Gmelin's test
Summary
TLDRThis procedure describes a test to detect the presence of bile salts in urine using a method called Melon’s Test. The process involves adding 5 ml of concentrated nitric acid to a test tube and then carefully introducing 5 ml of the urine sample along the sides of the test tube. A colored ring—green, blue, yellow, or red—forming at the junction of the two solutions indicates the presence of bile pigments, confirming a positive result for bile salts in the urine.
Takeaways
- 😀 Bile salts can be detected in a urine sample using a simple chemical test.
- 😀 The test involves the use of concentrated nitric acid and urine sample in a test tube.
- 😀 5 ml of concentrated nitric acid is added to the test tube as the first step.
- 😀 5 ml of the urine sample is carefully added to the test tube along the sides to avoid mixing initially.
- 😀 The key indication of the presence of bile salts is the formation of a colored ring at the junction of the two liquids.
- 😀 The colored ring can appear in different colors, such as green, blue, yellow, or red.
- 😀 The appearance of the ring signifies the presence of bile pigments in the urine sample.
- 😀 The test primarily detects bile pigments rather than bile salts themselves.
- 😀 The different colors of the ring provide a qualitative indication of bile pigment presence.
- 😀 This method is relatively simple and can be performed in a standard laboratory setting.
Q & A
What is the purpose of the Melon’s test in this procedure?
-The purpose of Melon’s test is to detect the presence of bile pigments in a urine sample.
What is the first step of the Melon’s test procedure?
-The first step is to take 5 mL of concentrated nitric acid and place it in a test tube.
How should the urine sample be added to the test tube during the Melon’s test?
-The urine sample should be added slowly along the sides of the test tube to form a layered solution.
What indicates the presence of bile pigments in the urine sample during this test?
-The formation of a green, blue, yellow, or red ring at the junction of the two solutions indicates the presence of bile pigments.
What does the formation of a colored ring suggest in the test?
-The formation of a colored ring (green, blue, yellow, or red) suggests that bile pigments, such as bilirubin, are present in the urine.
What is the role of nitric acid in Melon’s test?
-Nitric acid acts as a reagent to help react with bile pigments in the urine, enabling their detection.
Why is it important to add the urine sample slowly along the sides of the test tube?
-Adding the urine sample slowly along the sides of the test tube helps maintain the layered structure of the two liquids, allowing for a clearer observation of the color change.
What type of pigments does this test detect in the urine?
-Melon’s test detects bile pigments, particularly bilirubin, which can indicate liver or bile duct conditions.
What precautions should be taken when performing this test?
-Safety precautions should be taken when handling concentrated nitric acid, as it is a hazardous chemical. Proper protective equipment like gloves and goggles should be worn.
What is the significance of the color change at the junction of the two solutions?
-The color change at the junction of the two solutions indicates that bile pigments, typically found in bile, are present in the urine, which may be a sign of liver dysfunction or bile duct obstruction.
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