chapters 21, 22, and 23, updated for the latest review cycle. It includes advanced concepts in disease mechanisms, cellular injury, inflammation, immune responses, and system-specific pathophysiological processes. The material emphasizes integration of pathophysiology with clinical presentation, diagnostic findings, and evidence-based nursing implications to support graduate-level understanding and clinical decision-making.

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ADVANCED PATHOPHYSIOLOGY NURS 5060 LATEST
REVISED STUDY GUIDE CHAPTER 21,22,23
Chapter 21

1. Functions of the Endocrine System

• Regulates development, growth, reproduction, metabolism, fluid and electrolyte balance,
and adaptive stress responses.

2. Hormone Characteristics

• Secreted in specific patterns (diurnal, pulsatile, cyclic)
• Feedback regulation (primarily negative feedback)
• Only affect target cells with appropriate receptors
• Inactivated in liver/kidneys; excreted via bile or urine

3. Hormone Classification

• By chemical structure:
o Peptides/Proteins: Insulin, GH, ADH
o Steroids: Cortisol, estrogen, testosterone
o Amines: Epinephrine, norepinephrine, T3/T4
• By solubility:
o Water-soluble: Cannot cross membrane; bind surface receptors (e.g., insulin)
o Lipid-soluble: Diffuse through membrane; bind intracellular receptors (e.g.,
cortisol)

4. Hormone Receptors and Regulation

• Surface receptors: GPCRs, tyrosine kinase (e.g., insulin)
• Intracellular receptors: Affect gene transcription (e.g., steroids)
• Up/downregulation alters cell sensitivity

5. Mechanism of Hormone Action

• First messenger: Hormone binds receptor
• Second messengers: cAMP, IP3, DAG, calcium
• Intracellular signaling: Enzyme activation, gene transcription, metabolic modulation

6. Hypothalamic–Pituitary Axis (HPA)

• Hypothalamus: Master controller
o TRH, CRH, GnRH, GHRH, somatostatin, PIF
• Anterior Pituitary Hormones:
o ACTH: Stimulates adrenal cortex → cortisol
o TSH: Stimulates thyroid → T3/T4
o FSH/LH: Regulate gonads

, o GH: Stimulates growth via IGF-1
o Prolactin: Breast development and lactation
o MSH: Skin pigmentation
o β-Endorphins: Pain modulation
• Posterior Pituitary Hormones:
o ADH (Vasopressin): Water reabsorption in kidneys
o Oxytocin: Uterine contraction, milk ejection, emotional bonding

7. Pineal Gland

• Produces melatonin in response to darkness
• Regulates circadian rhythms and reproductive maturation

8. Thyroid Gland

• Regulated by TSH from pituitary
• Follicular cells produce:
o T4 (thyroxine): Inactive form; converted to T3
o T3 (triiodothyronine): Active form
• Increases metabolism, growth, temperature regulation
• Parafollicular cells produce calcitonin: Lowers calcium by inhibiting osteoclasts

9. Parathyroid Glands

• Parathyroid Hormone (PTH):
o Increases serum calcium via:
▪ Bone resorption
▪ Renal calcium reabsorption
▪ Activation of vitamin D → increased GI calcium absorption
• PTH-related peptide (PTHrP): Involved in development and cancer

10. Pancreas (Islets of Langerhans)

• Alpha cells: Glucagon → raises glucose
• Beta cells:
o Insulin: Lowers glucose, increases cell uptake, promotes
glycogenesis/lipogenesis
o Amylin: Inhibits glucagon, delays gastric emptying
• Delta cells: Somatostatin → suppresses insulin/glucagon
• F cells: Pancreatic polypeptide → regulates digestion
• Incretins (GLP-1, GIP): Gut hormones that stimulate insulin, suppress glucagon
• Ghrelin: Stimulates appetite, GH release, improves insulin sensitivity

11. Adrenal Glands

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