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CHSOS 404 Test with Questions & Answers Graded A $13.49   Add to cart

Exam (elaborations)

CHSOS 404 Test with Questions & Answers Graded A

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  • CHSOS 404

CHSOS 404 Test with Questions & Answers Graded A

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  • September 3, 2024
  • 37
  • 2024/2025
  • Exam (elaborations)
  • Questions & answers
  • CHSOS 404
  • CHSOS 404
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KenAli
CHSOS 404 Test with Questions &
Answers Graded A
Virchow's triad - ✔✔1. change in vessel wall

2. decreased blood flow, stasis

3. increased coag of blood



benign neoplasm - ✔✔-well differentiated

-localized

-demarcated



malignant neoplasm - ✔✔-less well-
differentiated -grow rapidly
-invade neighboring tissues and have the capacity



cell cycle/division - ✔✔series of events that cells go through as they grow and
divide -cancer cells are autonomous or independent of normal growth controls

,-



3 causes of cellular abnormalities - ✔✔-telomerase

-change in p53

-change in pRB



pRB - ✔✔-governs cell cycle rate

-loss of pRB = unregulated cell growth



p53 - ✔✔-slows cell cycle to allow for repair of DNA mutations before cell division

-mutations with p53 = a lot of diff cancers

-activates DNA repair genes

-stops cell cycle to allow DNA repair genes to fix mutation
-initiates apoptosis if DNA damage cannot be reversed



telomerase - ✔✔-telomere are at the end of cells

-cancer cells replace telomeres by activating telomerase - cells can divide
indefinitely -immortal - bc cancer cells never lose telomeres so they never die



tumor suppressor gene - ✔✔-p53, pRB

-mutation in BOTH copies of alleles

-typically these TSG.restrain tumor growth



oncogenes - ✔✔-normally promote growth as protooncogenes within
cells -mutation in ONE copy of alleles



DNA repair gene - ✔✔normally correct damage/mutation in DNA

,Hereditary NonPolyposis Colon Cancer - ✔✔colon cancer die to mutation in DNA repair genes

-this decrease in DNA repair genes leads to an increase in genome instability and is called "mutator
phenotype; increases the likelihood that an individual with develop cancer



Familial Adenomatous Polyposis (FAP) - ✔✔example of how multiple genetic changes are
often required for cancer to arise



cancer cell characteristics, origin and significance - ✔✔-multiple mutations "transformation" are
required for cancer to occur and often result in changes to growth and adherence that contribute
to invasion, angiogenesis and mets



-altered biochemical properties - promote growth & spread



-chromosomal changes - aneuploid - loss of diploid state



-aberrant adherence properties - loss of contact inhibition, anchorage independence; promotes
invasion and mets



-initiation promotion theory- •

-initiation (DNA mutation, irreversible) must occur first;

-promotion (stimulate cell proliferation, reversible in early stages) must follow initiation for tumors to
form

-progression obtains malignant phenotype including invasiveness, metastasis, autonomous growth
and genomic instability.



manifestations of cancer - ✔✔-pain

-cachexia

-declining hematopoiesis - anemia

-tumor markers - PSA, CA-125, CEA



tx-surgery, chemo, radiation

, dx and staging of cancer - ✔✔-TNM

tumor

nodes

metastasis



higher the #, worse the cancer



DNA structure and function - ✔✔•DNA contains the basic genetic information, and its expression
as proteins determines the various functions of that cell.

•DNA structure—base (A, T, G, C) + sugar + phosphate

•Use of complementary base-pairing—Anti-parallel orientation—Double-helix
•Chromosomes—23 pairs

•DNA replication (S phase of cell cycle) maintains genomic information using DNA polymerase -
Semi-conservative replication—DNA repair of damage due to replication errors or exposures.



mutations in DNA - ✔✔-silent - mutations that do not change the amino acid .

-missense - mutations that alter the amino acid and may or may not alter protein structure and thus
function.

-non sense -mutations may introduce a stop to protein
synthesis -insertion - addition of nucleotides in DNA sequence -
deletion - removal of nucleotides in DNA sequence



mitosis - ✔✔-Prophase where the nuclear membrane dissolves and two copies of each
chromosome (sister chromatids) attach at the centromere.

-Metaphase where the chromosomes are highly condensed and line up on the equatorial plane of
the cell.

-Anaphase where the sister chromatids separate, and the chromosomes are pulled apart.

-Telophase where the nuclear membrane forms around the two sets of chromosomes.

-Cytokinesis follows mitosis, forming two daughter or progeny cells.

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