Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “RICKETS”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 127 records · Page 7Linked to original sources

Characteristics of children with florid vitamin D deficient rickets in the Auckland region in 1998.

AIM: To describe the characteristics of children with vitamin D deficiency rickets and identify common features and predisposing factors. METHODS: A review of the clinical notes of all children less than five years of age with radiological evidence of rickets and serum 25-hydroxyvitamin D levels of less than 10 micrograms/L. Patients were identified by searching all low vitamin D levels performed at the Endocrinology laboratory at Auckland Hospital and children presenting to the Starship Childrens' Hospital with rickets in 1998. RESULTS: In 1998, there were eighteen children (ten males and eight females) with vitamin D deficient rickets. The age range was 3 to 36 months with a median of 12 months. There were twelve children of Indian ethnic origin, one Maori, one Tongan, one Western Samoan, one Ethiopian, one Moroccan and one Indonesian. All children had an elevated alkaline phosphatase level and most had very low serum 25-hydroxyvitamin D levels (< or = 5 micrograms/L), and over half were hypocalcaemic. The common presenting features were delayed walking and bowed legs, swollen wrists or ankles, hypocalcaemic seizure, incidental radiological abnormalities and failure to thrive. CONCLUSIONS: There are a significant number of children in Auckland presenting with florid clinical rickets. The majority with vitamin D deficient rickets in this survey were of Indian ethnic origin. Strategies are needed to detect children at risk of vitamin D deficiency and supplement them with vitamin D.

Age Distribution↗

Rickets among children of a coastal area of Bangladesh.

Many children with rachitic deformities have been reported in southern coastal area of Bangladesh but the actual rate of prevalence was not known. A survey was conducted to determine the magnitude of rachitic problem among the children of Chakaria thana of Cox's Bazar district of Bangladesh. Nine hundred children between 1-15 years selected randomly from 30 villages of total 340 villages. Face to face interview of the parents was taken and the children were examined for evidences of rickets. Serum calcium, phosphorus, alkaline phosphatase (ALP) were estimated and radiology of limbs were done in all clinically suspected cases and in a control of every eighth child. Seventy eight children (8.7%) had physical features suggestive of rickets. Fifty eight (6.4%) children had 'clinical rickekts' (positive physical feature(s) but normal ALP and negative radiology), 12 (1.3%) children had 'biochemical rickets' (positive physical features and raised ALP but negative radiology) and 8 (0.9%) children had 'confirmed rickets' (positive physical features, raised ALP and positive radiology). Out of 78 children with rachitic feature(s), Pectus carinatum was found as the most common clinical feature in 26 (33.3%) children followed by genu valgum in 23 (29.4%) cases. Twenty two normal children (2.2%) had raised level of ALP (>300U/L). The prevalence of rickets is high in children of Chakaria and further study is needed to find out the exact aetiology of rickets in children there.

Adolescent↗

Rickets and osteomalacia of various origins.

Further causes of rickets or osteomalacia need to be added to the list previously published by the author. These include phosphate deficiency osteomalacia from prolonged consumption of aluminum hydroxide, rickets and osteomalacia from prolonged therapy by antiepileptic drugs, rickets associated with the severe form of osteopetrosis, further rare causes of the Fanconi syndrome, congenital rickets occurring when the mother has osteomalacia from dietary causes or has celiac disease and temporary neonatal rickets probably due to enzymic immaturity. The importance is stressed of defining as closely as possible the type of rickets or osteomalacia one is dealing with, especially when considering therapy and detailed pathogenesis.

Acidosis, Renal Tubular↗

Rickets of premature infants induced by calcium deficiency. A case report.

Rickets of prematurity is not uncommon in neonatal intensive care units. Nutritional rickets in childhood is usually caused by vitamin D deficiency, but the rickets of prematurity is mainly attributable to calcium and phosphorus deficiencies. We present a premature infant with sequelae of necrotizing enterocolitis who needed prolonged administration of total parenteral nutrition (TPN), and who sustained ricketic fracture. After high calcium-fortified TPN supplementation the fracture healed well, and serum alkaline phosphatase dropped. This finding shows (1) serum calcium and phosphorus levels are of predictive value regarding rickets, (2) regular follow-ups of alkaline phosphatase levels combined with radiography in high-risk groups of premature infants are good tools for monitoring rickets, and (3) prolonged TPN administration needs to contain higher calcium and phosphorus concentrations in prematurity than in childhood.

Calcium↗

Mutations in the Drosophila glycoprotein hormone receptor, rickets, eliminate neuropeptide-induced tanning and selectively block a stereotyped behavioral program.

Adult insects achieve their final form shortly after adult eclosion by the combined effects of specialized behaviors that generate increased blood pressure, which causes cuticular expansion, and hormones, which plasticize and then tan the cuticle. We examined the molecular mechanisms contributing to these processes in Drosophila by analyzing mutants for the rickets gene. These flies fail to initiate the behavioral and tanning processes that normally follow ecdysis. Sequencing of rickets mutants and STS mapping of deficiencies confirmed that rickets encodes the glycoprotein hormone receptor DLGR2. Although rickets mutants produce and release the insect-tanning hormone bursicon, they do not melanize when injected with extracts containing bursicon. In contrast, mutants do melanize in response to injection of an analog of cyclic AMP, the second messenger for bursicon. Hence, rickets appears to encode a component of the bursicon response pathway, probably the bursicon receptor itself. Mutants also have a behavioral deficit in that they fail to initiate the behavioral program for wing expansion. A set of decapitation experiments utilizing rickets mutants and flies that lack cells containing the neuropeptide eclosion hormone, reveals a multicomponent control to the activation of this behavioral program.

Animals↗

Hypophosphatemic rickets accompanying congenital microvillous atrophy.

This report concerns an 11-year-old boy who manifested hypophosphatemic rickets associated with congenital microvillous atrophy (CMA). He had been suffering from vomiting and severe diarrhea from the first day of life and had been treated with total parenteral nutrition (TPN) since he was 67 days old. At 4 years of age, intestinal biopsy resulted in a diagnosis of CMA. He was admitted to our hospital complaining of leg pain at the age of 11. Laboratory data revealed hypophosphatemia, elevated serum 1, 25-dihydroxyvitamin D (1,25(OH)2D) levels, and hypercalciuria. A roentgenogram showed rickets in the extremities. A balance study of phosphate in urine and stool indicated that the amount of phosphate leaking into the stool was greater than that into the urine. Moreover, the total amount of phosphate leaking from both the intestine and kidney exceeded the amount of phosphate intake from TPN. The rickets was healed by increasing the phosphate concentration in TPN. This case is different from X-linked hypophosphatemic rickets but similar to hereditary hypophosphatemic rickets with hypercalciuria (HHRH) in terms of hypercalciuria and elevated serum 1,25(OH)2D levels. The effectiveness of phosphate treatments used here is also similar to that used for HHRH. However, this type of hypophosphatemic rickets is unique in that phosphate leaking into the intestine plays an important role in its pathogenesis.

Absorptiometry, Photon↗

[Rickets. Diagnosis and therapy].

Rickets is caused by deficient mineralization at the level of growth plate and is usually due to a decreased serum calcium/phosphate product. Although the diagnosis of rickets can usually be suspected on the basis of a clinical examination (bone deformities in legs, impaired growth), radiological examination and detailed biochemical work-up are necessary to elucidate the etiology of the underlying disease. It is important to differentiate between calcipenic/vitamin deficient and phosphopenic rickets. The former is due to vitamin D deficiency, and the ultimate cause of this usually lies in altered vitamin D supply; however, impaired synthesis of or resistance to the actions of vitamin D can also be a cause. Phosphopenic rickets is usually related to impaired phosphate reabsorption in the proximal renal tubule. Both calcipenic and phosphopenic rickets can be acquired or hereditary in origin.

Diagnosis, Differential↗

Intracortical osteoblastic osteosarcoma with oncogenic rickets.

Intracortical osteosarcoma is the rarest variant of osteosarcoma, occurring within, and usually confined to, the cortical bone. Oncogenic osteomalacia, or rickets, is an unusual clinicopathologic entity in which vitamin D-resistant osteomalacia, or rickets, occurs in association with some tumors of soft tissue or bone. We present a case of oncogenic rickets associated with intracortical osteosarcoma of the tibia in a 9-year-old boy, whose roentgenographic abnormalities of rickets disappeared and pertinent laboratory data except for serum alkaline phosphatase became normal after surgical resection of the tumor. Histologically, the tumor was an osteosarcoma with a prominent osteoblastic pattern. An unusual microscopic feature was the presence of matrix mineralization showing rounded calcified structures (calcified spherules). Benign osteoblastic tumors, such as osteoid osteoma and osteoblastoma, must be considered in the differential diagnosis because of the relatively low cellular atypia and mitotic activity of this tumor. The infiltrating pattern with destruction or engulfment of normal bone is a major clue to the correct diagnosis of intracortical osteosarcoma. The co-existing radiographic changes of rickets were due to the intracortical osteosarcoma.

Bone Neoplasms↗

[Symptomatic rickets in adolescents].

Although systematic vitamin D supplementation in adolescents remains debated, rickets is nevertheless a well recognized pathology in this age group. Adolescence is an at-risk period because of rapid growth, insufficient calcium intake and/or vitamin D status. Surveys have shown that calcium intake is insufficient (< 1000 mg a day) in 45% of boys and 71% of girls and that vitamin D status is deficient (25-OH-D < 10 ng/ml). The aims of the study carried out by the Calcium Group of the Société Française de Pédiatrie, were to evaluate the frequency of rickets, and to define the criteria for the adolescent population at risk. Forty-one adolescents with rickets were hospitalized between 1985 and 2000. Most of the cases were from the Northern France: 20 from Paris and suburbs, eight from the North-West, four from the North, four from the North-East; five were from the Center of France. The mean age was 13 years and two months for the 28 girls, and 14 years and four months for the 13 boys. Eighty per cent of the adolescents were from immigrant families (33/41): 15 were from sub-Saharan Africa, ten from North Africa, six from Pakistan and two from Turkey. Two thirds of the adolescents were hospitalized in the 2nd quarter of the year. Some adolescents suffered from lower limb pain, 16 had deformations of lower limbs, particularly genu valgum, associated with pain; seven others had either muscle spasms (4), tetany (3). Serum calcium level was low (average 1.84 mmol/l: [1.1-2.5]), and serum 25-OH D level was extremely low. Radiographic characteristics observed were metaphyseal strips on the knees, with condensed edges at times, with the presence of bone demineralization. The treatment combined calcium and vitamin D, and was often administered intravenously when a hypocalcemia was detected. Rickets is not frequent in adolescents, but nonetheless this pathology is not exceptional, and the number of cases is probably under-estimated. Rickets affects immigrant adolescents in particular but nevertheless could also present a certain risk period for the general population.

Adolescent↗

Risk factors for nutritional rickets among children in Kuwait.

AIM: To assess the risk factors for nutritional rickets among children in Kuwait. METHODS: One hundred and three children with rickets and 102 control children matched for age and socioethnic characteristics were recruited over a 2 year period (January 1995 to January 1997) in Al-Adan Hospital in Kuwait. Diagnosis was made on clinical, radiologic and biochemical parameters. A specially designed questionnaire was administered by one of the investigators to both mothers of patients and mothers of control subjects to assess the role of social, nutritional and other related factors in the pathogenesis of nutritional rickets. Biochemical investigations included estimation of hemoglobin, serum calcium, serum phosphorus, serum alkaline phosphatase and serum 25-hydroxy vitamin D. RESULTS: The mean birthweights of rickets patients and control subjects were 3.20 +/- 0.46 and 3.19 +/- 0.45 kg, respectively. At the time of diagnosis, bodyweights of the patients and controls were 9.36 +/- 1.50 and 10.15 +/- 2.10 kg, respectively. Heights at the time of diagnosis were 73.58 and 77.24 cm for the patients and the controls, respectively. Mean hemoglobin, serum calcium and serum phosphate were significantly lower in the patients compared with the controls. Alkaline phosphatase was higher among the patients (P < 0.0001). The mean serum 25-hydroxy vitamin D level of the patients was 26.5 nmol/L, compared with 83.5 nmol/L in the controls. The mean age of starting semisolid feeds for the patients was 8.12 months, compared with 5.7 months in the controls. The nutritional quality of semisolid feeds was adequate among 71.6% of the controls as opposed to 13.6% of the patients. CONCLUSION: Nutritional rickets is a multifactorial condition. However, several factors seem to make important contributions. Among these, lack of exposure to sunlight, prolonged breast feeding without supplementation and inadequate weaning practices are important. Maternal education is important as it can influence all of the above factors.

Breast Feeding↗

Case-control study of diet and sun exposure in adolescents with symptomatic rickets.

Dietary intake and sun exposure were compared in a case-control study of 14 adolescent girls diagnosed to have symptomatic nutritional rickets with hypocalcaemia, hypophosphoraemia, elevated serum alkaline phosphatase and serum parathormone and reduced 25-hydroxy vitamin D levels and 20 controls without clinical rickets (ten girls) of the same age group and socio-economic background. In the control group, calorie intake was reduced in seven boys and eight girls, dietary calcium in seven boys and seven girls and vitamin D in six boys and eight girls. All 20 adolescents of both sexes were exposed to the sun for more than 60 min a day. In the group with rickets, calorie intake was reduced in 11 girls, calcium in 14 girls and vitamin D in nine girls). Sun exposure was significantly less in girls with rickets than in controls (p < 0.001). Adolescents in our population, especially females, are at high risk of developing nutritional rickets. Prevention by longer exposure to the sun is simple and cheap but when not practical for social or cultural reasons routine vitamin D supplementation might be indicated.

Adolescent↗

Morbidity, rickets and long-bone growth in post-medieval Britain--a cross-population analysis.

BACKGROUND: Vitamin D deficiency rickets is associated with skeletal deformities including swollen rib junctions, bowing of the legs, and the flaring and fraying of the wrist and long-bone metaphyses. There is, however, scarce information on the direct effect of rickets on skeletal growth in either present or past populations. AIM: The study investigated the effect of vitamin D deficiency rickets on long-bone growth in two post-medieval skeletal populations from East London (Broadgate and Christ Church Spitalfields). Subsequently, inter-population growth variations in relation to non-specific environmental stress (dental enamel defects), industrialization, urbanization and socio-economic status during infancy (birth to 3 years) and early childhood (3-7 years) were examined. SUBJECTS AND METHODS: Data on long-bone diaphyseal length dimensions and stress indicators of 234 subadults from Anglo-Saxon, late medieval and post-medieval archaeological skeletal samples were analysed using both linear and non-linear growth models. RESULTS: Rickets had no effect on the growth curves for any of the long bones studied. However, pronounced variations in growth between the four populations were noted, mainly during infancy. The diaphyseal length of long bones of Broadgate were significantly smaller-per-age than those of Spitalfields and the other samples up to the age of 4 years, and were associated with a high prevalence of enamel defects during early infancy. CONCLUSION: Socio-economic status, rather than urbanization, industrialization or rickets, was the central factor behind the observed differences in growth among the post-medieval populations. The observed inter-population growth variations were only significant during infancy.

Bone Development↗

Two types of nutritional rickets in infants.

In 100 infants with nutritional rickets, i.e., responsive to vitamin D therapy, we found a close inverse relationship between serum phosphorus, on the one hand, and serum alkaline phosphatase and the presence of radiological signs of rickets, on the other. There was no correlation between serum calcium and the severity of bone lesions. It is concluded that hypophosphatemia but not hypocalcemia is typical of rickets. Since hypophosphatemia and rickets can be produced experimentally by phosphate deficiency alone, we suggest our infants can be divided into two groups, one with true vitamin D deficiency that leads to hypocalcemia and no or mild bone lesions, and one with primary phosphate deficiency, resulting perhaps from a defect in phosphate transport, which leads to rickets and hypophosphatemia.

Age Factors↗

Comparisons of oral calcium, high dose vitamin D and a combination of these in the treatment of nutritional rickets in children.

Nutritional rickets remains a common child health problem in Turkey and many other developing countries. Although vitamin D deficiency is accepted as the basic problem underlying the disease, others postulate that a deficiency of dietary calcium, rather than vitamin D, is often responsible for the nutritional rickets in sunny countries. We conducted a placebo-controlled study to determine the best treatment regimen for nutritional rickets in children residing in lower socioeconomic regions of a sunny city, Istanbul. Forty-two infants (aged 6-30 months) with rickets were divided into three groups and included in the study. In a randomized fashion vitamin D (300 000 units, intramuscularly), calcium lactate (3 g daily) or a combination of vitamin D and calcium were given to the children. Alkaline phosphatase, calcium, albumin, ionized calcium and phosphorus levels were measured each week. X-ray examinations of the left wrist and left knee were undertaken at the beginning of the study and were repeated at the 2nd and 4th weeks and were scored in order to assess the response to treatment. Treatment produced an increase in serum calcium and a decrease in alkaline phosphatase concentration in all three groups, but the most important increase was reached in the vitamin D plus calcium group. We conclude that vitamin D deficiency appears to be the primary etiologic factor of rickets in our study group, but a better response to treatment with vitamin D or in combination with calcium was obtained than to treatment with calcium alone.

Alkaline Phosphatase↗

Varying role of vitamin D deficiency in the etiology of rickets in young children vs. adolescents in northern India.

The relative importance of calcium vs. vitamin D deficiency in the etiology of nutritional rickets in the tropics may be different in children compared with adolescents. We studied calcium intake, sun exposure, serum alkaline phosphatase, and 25 hydroxyvitamin D in 24 children and 16 adolescents with rickets/osteomalacia. The values were compared with those obtained in control subjects (34 children and 19 adolescents). We found that young children with rickets had lower calcium intake compared with controls (285 +/- 113 vs. 404 +/- 149 mg/day, p < 0.01), but similar sun exposure (55 +/- 28 vs. 56 +/- 23 min x m2/day) and 25 hydroxyvitamin D (49 +/- 38 vs. 61 +/- 36 nmol/l). Sixteen of 24 children with rickets had 25 hydroxyvitamin D above the rachitic range (> 25 nmol/l), in contrast to one of 16 adolescents. Adolescent patients had low calcium intake vs. controls (305 +/- 196 vs. 762 +/- 183 mg, p < 0.001), and lower sunshine exposure (16 +/- 15 vs. 27 +/- 17 min x m2/day, p < 0.01) and serum 25 hydroxyvitamin D (12.6 +/- 7.1 vs. 46 +/- 45.4 nmol/l, p < 0.001). The odds ratio for developing rickets with a daily calcium intake below 300 mg was 4.8 (95 per cent CI, 1.9 - 12.4, p = 0.001). Subjects with rickets were randomized to receive 1 g calcium daily, with or without vitamin D. Children showed complete healing in 3 months, whether they received calcium alone or with vitamin D. Adolescents showed no response to calcium alone, but had complete healing with calcium and vitamin D in 3-9 months (mean 5.3 months). Thus deficient calcium intake is universal among children and adolescents with rickets/osteomalacia. Inadequate sun exposure and vitamin D deficiency are important in the etiology of adolescent osteomalacia.

Adolescent↗

A single case of hypophosphatemic rickets with hypercalciuria.

A single case of hypophosphatemic rickets with hypercalciuria and an elevated level of serum 1,25 dihydroxyvitamin D is reported. The characteristic features (genu valgum, rickets, short stature, increased renal phosphate excretion, decreased serum phosphorus level, elevated serum alkaline phosphatase level, and normal serum calcium level) were comparable to those in hypophosphatemic vitamin D resistant rickets. Massive doses of 1 alpha-hydroxyvitamin D were not effective for the rickets and the biochemical defect in this patient. Long-term phosphate supplementation on its own resulted in the reversal of all clinical and biochemical abnormalities except for the decreased ratio between the maximum tubular reabsorption rate for phosphorus and the glomerular filtration rate. In this patient, the concentration of serum 1,25 dihydroxyvitamin D seemed to be controlled by the concentration of serum phosphorus rather than by the serum parathyroid hormone level. It is noted that this is the first case of a single hypophosphatemic rickets with hypercalciuria.

Calcitriol↗

Variable presentations of rickets in children in the emergency department.

Vitamin D-deficient rickets is uncommon but becoming more prevalent in the pediatric population likely related to increases in breast-feeding. It should be considered in many clinical situations. We present 3 cases of rickets presenting acutely to the emergency department. Their presentations included a fracture concerning for child abuse, tetany, and hypocalcemic seizures. In all cases, laboratory and radiographic evaluations were consistent with the diagnosis of nutritional rickets and their symptoms were related to rickets resolved with appropriate treatment. Although uncommon, vitamin D-deficient rickets should be considered in children with the above presentations.

Alkaline Phosphatase↗

Evaluation of stature development during childhood and adolescence in individuals with familial hypophosphatemic rickets.

This review was conducted to study the diagnosis, treatment, and growth progression in infants and adolescents with familial hypophosphatemic rickets. The bibliographic search was carried out utilizing the electronic databases MEDLINE, OVID, and LILACS and by direct research within the last 15 years using the keywords rickets, familial hypophosphatemia, vitamin D deficiency, stature growth, childhood, and adolescence. Article selection was done by comparing the evaluation of the growth in patients with familial hypophosphatemic rickets, including the variables that might affect them, for possible future therapeutic proposals. It is concluded that the most significant fact in the treatment of familial hypophosphatemic rickets in infancy was the magnitude of the final stature. The use of growth hormone can be helpful in these patients. However, research reporting treatments with the use of the growth hormone for rickets are controversial. The majority of the authors agree that treatment using vitamin D and phosphate enables some statural growth in cases of early diagnosis, reflecting a better prognosis.

Adolescent↗