Showing posts with label urine analysis. Show all posts
Showing posts with label urine analysis. Show all posts

Wednesday, February 24, 2010

Diagnosis and Type of Kidney Disease – Investigations and interpretations

Correlation of clinical and laboratory features is must for an accurate diagnosis and type of a kidney disease (renal disease) or glomerulonephritis. An experienced nephrologist can make a diagnosis of glomerulonephritis from thorough history, physical examination, urine examination and microscopy of urinary sediment. The assessment of presenting features of the patient, such as nephritic or nephrotic syndrome is important. However, the decision on the type of glomerulonephritis can not be based on the clinical and laboratory features; as the nephrotic syndrome may occur with any histological glomerulonephritis, and nephritic syndrome is the outcome of proliferative glomerulonephritis. So the ultimate diagnostic tool is renal biopsy and its light and fluorescent microscopy as well as ultrastructural study by electron microscope.

The interpretation of clinical features in the light of histological diagnosis of renal biopsy helps the clinician to detect any systemic disease associated with the renal disease (kidney disease). Majority of the patients with suspected glomerulonephritis need renal biopsy evaluation. However, in children with nephrotic syndrome; if there is no microscopic hematuria (blood in urine) and red cells' or granular casts, renal biopsy procedure may be avoided initially. In patients, who do not respond to steroid therapy; renal biopsy investigation is must. There are around one million glomeruli (1x106 glomeruli) in each kidney and at least 5 glomeruli should be included in the renal biopsy evaluated histologically to achieve a diagnosis of glomerulonephritis.

Radiological and laboratory investigations in glomerulonephritis:

The clinical presentation, urine-analysis and microscopy findings, and presence of a normal upper & lower urinary tract on intravenous pyelography (IVP: a radiological investigation) or ultrasonography without any renal scarring could be indicative of glomerulonephritis, but there could be a need for renal biopsy.

Immune system associated investigations:

Our body is equipped with a multitasking immune system composed on lymphocytes, antibodies and complement system. The immune system always defends our body internally against a variety of infections and pathological conditions; and assessment of its components and abnormal products produced by it helps in diagnostic conclusions. Complement system of our body is composed of 9-components and boosts the body defense in association with cellular components. The blood level of complement components C3, C4 and C1q may be reduced or normal in some renal diseases. Low total serum complement, C3, C4 and C1q levels are observed in glomerulonephritis associated with circulatory immune complex disorders like systemic-lupus erythematosis (SLE), bacterial endocarditis and serum sickness. Normal levels of C4 and C1q but decreased level of C3 is generally observed in membranoproliferative glomerulonephritis (MPGN) and dense deposit disease of the kidney.

Following investigations are considered important to ascertain the diagnosis and type of glomerulonephritis:

Investigations for likely diagnosis of glomerulonephritis:

  • Clinical presentation
  • Urine analysis (proteinuria, hematuria and electrophoresis)
  • Microscopy of urinary sediment
  • Intravenous pyelography (IVP: Radiological investigation)
  • Abdominal ultrasonography.

Investigations for likely type of glomerulonephritis:

  • Estimation of serum complement components' level
  • Detection of circulating immune complexes
  • Detection of auto-antibodies such as anti-nuclear antibodies (ANA), anti-DNA antibodies and anti-glomerular basement membrane antibodies (anti-GBM antibodies)
  • Renal biopsy

Investigations for assessing the implications of glomerulonephritis and monitoring the effect of therapy:

  • Determination of 24 hour urinary protein
  • Determination of level of serum proteins
  • Determination of serum cholesterol and/or lipid profile
  • Determination of serum creatinine, blood urea and serum electrolytes.

Tuesday, March 24, 2009

Types and Causes of Proteinuria

Proteinuria means the excretion of protein in the urine. A healthy person does not excrete proteins in the urine or the excretion of proteins is less than 150 mg per day. The proteins most commonly found in the urine are those derived from the plasma of blood and consist of a mixture of albumin and globulin. Predominantly albuminuria (excretion of albumin in urine) is detectable on routine urine analysis during a medical examination. Albuminuria could be organic (due to involvement of kidneys or other organs) or functional (due to physiological or biological stress on kidneys). The functional albuminuria is usually intermittent and not accompanied by any symptoms or evidence of kidney disease. Renal function tests and urinary deposits are found to be normal during the functional albuminuria. It may be connected with posture; being absent when the person is lying down and present when standing. The functional albuminuria usually clears up in early adult life and seems to be associated with the growth and development of kidneys. Any severe stress may also lead to transient albuminuria. Exposure to severe cold and excessive exercise or physical activity may cause functional or transient proteinuria. However, there is nothing to worry about as the functional albuminuria is self limiting with respect to the cause. Mild to moderate functional albuminuria may also be detected during last two months of pregnancy due to pressure on kidneys.

Organic albuminuria is of three types: 1) Renal Albuminuria - When the cause is the kidney disease. 2) Pre-renal Albuminuria - When the kidneys are affected secondarily to some other disease. Post-renal Albuminuria - When the protein is added to the urine after it has left the renal tubules.

  1. Renal Albuminuria: It is found in all forms of kidney disease. The cause of renal disorder or kidney disease may be inflammatory (infectious), degenerative (immunological) or destructive (toxic or malignant). The plasma globulin and red blood cells (RBCs) may also be excreted along with albumin during some renal disorders. The urine would be smoky in color if macroscopic hematuria (blood in urine) is also associated with proteinuria. The cases of acute glomerulonephritis may excrete 0.5 to 2.0 percent (0.5 g to 2.0 g/dl) protein in the urine, whereas the cases affected by chronic glomerulonephritis generally excrete less than 0.5 percent (0.5 g/dl) protein in the urine. The amount of protein excreted daily would vary depending on the volume of urine voided daily. The ratio of albumin to globulin excreted in the urine may vary from 10:1 to 5:1. A routine and quantitative urine analysis is required to evaluate the extent of excretion of proteins in the urine.

  2. Pre-renal Albuminuria: It is found in a variety of conditions exerting stress on the kidneys. The pre-renal albuminuria usually disappears when the primary disease is cured. Impairment of renal circulation due to dehydration, diarrhea or vomiting, blood loss due to accidental injuries or anemia are the most common conditions, which could lead to pre-renal albuminuria.

  3. Post-renal Albuminuria: The proteinuria or albuminuria is termed as post-renal albuminuria if protein is possibly added to the urine as it passes along the urinary tract after leaving the urinary tubules of the kidneys. The major causes of the post-renal albuminuria are the lesions of the renal pelvis or urinary bladder. Lesions of the prostate (in male patients) and urethra also lead to post-renal albuminuria. Admixture of discharges from the vagina (in female patients) and semen (in male patients) may also give positive tests for protein.

Sunday, August 31, 2008

Albumin & Casts in Urine and Associated Renal Lesions

Urine analysis is the cheapest and routine investigation which could be of great help to the clinician to reach at a diagnosis of a complex renal disorder. Albuminuria (excretion of albumin in urine) detected on heat test of the urine and the casts detected on microscopic examination of first morning specimen of urine reveal a lot about the associated renal lesions (pathological changes in kidney). Albuminuria we know definitely to be glomerular origin, although the tubules may also play their part in its production. It seems probable that this is mainly due to the glomerular basement membrane (GBM) which separates the epithelium of the tuft from the endothelium lining the capillaries, with increase of its permeability.

Casts are the microscopic accumulations of cells or coagulated proteins or lipids. Casts if present could be detected on microscopic examination of deposit obtained after centrifugation of urine. The casts must also be traced to the glomerulus, at least the essential hyaline matrix of the cast composed of coagulated albumin. Again the tubules add their contribution in the shape of epithelial cells and fatty and granular detritus which give to the casts their characteristic appearance. Careful examination casts is as informative as blood biochemistry investigations in cases of kidney disease. The cast gives a picture of the degenerative changes in the tubules. A hyaline cast indicates slight glomerular leakage without active tubular degeneration. Cellular casts denote marked activity of the morbid process. Granular casts denote moderate activity. The admixture of red blood cells (RBCs) is a sign of glomerular hemorrhage. We find that the study of casts is of remarkable importance in assessing the prognosis of a renal disorder. As long as there is considerable activity there is a scope for improvement. For such a study to be of value, the urine should be fresh. If the urine is alkaline or has been allowed to stand for long time, the casts may largely disappear. The absence of casts in an alkaline urine has not the same significance as when the urine is acidic. The acidity of the urine assists in the formation of casts. Deposition of casts in the tubules may lead to oliguria (low output of urine) leading to edema.

Saturday, August 2, 2008

Urine Analysis: Physical and Chemical Characteristics of Normal Urine

Urine analysis infers valuable information in a variety of ailments. Physical characteristics of urine have been used as diagnostic and prognostic tool from the time immemorial by the health physicians. We know that the major functions of kidneys are:

  1. Removal of water not needed by the body fluids, the amount depending on the balance between glomerular filtrate and he degree of tubular reabsorption;
  2. The excretion of certain substances normally present in the plasma when their concentration rises above a certain level;
  3. The selective reabsorption of substances such as glucose which are of value to the body;
  4. The excretion of useless substances; and
  5. Regulation of acid base balance.

Disordered renal function may lead to a change in the volume of the urine excreted per day along with remarkable changes in its physical and chemical properties and microscopic contents. Urine analysis is the very first investigation of diagnostic importance not only in renal disorders but also in other diseases like diabetes, liver disease, jaundice etc. In diagnostic pathology the extent of abnormalities could only be understood in comparison with the reference values obtained from similar investigations in normal individuals. Hence, it is important to have an understanding of normal parameters of physical and chemical characteristics of urine.

Characteristics of normal urine:

  1. Quantity: The quantity averages 1500 to 2000 ml in an adult man daily. It may vary with the amount of fluid taken. In fact it is linked with the protein metabolism; higher is the protein intake higher will be the urinary output since the urea produced from the protein needs to be flushed out from the body. Higher is the urea production in the body, the higher is the volume of urine to excrete it.
  2. Color: The color should be clear pale amber without any deposits. However, a light flocculent cloud of mucus may sometimes be seen floating in the normal urine.
  3. Specific gravity: It varies from 1.010 to 1.025. Specific gravity is determined with urinometer.
  4. Odor: The odor is aromatic.
  5. Reaction: The reaction of normal urine is slightly acidic with an average pH of 6.0.

Composition of normal urine: Urine is mainly composed of water, urea and sodium chloride. I an adult taking about 100 g protein in 24 hours, the composition of urine is likely to be as follows:

  1. Water: Near about 96%
  2. Solids: About 4% (urea 2% and other metabolic products 2%. Other metabolic products include: uric acid, creatinine, electrolytes or salts such as sodium chloride, potassium chloride and bicarbonate).
  • Urea is one of the end products of protein metabolism. It is prepared from the deaminated amino-acid in the liver and reach the kidneys through blood circulation (The normal blood urea level is 20-40 mg/dl). About 30 gram urea is excreted by the kidneys daily.
  • Uric Acid: The normal level of uric acid in blood is 2 to 6 mg/dl and about 1.5 to 2 gram is excreted daily in urine.
  • Creatinine: Creatinine is the metabolic waste of creatin in muscle. Purine bodies, oxalates, phosphates, sulphates and urates are the other metabolic products.
  • Electrolytes or salts such as sodium chloride and potassium chloride are also excreted in the urine to maintain the normal level in blood. These are the salts which are the part of our daily diet and are always taken in excess and need to be excreted to maintain normal physiological balance.