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Test Bank for Pathophysiology: The Biologic Basis for Disease in Adults and Children 9th Edition by Kathryn L. McCance, Sue E. Huether & Valentina L. Brashers | All Chapters Questions & Answers with Rationales | Latest 2026/2027 Update | Verified Questio

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Prepare for success in pathophysiology, nursing, and advanced healthcare courses with this comprehensive Test Bank for Pathophysiology: The Biologic Basis for Disease in Adults and Children 9th Edition by Kathryn L. McCance, Sue E. Huether, and Valentina L. Brashers. This resource includes all chapters, chapter-by-chapter practice questions, verified answers, detailed rationales, clinical application exercises, and exam-style assessments designed to strengthen understanding of disease mechanisms and physiologic alterations. Topics include cellular biology, genetics and epigenetics, immunity and inflammation, infection, cancer biology, neurologic disorders, endocrine disorders, reproductive health, hematologic diseases, cardiovascular disorders, pulmonary conditions, renal and urinary disorders, gastrointestinal diseases, musculoskeletal disorders, integumentary disorders, shock, burns, and pediatric pathophysiology. The 9th Edition provides comprehensive coverage of disease etiology, pathogenesis, clinical manifestations, and evidence-based healthcare concepts. Updated for 2026/2027, this study guide features Verified Questions & Answers, Comprehensive Rationales, Clinical Case Studies, Complete Chapter Reviews, NCLEX Preparation Materials, and Graded A+ Study Support. Ideal for nursing, nurse practitioner, medical, physician assistant, and allied health students preparing for examinations, clinical coursework, and professional certification. The 9th Edition contains extensive illustrations, in-depth disease process explanations, and integrated adult and pediatric pathophysiology content to support advanced learning and clinical reasoning.

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,
,
, PATHOPHYSIOLOGY 9TH
PATHOPHYSIOLOGY 8TH EDITION
EDITION MCCANCE
MCCANCETEST
TESTBANK
BANK

Chapter 1: Cellular Biology


MULTIPLE CHOICE

1. Which statement best describes the cellular function of metabolic absorption?
a. Cells can produce proteins. c. Cells can take in and use nutrients.
b. Cells can secrete digestive enzymes. d. Cells can synthesize fats.
ANS: C
In metabolic absorption, all cells take in and use nutrients and other substances from their
surroundings. The remaining options are not inclusive in their descriptions of cellular
metabolic absorption.

PTS: 1 REF: Page 2

2. Most of a cell’s genetic information, including RNA and DNA, is contained in the:
a. Mitochondria c. Nucleolus
b. Ribosome d. Lysosome
ANS: C
The nucleus contains the nucleolus, a small dense structure composed largely of RNA,
most of the cellular DNA, and the DNA-binding proteins, such as the histones, which
regulate its activity. The other options do not contain most of a cell’s genetic information.

PTS: 1 REF: Page 2

3. Which component of the cell produces hydrogen peroxide (H2O2) by using oxygen to
NURSINGTB.COM
remove hydrogen atoms from specific substrates in an oxidative reaction?
a. Lysosomes c. Ribosomes
b. Peroxisomes d. Oxyhydrosomes
ANS: B
Peroxisomes are so named because they usually contain enzymes that use oxygen to
remove hydrogen atoms from specific substrates in an oxidative reaction that produces
H2O2, which is a powerful oxidant and potentially destructive if it accumulates or escapes
from peroxisomes. Ribosomes are RNA-protein complexes (nucleoproteins) that are
synthesized in the nucleolus and secreted into the cytoplasm through pores in the nuclear
envelope called nuclear pore complexes. Lysosomes are saclike structures that originate
from the Golgi complex and contain more than 40 digestive enzymes called hydrolases,
which catalyze bonds in proteins, lipids, nucleic acids, and carbohydrates. Oxyhydrosomes
are involved in enzyme production.

PTS: 1 REF: Page 8

4. Which cell component is capable of cellular autodigestion when it is released during cell
injury?
a. Ribosome c. Smooth endoplasmic reticulum
b. Golgi complex d. Lysosomes
ANS: D




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