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H C Steinert

Publications and source records attributed to H C Steinert.

10 recordsLinked to original sources

Successful treatment of invasive aspergillosis in chronic granulomatous disease by bone marrow transplantation, granulocyte colony-stimulating factor-mobilized granulocytes, and liposomal amphotericin-B.

X-linked chronic granulomatous disease (X-CGD) is a primary immunodeficiency with complete absence or malfunction of the nicotinamide adenine dinucleotide phosphate (NADPH) oxidase in the phagocytic cells. Life-threatening infections especially with aspergillus are common despite optimal antimicrobial therapy. Bone marrow transplantation (BMT) is contraindicated during invasive aspergillosis in any disease setting. We report an 8-year-old patient with CGD who underwent HLA-genoidentical BMT during invasive multifocal aspergillus nidulans infection, nonresponsive to treatment with amphotericin-B and gamma-interferon. During the first 10 days post-BMT, the patient received granulocyte colony-stimulating factor (G-CSF)-mobilized, 25 Gy irradiated granulocytes from healthy volunteers plus G-CSF beginning on day 3 to prolong the viability of the transfused granulocytes. This was confirmed in vitro by apoptosis assays and in vivo by finding nitroblue tetrazolium (NBT)-positive granulocytes in peripheral blood 12 and 36 hours after the transfusions. Clinical and biological signs of infection began to disappear on day 7 post-BMT. Positron emission tomography with F18-fluorodeoxyglucose (FDG-PET) and computed tomography (CT) scans at 3 months post-BMT showed complete disappearance of infectious foci. At 2 years post-BMT, the patient is well with full immune reconstitution and no sign of aspergillus infection. Our results show that HLA-identical BMT may be successful during invasive, noncontrollable aspergillus infection, provided that supportive therapy is optimal.

Amphotericin B

Whole-body positron emission tomography using fluorodeoxyglucose for staging of lymphoma: effectiveness and comparison with computed tomography.

The purpose of this study was to evaluate whole-body positron emission tomography (WB-PET) as a staging modality in Hodgkin's disease (HD) and non-Hodgkin lymphoma (NHL) and to compare it with computed tomography (CT) in a retrospective study. Seventy-one WB-PET studies using fluorodeoxyglucose (FDG) and 49 CT examinations were performed in 19 women and 31 men. Transaxial images were acquired and reformatted coronally and sagittally in PET. CT sections were obtained from the skull base to the pelvic floor. The written reports of the imaging data were compared with a reference standard constructed on the basis of all the data on the individual patients, including clinical follow-up of at least 6 months. The sensitivity and specificity of PET were, respectively, 86% and 96% for HD (n=53), and 89% and 100% for NHL (n=18). For CT sensitivity and specificity were 81% and 41% for HD (n=33) and 86% and 67% for NHL (n=16). Differences between PET and CT sensitivities were not significant, while in HD there was a significant difference in the specificity of PET and CT examinations, mainly because CT was unable to distinguish between active or recurrent disease and residual scar tissue after therapy. FDG tumour uptake was found in high- as well as low-grade NHL patients. In conclusion, PET appears to be highly sensitive and specific for staging of lymphoma. It is at least as sensitive as CT, and more specific, particularly in patients undergoing restaging, where a well-recognized diagnostic dilemma in CT is the presence of a post-therapeutic residual mass.

Adolescent

Detection of extrathoracic metastases by positron emission tomography in lung cancer.

BACKGROUND: Accurate staging of non-small cell lung cancer is essential for treatment planning. We evaluated in a prospective study the role of whole-body 2-[18F]fluoro-2-deoxy-D-glucose (FDG) positron emission tomography (PET) in mediastinal nodal staging with a positive predictive value of 96%. The study was continued to further evaluate the value of whole-body FDG PET in detecting unexpected extrathoracic metastases (ETMs) in patients qualifying for surgical treatment by conventional staging. METHODS: One hundred patients underwent clinical evaluation, chest and upper abdominal computed tomography scan, mediastinoscopy (lymph nodes greater than 1 cm on computed tomography), and routine laboratory tests. In 94 patients with stage IIIa or less and 6 with suspected N3 a whole-body FDG PET was performed. If clinical signs of ETMs were present additional diagnostic methods were applied. All findings in the FDG PET were confirmed histologically or radiologically. RESULTS: Unexpected ETMs were detected in 13 (14%) of 94 patients (stage IIIa or less) at 14 sites. In addition 6 of 94 patients were restaged up to N3 after PET. The suspected N3 disease (stage IIIb) on computed tomography was confirmed by PET in all 6 patients. There was no false positive finding of ETM. Weight loss was correlated with the occurrence of ETM: more than 5 kg, 5 of 13 patients (38%); more than 10 kg, 4 of 6 patients (67%). Pathologic laboratory findings were not predictive for ETM. CONCLUSIONS: Whole-body FDG PET improves detection of ETMs in patients with non-small cell lung cancer otherwise elegible for operation. In 14% of patients (stage IIIa or less), ETMs were detected, and in total, 20% of the patients were understaged.

Adenocarcinoma

Planar coincidence scintigraphy and PET in staging malignant melanoma.

UNLABELLED: This study describes a comparison of simulated planar positron coincidence scintigraphy (PCS) with PET in the whole-body staging of patients with malignant melanoma using 2-18F-fluoro-2-deoxy-D-glucose (FDG). METHODS: In 55 patients with either known metastatic or newly diagnosed malignant melanoma, whole-body PET scanning was performed on a conventional full-ring dedicated PET tomograph, and multiaxial sections were obtained. Furthermore, anteroposterior projection images simulating images of a dual-head Anger camera operating in coincidence mode were obtained from the PET raw data. Each study was evaluated separately and blindly. Imaging findings were confirmed by biopsy or by at least one imaging modality in addition to PET. RESULTS: A total of 108 lesions were evaluated, of which 76 proved to be melanoma metastases. Whole-body PET correctly demonstrated 68 metastases, 6 lesions were classified as questionable metastases and 2 were missed. Whole-body PCS correctly demonstrated 14 metastases, 22 lesions were classified as questionable metastases and 40 metastases were missed. The sensitivities of whole-body PET and whole-body PCS were 89% and 18%, respectively. In PCS lesions in regions of high background activity, such as in the abdomen, were missed more often than in PET (p < 0.05). The tumor-to-background contrast was generally lower in PCS than in PET. A further decrease in PCS detection was found in lesions of < 22 mm in diameter. CONCLUSION: The lack of sensitivity precludes the clinical use of whole-body PCS in staging malignant melanoma.

Adult

[Detection of unexpected extrathoracic metastases in preoperative staging of non-small-cell bronchial carcinoma (NSCLC) with positron emission tomography (PET)].

Accurate staging of non-small cell lung cancer (NSCLC) is essential for subsequent treatment. This study was designed to evaluate the value of FDG-PET in detecting unexpected extrathoracic metastases (ETM) in patients with NSCLC qualifying for surgical treatment based on conventional staging. One hundred patients with stage IIIa or less were included and underwent clinical evaluation, chest and upper abdominal CT scan, mediastinoscopy, and routine laboratory tests. If clinical signs of EM were present additional diagnostic methods, were applied. A partial body FDG-PET was performed. All findings in the FDG-PET were confirmed histologically or radiologically. Unknown ETM were detected in 13 patients (14%) at 19 sites. Whole-body FDG-PET improves detection of unsuspected ETM in patients with NSCLC otherwise eligible for surgery. Fourteen percent of patients were understaged.

Blood Glucose

D1 dopamine receptors are not expressed in human melanoma.

D1 dopamine receptor mRNA has been demonstrated in mouse melanoma cells, and the expression of these G-protein-coupled receptors in human melanoma was therefore presumed when dopamine receptor binding radiopharmaceuticals were found to be useful for the detection of metastases in whole-body scintigraphy. The aim of this study was thus to investigate if D1 dopamine receptor mRNA or protein could be directly demonstrated in melanoma cells. The presence of D1 dopamine receptor mRNA was investigated in six human melanoma cell lines from metastases using reverse transcriptase-polymerase chain reaction (RT-PCR). In addition, in vitro binding assays with the D1 dopamine receptor agonist 125I-Sch 23982 were performed in 19 melanoma metastases. No D1 dopamine receptor mRNA could be detected by RT-PCR. All melanotic metastases were found to accumulate 125I-Sch 23982, with the presence of binding sites and intensity of 125I-Sch 23982 labelling correlating to the amount of melanin present in the metastases. Two amelanotic melanomas did not accumulate 125I-Sch 23982. D1 dopamine receptors could not be detected by means of RT-PCR or in vitro binding assays in human melanomas. Detection of antagonists is best explained by non-specific binding to melanin.

Animals

Non-small cell lung cancer: nodal staging with FDG PET versus CT with correlative lymph node mapping and sampling.

PURPOSE: To prospectively compare the accuracy of positron emission tomography (PET) with 2-[fluorine-18] fluoro-2-deoxy-D-glucose (FDG) with that of computed tomography (CT) in the nodal staging of non-small cell lung cancer. MATERIALS AND METHODS: PET and contrast material-enhanced CT were performed in 47 patients suspected of having or with newly diagnosed non-small cell lung cancer. Each imaging study was evaluated separately, and nodal stations were localized according to the American Thoracic Society mapping system. Extensive lymph node sampling (599 nodes from 191 nodal stations) of the ipsi- and contralateral tracheobronchial and mediastinal nodal stations was performed at thoracotomy and/or mediastinoscopy. Imaging findings were correlated with histopathologic staging results. RESULTS: The sensitivity of PET and CT was 89% and 57%, respectively, for the staging of N2 or N3 disease in mediastinal nodes; specificity was 99% and 94%, respectively; positive predictive value was 96% and 76%, respectively; negative predictive value was 97% and 87%, respectively; and accuracy was 96% and 85%, respectively. In assigning the correct N stage, PET was correct in 96% and CT in 79% of cases. CONCLUSION: PET with FDG appears to be superior to CT for nodal staging of non-small cell lung cancer.

Adult

Malignant melanoma: staging with whole-body positron emission tomography and 2-[F-18]-fluoro-2-deoxy-D-glucose.

PURPOSE: To evaluate whole-body positron emission tomography (PET) with 2-[fluorine-18]-fluoro-2-deoxy-D-glucose (FDG) in the detection of metastasis from melanoma. MATERIALS AND METHODS: Whole-body PET was performed in 33 patients with either known metastatic or newly diagnosed melanoma. Patients with suspected metastases also underwent computed tomography, magnetic resonance imaging, or both. Diagnoses were confirmed with histologic examination or with at least one imaging modality in addition to PET. Blinded interpretations of PET scans were performed. RESULTS: Forty of 53 lesions evaluated proved to be melanoma metastases. Whole-body PET correctly depicted 37 sites of metastases. Three cutaneous metastases (< 3 mm) were missed. PET correctly excluded malignancy in 10 cases where suspicious lesions were found with conventional cross-sectional imaging modalities but later ruled out with fine-needle biopsy. In six patients, PET depicted new metastases. The sensitivity for the detection of malignant lesions was 92%; the specificity for reading the PET images without clinical information was 77% and with clinical information was 100%. CONCLUSIONS: These results suggest that whole-body FDG PET is an effective imaging modality to screen for metastases from malignant melanoma.

Adult

MR imaging versus alternative imaging techniques.

MR imaging is the method of choice in evaluating a large number of soft-tissue abnormalities; however, it has certain draw-backs, some of which may make other imaging methods more suitable. MR imaging is more expensive than alternative imaging methods; it may not be affordable for screening purposes and for diagnoses obtainable by less expensive imaging methods. In addition, immediate scheduling is not always possible for MR imaging, and an MR scanner may not be available close to the patient's home, which may be important for imaging follow-up. These factors support the use of other imaging modalities, with sonography frequently being the appropriate choice. In some situations, mainly in the presence of certain biomedical implants and devices, MR imaging is contraindicated. Additionally, under some circumstances patient access may be difficult during MR imaging; sonography and CT therefore are preferable (as for imaging guided biopsy). Moreover, some artifacts, such as motion artifacts, may have less relevance in other imaging methods (such as sonography), which may be important in noncooperative patients and children. MR imaging may not be specific in tumors and infection; this deficiency is shared with most alternative imaging methods, with the exception of scintigraphy in selected indications. Lastly, standard radiography and CT commonly are superior to MR imaging in diagnosing calcification and abnormalities of cortical bone. Consequently, in selected cases and for screening purposes, methods other than MR imaging should be considered for depicting soft-tissue structures.

Artifacts