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Biomedical subjects

Helina Somervell

Publications and source records attributed to Helina Somervell.

4 recordsLinked to original sources

25-hydroxyvitamin D deficiency is a risk factor for symptoms of postoperative hypocalcemia and secondary hyperparathyroidism after minimally invasive parathyroidectomy.

BACKGROUND: Patients with primary hyperparathyroidism who undergo minimally invasive parathyroidectomy (MIP) may have postoperative symptoms of hypocalcemia or secondary hyperparathyroidism. This study sought to identify factors predictive of these events. METHODS: Between 1998 and 2004, 190 patients with primary hyperparathyroidism underwent MIP with excision of a single adenoma. Age, gender, race, prior head and neck surgery, use of preoperative thyroid hormone or calcium-channel blockers, preoperative levels of calcium, 25-hydroxyvitamin D (25[OH]D) and intact parathyroid hormone (iPTH), the presence of osteopenia or osteoporosis, intraoperative iPTH levels, and adenoma weight were evaluated by univariate analysis as predictors of postoperative symptoms of hypocalcemia and secondary hyperparathyroidism. RESULTS: None of the following were predictors of postoperative symptoms of hypocalcemia: age, gender, race, prior head and neck surgery, preoperative medications, preoperative calcium and iPTH levels, osteopenia or osteoporosis, intraoperative iPTH levels, or adenoma weight. However, patients with postoperative symptoms of hypocalcemia had significantly lower preoperative 25[OH]D levels (P = .01). Further, higher preoperative iPTH levels (P < .01) and lower preoperative 25[OH]D levels (P = .05) were associated with secondary hyperparathyroidism postoperatively. CONCLUSIONS: A low preoperative 25[OH]D level is associated with postoperative symptoms of hypocalcemia and secondary hyperparathyroidism in patients undergoing MIP. One might consider instituting empiric calcium supplementation postoperatively in patients with low 25[OH]D levels.

Adenoma↗

Interpretation of 99mTc sestamibi parathyroid SPECT scan is improved when read by the surgeon and nuclear medicine physician together.

OBJECTIVE: Parathyroid gland localization and lateralization are important before surgery, particularly for minimally invasive parathyroidectomy (MIP) and recurrent hyperparathyroidism. We hypothesized that readings of Tc sestamibi scans with single photon emission computed tomography (SPECT) by a surgeon and nuclear medicine physician together (NMP+S) compared to a nuclear medicine physician alone (NMP alone) might affect scan interpretation accuracy. METHODS: Between May 1999 and December 2002, 127 hyperparathyroid patients had preoperative localization with sestamibi SPECT. Scans were prospectively interpreted by an endocrine surgeon and nuclear medicine physician attending together (NMP+S) and a nuclear medicine physician attending alone (NMP alone). These readings were compared to intra-operative findings, which served as the 'gold standard'. RESULTS: There were 120 patients with primary hyperparathyroidism (55 underwent MIP) and seven with secondary or tertiary hyperparathyroidism; seven patients had recurrent hyperparathyroidism. Of 127 patients, 83 had single adenomas; 27, double adenomas; 15, hyperplasia; one, MENIIA; and one, parathyroid cancer. Sensitivity and positive predictive values were 58.6% and 67.4% for NMP alone compared to 81.9% and 70.0% for NMP+S. The overall accuracy of correct localization was 45.7% vs. 60.6% (P<0.01) and of correct lateralization was 69.3% vs. 80.3% (P<0.01) for NMP alone versus NMP+S respectively. The most common finding interpreted incorrectly by NMP alone and correctly by NMP+S was an ectopic superior parathyroid adenoma in the inferior position. Ninety-eight per cent of patients were cured of their hyperparathyroidism. CONCLUSIONS: Parathyroid sestamibi SPECT scan interpretation by an endocrine surgeon reading with a nuclear medicine attending resulted in improved accuracy of gland localization and lateralization compared to a nuclear medicine attending reading alone. This improvement may be due to increased awareness of clinical factors and head-and-neck anatomy.

Adolescent↗

Using gene expression profiling to differentiate benign versus malignant thyroid tumors.

DNA microarrays allow quick and complete evaluation of a cell's transcriptional activity. Expression genomics is very powerful in that it can generate expression data for a large number of genes simultaneously across multiple samples. In cancer research, an intriguing application of expression arrays includes assessing the molecular components of the neoplastic process and utilizing the data for cancer classification (Miller LD, et al. Cancer Cell 2002;2:353-61). Classification of human cancers into distinct groups based on their molecular profile rather than their histological appearance may prove to be more relevant to specific cancer diagnoses and cancer treatment regimes. Several attempts to formulate a consensus about classification and treatment of thyroid carcinoma based on standard histopathological analysis have resulted in published guidelines for diagnosis and initial disease management (Sherman SI. Lancet 2003;361:501-11). In the past few decades, no improvement has been made in the differential diagnosis of thyroid tumors by fine needle aspiration biopsy, specifically suspicious or indeterminate thyroid lesions, suggesting that a new approach to this should be explored. Therefore, in this study, we developed a gene expression approach to diagnose benign versus malignant thyroid lesions in 73 patients with thyroid tumors. We successfully built a 10 and 6 gene model able to differentiate benign versus malignant thyroid tumors. Our results support the premise that a molecular classification system for thyroid tumors is possible, and this in turn may provide a more accurate diagnostic tool for the clinician managing patients with suspicious thyroid lesions.

Diagnosis, Differential↗

Effect of calcium channel blockers on the sensitivity of preoperative 99mTc-MIBI SPECT for hyperparathyroidism.

BACKGROUND: Technetium 99m ( 99m Tc)-methoxyisobutylisonitrile (MIBI) single photon emission computed tomography (SPECT) is frequently used in the evaluation of patients with hyperparathyroidism. Calcium channel blockers (CACBs) may affect 99m Tc-MIBI uptake by parathyroid cells. This study examines the effect of CACB therapy on the sensitivity of 99m Tc-MIBI SPECT localization for hyperparathyroidism. METHODS: Two hundred fifty-three operated patients with hyperparathyroidism were retrospectively reviewed. The potential effect of CACB therapy on 99m Tc-MIBI scan sensitivity was examined by using logistic regression analysis. Possible confounding factors were considered. RESULTS: Among 235 patients, those with multiple endocrine neoplasia, type I (MEN-I), MEN-IIA, 4-gland hyperplasia, secondary hyperparathyroidism, and tertiary hyperparathyroidism exhibited no difference associated with CACB use. Of the remaining 198 patients with primary hyperparathyroidism, 7/30 (23%) with negative 99m Tc-MIBI SPECT scans compared to 24/168 (14%) with positive scans used CACBs. After correcting for age, gender and gland weight, the odds ratio (OR) for a negative study in patients taking CACBs was 2.88 (95% CI, 1.03-8.10; P = .045). Atherosclerosis, hypertension, diabetes mellitus, preoperative calcium and parathyroid hormone levels, and thyroid hormone use were not confounding factors. CONCLUSIONS: CACB therapy reduces the sensitivity of 99m Tc-MIBI parathyroid SPECT in patients with primary hyperparathyroidism. Further studies are required to determine the potential reversibility of this effect with termination of CACB therapy.

Calcium Channel Blockers↗