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Bone mineral density of the spine and radius shaft in children with X-linked hypophosphatemic rickets (XLH).

X-linked hypophosphatemic rickets (XLH) is characterized by inadequate skeletal mineralization. The bone mineral density (BMD) of the radius shaft and the lumbar spine was determined in 13 children with XLH. Ten patients were on treatment, whereas three patients had discontinued treatment 20-32 months prior to this study. Two of them had radiological evidence of rickets. The radius shaft BMD was significantly diminished: Z score was -1.33 +/- 0.89 (P less than 0.001), while the BMD of lumbar spine was significantly augmented (Z score +1.95 +/- 1.17, P less than 0.001). A positive correlation was found between the Z scores for the BMD of the radius shaft and spine. The two patients with overt rickets had lower radius shaft BMD values and a lesser increment of BMD of the spine. The BMD deficit of cortical bone may be related to the lack of efficacy of the treatment and/or to an intrinsic defect of the bone on this disease. On the other hand, the augmented BMD of the lumbar spine might reflect the overabundance of partially mineralized osteoid. The determination of the BMD of the radius shaft by SPA was a sensitive method for detecting abnormalities of the bone mass in XLH patients under treatment without radiological signs of rickets.

Absorptiometry, Photon

X-linked hypophosphatemia: the mutant gene is expressed in teeth as well as in kidney.

Mutation at a locus (HPDR) on the X chromosome (McKusick 30780 [HPDR1]; 30781 [HPDR2]) causes impaired renal phosphate transport, hypophosphatemia, and an associated impairment in the process of mineralization in bone and teeth (X-linked hypophosphatemia [XLH]). We measured the dental pulp profile area (PRATIO [= pulp area/tooth area]) and serum phosphorus (Pi) values in uniformly treated XLH patients (six males, 81 teeth, 1,457 Pi values; 11 females, 129 teeth, 1,439 Pi values). Serum Pi values, reflecting the metabolic environment of tooth development, were obtained by repeated measurement between 1 mo and 26 years of age during treatment. PRATIO values calculated from standardized Rinn radiographs were used as outcome measurements of tooth development in XLH patients and in age-matched controls (12 males, 100 teeth; 27 females, 275 teeth). Age-dependent serum Pi values were not different in the treated XLH males and females. In teeth forming primary dentin there was no gene dosage effect on PRATIO values apparent in subjects below 15 years of age. However, in teeth forming secondary dentin a gene dosage was found in the subjects aged 15 to 25 years: XLH male teeth (n = 65) mean +/- SD = 0.163 +/- 0.046; XLH female teeth (n = 75) mean +/- SD = 0.137 +/- 0.039; control teeth (n = 209) mean +/- SD = 0.116 +/- 0.023; (higher PRATIO values mean less development or mineralization of secondary dentin); differences in these PRATIO values (males vs. female and XLH vs. control) were significant by mixed-model analysis of variance.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Dental phenotypes associated with novel PHEX variants in X-linked hypophosphatemia.

OBJECTIVES: X-linked hypophosphatemia (XLH) is a genetic disorder related to bone, mainly due to the mutations in PHEX gene. Previous studies have reported that XLH patients had various tooth phenotypes. It is unclear whether there are any rules about these abnormal tooth phenotypes, especially in those XLH cases with PHEX mutations. The objectives of this study were to find the most representative dental characteristics of XLH and the possible phenotype-genotype correlation. DESIGN: Two unrelated patients with XLH underwent clinical, radiographic, biochemical, and genetic evaluation. Whole-exome sequencing and whole-genome sequencing were used to identify pathogenic variants. The ultrastructure of extracted teeth was analyzed using a stereomicroscope, micro-CT, and scanning electron microscopy. In addition, a PubMed search (up to January 2026) identified 22 articles involving 366 patients for descriptive phenotype comparison. RESULTS: Two novel PHEX variants were identified: a novel complex structural variant (NC_000023.11, g.22035649-22041668delins) and a novel heterozygous splice-site variant (NM_000444.6, c.850-1 G>A). Radiographic examination showed enlarged pulp chambers and irregular pulp morphology. Ultrastructural analysis revealed dentin defects, including globular dentin, irregular interglobular dentin, disrupted dentinal tubules, and exposed collagen fibrils. Literature-based analysis indicated prevalent clinical manifestations (pulp necrosis, tooth loss, periodontitis) and radiographic findings (enlarged pulp chamber, and prominent pulp horn). CONCLUSION: In these two patients, novel PHEX variants were associated with a recurrent dentin-pulp phenotype. Integrated clinical, radiographic, ultrastructural, and literature evidence supports dentin defects as a central component of the dental phenotype in XLH and underscores the importance of early dental assessment.

Humans

X-linked hypophosphatemia: skeletal mass in adults assessed by histomorphometry, computed tomography, and absorptiometry.

PURPOSE AND PATIENTS AND METHODS: X-linked hypophosphatemia (XLH) is the most common inherited form of rickets, yet its influence on skeletal mass in adulthood is controversial and incompletely characterized. Accordingly, we measured bone mass at several skeletal sites using histomorphometric and radiographic techniques in 19 adults (four men) with XLH (age range 20 to 66 years). Most subjects had not received medical therapy for XLH since puberty. RESULTS: Eight of 14 subjects who underwent transiliac bone biopsy had an elevated cancellous bone volume (osteoid and calcified bone), and the group's mean value was supranormal (p less than 0.01). Mineralized bone volume, however, was above normal in only three subjects (NS). Another measure of trabecular bone density, vertebral mineral density by computed tomography, was elevated in three of 13 subjects, and the mean value of the group was increased (p = 0.05). Integral spine bone mineral density (BMD) assessed by dual photon absorptiometry (DPA) was elevated in six of 16 subjects, and the mean was also above normal (p less than 0.01). However, total body calcium, total body BMD (both by DPA), and forearm bone mineral content assessed by single photon absorptiometry (predominantly cortical bone) were normal in almost all subjects, as were the group means for these parameters. Mean regional BMD (by DPA) was below normal in the upper and lower limbs (p less than 0.001) and above normal in the spine (p less than 0.005) and ribs (p less than 0.01). There was no relationship between these indices of bone mass and either biochemical or clinical parameters of disease severity, although men tended to have higher z-scores for axial bone density than premenopausal women whose values, in turn, tended to be higher than those in postmenopausal women (NS). CONCLUSION: We conclude that axial bone mass tends to be increased in adults with XLH, sometimes dramatically so, and this is only partially attributable to hyperosteoidosis. Peripheral bone mass, however, tends to be diminished. Despite these group trends, most adults with untreated XLH have normal indices of bone mass as assessed by a variety of techniques at the commonly used measurement sites. These findings suggest that "osteoporotic" fractures are unlikely to develop as a late complication of XLH in adults.

Absorptiometry, Photon

Decreased concentration of 1,25-dihydroxyvitamin D3 receptors in peripheral mononuclear cells of patients with X-linked hypophosphatemic rickets: effect of phosphate supplementation.

Abnormal renal tubular phosphate transport is considered to be the primary defect in X-linked hypophosphatemic rickets (XLH). However, the resistance to vitamin D treatment in XLH cannot be explained by hypophosphatemia alone. Since most of the actions of vitamin D are mediated by its receptors (VDR), abnormalities of VDR have been postulated in XLH. In order to investigate this possibility, we measured the concentration of VDR in PHA-activated peripheral mononuclear cells from 10 XLH patients. Patients without phosphate supplementation showed significantly lower concentration (21.7 +/- 5.1 fmol/mg protein, mean +/- SEM) compared to the normal controls (60.7 +/- 4.0). On the contrary, there was no significant difference between the phosphate-supplemented patients (58.3 +/- 2.7) and controls. There was a significant positive correlation between VDR concentration and serum phosphate (P less than 0.05). In two patients, VDR was increased after daily phosphate supplementation was started. These results indicate that a decreased concentration of VDR secondary to persistent hypophosphatemia is one of the causes of vitamin D resistance in XLH.

Adolescent

X-linked hypophosphatemic rickets: a study (with literature review) of linear growth response to calcitriol and phosphate therapy.

Not all children with X-linked hypophosphatemia (XLH) have demonstrated improved linear growth with calcitriol [1,25-(OH)2D3] and inorganic phosphate (Pi) therapy. To assess which factors are associated with a favorable growth response during this treatment, we retrospectively compared demographics and biochemical parameters of bone metabolism to the linear growth patterns of 20 children with XLH who were prepubertal and had not required osteotomy. A total of 15 patients had family histories consistent with XLH; 5 appeared to be sporadic cases. During 3 years of therapy, the growth velocities of 12 patients had been at or above the mean for age (good growers) and those of 8 patients had been below the mean (poor growers). Data from the two groups were contrasted. We found no difference between the good growers and poor growers before or after the 3 year period of therapy in mean age, dietary calcium, calcitriol dose or compliance, or Pi dose or compliance. Both groups increased their mean fasting serum Pi levels with treatment. The TmP/GFR (mean +/- SEM) of the good growers improved with therapy (1.9 +/- 0.2 to 2.6 +/- 0.2 mg/dl, p = 0.01), and their posttreatment value was higher compared to that of the poor growers (2.6 +/- 0.1 versus 2.2 +/- 0.1 mg/dl, p = 0.02). However, their enhanced TmP/GFR was not associated with a reduction in serum iPTH levels (before, 693 +/- 50; after, 688 +/- 76 pg/ml; p = 0.9). The Z test for binomial proportions showed that the group that grew well contained a disproportionate number of girls (10 of 12, p = 0.04). Our findings suggest that calcitriol may exert a direct effect on the renal tubule to improve Pi reclamation in XLH. The observation that heterozygous girls appear to respond better than hemizygous boys to calcitriol and Pi therapy provides evidence for a gene dosage effect in the expression of this X-linked dominant disorder.

Calcitriol

X-linked hypophosphataemia: a homologous phenotype in humans and mice with unusual organ-specific gene dosage.

XLH (X-linked hypophosphataemia, gene symbol HYP, McKusick 307800, 307810) and its murine counterparts (Hyp and Gy) map to a conserved segment on the X-chromosome (Xp 22.31-p.21.3, human; distal X, mouse). Gene dosage has received relatively little attention in the long history of research on this disease, which began over 50 years ago. Bone and teeth are sites of the principal disease manifestations in XLH (rickets, osteomalacia, interglobular dentin). Newer measures of quantitative XLH phenotypes reveal gene dose effects in bone and teeth with heterozygous values distributed between those in mutant hemizygotes and normal homozygotes. On the other hand, serum phosphate concentrations (which are low in the mutant phenotype and thereby contribute to bone and tooth phenotypes) do not show gene dosage. In Hyp mice serum values in mutant hemizygotes, mutant homozygotes and heterozygotes are similar. Phosphate homeostasis reflects its renal conservation. Renal absorption of phosphate on a high-affinity, Na+ ion-gradient coupled system in renal brush border membrane is impaired and gene dosage is absent at this level; the mutant phenotype is fully dominant. Synthesis and degradation of 1,25(OH)2D are also abnormal in XLH (and Hyp), but gene dosage in these parameters has not yet been measured. An (unidentified) inhibitory trans-acting product of the X-linked locus, affecting phosphate transport and vitamin D metabolism, acting perhaps through cytosolic protein kinase C, could explain the renal phenotype. But why would it have a normal gene dose effect in bone and teeth? Since the locus may have duplicated (to form Hyp and Gy), and shows evidence of variable expression in different organs (inner ear, bone/teeth, kidney), it may have been recruited during evolution to multiple functions.

Animals

X-linked hypophosphatemia. A phenotype in search of a cause.

XLH is an important disease, it is the subject of several classic articles in the medical sciences (Scriver et al., 1991), and it has been an important stimulus to study renal hypophosphatemias and how they are involved in rickets and osteomalacia (Scriver, 1974; Scriver and Tenenhouse, 1991). Renal transport is the major determinant of phosphate homeostasis in mammals and it is unlikely that this important biochemical parameter would have been left by evolution to a single renal transport system. Together physiologists and geneticists found that the mammalian kidney has several gene products dedicated to phosphate transport. That has implications for biochemists in search of a membrane protein to clone and explain XLH, for example. Let us suppose the transporter affected in XLH is cloned. Will it be the product of the XLH (or Hyp or Gy) locus? One will not know until the transporter gene is mapped. There is no question of the X-chromosome locus product being protein kinase C for example, since it maps to autosomes. But where does one start in the search for the X-chromosome locus? With the elusive putative diffusible factor or with the transporter, or perhaps with an enzyme in vitamin D hormone metabolism? Which goes to say that it is necessary to know the phenotype to arrive at the right locus. Or is it? Sufficient physical mapping of region Xp22.31-p21.3 will eventually lead to positional cloning of the Hyp gene. What will it be?(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Evidence suggesting hyperoxaluria as a cause of nephrocalcinosis in phosphate-treated hypophosphataemic rickets.

Urinary excretion of oxalate and phosphate was measured in twelve vitamin-D-treated, phosphate-supplemented patients with X-linked hypophosphataemia (XLH; four children, eight adolescents and adults) to investigate possible causative factors of nephrocalcinosis other than calcium. Oxalate excretion correlated highly with urinary phosphate excretion and with intake of phosphate supplements corrected for body surface area. Young children received the highest relative doses of phosphate (range 2.27-10.8 g/1.73 m2 daily) and their urinary oxalate excretion was very high (0.94-3.38 mmol/1.73 m2 daily). The urinary oxalate excretion of untreated adults with XLH was within normal limits. Six patients had evidence of nephrocalcinosis on ultrasound. The high urinary oxalate excretion in phosphate-supplemented XLH may be seen as a special type of enteric hyperoxaluria, in which the conditions of calcium-oxalate crystal precipitation could be reached even at normal levels of urinary calcium excretion. Urinary excretion of both calcium and oxalate should therefore be monitored during treatment in young XLH patients.

Adolescent

Recent advances in pediatric metabolic bone disease: the consequences of altered phosphate homeostasis in renal insufficiency and hypophosphatemic vitamin D-resistant rickets.

Over the past decade our understanding of the pathogenesis of altered mineral homeostasis in chronic renal failure (CRF) and X-linked hypophosphatemic vitamin D-resistant rickets (XLH) has increased, and has provided a rational approach for the use of the 1 alpha-hydroxylated analogues of vitamin D in their therapy. Recent evidence suggests that intracellular phosphate (Pi) retention in CRF plays a major role in decreasing serum 1,25-dihydroxyvitamin D (1,25(OH)2D) levels, which are responsible for the progressive rise in serum parathyroid hormone (PTH) concentrations through the direct action of 1,25(OH)2D on the parathyroid gland. 1,25(OH)2D levels affect the number of intracellular 1,25(OH)2D receptors, preproPTH mRNA levels and the set point for calcium suppression of PTH release. Further in experimental CRF, the maintenance of normal 1,25(OH)2D levels prevents parathyroid gland hyperplasia. These studies indicate that depressed renal 1 alpha-hydroxylase activity due to Pi retention is a major factor in directly increasing PTH secretion, which in turn contributes significantly to the severity of renal osteodystrophy. Thus the aim of therapy in early CRF should be to maintain normal levels of 1,25(OH)2D which can be achieved by either dietary Pi restriction and oral Pi binders or by administering small doses of 1 alpha-hydroxylated metabolites. The long term consequences of these two different therapeutic regimens still need to be assessed. In XLH, evidence is rapidly accumulating that alterations in 1 alpha-hydroxylase activity secondary to impaired Pi handling by the proximal renal tubule, results in decreased serum 1,25(OH)2D levels, which might be responsible for a number of the associated abnormalities documented in both treated and untreated XLH patients. These abnormalities include decreased calcium and Pi absorption by the intestine and low normal serum calcium values. In vitamin D- and Pi-treated patients 1,25(OH)2D levels are further depressed, with a resultant increase in PTH values, and the development of tertiary hyperparathyroidism in a small number of patients. The use of 1 alpha-hydroxylated analogues rather than vitamin D together with Pi supplements decreases the severity of hyperparathyroidism, improves Pi absorption from the intestine and markedly ameliorates the degree of osteomalacia. Whether long-term therapy with these analogues will prevent the development of tertiary hyperparathyroidism in patients with XLH is unclear.

Animals

A prospective trial of phosphate and 1,25-dihydroxyvitamin D3 therapy in symptomatic adults with X-linked hypophosphatemic rickets.

Current treatment of X-linked hypophosphatemia (XLH) employs the combined administration of oral phosphate and 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3]. Although this drug regimen significantly improves the clinical course of the disease in children, the value of medical treatment in symptomatic adults with XLH has not been established. We, therefore, investigated the clinical, biochemical, and histological responses to phosphate and 1,25-(OH)2D3 in 16 symptomatic adult patients with XLH followed for a mean of 4.2 yr. Eighty-seven percent of the patients had an improvement in bone or joint pain with therapy. There was a significant increase in mean serum phosphate (from 0.61 +/- 0.03 to 0.77 +/- 0.03 mmol/L) and urinary calcium excretion (from 2.45 +/- 0.38 to 4.39 +/- 0.44 mmol/day) with treatment. Pretreatment bone biopsies demonstrated findings characteristic of osteomalacia, including abnormally increased osteoid volume and decreased mineral apposition rates. Treatment was accompanied by a significant decrease in osteoid thickness as well as a reduction in mean osteoid volume. However, therapy did not completely normalize these parameters. Disease severity, as assessed by histomorphometric parameters, did not correlate with any pretreatment serum or urinary biochemical measurement, but did seem to correlate with symptom score. Although most patients tolerated therapy without difficulty, 1 patient developed tertiary hyperparathyroidism during treatment and renal insufficiency that progressed despite cessation of therapy. This study provides evidence that therapy with oral phosphate and 1,25-(OH)2D3 in symptomatic adults with XLH can result in significant clinical and histomorphometric improvement.

Adolescent

X-linked hypophosphatemia in adults: prevalence of skeletal radiographic and scintigraphic features.

The radiologic studies of 38 essentially untreated adults with X-linked hypophosphatemia (XLH) were reviewed to determine the prevalence of radiologic features, to compare the findings in men and in women, and to elucidate the natural history of the disease by comparing the findings in young, intermediate-age, and older patients. Bone-reinforcement lines were common, but no characteristic mineral mass alteration was established. Looser zones were more prevalent in older subjects. Osteoarthritis was common, occurring in the ankles, knees, feet, sacroiliac joints, and wrists. Enthesopathy was infrequent in the younger group but was present in every member of the intermediate and older groups and was often accompanied by extra ossicles. Curvatures of the lower-extremity long bones were common in all age groups. Three new skeletal alterations in XLH were found to be common: flaring of the iliac wings, trapezoidal distal femoral condyles, and alterations in talar morphology, including shortening of the talar neck and flattening of the talar dome. Technetium-99m methylene diphosphonate scintigrams of 17 subjects were often abnormal, depicting bowing deformity and focal tracer accumulation in diaphyseal cortices and in periarticular and extraarticular regions. The mean metabolic index was moderately elevated (4.0). Both radiographic and scintigraphic findings were more severe in men, consistent with hemizygosity. The natural history of untreated XLH in both sexes is characterized by the development of a variety of age-related skeletal abnormalities during adulthood.

Adult

Normal calcitonin stimulation of serum calcitriol in patients with X-linked hypophosphatemic rickets.

Patients with X-linked hypophosphatemic rickets (XLH) have normal or low calcitriol concentrations despite manifesting hypophosphatemia, a known stimulus of 25-hydroxyvitamin D-1 alpha-hydroxylase activity. In accord, administration of pharmacological doses of PTH results in a markedly blunted stimulation of calcitriol levels. In the murine homolog of the human disorder, the Hyp mouse, regulation of 25-hydroxyvitamin D-1 alpha-hydroxylase activity is defective in response to hypophosphatemia and PTH administration, but not in response to calcitonin administration. In the current study we administered calcitonin to controls and patients with XLH to test the hypothesis that calcitonin-stimulatable 25-hydroxyvitamin D-1 alpha-hydroxylase activity is normal in patients with XLH. We found that calcitriol concentrations increased in both groups to a similar degree (78.5 +/- 20.9 pmol/L in patients and 49.9 +/- 19.7 pmol/L in controls) and with a similar time course. Our results indicate that the complex and incomplete defect in the regulation of 25-hydroxyvitamin D-1 alpha-hydroxylase observed in Hyp mice also exists in humans.

Adult

Normal left ventricular performance in children with X-linked hypophosphatemic rickets: a Doppler echocardiography study.

To determine if chronic hypophosphatemia causes myocardial dysfunction, we explored one model for this metabolic derangement by prospectively investigating 11 patients (aged 5-18 years) with X-linked hypophosphatemic rickets (XLH) by M-mode, two-dimensional, and Doppler echocardiography. Inorganic phosphate and calcitriol (1,25-dihydroxyvitamin D3) treatment was withheld 72 h prior to study. None of the patients had cardiovascular symptoms. Fasting serum inorganic phosphate concentrations were subnormal in all: 2.6 +/- 0.5 mg/dl (SD). Serum total and ionized calcium, magnesium, sodium, potassium, and creatine kinase myocardial fraction (CK-MB) levels were unremarkable. Electrocardiograms revealed early repolarization abnormalities in 3 of the 11 patients: 1 had significant QT prolongation (corrected for heart rate), and 2 had T wave abnormalities. Exaggerated U waves occurred in 4 subjects. Resting echocardiograms were normal in 9 patients. In 1 subject there was mitral valve prolapse, and 1 patient possibly had an atrial septal defect (these findings were considered unrelated to hypophosphatemia). All M-mode measurements were normal. The two-dimensionally derived end-diastolic and end-systolic left ventricular volumes were 60.3 +/- 18.0 and 20.5 +/- 6.9 ml, respectively. Left ventricular ejection fraction was 66.1 +/- 4.7%, and the cardiac index by Doppler study was 4.1 +/- 0.8 liters/min per m2 (both values were within normal limits). Although the precise pathogenesis of XLH is unknown and our findings suggest that some electrocardiographic abnormalities may be common in this disorder, we found no evidence for left ventricular dysfunction in this human model of clinically significant long-standing hypophosphatemia.

Adolescent

Normal regulation of calcitriol production in Gy mice. Evidence for biochemical heterogeneity in the X-linked hypophosphatemic diseases.

Phenotypic heterogeneity in X-linked hypophosphatemic rickets (XLH) is ascribed to variable penetrance of the genetic abnormality. However, studies of hypophosphatemic (Hyp) and gyrorotary (Gy) mice indicate that mutations at different loci along the X chromosome may underlie the genetically transmitted hypophosphatemic disorders. Thus, genetic heterogeneity may be a determinant of the phenotypic variability in XLH. To determine if such variance includes biochemical diversity, we examined whether Gy mice, similar to Hyp mice, exhibit abnormal regulation of renal 25-hydroxyvitamin D (25[OH]D)-1 alpha-hydroxylase. Serum phosphorus in Gy (4.7 +/- 0.3 mg/dl) and phosphate (P)-depleted mice (4.9 +/- 0.4) was significantly less than normal (8.4 +/- 0.5). Consistent with P depletion, the Gy mice exhibited enhanced renal 25(OH)D-1 alpha-hydroxylase activity (9.3 +/- 0.6 fmol/mg kidney per min), similar to that of P-depleted normals (9.1 +/- 1.5), but significantly greater than that of controls (3.1 +/- 0.3). Such normal enzyme responsiveness was confirmed upon PTH stimulation (1 IU/h s.c.), which revealed that Gy mice increased renal 1-hydroxylase (59 +/- 7.7) similarly to normals (65 +/- 7.7) and P-depleted animals (58.4 +/- 7.8). Calcitonin administration also enhanced enzyme function comparably in the animal models. Evidence confirming normally responsive calcitriol production in untreated Gy mice included increased serum 1,25-dihydroxyvitamin D levels, gastrointestinal calcium absorption, and urinary calcium. The normally regulated vitamin D metabolism in Gy mice indicates that biochemically diverse disease may result from mutations in the gene family regulating renal P transport and underlying X-linked hypophosphatemia. We suspect such heterogeneity is due to altered P transport at variable segments of the proximal convoluted tubule.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase

Raised serum neopterin levels in patients with primary hypogammaglobulinaemia; correlation to other immunological parameters and to clinical and histological features.

Serum neopterin levels were analysed in 43 patients with primary hypogammaglobulinaemia (25 common variable immunodeficiency (CVI), 12 congenital hypogammaglobulinaemia (CH), six X-linked hypogammaglobulinaemia (XLH)), and in 33 healthy controls. The neopterin values were correlated to lymphocyte subset counts in peripheral blood, lymphocyte mitogen responses and clinical and histological manifestations in the study group. Serum neopterin levels were significantly elevated in all subgroups of patients and particularly in the CVI groups where the highest concentrations were found (P less than 0.001, CVI versus controls). Furthermore, in CVI and CH patients elevated neopterin levels were strongly correlated to decreased number of CD4+ lymphocytes (rs = -0.61, P less than 0.005 and rs = -0.83, P less than 0.001, respectively). In the CVI group high neopterin levels were also significantly correlated to low number of circulatory B (CD19+) lymphocytes (rs = -0.58, P less than 0.05). Both patients with moderately and those with severely depressed lymphocyte mitogen responses had significantly higher neopterin levels than those with normal responses. In addition, high neopterin levels were significantly associated with the occurrence of splenomegaly and nodular intestinal lymphoid hyperplasia. The immunological findings were consistently observed in longitudinal testing, and appeared to be characteristic for the individual patient. High serum neopterin levels are thought to be a marker for hyperactivity in monocytes/macrophages, and dysfunction of these cells may therefore be associated with fundamental immune pathology in some subgroups of primary hypogammaglobulinaemia.

Adolescent

Crosstransplantation of kidneys in normal and Hyp mice. Evidence that the Hyp mouse phenotype is unrelated to an intrinsic renal defect.

Although deranged phosphate transport is the fundamental abnormality in X-linked hypophosphatemic (XLH) rickets, it remains unknown if this defect is the consequence of an intrinsic kidney abnormality or aberrant production of a humoral factor. To discriminate between these possibilities, we examined phosphate homeostasis in normal and Hyp mice, subjected to renal crosstransplantation. We initially evaluated the effects of uninephrectomy on the indices of phosphate metabolism that identify the mutant biochemical phenotype. No differences were found in the serum phosphorus concentration, fractional excretion of phosphate (FEP), or tubular reabsorption of phosphate per milliliter of glomerular filtrate (TRP) in uninephrectomized normal and Hyp mice, compared with sham-operated controls. Subsequently, single kidneys from normal or Hyp mice were transplanted into normal and Hyp mouse recipients. Normal mice transplanted with normal kidneys and Hyp mice engrafted with mutant kidneys exhibited serum phosphorus, FEP, and TRP no different from those of uninephrectomized normal and Hyp mice, respectively. However, engraftment of normal kidneys in Hyp mice and mutant kidneys in normal mice affected neither serum phosphorus (4.69 +/- 0.31 and 8.25 +/- 0.52 mg/dl, respectively) nor FEP and TRP of the recipients. These data indicate that the Hyp mouse phenotype is neither corrected nor transferred by renal transplantation. Further, they suggest that the phosphate transport defect in Hyp mice, and likely X-linked hypophosphatemia, is the result of a humoral factor, and is not an intrinsic renal abnormality.

Animals

Microscopic and crystallographic examinations of the teeth of the X-linked hypophosphatemic mouse.

Teeth from the C57BL/6J-Hyp mouse (Hyp mouse) were examined histologically, radiographically, and crystallographically. Microscopic examinations of the ground sections, the decalcified and H-E-stained sections, and the contact microradiograms of molars and incisors from the Hyp mouse showed several abnormalities--such as large pulp chamber, wide predentin, thin dentin at the pulp floor, and multiple occurrences of interglobular dentin. Powder and microbeam x-ray diffraction analyses showed that the crystallinity of hydroxyapatite in incisor globular dentin from the Hyp mouse was higher than that in incisor dentin from the normal mouse. On the other hand, the findings of transmission electron microscopy demonstrated that the sizes of hydroxyapatite crystals of globular dentin in the Hyp incisor were larger than those in normal incisor dentin. These results demonstrated that the findings in Hyp mouse teeth were in accord with those of human XLH teeth.

Animals