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Robbins & Cotran Pathologic Basis of Disease 10th Ed Test Bank – Verified Answers & Rationales

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Robbins & Cotran Pathologic Basis of Disease 10th Ed Test Bank – Verified Answers & Rationales Master pathology with the Robbins & Cotran Pathologic Basis of Disease, 10th Edition Test Bank—the gold standard resource designed for medical, nursing, and allied health students preparing for exams. Developed from the trusted textbook by Vinay Kumar, Abul K. Abbas, and Jon C. Aster, this test bank provides 20 carefully crafted multiple-choice questions per chapter, ensuring complete coverage of all major concepts in modern pathology. Each question is paired with the correct answer and step-by-step verified rationale, helping you not only identify the right choice but also understand the reasoning behind it. This approach strengthens critical thinking, boosts confidence, and prevents common errors in exam scenarios. Whether you are preparing for the NCLEX, USMLE, medical school exams, nursing board exams, or advanced pathology coursework, this test bank is tailored to accelerate your study process. Save time with ready-to-use, clinically relevant questions and reinforce your knowledge chapter by chapter. With its clear structure and evidence-based rationales, this resource transforms review sessions into high-yield learning. Gain the competitive edge you need, master complex pathology concepts, and walk into your exams with confidence. Hashtags #PathologyTestBank #MedicalExamPrep #NursingStudyGuide #RobbinsAndCotran #MedSchoolPathology #BoardExamSuccess #USMLEPrep #NCLEXPathology #StudySmart #VerifiedRationales Robbins & Cotran Pathologic Basis of Disease 10th Edition Robbins test bank with answers Pathology exam prep resource Nursing pathology study guide Medical school pathology review Test bank with verified rationales NCLEX and USMLE pathology practice questions Comprehensive pathology MCQs Vinay Kumar pathology textbook support Exam success in pathology

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Robbins & Cotran 10th Ed. Pathology Test Bank | Chapter-
by-Chapter Questions & Verified Solutions




Robbins & Cotran Pathologic Basis of Disease
10th Edition
• Author(s)Vinay Kumar; Abul K. Abbas; Jon C. Aster
1.
Chapter Reference – Chapter 1: The Cell as a Unit of Health
and Disease — The Genome
Question: A 45-year-old woman’s tumor shows loss of a DNA
repair protein that normally corrects single-base oxidative
damage. Which repair pathway is most likely defective?
A. Nucleotide excision repair
B. Base excision repair
C. Mismatch repair
D. Homologous recombination repair
Correct Answer: B
Rationales:
• Correct (B): Base excision repair (BER) corrects small,
non-helix-distorting base lesions such as oxidized or

, deaminated bases; loss of BER enzymes (e.g., DNA
glycosylases) causes accumulation of such damage.
• A: Nucleotide excision repair removes bulky helix-
distorting lesions (e.g., thymine dimers), not single-base
oxidative damage.
• C: Mismatch repair corrects replication-associated base–
base mismatches and insertion–deletion loops, not isolated
oxidized bases.
• D: Homologous recombination repairs double-strand
breaks using a sister chromatid; it doesn’t target single
oxidized bases.
Teaching Point: BER repairs small oxidative and deaminated
base lesions.
Citation: Robbins & Cotran, 10th Ed., Ch. 1 — The Genome
(DNA repair pathways; base excision repair).


2. Chapter 1 — The Genome
Question: A patient’s tumor harbors defective BRCA1. Which
DNA repair defect best explains the tumor’s sensitivity to PARP
inhibitors?
A. Impaired mismatch repair leading to microsatellite instability
B. Loss of nucleotide excision repair causing bulky adduct
accumulation
C. Defective homologous recombination causing reliance on
single-strand repair

,D. Excessive base excision repair increasing double-strand
breaks
Correct Answer: C
Rationales:
• Correct (C): BRCA1 is essential for homologous
recombination (HR) repair of double-strand breaks; HR-
deficient cells rely on alternative/single-strand repair
pathways, making them vulnerable to PARP inhibition.
• A: Mismatch repair defects cause microsatellite instability
but do not explain PARP sensitivity.
• B: NER defects produce bulky adduct accumulation,
unrelated to BRCA1/PARP synthetic lethality.
• D: Excessive BER is not the mechanism by which BRCA1
loss creates PARP sensitivity.
Teaching Point: HR-deficient tumors (BRCA1/2 mutant) are
synthetically lethal with PARP inhibition.
Citation: Robbins & Cotran, 10th Ed., Ch. 1 — The Genome
(double-strand break repair; BRCA and clinical implications).


3. Chapter 1 — Cellular Housekeeping
Question: A clinician sees elevated intracellular aggregates of
ubiquitinated proteins in neurons. Which cellular pathway is
most likely overwhelmed?
A. Autophagy–lysosome pathway
B. Mitochondrial oxidative phosphorylation

, C. Nucleotide excision repair
D. Extracellular matrix turnover
Correct Answer: A
Rationales:
• Correct (A): The autophagy–lysosome system clears
aggregated proteins and damaged organelles; when
overwhelmed or defective, ubiquitinated protein aggregates
accumulate.
• B: Oxidative phosphorylation dysfunction causes energy
failure, not specifically ubiquitinated protein aggregates.
• C: NER is a DNA repair process unrelated to protein
aggregate clearance.
• D: ECM turnover pertains to extracellular matrix
components, not intracellular protein aggregates.
Teaching Point: Autophagy removes protein aggregates and
damaged organelles; failure causes accumulation.
Citation: Robbins & Cotran, 10th Ed., Ch. 1 — Cellular
Housekeeping (autophagy and proteostasis).


4. Chapter 1 — Cellular Housekeeping
Question: A drug causes prolonged ER stress in hepatocytes.
Which cellular response initially attempts to restore
proteostasis?
A. Upregulation of cyclin-dependent kinases
B. Unfolded protein response (UPR) activation

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