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Dive into the research topics where David M. Goldenberg is active.

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Featured researches published by David M. Goldenberg.


Seminars in Nuclear Medicine | 1989

Imaging of colorectal carcinoma with radiolabeled antibodies

David M. Goldenberg; Hildegard Goldenberg; Robert E. Lee; Edith Higgenbotham-Ford; Jo Ann Horowitz; Thomas C. Hall; Carl M. Pinsky; Hans J. Hansen

Colorectal cancer has been the tumor type most frequently studied with radiolabeled antibodies. Among the various antibodies, a majority of patients with colorectal cancer have received xenogeneic polyclonal or monoclonal antibodies against carcino-embryonic antigen. This review summarizes the current status of colorectal cancer imaging with radiolabeled antibodies, ie, radioimmunodetection (RAID), and examines the published studies involving carcinoembryonic antigen (CEA) antibodies and 17-1A, 19-9, and B72.3, and other monoclonal antibodies. In order to better address the issue of the current and future clinical usefulness of this emerging technology, particular attention is given to the protocols, methods, and results of the published studies. Despite differences in study parameters, antibodies and forms, labels, administration routes and doses, and scanning instruments and methods, it has been found that (1) almost no adverse reactions have been evident; (2) antibody fragments are preferred over whole immunoglobulin G reagents because they achieve higher tumor-to-background ratios earlier, thus reducing or precluding the need for dual-isotope subtraction methods or long delays before imaging; (3) use of antibody fragments, including the monovalent Fab form, permits imaging with short-lived radionuclides of excellent photon properties, such as 123I and 99mTc; (4) circulating antigens against which the imaging antibody is directed can complex with the injected antibody, but such complexes have not prevented successful RAID; (5) patients with high serum titers of the appropriate antigen target usually have higher rates of positive RAID; (6) patients who are seronegative for the tumor antigen being studied can have positive RAID findings, which can represent the detection of occult lesions; (7) single photon emission computed tomography appears to provide better image resolution than planar scanning; (8) regardless of the sensitivity reported in any particular study, almost all investigators have observed the disclosure of occult neoplasms by RAID; and (9) RAID, a more functional test of usually high specificity, can complement other radiological methods, such as computed tomography scans, which are limited to structural information.


Archive | 2000

Method of detecting endometriosis

Rosalyn D. Blumenthal; David M. Goldenberg; Michael Samoszuk


Selective cancer therapeutics | 1991

Suppression of tumor vascular activity by radioantibody therapy: implications for multiple cycle treatments.

Rosalyn D. Blumenthal; Robert M. Sharkey; Rina Kashi; David M. Goldenberg


Archive | 2002

METHOD OF DETERMINING CYTOKINE DOSAGE FOR MYELOSUPPRESSIVE STATE

Rosalyn D. Blumenthal; David M. Goldenberg


Archive | 2000

Use of antioxidants to mitigate radioimmunotherapy-induced radiation toxicity

Rosalyn D. Blumenthal; David M. Goldenberg


Archive | 2006

Method of determining cytokine dosage for improving myelosuppressive state

Rosalyn D. Blumenthal; David M. Goldenberg


Archive | 2003

Method of evaluating myelosuppressive state

Rosalyn D. Blumenthal; Walter Lew; Malik E. Juweid; Rita Alisauskas; Zhiliang Ying; David M. Goldenberg


Ca | 2006

Targeted therapy of cancer : New prospects for antibodies and immunoconjugates

Robert M. Sharkey; David M. Goldenberg


Archive | 2003

Verfahren zur auswertung eines myelounterdrückungszustands

Rosalyn D. Blumenthal; David M. Goldenberg


Archive | 2000

Procede d'evaluation d'etat myelodepressif

Rosalyn D. Blumenthal; Walter Lew; Malik E. Juweid; Rita Alisauskas; Zhiliang Ying; David M. Goldenberg

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Rosalyn D. Blumenthal

Icahn School of Medicine at Mount Sinai

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Ana Natale

University of Medicine and Dentistry of New Jersey

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