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The spectrum of the DiGeorge syndrome.

Clinical and autopsy data on 25 patients with DiGeorge syndrome and its variants are presented. Congenital heart disease was the most common presenting complaint; 15 patients came to medical attention in the first 48 hours of life because of cyanosis, cardiac murmurs, or tachycardia and tachypnea. Two unusual anomalies, interrupted aortic arch or truncus arteriosus, were seen in 17 patients. Clinically documented hypocalcemia associated with seizures was seen in ten patients, with a median age at onset of eight days. Fifteen of our 25 patients died at less than one month of age. Most of the patients surviving the first month of life developed purulent rhinitis, maculopapular rashes, failure to thrive, and developmental delay. Sixteen patients had major congenital anomalies not localized to the anterior neck and thorax; these anomalies included arhinencephaly, cleft lip, palate, or uvula, diaphragmatic abnormalities, hydronephrosis, malrotation of the gut and imperforate anus. The 24 autopsied cases constitute 0.7% of the 3,469 sequential postmortem studies done in the period 1950--1975 at The Children's Orthopedic Hospital and Medical Center.

Autopsy

DiGeorge syndrome presenting as severe congenital heart disease in the newborn.

In seven infants with DiGeorge syndrome the major clinical manifestation was cardiac failure in the 1st week of life. All had severe congenital heart disease: five had interruption of the aortic arch and associated lesions, one had a ventricular septal defect and a cervical aorta, and one had truncus arteriosus. All but one died by 2 weeks of age. Necropsy data lent support to the hypothesis of a relation between the cardiovascular anomalies and defective development of structures derived from the third and fourth pharyngeal pouches.

Aorta, Thoracic

Successful restoration of immunity in the DiGeorge syndrome with fetal thymic epithelial transplant.

A 13-month-old girl presented with right upper lobe pneumonia and hypocalcaemic seizures: investigations showed hypoparathyroidism and impaired cell-mediated immune responses. Other features of the DiGeorge syndrome included hypertelorism, short philtrum of the lip, right-sided aortic arch, and aberrant origin of the left subclavian artery. Successful restoration of the immunodeficiency was achieved by transplantation of fetal thymic epithelium.

DiGeorge Syndrome

[Thymus implant in a case of DiGeorge syndrome (author's transl)].

A boy with III-IV pharingeal pouch malformative syndrome, hypocalcemia and recurrent infections is presented. The immunological work-up disclosed deficiency in the specific cellular immunity with normal serum immunoglobulin levels. An adult thymus in Millipore diffusion chambers was implanted in the rectus adominalis muscle. One week later clinical and analytical data suggesting immunological reconstitution was recorded. Two years later the patient remains in good health, T and B lymphocyte percentages are normal, being the only immunological abnormality a low serum level of IgG.

DiGeorge Syndrome

Circulating thymic-hormone activity in congenital immunodeficiency.

Circulating thymic-hormone activity was assayed by measuring Thy 1-2 antigen induction on null lymphocytes from athymic mice incubated with human plasma or serum. Plasma from 19 normal children aged under 10 had inductive activity equivalent to 10-6-16-2 ng thymopoitin/ml. Plasma from 15 infants were severe combined immuno-deficiency, 2 of whom had appreciable immunoglobulin synthesis, and from 2 infants with DiGeorge syndrome had little or no inductive activity. Successful reconstitution with thymus or bone-marrow grafts and with red-cell infusions (if adenosine-deaminase deficiency is present) was followed by a rise in circulating thymic-hormone activity.

Agammaglobulinemia

Fetal thymus transplantation: experimental and clinical observations.

The murine fetal thymus obtained early in gestation was found to develop normally in a syngeneic host. In contrast to the adult thymus grafts, the fetal thymus did not undergo the early and marked necrosis following transplantation into syngeneic hosts. Indeed, the fetal thymus was as effective as the adult thymus in achieving immunologic reconstitution of neonatally thymectomized syngeneic mice, and superior to adult thymus, when transplanted into allogeneic hosts. Furthermore, the fetal thymus, unlike the adult thymus, did not induce graft-vs-host disease (GVH) in genetically susceptible neonatally thymectomized mice. These observations seem relevant to thymus transplantation in children with a congenital absence of the thymus. Transplantation of fetal thymus in a child with DiGeorge syndrome corrected the T-cell immunodeficiency, and led to a reduction toward normal of the B-cell population.

Animals

Thymic activity in severe combined immunodeficiency diseases.

Thymic function was evaluated by quantitation of circulating thymic factor in patients with several forms of severe infantile immunodeficiency diseases. Direct quantitation of thymic factor in serum of patients with severe combined immunodeficiency revealed heterogeneity of this syndrome by this parameter, as was also shown by study of susceptibility of the marrow cells to differentiation in vitro. Thymic factor was not detectable in one patient with severe combined immunodeficiency, but was present in normal or near-normal concentrations in three others. Circulating levels of this hormonal activity were also not detectable in a patient with DiGeorge athymic syndrome. Following marrow or fetal liver transplantation, which corrected the severe combined immunodeficiency thymic factor levels either increased slightly or did not change appreciably. Fetal thymic transplantation, which together with fetal liver transplantation corrected the immunodeficiency in one patient with severe combined immunodeficiency, was associated with increase of thymic factor to normal levels. Fetal thymus transplantation alone, which was employed to correct the immunodeficiency of DiGeorge athymic syndrome, caused an increase in thymic factor activity to normal or near normal levels in this patient.

Bone Marrow Cells