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Richard T Kloos

Publications and source records attributed to Richard T Kloos.

At least 19 recordsLinked to original sources

Distinct molecular profiles of indeterminate and malignant thyroid nodules in patients under 21 years of age.

Although uncommon, thyroid nodules (TN) in pediatric and young adult patients carry higher malignancy risk and often present with a high burden of metastatic disease than adults. The molecular features underlying this distinct clinical behavior remain unclear. We analyzed Afirma Genomic Sequencing Classifier (GSC) data from 283,621 TN, comparing patients <21 and &#x2265;21 years. Cytology (Bethesda), GSC benign (B) vs suspicious (S) calls, and Afirma Xpression Atlas (XA) variant/fusion profiles were evaluated in GSC-S and Bethesda V/VI samples. Genome-wide expression was used to derive pathway signatures and thyroid cancer-related scores: BRAF-RAS score (BRS), ERK, follicular and epithelial-to-mesenchymal transition (FMT, EMT) and thyroid differentiation scores (TDS). Among 2,397 patients <21 (median age 18.9; 81.4% female) and 281,224 adults &#x2265;21 (median age 59.8; 77.1% female), <21 samples showed more Bethesda V/VI cytology (14.5% vs 5.0%; p<0.0001) and a lower GSC-B rate (43.5% vs 68.8%; p<0.0001). In GSC-S samples, total variant detection was higher in <21 (45.3% vs 37.4%), with enriched BRAF p.V600E, TSHR, and DICER1 variants, while HRAS variants were more common in adults (all p<0.01). Gene fusions involving RET, NTRK3 and ALK were enriched in <21 (14.5% vs 5.5%; p<0.0001). TERT promoter mutations were absent in <21 yrs GSC-S and Bethesda V/VI samples (vs 4.2% and 9.3% in adults). GSC-S <21 showed cell-cycle pathway enrichment. RET/NTRK/ALK-positive <21 demonstrated enrichment of angiogenesis and EMT pathways, higher ERK/EMT/FMT scores, and lower BRS/TDS scores vs genotyped-matched adults. These molecular differences provide mechanistic insight into the more invasive phenotype in pediatric and young adult TN.

BRAF↗

Afirma genomic sequencing classifier performance in young patients with cytologically indeterminate thyroid nodules.

CONTEXT: The Afirma Genomic Sequencing Classifier (GSC) is validated in patients &#x2265; 21 years with a 96% negative predictive value for malignancy when GSC-(B)enign. Afirma GSC has not been formally studied in patients <21 years of age with indeterminate thyroid nodules (ITNs). OBJECTIVE: To evaluate Afirma GSC in young patients with ITNs. DESIGN: Retrospective analysis of Afirma GSC testing. SETTING: ITNs referred for molecular testing in a real-world setting. PARTICIPANTS: Forty-nine ITNs from 49 patients < 21 years of age who had histopathology or 2 years' clinical follow-up data ascertained. INTERVENTION: None. MAIN OUTCOME MEASURE: Afirma GSC test performance. RESULTS: In 49 ITNs from patients aged 9 to 20 years (median 18.5 [interquartile range, 17.3-19.8]), 30 were GSC-B and 19 GSC-(S)uspicious, among which 14 (73.7%) were malignant (ie, true positive) and 5 (26.3%) were benign (ie, false positive). All 30 Afirma GSC-B cases were either histologically (n = 9) or clinically benign (n = 21) (ie, true negative). All 14 malignancies were GSC-S (sensitivity 100% [95% CI, 77-100]); 30/35 clinically or histologically benign cases were GSC-B (specificity 86% [95% CI, 70-95]). Negative predictive value for an Afirma GSC-B result was 100% [95% CI, 88-100]. Genomic alterations were not detected in the 30 GSC-B samples. Among the 14 malignant samples, there were 9 papillary thyroid carcinomas, 1 oncocytic carcinoma, 1 noninvasive follicular thyroid neoplasm with papillary-like nuclear features, and 3 follicular thyroid carcinomas. CONCLUSION: In young patients with ITNs, the Afirma GSC demonstrated an excellent negative predictive value when defining a thyroid nodule result by histology or clinical follow-up.

Thyroid Nodule↗

Phase II study of celecoxib in metastatic differentiated thyroid carcinoma.

CONTEXT: There is increased cyclooxygenase-2 (COX-2) expression in malignant thyroid nodules compared with nonneoplastic and benign thyroid tissue. OBJECTIVE: The objective of the study was to evaluate the efficacy of celecoxib, a selective COX-2 inhibitor, in treating patients with progressive metastatic differentiated thyroid cancer (DTC) and to explore the relationship of clinical response to tumor COX-2 expression with immunohistochemistry in a subset of patients. DESIGN: The study was a prospective phase II trial with Fleming single-stage design powered at 80% with a 5% rejection error to detect more than 20% progression-free survival at 12 months. SETTING: Ambulatory patients were from tertiary referral academic medical centers. PATIENTS: Patients in the study had progressive metastatic DTC and had failed prior standard therapy. INTERVENTION: Patients were treated with celecoxib 400 mg orally twice a day for 12 months. MAIN OUTCOME MEASURE: The main outcome measure was progression-free survival at 12 months of treatment using Response Evaluation Criteria in Solid Tumors and/or serum thyroglobulin. RESULTS: Twenty-three of 32 patients experienced progressive disease or stopped therapy due to toxicity, thus fulfilling the intent-to-treat study endpoint for celecoxib failure. One patient achieved partial response, and one patient completed 12 months of therapy progression-free. The patient with partial response was on therapy along with seven other patients when the study was terminated. CONCLUSIONS: Celecoxib 400 mg orally twice per day fails to halt progressive metastatic DTC in most patients.

Adult↗

Iodine biokinetics and dosimetry in radioiodine therapy of thyroid cancer: procedures and results of a prospective international controlled study of ablation after rhTSH or hormone withdrawal.

UNLABELLED: Technical aspects and results of the dosimetric assessments of postoperative radioiodine ablation in the framework of an international, prospective, controlled, randomized, comparative study of the effectiveness of ablation therapy with 3.7 GBq (131)I in differentiated thyroid cancer after stimulation with recombinant human TSH (rhTSH) or by thyroid hormone withdrawal (THW) are presented. METHODS: Sixty-three patients were randomized after thyroidectomy to either the THW or the rhTSH group. Scintigraphic neck images were acquired starting 48 h after radioiodine administration to assess biokinetics in the thyroid remnant. The activity in blood samples was quantified and data from whole-body probe measurements and scintigraphic whole-body scans were combined to deduce retention curves in blood and whole body, respectively. The absorbed dose to the blood was calculated using a modified approach based on the formalism of the MIRD Committee of the Society of Nuclear Medicine. RESULTS: The effective half-time in the remnant thyroid tissue was significantly longer after rhTSH than THW (67.6 +/- 48.8 vs. 48.0 +/- 52.6 h, respectively; P = 0.01), whereas the observed differences of the mean 48-h (131)I uptakes (0.5% +/- 0.7% vs. 0.9% +/- 1.0% after THW; P = 0.1) and residence times (0.9 +/- 1.3 vs. 1.4 +/- 1.5 h after THW; P = 0.1) between the rhTSH and THW groups were not statistically significant. The specific absorbed dose to the blood was significantly (P <0.0001) lower after administration of rhTSH (mean, 0.109 +/- 0.028 mGy/MBq; maximum, 0.18 mGy/MBq) than after THW (mean, 0.167 +/- 0.061 mGy/MBq; maximum, 0.35 mGy/MBq), indicating that higher activities of radioiodine might be safely administered after exogenous stimulation with rhTSH. CONCLUSION: Indication of an influence of the residence time of radioiodine in the blood on the fractional uptake into thyroid remnant was found. A novel regimen is proposed in which therapeutic activities to be administered are determined from the individual specific blood dose.

Adult↗

The role of microRNA genes in papillary thyroid carcinoma.

Apart from alterations in the RET/PTC-RAS-BRAF pathway, comparatively little is known about the genetics of papillary thyroid carcinoma (PTC). We show that numerous microRNAs (miRNAs) are transcriptionally up-regulated in PTC tumors compared with unaffected thyroid tissue. A set of five miRNAs, including the three most up-regulated ones (miR-221, -222, and -146), distinguished unequivocally between PTC and normal thyroid. Additionally, miR-221 was up-regulated in unaffected thyroid tissue in several PTC patients, presumably an early event in carcinogenesis. Tumors in which the up-regulation (11- to 19-fold) of miR-221, -222, and -146 was strongest showed dramatic loss of KIT transcript and Kit protein. In 5 of 10 such cases, this down expression was associated with germline single-nucleotide changes in the two recognition sequences in KIT for these miRNAs. We conclude that up-regulation of several miRs and regulation of KIT are involved in PTC pathogenesis, and that sequence changes in genes targeted by miRNAs can contribute to their regulation.

Base Sequence↗

A single recombinant human thyrotropin-stimulated serum thyroglobulin measurement predicts differentiated thyroid carcinoma metastases three to five years later.

CONTEXT: Testing for residual differentiated thyroid carcinoma relies heavily upon recombinant human (rh)TSH-stimulated serum thyroglobulin (Tg) levels, but the positive predictive value is often low. OBJECTIVE: Our objective was to determine the accuracy of a single rhTSH-Tg measurement over time. DESIGN AND SETTING: We conducted a prospective follow-up study at the University referral center. PATIENTS: A total of 107 differentiated thyroid carcinoma patients were stratified according to their initial rhTSH-Tg as follows: group 1 with Tg less than 0.5 (n = 68), group 2 with Tg of 0.6-2.0 (n = 19), and group 3 with Tg greater than 2 ng/ml (n = 20). INTERVENTION: Clinical evaluations were conducted over 0.9-5.2 yr as follows: Tg during thyroid hormone suppression (n = 27), after rhTSH (n = 59), and/or after thyroid hormone withdrawal (n = 15). MAIN OUTCOME: Tumor was identified in one patient in each of groups 1 (1.6%) and 2 (5.5%), and 16 in group 3 (80%), comprising 19 tumor locations: 11 locoregional, two mediastinal, five lung, and one brain. Tumor was found in 81% with an initial or follow-up rhTSH-Tg greater than 2 ng/ml. TSH-stimulated Tg fell spontaneously to less than 0.5 ng/ml in 50% of group 2 and 5% of group 3 over 1.7-5.0 yr. The positive predictive value of the initial rhTSH-Tg greater than 2 ng/ml was 80%, and the negative predictive value was 98%. After retreatment, 100% of group 1, 74% of group 2, and 55% of group 3 had no evidence of tumor (P = 0.0001). CONCLUSIONS: 1) A single rhTSH-Tg greater than 2 ng/ml predicts persistent tumor, although no value entirely excludes future recurrence. 2) Repeated TSH-stimulated studies are appropriate for patients at risk of recurrence, especially those with an rhTSH-Tg greater than 1 ng/ml. 3) A single rhTSH-Tg less than 0.5 ng/ml without Tg antibody has an approximately 98% likelihood of identifying patients completely free of tumor, a large group in which TSH suppression to less than 0.1 mIU/liter and frequent imaging and TSH-stimulated Tg testing are unnecessary.

Adolescent↗

Papillary thyroid cancer: medical management and follow-up.

The incidence of epithelial derived thyroid cancer (papillary thyroid cancer and follicular thyroid cancer, known collectively as differentiated thyroid cancer) is rising. About 80% of patients with thyroid cancer have PTC and are best treated with thyroidectomy and functional lymph node dissection, followed by radioiodine ablation or therapy and performance of a posttreatment whole-body scan, followed by thyroid stimulating hormone (TSH) suppression. One year after radioiodine administration, the use of sensitive thyroglobulin (Tg) assays can separate the vast majority of patients with persistent disease from those who are free of disease and unlikely to have recurrent disease all without the need for repeat whole-body radioiodine imaging. Patients with detectable serum Tg during TSH suppression (Tg-on) or Tg that rises above 2 ng/mL after TSH stimulation (TSH-Tg) are highly likely to harbor residual tumor. TSH stimulation can be achieved using either thyroid hormone withdrawal or recombinant human TSH (rhTSH). Highly skilled screening neck ultrasonography can identify a few additional patients with subcentimeter residual neck lymph node metastases not detected by TSH-Tg. However, ultrasonography and chest computed tomography (CT) are most critical for tumor localization in those patients with Tg values that suggest residual disease or in those patients with persistent antithyroglobulin antibodies (TgAb) that falsely lower Tg measurement. TgAb quantitative titers typically resolve steadily over just a few years in patients free of disease after initial therapy. Another paradigm shift is the recognition that most patients who eventually achieve freedom from disease do so by surgery with fewer patients cured by repetitive radioiodine treatments, and even fewer cured with external beam radiation. Patients who appear to be free of disease require a lifetime of follow-up to optimize levothyroxine treatment, and they will undergo periodic stimulation testing because some will still manifest recurrent disease. Patients with persistent disease despite negative ultrasonography, chest CT, and whole-body radioiodine imaging may have a tumor identified by fluorodeoxyglucose positron emission tomography, optimally performed with combined TSH stimulation and image fusion with CT or magnetic resonance imaging. Patients with metastatic disease who are unresponsive to conventional treatment are encouraged to participate in increasingly available thyroid cancer-specific clinical trials using targeted experimental oral or intravenous chemotherapeutic agents to address this tumor that has historically proven resistant to conventional chemotherapeutic agents.

Antineoplastic Agents↗

Galectin-3, fibronectin-1, CITED-1, HBME1 and cytokeratin-19 immunohistochemistry is useful for the differential diagnosis of thyroid tumors.

The diagnosis of thyroid tumors is critical for clinical management; however, tumors with follicular architecture often present problems. We evaluated the diagnostic use of the protein expression of four genes that were found to be upregulated in papillary thyroid carcinoma compared to normal thyroid (LGALS3, FN1, CITED1 and KRT19), and of the mesothelial cell surface protein recognized by monoclonal antibody HBME1 in thyroid tumors. Tissues from 85 carcinomas (67 papillary, six follicular, eight Hürthle cell and four anaplastic) and 21 adenomas were evaluated by immunohistochemistry for the expression of these gene protein products, for example, galectin-3 (GAL3), fibronectin-1 (FN1), CITED1, cytokeratin-19 (CK19) and HBME1. Non-neoplastic thyroids (29 adenomatous and 14 thyrotoxic hyperplasia, and 59 normal) were also studied. The expression of all five proteins was significantly associated with malignancy, and highly specific (> or = 90%) for carcinoma compared to adenoma. GAL3, FN1 and/or HBME1 expression was seen in 100% of carcinomas (85/85) and in 24% of adenomas (5/21). Coexpression of multiple proteins was seen in 95% of carcinomas and only 5% of adenomas (P<0.0001). Coexpression of FN1 and GAL3 (FN1+ GAL3+, 70/85) or FN1 and HBME1 (FN1+ HBME1+, 53/85) was restricted to carcinomas, while their concurrent absence (FN1- GAL3- or FN1- HBME1-, 18/21 adenoma) was highly specific (96%) for benign lesions. Among non-neoplastic thyroids, adenomatous hyperplasia frequently expressed GAL3 (n=16), CK19 (n=9) and CITED1 (n=7), but the expression was predominantly focal in contrast to the diffuse expression in carcinomas. An immunohistochemical panel consisting of GAL3, FN1 and HBME1 may be useful in the diagnosis of follicular cell-derived thyroid tumors.

Adenoma↗

Allelic variation in gene expression in thyroid tissue.

Heritable allelic variation in gene expression may contribute to sporadic and familial disease, but is relatively unexplored. Papillary thyroid cancer (PTC) is characterized by strong heritability but predisposing genes have not been detected. Here we tested the hypothesis that inherited variation in allelic expression occurs in thyroid tissue and so might contribute to disease. We studied genes with a role in thyroid function, signaling, and/or tumorigenesis (PRKAR1A, DUOX1, IP3RI, ARGBP2, TPO, TG, and PEG10). We screened thyroid tissues from controls and patients with thyroid disease and lymphoblastoid cell lines from 40 healthy individuals. We demonstrated the robustness of the technique, a fluorescent dideoxy terminator-based method distinguishing the mRNA products of alleles in individuals who are heterozygous for a polymorphism in the transcript. We confirmed that the PEG10 gene transcript was derived only from one allele because of genetic imprinting. Three other genes, DUOX1, TPO, and ARGBP2 showed allelic variation in thyroid tissue and/or lymphoblastoid cells. Benign and malignant thyroid tissue from the same patient always gave concordant results. DUOX1 variation in expression was seen in 3 of 13 patients with PTC and 6 of 27 patients with benign disease. Further studies are needed to determine the significance of these and other allelic variations.

Alleles↗

Variable expression of coxsackie-adenovirus receptor in thyroid tumors: implications for adenoviral gene therapy.

Adenoviral gene therapy represents a novel approach for the treatment of aggressive thyroid carcinomas. Both coxsackie-adenovirus receptor (CAR) and integrins have been shown to be the major determinants for adenoviral infectivity in many types of cancer cells, yet conflicting results have been reported. In this report we examine these factors mediating adenoviral infection in thyroid cells and to evaluate CAR expression in various types of thyroid cancer. We found that neither expression levels of CAR nor integrins are solely predictive of adenoviral infectivity in thyroid cells. However, the absence of CAR was associated with poor adenoviral infectivity in immortalized rat FRTL-5 cells. Moreover, preincubation with alpha-CAR antibody decreased infectivity in FTC 238 cells, a human thyroid tumor line. These results indicate that CAR does play a role in adenoviral infection of thyroid cells. Immunohistochemical analysis revealed that CAR is expressed at the cell surface in the majority of malignant thyroid tumors. We further show that adenoviral infectivity in some thyroid cancer cells can be improved by poly-L-lysine. Our study warrants a functional method to evaluate adenoviral infectivity should be developed and instituted prior to clinical trials of adenoviral gene therapy in patients with advanced thyroid cancer.

Adenoviridae↗

Expression of sodium iodide symporter in the lacrimal drainage system: implication for the mechanism underlying nasolacrimal duct obstruction in I(131)-treated patients.

PURPOSE: Nasolacrimal outflow obstruction has been associated with high-dose (>150 mCi) radioactive iodine (I(131)) treatment. Commonly used for thyroid cancer treatment, I(131) is effectively transported in the targeted tissue by the Na(+)/I symporter (NIS). We hypothesized that NIS is expressed in the lacrimal sac and nasolacrimal duct and that active accumulation of I(131) is responsible for the clinical observations seen in these patients. METHODS: Reverse transcriptase-polymerase chain reaction and immunohistochemical analyses were used to evaluate NIS expression in both archived and fresh human tissues RESULTS: Reverse transcriptase-polymerase chain reaction analysis showed that NIS mRNA is present in the lacrimal sac. Immunohistochemical analysis indicated that NIS protein is expressed in the stratified columnar epithelial cells of the lacrimal sac and nasolacrimal duct. NIS protein was undetectable in the lacrimal gland, Wolfring and Krause glands, conjunctiva, canaliculus, and nasal mucosa. NIS-expressing columnar epithelial cells were absent and fibrosis was evident in the lacrimal sacs from I(131)-treated patients undergoing dacryocystorhinostomy. CONCLUSIONS: NIS is present in the lacrimal sac and nasolacrimal duct of humans, correlating to the anatomic areas of clinical obstruction that develop in patients treated with greater than 150 mCi of I(131). This suggests that NIS may be the vector of radiation-induced injury to the lacrimal system. To our knowledge, this is the first report of any ion transporter in the nasolacrimal outflow system and raises new questions as to the role the lacrimal sac plays in the modification of tears and in lacrimal outflow pathology.

Basement Membrane↗

Thyroid carcinoma.

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Biomarkers, Tumor↗

Imaging of metastatic pulmonary tumors following NIS gene transfer using single photon emission computed tomography.

The Na+/I- symporter (NIS) is a membrane glycoprotein that facilitates the uptake of iodine into thyroid follicular cells. Recently, we and others have demonstrated the feasibility of imaging subcutaneous xenografts expressing exogenous NIS, suggesting that NIS may serve as an imaging reporter gene to monitor vector delivery and therapeutic gene expression. In this study, we established NIS-expressing pulmonary tumors in nude mice to investigate the minimal tumor size required for in vivo detection of pulmonary tumors by single photon emission computed tomography (SPECT) with pinhole collimation. In order to define the anatomic location of NIS-expressing tumor nodules detectable by SPECT, we performed simultaneous, dual-isotope imaging. We injected 1 mCi 99mTc-MAA via tail vein to image pulmonary perfusion and injected 1 mCi Na125I intraperitoneally to image NIS-expressing tumors. Fused images showed that 99mTc-MAA perfusion defects correlated with NIS-mediated 125I uptake. Post-mortem analysis revealed that tumors 3 mm in diameter could be detected by SPECT with pinhole collimation. These studies demonstrate the feasibility of SPECT to detect pulmonary tumors expressing exogenous NIS in mice.

Animals↗

Can amiodarone be restarted after amiodarone-induced thyrotoxicosis?

Thyrotoxicosis is a well-documented and studied complication of treatment with amiodarone, but little has been written about the risks and treatment of recurrent thyrotoxicosis upon re-exposure to amiodarone. One such case is outlined here and discussed by a panel of experts.

Aged↗

CITED1 protein expression suggests Papillary Thyroid Carcinoma in high throughput tissue microarray-based study.

Molecular markers of papillary thyroid carcinoma (PTC) are relatively unknown. Recently, the CITED1 gene was reported to be greatly upregulated in PTC relative to normal thyroid. The CITED1 protein, a 27-kd transcriptional transactivator nuclear protein is expressed in PTC, melanocytes, breast epithelial cells, and several embryonic tissues. However, its expression in other thyroid masses and non-thyroid tumors is not known. We evaluated CITED1 protein expression in tissue microarrays comprising various thyroid and nonthyroid tissues by immunohistochemistry using a polyclonal anti-CITED1 antibody. CITED1 expression was seen in 63 of 68 PTC (93%), 3 of 12 follicular carcinomas (25%), 2 of 7 Hürthle cell carcinomas (28%), 2 of 21 adenomas (10%), 2 of 6 follicular neoplasms of undetermined malignant behavior (33%), and 2 of 24 nodular goiters (8%). Normal thyroids (n = 27), thyrotoxic hyperplasias (n = 14), and anaplastic thyroid carcinomas (n = 5) did not express CITED1. Among nonthyroid tumors, 6 of 23 melanomas (26%), 11 of 65 prostatic carcinomas (17%), 3 of 25 glioblastomas (12%), 4 of 67 breast carcinomas (6%), 1 of 49 lymphomas (2%), 1 of 65 lung carcinomas (2%), 1 of 68 colon carcinomas (2%), and none of 49 ovarian carcinomas (0%) expressed CITED1. The accuracy of CITED1 in differentiating PTC from benign thyroid nodules, other thyroid carcinomas, and nonthyroid carcinomas was 93%, 89%, and 94%, respectively. CITED1 is preferentially expressed in PTC and may be used as a diagnostic marker of it.

Adenocarcinoma, Follicular↗

Application of the Cre/loxP system to enhance thyroid-targeted expression of sodium/iodide symporter.

Radioiodide uptake activity mediated by the human Na(+)/I(-) symporter (hNIS) in thyroid follicular cells is the basis for effective (131)I therapy in thyroid cancer. However, radioiodide therapy is not effective in patients with thyroid cancer displaying low or absent hNIS expression. This study assessed the Cre/loxP system for enhancing thyroid-targeted hNIS expression driven by the thyroglobulin (Tg) promoter. The following three recombinant adenoviruses (rAd) were constructed: rAd-Tg-hNIS drives hNIS expression by the Tg promoter; rAd-Tg-Cre drives Cre expression by the Tg promoter; and rAd-CMV-loxP-hNIS drives hNIS expression by the cytomegalovirus (CMV) promoter after Cre-mediated excision of an intervening loxP-GFP-Zeo-loxP. Immortalized normal and malignant rat thyroid cell lines and primary cultures of normal human thyroid and human follicular adenoma cells were investigated. We found that the relative promoter activity of Tg vs. CMV is critical for the efficacy of the Cre/loxP system. In cells with weak Tg promoter activity, coinfection of rAd-Tg-Cre and rAd-CMV-loxP-hNIS induced higher hNIS expression than single infection of rAd-Tg-hNIS. Finally, Tg promoter activity was partially restored in malignant thyroid cells by forced expression of the paired domain-containing transcription factor (Pax-8), allowing the Cre/loxP system to mildly enhance radioiodide uptake.

Adenoviridae↗

Nasolacrimal drainage system obstruction from radioactive iodine therapy for thyroid carcinoma.

Ophthalmic complications of (131)I therapy, including ocular dryness, have been recently investigated and described. However, nasolacrimal drainage system obstruction (NDSO), complicating (131)I therapy, has not been previously well appreciated or characterized. One of our patients developed bilateral complete nasolacrimal duct obstruction after (131)I therapy that prompted awareness of this potential complication. Over 16 months, 423 patients with epithelial-derived thyroid cancer were provided routine clinical care; 390 of these patients had received (131)I ablation or therapy, and 10 patients subsequently reported epiphora. All had evidence of NDSO disease after a mean cumulative (131)I dose of 17,279 +/- 2,923 MBq (467 +/- 79 mCi), with a mean individual (131)I dose of 6,660 +/- 555 MBq (180 +/- 15 mCi). Symptoms appeared 6.5 +/- 1.4 (range, 3-16) months after the last (131)I dose, whereas the mean time from symptom onset to correct diagnosis was 18 +/- 5 months. A causal relationship between (131)I administration and NDSO is strongly suspected. Patients reporting epiphora should be evaluated promptly by an oculoplastic surgeon.

Adolescent↗