Blue baby syndrome can refer to conditions that cause cyanosis, or blueness of the skin, in babies as a result of low blood oxygen levels. This term traditionally refers to cyanosis as a result of:.
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Cyanotic heart disease, which is a category of
congenital heart defect
A congenital heart defect (CHD), also known as a congenital heart anomaly, congenital cardiovascular malformation, and congenital heart disease, is a defect in the structure of the heart or great vessels that is present at birth. A congenital h ...
that lowers blood oxygen levels.
It can be caused by reduced blood flow to the lungs or by mixing oxygenated and deoxygenated blood.
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Methemoglobinemia
Methemoglobinemia, or methaemoglobinaemia, is a condition of elevated methemoglobin in the blood. Symptoms may include headache, dizziness, shortness of breath, nausea, poor muscle coordination, and blue-colored skin (cyanosis). Complications ma ...
, which is a disease defined by high levels of methemoglobin in the blood. Increased levels of
methemoglobin
Methemoglobin (British: methaemoglobin, shortened MetHb) (pronounced "met-hemoglobin") is a hemoglobin ''in the form of metalloprotein'', in which the iron in the heme group is in the Fe3+ (ferric) state, not the Fe2+ (ferrous) of normal hemoglobin ...
prevent oxygen from being released into the tissues and result in hypoxemia.
Although these are the most common causes of cyanosis, other potential factors can cause a blue tint to a baby's skin or mucous membranes. These factors include hypoventilation, perfusion or ventilation differences in the lungs, and poor cardiac output of oxygenated blood, among others. The blue baby syndrome or cyanosis occurs when absolute amount of deoxygenated hemoglobin > 3g/dL which is typically reflected with an O
2 saturation of < 85 %.
Both of these conditions cause
cyanosis
Cyanosis is the change of Tissue (biology), tissue color to a bluish-purple hue, as a result of decrease in the amount of oxygen bound to the hemoglobin in the red blood cells of the capillary bed. Cyanosis is apparent usually in the Tissue (bi ...
, or a bluish discoloration of skin or mucous membranes. Normally, oxygenated blood appears red and deoxygenated blood has more of a blue appearance. In babies with low levels of oxygen or mixing of oxygenated and deoxygenated blood, the blood can have a blue or purple color, causing cyanosis.
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Signs and symptoms
The main sign of blue baby syndrome is cyanosis. Depending on the underlying cause of the cyanosis, additional symptoms may be:
* Failure to thrive
* Lethargy
* Nasal flaring
* Rapid heartbeat
* Rapid respiratory rate
* Seizures
* Shortness of breath
Causes
Blue baby syndrome has been attributed to cyanotic congenital heart diseases and methemoglobinemia, however there are additional causes that could result in a baby becoming cyanotic, such as:
* Airway obstruction
* Decreased blood perfusion
* Disordered control of breathing (ex: cyanotic breath-holding spells, seizures)
* Pulmonary/lung disorders (ex: pulmonary hypertension, cystic fibrosis)
* Respiratory distress syndrome
Mechanism
Cyanotic heart disease
Specific types of congenital heart defects cause blood to bypass the lungs by shunting directly from the right side of the heart to the left side, leading to cyanosis. In these defects, deoxygenated blood enters the systemic circulation, giving the skin a bluish color and causing the baby to appear cyanotic. Infants with these types of heart defects may have a persistent bluish tint to their skin, or they may have intermittent episodes of cyanosis. The degree of cyanosis is dependent on the extent of deoxygenated blood mixing with oxygenated blood before being pumped into the systemic circulation.
Cardiac conditions in which there is decreased blood flow to the lungs such as, tetralogy of Fallot or pulmonary valve atresia, result in less blood becoming oxygenated. There are also cardiac conditions such as transposition of the great arteries or truncus arteriosus, that results in an overall increase in blood flow to the lungs but with limited flow of the oxygenated blood to the rest of the body. Conditions in which there is poor blood flow to the systemic circulation, such as coarctation of the aorta suggests that the body does not receive the oxygenated blood it requires with resultant cyanosis.
The five most common cyanotic heart defects that may result in Blue Baby Syndrome include the following:
Methemoglobinemia
Methemoglobinemia
Methemoglobinemia, or methaemoglobinaemia, is a condition of elevated methemoglobin in the blood. Symptoms may include headache, dizziness, shortness of breath, nausea, poor muscle coordination, and blue-colored skin (cyanosis). Complications ma ...
can be acquired or congenital. It occurs when the iron
Iron is a chemical element; it has symbol Fe () and atomic number 26. It is a metal that belongs to the first transition series and group 8 of the periodic table. It is, by mass, the most common element on Earth, forming much of Earth's o ...
in hemoglobin
Hemoglobin (haemoglobin, Hb or Hgb) is a protein containing iron that facilitates the transportation of oxygen in red blood cells. Almost all vertebrates contain hemoglobin, with the sole exception of the fish family Channichthyidae. Hemoglobin ...
is oxidized
Redox ( , , reduction–oxidation or oxidation–reduction) is a type of chemical reaction in which the oxidation states of the reactants change. Oxidation is the loss of electrons or an increase in the oxidation state, while reduction is ...
from Fe2+ to Fe3+, leading to poor binding of oxygen
Oxygen is a chemical element; it has chemical symbol, symbol O and atomic number 8. It is a member of the chalcogen group (periodic table), group in the periodic table, a highly reactivity (chemistry), reactive nonmetal (chemistry), non ...
. Additionally, the oxygen that is already bound is held more tightly to the hemoglobin due to a higher affinity, resulting in less oxygen delivery. A methemoglobin level > 1.5 g/dL causes cyanosis
Cyanosis is the change of Tissue (biology), tissue color to a bluish-purple hue, as a result of decrease in the amount of oxygen bound to the hemoglobin in the red blood cells of the capillary bed. Cyanosis is apparent usually in the Tissue (bi ...
. The most common congenital cause is a deficiency in the enzyme
An enzyme () is a protein that acts as a biological catalyst by accelerating chemical reactions. The molecules upon which enzymes may act are called substrate (chemistry), substrates, and the enzyme converts the substrates into different mol ...
cytochrome b5 reductase
Cytochrome-''b''5 reductase is a NADH-dependent enzyme that converts ferricytochrome from a Fe3+ form to a Fe2+ form. It contains FAD and catalyzes the reaction:
In its b5-reducing capacity, this enzyme is involved in desaturation and elongat ...
which reduces methemoglobin
Methemoglobin (British: methaemoglobin, shortened MetHb) (pronounced "met-hemoglobin") is a hemoglobin ''in the form of metalloprotein'', in which the iron in the heme group is in the Fe3+ (ferric) state, not the Fe2+ (ferrous) of normal hemoglobin ...
in the blood.
However, in infants the most common cause of methemoglobinemia is acquired through the ingestion of nitrate
Nitrate is a polyatomic ion with the chemical formula . salt (chemistry), Salts containing this ion are called nitrates. Nitrates are common components of fertilizers and explosives. Almost all inorganic nitrates are solubility, soluble in wa ...
s () through well water
A well is an excavation or structure created on the earth by digging, driving, or drilling to access liquid resources, usually water. The oldest and most common kind of well is a water well, to access groundwater in underground aquifers. The ...
or foods. Nitrite
The nitrite polyatomic ion, ion has the chemical formula . Nitrite (mostly sodium nitrite) is widely used throughout chemical and pharmaceutical industries. The nitrite anion is a pervasive intermediate in the nitrogen cycle in nature. The name ...
s () produced by the microbial reduction of nitrate (directly in the drinkwater, or after ingestion by the infant, in his digestive system) are more powerful oxidizers than nitrates and are the chemical agent really responsible of the oxidation
Redox ( , , reduction–oxidation or oxidation–reduction) is a type of chemical reaction in which the oxidation states of the reactants change. Oxidation is the loss of electrons or an increase in the oxidation state, while reduction is ...
of Fe2+ into Fe3+ in the tetrapyrrole
Tetrapyrroles are a class of chemical compounds that contain four pyrrole or pyrrole-like rings. The pyrrole/pyrrole derivatives are linked by ( or units), in either a linear or a cyclic fashion. Pyrroles are a five-atom ring with four carbon ...
heme
Heme (American English), or haem (Commonwealth English, both pronounced /Help:IPA/English, hi:m/ ), is a ring-shaped iron-containing molecule that commonly serves as a Ligand (biochemistry), ligand of various proteins, more notably as a Prostheti ...
of hemoglobin
Hemoglobin (haemoglobin, Hb or Hgb) is a protein containing iron that facilitates the transportation of oxygen in red blood cells. Almost all vertebrates contain hemoglobin, with the sole exception of the fish family Channichthyidae. Hemoglobin ...
. Infants younger than 4 months are at greater risk given that they drink more water per body weight, they have a lower NADH
Nicotinamide adenine dinucleotide (NAD) is a coenzyme central to metabolism. Found in all living cells, NAD is called a dinucleotide because it consists of two nucleotides joined through their phosphate groups. One nucleotide contains an ade ...
- cytochrome b5 reductase
Cytochrome-''b''5 reductase is a NADH-dependent enzyme that converts ferricytochrome from a Fe3+ form to a Fe2+ form. It contains FAD and catalyzes the reaction:
In its b5-reducing capacity, this enzyme is involved in desaturation and elongat ...
activity, and they have a higher level of fetal hemoglobin
Fetal hemoglobin, or foetal haemoglobin (also hemoglobin F, HbF, or α2γ2) is the main oxygen carrier protein in the human fetus. HemoglobinF is found in fetal red blood cells, and is involved in transporting oxygen from the mother's bloodstream ...
which converts more easily to methemoglobin
Methemoglobin (British: methaemoglobin, shortened MetHb) (pronounced "met-hemoglobin") is a hemoglobin ''in the form of metalloprotein'', in which the iron in the heme group is in the Fe3+ (ferric) state, not the Fe2+ (ferrous) of normal hemoglobin ...
. Additionally, infants are at an increased risk after an episode of gastroenteritis due to the production of nitrite
The nitrite polyatomic ion, ion has the chemical formula . Nitrite (mostly sodium nitrite) is widely used throughout chemical and pharmaceutical industries. The nitrite anion is a pervasive intermediate in the nitrogen cycle in nature. The name ...
s by bacteria
Bacteria (; : bacterium) are ubiquitous, mostly free-living organisms often consisting of one Cell (biology), biological cell. They constitute a large domain (biology), domain of Prokaryote, prokaryotic microorganisms. Typically a few micr ...
. The sources of nitrate can include fertilizer
A fertilizer or fertiliser is any material of natural or synthetic origin that is applied to soil or to plant tissues to supply plant nutrients. Fertilizers may be distinct from liming materials or other non-nutrient soil amendments. Man ...
s used in agricultural lands, waste dumps or pit latrine
A pit latrine, also known as pit toilet, is a type of toilet that collects human waste in a hole in the ground. Urine and feces enter the pit through a drop hole in the floor, which might be connected to a toilet seat or squatting pan for user ...
s. For example, nitrate levels are subject to monitoring to comply with drinking water quality standards in the United States and other countries. The link between blue baby syndrome and nitrates in drinking water is widely accepted, but as of 2006 some studies indicated that other contaminants or dietary nitrate sources, might also play a role in the syndrome.
Diagnosis
When diagnosing blue baby syndrome, it is important to perform a thorough history and physical exam. When obtaining the history, it is important to determine the timing of symptoms and to ask about risk factors/exposures, such as prenatal history or access to well-water.
On physical exam it is important to visualize where the cyanosis is present to differentiate between peripheral and central cyanosis
Cyanosis is the change of Tissue (biology), tissue color to a bluish-purple hue, as a result of decrease in the amount of oxygen bound to the hemoglobin in the red blood cells of the capillary bed. Cyanosis is apparent usually in the Tissue (bi ...
. Central cyanosis is typically visible as a blueish discoloration over the entire body and mucous membranes. In contrast, peripheral cyanosis typically has a blueish discoloration over the extremities. Cyanosis can be noted in babies around the lips, tongue, and sublingual area, where the skin is thinnest. In addition, it is important to observe the infant for signs of respiratory distress, visualized as nasal flaring, subcostal retractions, etc. Examination should include a respiratory and cardiac assessment.
One of the key tools in diagnosing is a pulse oximeter
Pulse oximetry is a noninvasive method for monitoring blood oxygen saturation. Peripheral oxygen saturation (SpO2) readings are typically within 2% accuracy (within 4% accuracy in 95% of cases) of the more accurate (and invasive) reading of art ...
to determine oxygen saturation
Oxygen saturation (symbol SO2) is a relative measure of the concentration of oxygen that is Dissolution (chemistry), dissolved or carried in a given medium as a proportion of the maximal concentration that can be dissolved in that medium at the g ...
. While severe cyanosis can be easily noticed, an oxygen saturation as low as 80 % causes only mild clinical cyanosis that is difficult to see. Additionally an arterial blood gas is useful, for example in the case of methemoglobinemia the PO2 can be expected to be normal even with a low oxygen saturation. Additional work up includes a complete blood count, blood glucose
The blood sugar level, blood sugar concentration, blood glucose level, or glycemia is the measure of glucose concentrated in the blood. The body tightly blood sugar regulation, regulates blood glucose levels as a part of metabolic homeostasis ...
, blood culture, chest X-ray, and an echocardiography
Echocardiography, also known as cardiac ultrasound, is the use of ultrasound to examine the heart. It is a type of medical imaging, using standard ultrasound or Doppler ultrasound. The visual image formed using this technique is called an ec ...
.
Babies with cyanosis due to congenital heart disease usually present with symptoms hours to days after birth. In addition to cyanosis, they often show signs of tachypnea
Tachypnea, also spelt tachypnoea, is a respiratory rate greater than normal, resulting in abnormally rapid and shallow breathing.
In adult humans at rest, any respiratory rate of 1220 per minute is considered clinically normal, with tachypnea b ...
(fast breathing), a heart murmur, and decreased peripheral pulses. If congenital heart disease is suspected in a newborn, doctors will likely perform several tests to evaluate the heart, including a chest x-ray
A chest radiograph, chest X-ray (CXR), or chest film is a Projectional radiography, projection radiograph of the chest used to diagnose conditions affecting the chest, its contents, and nearby structures. Chest radiographs are the most common fi ...
, echocardiogram
Echocardiography, also known as cardiac ultrasound, is the use of ultrasound to examine the heart. It is a type of medical imaging, using standard ultrasound or Doppler ultrasound. The visual image formed using this technique is called an echo ...
, and electrocardiogram. In tetralogy of Fallot
Tetralogy of Fallot (TOF), formerly known as Steno-Fallot tetralogy, is a congenital heart defect characterized by four specific cardiac defects. Classically, the four defects are:
* Pulmonary stenosis, which is narrowing of the exit from the r ...
, episodes in which infants become cyanotic are called tet spells, typically occurring during feeding or crying. When older, children may squat to feel relief since this increases the systemic vascular resistance causing more blood to go towards the lungs, resulting in increased oxygenation.
Babies with cyanosis due to methemoglobinemia also usually present with cyanosis in the neonatal period, but pulse oximetry may be falsely elevated and does not always reveal low blood oxygen saturation. A CO-oximeter can be used to detect levels of methemoglobin in the blood if methemoglobinemia is suspected, by seeing the difference between oxygen saturation on an arterial blood gas and the measurement on a co-oximeter. Additionally, a direct methemoglobin level can be obtained.
Prevention/Screening
As of 22 May 2007, the United States Environmental Protection Agency has established a maximum contaminant level of 10 mg/L for nitrate and 1 mg/L for nitrite in drinking water due to the potential harmful effects in infants.
A screening tool has been developed to screen for critical cardiac defects, which refers to cardiac lesions that require surgery or intervention in the 1st year of life. Screening for critical congenital heart defects should be done on all newborns after 24hours or shortly before discharge. Oxygen saturation is measured in the right hand and either foot.
A screening is considered positive if:
* Oxygen saturation < 90 % in either extremity,
* Oxygen saturation 90-94 % in both extremities on 3 measurements separated by an hour each,
* Oxygen saturation difference > 3 % between both extremities on 3 measurements separated by an hour each.
Management
Treatment for blue baby syndrome will depend on the underlying cause.
When evaluating a patient for cyanosis or respiratory distress, vital signs should be monitored, especially the patient's heart rate and oxygen saturation. It is beneficial to have vascular access established. In newborns, the pulse oximeter is typically placed on the right hand to determine pre-ductal oxygenation, referring to oxygenation before the ductus arteriosus
The ductus arteriosus, also called the ductus Botalli, named after the Italian physiologist Leonardo Botallo, is a blood vessel in the developing fetus connecting the trunk of the pulmonary artery to the proximal descending aorta. It allows mos ...
(connection between aorta
The aorta ( ; : aortas or aortae) is the main and largest artery in the human body, originating from the Ventricle (heart), left ventricle of the heart, branching upwards immediately after, and extending down to the abdomen, where it splits at ...
and pulmonary artery
A pulmonary artery is an artery in the pulmonary circulation that carries deoxygenated blood from the right side of the heart to the lungs. The largest pulmonary artery is the ''main pulmonary artery'' or ''pulmonary trunk'' from the heart, and ...
). This gives the oxygenation level the heart and brain receive. Traditionally, supplemental oxygen is given in an escalating manner beginning with free-flowing oxygen, progressing to positive pressure ventilation or continuous positive airway pressure, and ending with mechanical intubation. The goal oxygen saturation is between 85 and 95 %. If an infant requires supplemental oxygen for a prolonged time it should be heated and humidified to avoid heat loss.
Cyanotic heart disease
Some babies born with cyanotic heart disease are treated with prostaglandin E1
Prostaglandin E1 (PGE1) is a naturally occurring prostaglandin with various medical uses. Alprostadil and misoprostol are synthetic forms of prostaglandin E1 used as medications. Lubiprostone, a derivative of prostaglandin E1, is also used as ...
after birth to keep the ductus arteriosus
The ductus arteriosus, also called the ductus Botalli, named after the Italian physiologist Leonardo Botallo, is a blood vessel in the developing fetus connecting the trunk of the pulmonary artery to the proximal descending aorta. It allows mos ...
open and allow for more oxygenated blood
Blood is a body fluid in the circulatory system of humans and other vertebrates that delivers necessary substances such as nutrients and oxygen to the Cell (biology), cells, and transports Metabolic waste, metabolic waste products away from th ...
to be pumped to the body. Many also receive oxygen therapy
Oxygen therapy, also referred to as supplemental oxygen, is the use of oxygen as medical treatment. Supplemental oxygen can also refer to the use of oxygen enriched air at altitude. Acute indications for therapy include hypoxemia (low blood o ...
to increase the percentage of oxygen in the blood. Most of these babies will require surgery during infancy to correct their structural heart defect.
Severe methemoglobinemia
The first-line treatment for severe methemoglobinemia is methylene blue
Methylthioninium chloride, commonly called methylene blue, is a salt used as a dye and as a medication. As a medication, it is mainly used to treat methemoglobinemia. It has previously been used for treating cyanide poisoning and urinary trac ...
, a medication that will reduce
Reduction, reduced, or reduce may refer to:
Science and technology Chemistry
* Reduction (chemistry), part of a reduction-oxidation (redox) reaction in which atoms have their oxidation state changed.
** Organic redox reaction, a redox reacti ...
methemoglobin in the blood. This is possible because methylene blue oxidizes NADPH
Nicotinamide adenine dinucleotide phosphate, abbreviated NADP or, in older notation, TPN (triphosphopyridine nucleotide), is a cofactor used in anabolic reactions, such as the Calvin cycle and lipid and nucleic acid syntheses, which require N ...
, which in turn can convert methemoglobin back to hemoglobin.
Epidemiology
Out of all the babies born with congenital heart defects, about 25 % have cyanosis as a result. Tetralogy of Fallot
Tetralogy of Fallot (TOF), formerly known as Steno-Fallot tetralogy, is a congenital heart defect characterized by four specific cardiac defects. Classically, the four defects are:
* Pulmonary stenosis, which is narrowing of the exit from the r ...
is the most common cyanotic cardiac heart defect.
Methemoglobinemia is considered to be rare, with acquired methemoglobinemia encountered more than the congenital form.
Outcomes
In the case of cyanotic causing heart defects, about 75 % of infants survive to 1 year of age and 69 % survive to 18 years of age. These individuals have an increased risk of developmental delay, heart failure, or heart rhythm disorders.
Methemoglobinemia responds well to treatment, its prognosis is associated with the level of methemoglobinemia and the degree of end organ damage it can cause. Death can occur when levels reach 70 %.
History
The first successful operation to treat blue baby syndrome caused by tetralogy of Fallot
Tetralogy of Fallot (TOF), formerly known as Steno-Fallot tetralogy, is a congenital heart defect characterized by four specific cardiac defects. Classically, the four defects are:
* Pulmonary stenosis, which is narrowing of the exit from the r ...
occurred at Johns Hopkins University in 1944. Through a collaboration between pediatric cardiologist Helen Taussig
Helen Brooke Taussig (May 24, 1898 – May 20, 1986) was an American cardiologist, working in Baltimore and Boston, who founded the field of pediatric cardiology. She is credited with developing the concept for a procedure that would extend the l ...
, surgeon Alfred Blalock
Alfred Blalock (April 5, 1899 – September 15, 1964) was an American surgeon most noted for his work on the medical condition of shock as well as tetralogy of Fallot – commonly known as blue baby syndrome. He created, with assistance from ...
, and surgical technician Vivien Thomas, the Blalock-Thomas-Taussig shunt was created. Dr. Taussig had recognized that children with Tetralogy of Fallot who also had a patent ductus arteriosus
Patent ductus arteriosus (PDA) is a medical condition in which the ''ductus arteriosus'' fails to close after childbirth, birth: this allows a portion of oxygenated blood from the left heart to flow back to the lungs from the aorta, which has a h ...
(PDA) typically lived longer, so the trio tried to create the same effect as a PDA by joining the subclavian artery to the pulmonary artery, relieving the child's cyanosis. The operation was published in the Journal of the American Medical Association in 1945 and impacted management of blue babies around the world.
Anna was the name of the dog who was the first survivor of the surgery, considered an experimental procedure at the time. Anna survived the first pulmonary bypass after having been operated on twice. The second operation was required to replace the original stitches with flexible ones. After their success with Anna, Blalock and Thomas had the courage to perform the very first open heart surgery on Eileen Saxon in 1944. In 1950, Anna's story was made into a movie, and the film has been shown to various schools and other groups.
References
{{DEFAULTSORT:Blue Baby Syndrome
Neonatology
Syndromes affecting the heart