Question 1
Which skin component most contributes to the skin’s barrier against water loss?
Correct Answer:
Keratinization of cells and lipid envelopes
Explanation:
The main idea being tested is how the outermost epidermal layer prevents water loss. The barrier is formed by keratinized, flattened cells in the stratum corneum that are surrounded by a lipid-rich envelope. Keratinization makes these corneocytes tough, compact, and effectively dead, so they stack tightly like bricks. The lipids that surround and fill the spaces between these cells act as a hydrophobic mortar, greatly reducing water diffusion through the skin. This combination—the keratinized cells plus their surrounding lipid envelopes—provides the most effective barrier to transepidermal water loss. Desmosomes mainly hold cells together and contribute to structure, not the primary barrier. The basement membrane lies below the epidermis and is not the key player in preventing water loss.
Question 2
Podocytes are specialized cells associated with which structure in the kidney?
Correct Answer:
Podocytes
Explanation:
Podocytes are specialized epithelial cells that form the visceral layer of Bowman's capsule and intimately wrap around the glomerular capillaries. Their foot processes interdigitate, creating filtration slits bridged by slit diaphragms, which are essential to the glomerular filtration barrier. This arrangement prevents large proteins from entering the filtrate while allowing water and small solutes to pass, so podocytes are fundamentally linked to the glomerulus—the filtration unit of the kidney.
Question 3
Which gastric cell type secretes intrinsic factor?
Correct Answer:
Parietal (oxyntic) cells
Explanation:
Intrinsic factor is produced by parietal (oxyntic) cells in the stomach. These acid-secreting cells not only release hydrochloric acid to help digest proteins and create an acidic environment, but they also secrete intrinsic factor, a glycoprotein essential for the intestinal absorption of vitamin B12 in the terminal ileum. Other gastric cell types have different roles: chief cells secrete pepsinogen, mucous neck cells produce protective mucus, and enteroendocrine cells release hormones like gastrin. Without intrinsic factor, vitamin B12 cannot be effectively absorbed, leading to pernicious anemia despite adequate intake.
Question 4
In glands with mixed serous and mucous acini, what histologic feature indicates serous demilunes?
Correct Answer:
Crescent-Shaped Serous Demilunes Cap Mucous Acini
Explanation:
In mixed glands, serous demilunes show up as a crescent-shaped cap of serous cells that overlay the mucous acinus. The mucous portion stains lighter because it’s mucin-rich, while the serous cells around it contain zymogen granules and stain darker. That crescent of darker, serous cells sitting on the mucous tubule is the telltale sign you’re looking at serous demilunes. If you only had uniform mucous acini, you wouldn’t see any serous demilunes. If demilunes were described as round clusters of mucous cells, that would misstate their composition and appearance. And if every acinus were serous, there would be no demilunes at all since that feature marks a mixed gland.
Question 5
Pancreatic acinar cells secrete digestive enzymes. What is a characteristic cytoplasmic feature of these cells?
Correct Answer:
Basally located nuclei with basophilic cytoplasm and apical zymogen granules
Explanation:
Pancreatic acinar cells are professional secretory cells of the exocrine pancreas. They synthesize large amounts of digestive enzyme precursors and package them into membrane-bound zymogen granules that sit at the apical part of the cell, ready to be released into the duct system. To support this heavy protein production, these cells have abundant rough endoplasmic reticulum, which makes the cytoplasm appear basophilic on staining. The nucleus is typically located toward the base of the cell, which leaves room for the busy apical region filled with secretory granules. This combination—basally located nuclei, basophilic cytoplasm from the rough ER, and apical zymogen granules—best matches the characteristic cytoplasmic feature of pancreatic acinar cells.
Question 1
Exam overview

About this Exam

Prepare with the NBME Histology Practice Test practice quiz. This question bank includes 10 questions covering cells, skin, associated, cell, and serous. Use it to review important concepts, identify knowledge gaps, and build confidence for the related exam, course, or assessment.

More details

Additional Information

NBME Histology Practice Test

This practice set contains 10 questions from the matching question bank and focuses on cells, skin, associated, cell, and serous. Work through each question carefully, review the provided solutions, and revisit topics that need more study before your next attempt.

This is an independent study resource intended for practice and review; it is not an official examination or an endorsement by any organization named in the title.

Quiz information

Frequently Asked Questions

The complete question count is available after full access is unlocked.
No fixed duration is currently configured for this quiz.
Question explanations are included where they are available in the quiz content, helping you review the reasoning after answering.
Yes. You can retake the practice test again as you continue studying during your available access period.
After your access is confirmed, you can continue into the complete practice exam from this quiz flow.
Unless explicitly stated otherwise, this page provides independent practice material for study and exam preparation and is not the official examination itself.
Keep studying

Related Questions