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PRCC_4MT-P3

Total questions: 166

Worksheet time: 1hrs 23mins

Name
Class
Date
1.
It is a zinc containing enzyme that is part of the glycolytic pathway (glucose metabolism) and is found in virtually ALL cells in the body
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
2.
It is a tetrameric molecule containing four (4) subunits and two (2) possible forms (H and M).
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
3.
Is lactate dehydrogenase found in all cells of the body?
a)
Yes
b)
No
c)
Maybe
d)
I don't know
4.
Lactate dehydrogenase contains how many subunits?
a)
1 subunits
b)
2 subunits
c)
3 subunits
d)
4 subunits
5.
How many possible forms does lactate dehydrogenase has?
a)
1 possible form
b)
2 possible forms
c)
3 possible forms
d)
4 possible forms
6.
What is the normal electrophoretic pattern of lactate dehydrogenase in the serum?
a)
1>2>3>4>5
b)
5>4>3>2>1
c)
3>4>5>2>1
d)
2>1>3>4>5
7.
What is the normal electrophoretic pattern of lactate dehydrogenase in the CSF?
a)
1>2>3>4>5
b)
5>4>3>2>1
c)
3>4>5>2>1
d)
2>1>3>4>5
8.
What is the electrophoretic pattern of lactate dehydrogenase in the CSF that shows the presence of many neutrophils and is indicative of bacterial meningitis?
a)
1>2>3>4>5
b)
5>4>3>2>1
c)
3>4>5>2>1
d)
2>1>3>4>5
9.
Prefers forward reaction
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
10.
Prefers reverse reaction
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
11.
Prefers Wroblewski La Due reaction
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
12.
Prefers Wacker method reaction
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
13.
This LD isoenzyme is the most predominant LD in the heart.
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
14.
This LD isoenzyme is found in the lungs, lymphocytes, spleen, and pancreas
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
15.
This LD isoenzyme is found in the liver
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
16.
This LD isoenzyme is found in the skeletal muscle
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
17.
This LD isoenzyme is associated with Myocardial infarction and hemolytic anemia
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
18.
This LD isoenzyme is associated with Myocardial infarction
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
19.
This LD isoenzyme is associated with hemolytic anemia
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
20.
This LD isoenzyme is associated with Megaloblastic anemia, acute renal infarction, and hemolyzed specimen
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
21.
This LD isoenzyme is associated with Megaloblastic anemia
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
22.
This LD isoenzyme is associated with acute renal infarction
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
23.
This LD isoenzyme is associated with hemolyzed specimen
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
24.
This LD isoenzyme is associated with pulmonary embolism, extensive, pulmonary pneumonia, lymphocytosis, acute pancreatitis, and carcinoma (pheocromocytoma)
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
25.
This LD isoenzyme is associated with pulmonary embolism
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
26.
This LD isoenzyme is associated with extensive, pulmonary pneumonia
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
27.
This LD isoenzyme is associated with lymphocytosis
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
28.
This LD isoenzyme is associated with acute pancreatitis
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
29.
This LD isoenzyme is associated with carcinoma (pheocromocytoma)
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
30.
This LD isoenzyme is associated with Hepatic injury or inflammation
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
31.
This LD isoenzyme is associated with Skeletal muscle injury
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
32.
This is elevated in cases of drug hepatotoxicity and obstructive jaundice.
a)
LD 1
b)
LD 2
c)
LD 5
d)
LD 6
e)
LD 3
33.
This LD isoenzyme is present in patients with atherosclerotic cardiovascular failure (impending death)
a)
LD 1
b)
LD 2
c)
LD 5
d)
LD 6
e)
LD 3
34.
When LD 6 elevates, what other LD isoenzymes elevate as well?
a)
LD 1
b)
LD 2
c)
LD 5
d)
LD 6
e)
LD 3
35.
Which of the following is higher than the plasma LD?
a)
Serum LD
b)
Whole blood LD
c)
Urine LD
d)
Sweat LD
36.
This method yields a forward or direct reaction
a)
Wacker Method
b)
Wroblewski La Due method
37.
This method is preferred and not affected by product inhibition.
a)
Wacker Method
b)
Wroblewski La Due method
38.
Its principle is Lactate + NAD ---LD--->pyruvate + NADH
a)
Wacker Method
b)
Wroblewski La Due method
39.
What is the pH associated with Wacker method?
a)
8.1
b)
8.2
c)
8.8
d)
7.2
e)
7.1
40.
What is the pH associated with Wroblewski La Due method?
a)
8.1
b)
8.2
c)
8.8
d)
7.2
e)
7.1
41.
This method yields a reverse or indirect reaction
a)
Wacker Method
b)
Wroblewski La Due method
42.
This method is 2x (twice) faster than the latter. It is also used in dry slide technology.
a)
Wacker Method
b)
Wroblewski La Due method
43.
This method is also used in dry slide technology.
a)
Wacker Method
b)
Wroblewski La Due method
44.
The principle of this method is pyruvate + NADH ---LD---> Lactate + NAD
a)
Wacker Method
b)
Wroblewski La Due method
45.
Which of the following methods under LD has the advantage of using small volume of the sample?
a)
Wacker Method
b)
Wroblewski La Due method
46.
Wacker method
a)
Forward or direct reaction
b)
Reverse or indirect reaction
47.
Wroblewski La Due method
a)
Forward or direct reaction
b)
Reverse or indirect reaction
48.
LD 6 in cases of drug hepatotoxicity and obstructive jaundice is..
a)
Elevated
b)
Decreased
49.
Which of the following forms of alcohol is associated with LD 6?
a)
Methanol
b)
Isopropanol
c)
Ethylene glycol
d)
Primary alcohol
50.
LD 6 converts these alcohol
a)
Methanol
b)
Isopropanol
c)
Ethylene glycol
d)
Primary alcohol
51.
Found in heart and RBC
a)
LD 1 (HHHH)
b)
LD 2 (HHHM)
c)
LD 3 (HHMM)
d)
LD 4 (HMMM)
e)
LD 5 (MMMM)
52.
LD 1
a)
Heart, RBC
b)
Lungs, lymphocytes, spleen, pancreas
c)
Liver
d)
Skeletal muscle
53.
LD 2
a)
Heart, RBC
b)
Lungs, lymphocytes, spleen, pancreas
c)
Liver
d)
Skeletal muscle
54.
LD 3
a)
Heart, RBC
b)
Lungs, lymphocytes, spleen, pancreas
c)
Liver
d)
Skeletal muscle
55.
LD 4
a)
Heart, RBC
b)
Lungs, lymphocytes, spleen, pancreas
c)
Liver
d)
Skeletal muscle
56.
LD 5
a)
Heart, RBC
b)
Lungs, lymphocytes, spleen, pancreas
c)
Liver
d)
Skeletal muscle
57.
This enzyme catalyzes the transfer of a phosphate group between creatine phosphate adenosine diphosphate
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
58.
This enzyme is the storage of high-energy creatine PO4 in the muscles
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
59.
This enzyme is the only CK located in the smooth muscles; NOT ALT, AST, and LD
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
60.
CK 1
a)
CK-BB
b)
CK-MB
c)
CK-MM
61.
Brain type
a)
CK-BB
b)
CK-MB
c)
CK-MM
62.
Least isoenzyme
a)
CK-BB
b)
CK-MB
c)
CK-MM
63.
Fastest in electrophoresis
a)
CK-BB
b)
CK-MB
c)
CK-MM
64.
Most labile
a)
CK-BB
b)
CK-MB
c)
CK-MM
65.
Only seen in the CSF
a)
CK-BB
b)
CK-MB
c)
CK-MM
66.
Found in the brain, bladder, lung, prostate, uterus, colon, stomach, and thyroid.
a)
CK-BB
b)
CK-MB
c)
CK-MM
67.
CK2
a)
CK-BB
b)
CK-MB
c)
CK-MM
68.
Hybrid type
a)
CK-BB
b)
CK-MB
c)
CK-MM
69.
Second fastest in electrophoresis
a)
CK-BB
b)
CK-MB
c)
CK-MM
70.
Found in the heart and skeletal muscle
a)
CK-BB
b)
CK-MB
c)
CK-MM
71.
Muscle type
a)
CK-BB
b)
CK-MB
c)
CK-MM
72.
Major isoenzyme
a)
CK-BB
b)
CK-MB
c)
CK-MM
73.
Slowest in electrophoresis
a)
CK-BB
b)
CK-MB
c)
CK-MM
74.
Central nervous system shock
a)
CK-BB
b)
CK-MB
c)
CK-MM
75.
Cerebrovascular accident
a)
CK-BB
b)
CK-MB
c)
CK-MM
76.
Carcinoma
a)
CK-BB
b)
CK-MB
c)
CK-MM
77.
Carbon monoxide poisoning
a)
CK-BB
b)
CK-MB
c)
CK-MM
78.
Anoxic encephalopathy
a)
CK-BB
b)
CK-MB
c)
CK-MM
79.
Seizure
a)
CK-BB
b)
CK-MB
c)
CK-MM
80.
Placental or uterine trauma
a)
CK-BB
b)
CK-MB
c)
CK-MM
81.
Reye's syndrome
a)
CK-BB
b)
CK-MB
c)
CK-MM
82.
Malignant hyperthermia
a)
CK-BB
b)
CK-MB
c)
CK-MM
83.
Acute and chronic renal failure
a)
CK-BB
b)
CK-MB
c)
CK-MM
84.
Myocardial infarction
a)
CK-BB
b)
CK-MB
c)
CK-MM
85.
Myocardial injury
a)
CK-BB
b)
CK-MB
c)
CK-MM
86.
Ischemia
a)
CK-BB
b)
CK-MB
c)
CK-MM
87.
Angina
a)
CK-BB
b)
CK-MB
c)
CK-MM
88.
Inflammatory heart disease
a)
CK-BB
b)
CK-MB
c)
CK-MM
89.
Cardiac surgery
a)
CK-BB
b)
CK-MB
c)
CK-MM
90.
Duchenne-type muscular dystrophy
a)
CK-BB
b)
CK-MB
c)
CK-MM
91.
Muscular dystrophy
a)
CK-BB
b)
CK-MB
c)
CK-MM
92.
Polymyositis
a)
CK-BB
b)
CK-MB
c)
CK-MM
93.
Malignant hyperthermia
a)
CK-BB
b)
CK-MB
c)
CK-MM
94.
Rocky mountain spotted fever
a)
CK-BB
b)
CK-MB
c)
CK-MM
95.
Physical activity
a)
CK-BB
b)
CK-MB
c)
CK-MM
96.
Intramuscular injection
a)
CK-BB
b)
CK-MB
c)
CK-MM
97.
Skeletal muscle disorder
a)
CK-BB
b)
CK-MB
c)
CK-MM
98.
Present in small quantities in the sera of healthy people, most techniques can't detect this isoenzyme in the normal sera.
a)
CK-BB
b)
CK-MB
c)
CK-MM
99.
CK in Duchenne-type muscular dystrophy is ___
a)
10 to 15 times the upper limit of normal (ULN)
b)
15 to 50 times the upper limit of normal (ULN)
c)
15 to 100 times the upper limit of normal (ULN)
d)
15 to 200 times the upper limit of normal (ULN)
100.
Intramuscular injections are known to increase CK
a)
>=6
b)
<5x
101.
this amount of CK indicates myocardial damage
a)
>=6
b)
<5x
102.
Sample preferred for testing CK
a)
Plasma
b)
Serum
c)
Whole blood
d)
Urine
e)
Sweat
103.
What is the anticoagulant of choice for testing CK?
a)
Citrate
b)
EDTA
c)
Heparin
d)
Sodium fluoride
104.
These two (2) are CK inhibitors.
a)
Calcium
b)
Iron
c)
Ferric ions
d)
Albumin
e)
Potassium
105.
Fill in the blanks. CK also vary with ___ mass.
a)
Muscle mass
b)
Light
c)
Increased CK
d)
Do not contain CK
e)
Ice
106.
Fill in the blanks. CK is inactivated by
a)
Muscle mass
b)
Light
c)
Increased CK
d)
Do not contain CK
e)
Ice
107.
Fill in the blanks. Bedridden patients typically yields..
a)
Muscle mass
b)
Light
c)
Increased CK
d)
Do not contain CK
e)
Ice
108.
Fill in the blanks. Liver and RBC
a)
Muscle mass
b)
Light
c)
Increased CK
d)
Do not contain CK
e)
Ice
109.
Reference method for CK
a)
Electrophoresis
b)
Tanzer-Gilvarg Assay
c)
Oliver-Rosalki
110.
Forward or direct method pH 9 at 340 nm
a)
Electrophoresis
b)
Tanzer-Gilvarg Assay
c)
Oliver-Rosalki
111.
Reverse or indirect method for CK
a)
Electrophoresis
b)
Tanzer-Gilvarg Assay
c)
Oliver-Rosalki
112.
Most commonly used method. Faster reaction, pH at 6.8 at 340 nm.
a)
Electrophoresis
b)
Tanzer-Gilvarg Assay
c)
Oliver-Rosalki
113.
Most commonly used method.
a)
Electrophoresis
b)
Tanzer-Gilvarg Assay
c)
Oliver-Rosalki
114.
Faster reaction
a)
Electrophoresis
b)
Tanzer-Gilvarg Assay
c)
Oliver-Rosalki
115.
pH at 6.8 at 340 nm.
a)
Electrophoresis
b)
Tanzer-Gilvarg Assay
c)
Oliver-Rosalki
116.
Tanzer-Gilvarg pH
a)
6.8
b)
7
c)
8
d)
9
117.
Oliver-Rosalki pH
a)
6.8
b)
7
c)
8
d)
9
118.
Tanzer-Gilvarg absorbance
a)
240 nm
b)
243 nm
c)
340 nm
d)
400 nm
119.
It is a glycolytic enzyme that splits fructose-1,6-diphosphate into two triose phosphate molecules in the metabolism of glucose.
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
120.
It is included in the panel of markers for skeletal muscle injury.
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
121.
Aldolase Isoenzyme found in the skeletal muscles
a)
Aldolase A
b)
Aldolase B
c)
Aldolase C
122.
Aldolase Isoenzyme found in the WBC, Liver, and Kidney
a)
Aldolase A
b)
Aldolase B
c)
Aldolase C
123.
Aldolase Isoenzyme found in the Brain tissue
a)
Aldolase A
b)
Aldolase B
c)
Aldolase C
124.
Aldolase A
a)
Skeletal muscles
b)
WBC, liver, kidney
c)
Brain tissue
125.
Aldolase B
a)
Skeletal muscles
b)
WBC, liver, kidney
c)
Brain tissue
126.
Aldolase C
a)
Skeletal muscles
b)
WBC, liver, kidney
c)
Brain tissue
127.
It is a phosphoric monoester hydrolase; predominantly secreted from the liver.
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
128.
A marker for hepato biliary disease and infiltrative lesions of the liver.
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
129.
No bone source ---> differential test for serum ALP
a)
Lactate dehydrogenase
b)
CKMB
c)
Aldolase
d)
5'nucleotidase
130.
Most sensitive marker of acute alcoholic hepatitis
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
131.
Other names: butyrylcholinesterase or acetylcholine acylhydrolase
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
132.
insecticide/pesticide poisoning (organophosphate poisoning) (DECREASED)
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
133.
It functions to maintain NADPH in reduced form in the RBC
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
134.
It is a newborn screening marker
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
135.
Increased levels: myocardial infarction and megaloblastic anemia
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
136.
Deficiency: drug induced hemolytic anemia
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
137.
Drug induced hemolytic anemia
a)
Increased G6PD
b)
Decreased G6PD
138.
Myocardial infarction
a)
Increased G6PD
b)
Decreased G6PD
139.
Megaloblastic anemia
a)
Increased G6PD
b)
Decreased G6PD
140.
Sensitive test for cholestasis caused by chronic alcohol and drug ingestion
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
141.
Confirmatory for hepatic neoplasms without jaundice
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
142.
Method include: Szass. Rosalki, T arrow, and Orlowski
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
143.
Method include: Szass.
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
144.
Method include: Rosalki & T arrow
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
145.
Method include: Orlowski
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
146.
Differentiates the cause of increased ALT
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
147.
Its location is canaliculi of the hepatic cells and biliary duct linings along with ALT, and 5'N.
a)
Gamma glutamyl transaminase peptidase/transferase (GGT)
b)
Pseudocholinesterase (PChE)
c)
Glucose-6-phosphate dehydrogenase
148.
GGT method
a)
Szass, Rosalki & T arrow, Orlowski
b)
Ellman Technique, Potentiometric
c)
Specimen
149.
Pseudocholinesterase (PChE) method
a)
Szass, Rosalki & T arrow, Orlowski
b)
Ellman Technique, Potentiometric
c)
Specimen
150.
Glucose-6-phosphate dehydrogenase method
a)
Szass, Rosalki & T arrow, Orlowski
b)
Ellman Technique, Potentiometric
c)
Specimen
151.
Deficiency leads to ammonia buildup
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
152.
Marker of hepatobiliary diseases - increased
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
153.
It is also known as peptidyl-dipeptidase A or kininase II
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
154.
Its major source is the vascular endothelium of the lungs and kidneys
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
155.
Part of the Renin-angiotensin system (RAS), a water retention system.
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
156.
It is a diagnostic test for sarcoidosis (an inflammatory disorder where your immune cells accumulate)
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
157.
Indicator of neuronal dysfunction (Alzheimer's disease-CSF)
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
158.
A copper-carrying protein and also an enzyme
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
159.
A marker for Wilson's disease (hepatolenticular diseases
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
160.
Source: pancreas
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
161.
Function: a major enzyme that serves as an activator of digestive proenzymes
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
162.
More specific than amylase in acute pancreatitis
a)
Ornithine Carbamoyl transferase (OCT) / Ornithine Transcarbamylase (OTC)
b)
Angiotensin-Converting Enzyme
c)
Ceruloplasmin
d)
Trypsin
163.
In hepatolenticular diseases/Wilson's disease, ceruloplasmin is..
a)
Increased Ceruloplasmin
b)
Decreased Ceruloplasmin
164.
In hepatobilliary diseases, OTC/OCT is..
a)
Increased OCT/OTC
b)
Decreased OCT/OTC
165.
5'Nucleotidase: Increased Alkaline phosphatase: Increased GGT: Increased
a)
Liver disorders
b)
Bone disorders
c)
Biliary tract obstruction
166.
5'Nucleotidase: Normal Alkaline phosphatase: Increased GGT: Normal
a)
Liver disorders
b)
Bone disorders
c)
Biliary tract obstruction