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Biomedical subjects

James White

Publications and source records attributed to James White.

6 recordsLinked to original sources

Hyponatremia from oxcarbazepine and carbamazepine.

The authors examined sodium concentrations from 97 oxcarbazepine-treated (OXC) and 451 carbamazepine-treated (CBZ) patients with epilepsy using cross-section and follow-up studies. The frequency of hyponatremia (Na+ < or = 134 mEq/L) was 29.9% among OXC-treated patients and 13.5% among CBZ-treated patients (p < 0.0001). Hyponatremia (Na+ < or = 128 mEq/L) was severe: 12.4% of OXC-treated patients and 2.8% of CBZ-treated patients (p < 0.001). Advanced age was a risk factor for hyponatremia. Hyponatremia, once present, persisted in both groups.

Adult↗

Two novel CHS1 (LYST) mutations: clinical correlations in an infant with Chediak-Higashi syndrome.

Chediak-Higashi syndrome (CHS) is a rare autosomal recessive disease characterized by variable degrees of oculocutaneous albinism, recurrent infections, and a mild bleeding tendency, with late neurologic dysfunction. Most patients also undergo an accelerated phase of lymphohistiocytosis and die at an early age unless they receive an allogeneic hematopoietic stem cell transplant (SCT). Mutations in the CHS1 (LYST) gene result in CHS. Here, we describe an adopted infant who is compound heterozygous for two novel CHS1 gene mutations, both of which are predicted to result in truncated proteins. The two mutations are a nonsense mutation (c.1540 C>T, CGA>TGA, R514X) in exon 5 and a one base pair deletion (del c.9893T, F3298fsX3304) in exon 43, coding for part of the CHS1 protein's BEACH domain. These two newly described mutations are expected to give rise to a severe phenotype and, indeed, the patient had absolutely no cytotoxicity by natural killer cells or cytotoxic lymphocytes prior to his allogeneic SCT.

Blood Platelets↗

Milder ocular findings in Hermansky-Pudlak syndrome type 3 compared with Hermansky-Pudlak syndrome type 1.

PURPOSE: To compare clinically 2 different subtypes of Hermansky-Pudlak syndrome (HPS), type 1 (HPS-1) and type 3 (HPS-3). DESIGN: Cross-sectional study of a series of patients. PARTICIPANTS: Sixteen patients with HPS-1 and 14 patients with HPS-3 were studied. METHODS: Complete eye examination, including best-corrected visual acuity and photographs and photographic grading of iris transillumination and macular transparency using a previously established grading system. RESULTS: Snellen visual acuity was 20/160-2 in the HPS-1 group and 20/125+2 in the HPS-3 group (P = 0.017). Iris grading was statistically significant for less translucence in the HPS-3 patients. The HPS-3 patients also tended to have less transparent maculas, but the difference was not statistically significant. CONCLUSIONS: Patients with HPS-3 have less severe ophthalmic manifestations than patients with HPS-1. Ophthalmologists treating patients with albinism should consider HPS in their differential diagnosis even in the case of mild iris and macular hypopigmentation.

Adolescent↗

Hermansky-Pudlak syndrome type 4 (HPS-4): clinical and molecular characteristics.

Hermansky-Pudlak syndrome (HPS) is an autosomal recessive disorder of oculocutaneous albinism and bleeding attributable to storage-pool-deficient platelets. Although at least 14 mouse models of HPS exist, the human disorders that comprise HPS, i.e., HPS-1, HPS-2, HPS-3, and HPS-4, are recognized to result from mutations in four genes, viz., HPS1, ADTB3A, HPS3, and HPS4, respectively. To characterize further the recently identified HPS-4 disease on molecular and clinical grounds, we first identified the genomic organization of HPS4, located on chromosome 22q11.2-q12.2, including its intron/exon boundaries. We found that HPS4 produces at least two alternatively spliced mRNA transcripts that differ at their 5'-ends. Next, we performed an extensive analysis of 22 unassigned HPS patients (i.e., not having HPS-1, HPS-2, or HPS-3 disease). Using single-strand conformation polymorphism, we determined that seven of the 22 patients had HPS-4. In these seven individuals, we identified five different HPS4 mutations, including one frameshift insertion, one missense, and three nonsense mutations. Three alleles in two patients contained the previously reported Q698insAAGCA frameshift. Three HPS4 mutations were newly described. Four alleles in three patients contained R217X, and two siblings were compound heterozygotes for E138X and E222X. Clinically, our HPS-4 patients exhibited iris transillumination, variable hair and skin pigmentation, absent platelet dense bodies, and occasional pulmonary fibrosis and granulomatous colitis, a severe phenotype similar to that of patients with HPS-1.

Adolescent↗

The program of androgen-responsive genes in neoplastic prostate epithelium.

The human prostate gland is an important target organ of androgenic hormones. Testosterone and dihydrotestosterone interact with the androgen receptor to regulate vital aspects of prostate growth and function including cellular proliferation, differentiation, apoptosis, metabolism, and secretory activity. Our objective in this study was to characterize the temporal program of transcription that reflects the cellular response to androgens and to identify specific androgen-regulated genes (ARGs) or gene networks that participate in these responses. We used cDNA microarrays representing about 20,000 distinct human genes to profile androgen-responsive transcripts in the LNCaP adenocarcinoma cell line and identified 146 genes with transcript alterations more than 3-fold. Of these, 103 encode proteins with described functional roles, and 43 represent transcripts that have yet to be characterized. Temporal gene expression profiles grouped the ARGs into four distinct cohorts. Five uncharacterized ARGs demonstrated exclusive or high expression levels in the prostate relative to other tissues studied. A search of available DNA sequence upstream of 28 ARGs identified 25 with homology to the androgen response-element consensus-binding motif. These results identify previously uncharacterized and unsuspected genes whose expression levels are directly or indirectly regulated by androgens; further, they provide a comprehensive temporal view of the transcriptional program of human androgen-responsive cells.

Amino Acid Motifs↗