In medically advanced countries, hypertension is the most common serious
chronic disease, affecting about a half of the population over 50 years
of age. Arterial hypertension is defined clinically as borderline when it
riches 140/90 mm Hg and hypertensive when 165/95 mm Hg.
There is elevation of systolic pressure alone, (systolic hypertension)
or elevation, of both systolic - and diastolic pressure (diastolic
hypertension), both have an increased risk of serious complications, but
diastolic hypertension is more dangerous.
Hypertension is classified into two
types:
1. In 90-95% of all cases of hypertension, no cause can been established
– such cases are called essential or idiopathic or
primary.
2. In only 5-10% of all cases of hypertension is any disease, which may
be associated with disturbance of these mechanisms detectable – such cases are secondary hypertension. Examples:
·
Kidney diseases.
·
Hyperfunction of adrenal cortex (Cushing ‘s syndrome –
corticosteroid excess).
·
Tumor of adrenal medulla (pheochromocytoma) –
catecholamine excess.
·
Hypertension occurs in toxemia of pregnancy.
·
This hypertension comprises
5-10% causes of disease.
If these causes of secondary hypertension were
eliminated, hypertension disease would be cure.
According to the clinical course,
both types of hypertension may be benign or malignant.
1. Benign hypertension is moderate elevation of blood pressure and the rise is
slow as the years pass. About 90% of patients of hypertension have benign
disease.
2. Malignant hypertension is
marked and rapid increase of blood pressure to 200/140 mm Hg or more and the
patients have papilledema, hemorrhages and hypertensive encephalopathy.
All the above mechanisms are essentially vaso-constrictor. The possible
roles of vaso-dilator mechanisms – for example the effect of nitric oxide on
vascular smooth muscle – are being currently researched.
The increased peripheral resistance
resulting in sustained hypertension may arise from:
- Increased
sympathetic tone.
- Increased release of renin and generation of angiotensin.
- The presence of vasoconstrictive substances in the circulation.
- Increased sodium load and extracellular fluid load, and finally.
- A postulated excessive responsiveness to the other factors.
Morphology
·
It is important to realize that the central lesion in
most cases of hypertension is a
decrease in the size of the lumen in small muscular arteries and arterioles,
the resistance vessels that control the flow of blood through the capillary
bed.
·
The lumen may be restricted by active contraction of
the vessel wall, an increase in the structural mass of the vessel wall, or
both.
·
The morphologic changes associated with moderate
elevations of blood pressure are too subtle to be detected by simple
histological studies. Small muscular arteries show segmental dilatation as a
result of necrosis of smooth muscle cells.
·
The combination of cell necrosis and deposition of
plasma proteins in the vessel wall is termed fibrinoid necrosis.
·
The period of acute injury is rapidly followed by
smooth muscle proliferation and a striking increase in the number of layers of
smooth muscle cells, which yields the so-called onion-skin appearance. Taken together, these changes are labeled malignant
arteriosclerosis or malignant arteriolosclerosis, depending on the size of the
vessels affected.
Clinical-morphological
stages
1.
Subclinical stage
occurs by hypertrophy of muscular layer and elastic structures of arterioles
and small-sized arteries, spasm of arterioles. At this stage the hypertrophy of
the left ventricle of heart begins.
2.
A stage of general
changes of arteries begins as arterial pressure increases. Arteriolar walls
permeability is increased, it results in plasmatic impregnation and hyalinosis.
Elastic, muscular-elastic and muscular arteries walls undergo elastofibrosis and
atherosclerosis. Elastofibrosis is
characterized by a hyperplasia and breaking of internal elastic membrane and
spreading of connective tissue. Atherosclerotic changes in case of hypertension
are more extensive, the process reaches small-sized arteries of muscular type,
plaques are more often circular, that cause acute mechanical stenosis of the
vessel.
3.
The stage of secondary
changes of organs is developed in connection with changes of arteries and
insufficiency of the intraorganic blood circulation. These changes develop
slowly, that results in atrophy of parenchyma and sclerosis (it’s characteristic of
benign hypertension), quickly (spasm, thrombosis, fibrinoid
necrosis) and causing infarctions and hemorrhages (it’s characteristic of
malignant hypertension).
The main
clinical-morphological forms of essential hypertension
1. Cardiac form
·
Hypertensive heart disease or
hypertensive cardiomyopathy is the disease of the heart resulting from systemic
hypertension of prolonged duration and manifesting by left ventricular
hypertrophy.
·
Often hypertension predisposes
to atherosclerosis. The arterial changes and vascular complications increase
with the severity and duration of the hypertension, but are modified by genetic
factors, environmental factors, sex (females tolerate hypertension better), and
associated diseases.
·
Macroscopically, the most
significant finding is marked hypertrophy of the heart, especially of the left
ventricle. Weight of heart reaches 1 kg, thickness of left
ventricle walls is up to 3 cm, the papillary
muscles are rounded and prominent, and the cardiac chamber is small (concentric
hypertrophy). But when decompensation and
cardiac failure develop, there is eccentric hypertrophy
(myogenic dilation)
with thinning of the ventricular wall and dilation of the left ventricular and
atrial cavities.
·
There
may be dilatation and hypertrophy of right heart as well. Heart is called “cor bovinum”.
2. Cerebral form
(Cerebrovascular diseases.
It is characterized first of
all as impairment of cerebral blood circulation. This hypertension can
result in two main types of parenchymal diseases of the brain:
1) Ischemic brain damage (hypoxic
encephalopathy and cerebral infarction).
·
The pathologic appearance of the
brain in hypoxic encephalopathy varies depending on the duration and severity
of hypoxic episode and the length of survival.
·
Macroscopically, there is focal
softening. The area supplied by distal branches of the cerebral arteries
suffers from the most severe ischemic damage and may develop border zone or
watershed infarcts in the adjacent zones between the territories supplied by
major arteries.
·
Microscopically, the nerve cells
die and disappear and are replaced by reactive fibrillary glia.
·
Cerebral infarction is a localized area of tissue
necrosis caused by local vascular occlusion.
·
Cerebral infarction may be
anemic or hemorrhagic.
·
Macroscopically, an anemic
infarct becomes evident 6 - 12 hours after its occurrence. The affected area is
soft and swollen and there is blurry of junction between gray and white matter.
Within 2-3 days, the infarct undergoes softening and
disintegration.
·
A hemorrhagic infarct is red and
superficially resembles a hematoma. It is usually the result of fragmentation
of occlusive arterial emboli or venous thrombosis.
2) Intracranial hemorrhage (intracerebral
and subarachnoid hemorrhage).
·
Hemorrhage into the brain of
patient with hypertension is intracerebral hemorrhage, which is usually of
hypertensive origin due to rupture of microaneurysm.
·
The common sites of hypertensive
intracerebral hemorrhage are the region of the basal ganglia, medulla and
cerebellum cortex.
·
About 40% of patients die during
the first 3-4 days of hemorrhage, mostly from hemorrhage into the ventricles.
·
The outcome of intracerebral
hemorrhage is cyst formation. Patients can be paralyzed.
3. Renal form
·
Renal form is characterized by chronic
arteriolo-sclerotic nephrosclerosis.
·
Kidneys have a term “primary shrunken
kidneys”.
·
Macroscopically, both kidneys are affected equally and
are reduced in size and weight, often weighting about 6 gm. The capsule is
connected densely to the cortical surface. The surface of the kidney is finely
granular and shows V-shaped areas of scarring. The cut
surface shows firm kidney and narrowed cortex.
·
Microscopically, there are primary diffuse vascular
changes, which produce parenchymal changes and secondary as a result of
ischemia. There is variable degree of atrophy of parenchyma; these include
glomerular shrinkage, deposition of collagen in Bowman's space, periglomerular
fibrosis.
·
Clinical features are variable, elevation of the blood
pressure with headache, dizziness, and palpitation.
·
Renal failure and uremia may occur.
·
In case of malignant hypertension can develop as
hypertonic crisis - acute increase of arterial pressure in communication
(connection) with spasm of arterioles.
·
Morphological appearance of
hypertonic crisis: plasmatic impregnation or fibrinoid necrosis of
arteriolar walls.
The causes of death
among hypertensive patients are the following:
·
Congestive heart
failure.
·
Coronary artery disease.
·
Cerebrovascular
accidents.
·
Uremia.
·
Causes unrelated to
hypertension. The cardiac complications therefore account for 36% of the death.