نتایج جستجو برای: 111in oxine
تعداد نتایج: 1159 فیلتر نتایج به سال:
objectives: the aim of this research was the development of 111in-labeled porphyrins as possible radiopharmaceuticals for the imaging of tumors. methods: ligands, 5, 10, 15, 20-tetrakis (3, 5-dihydroxyphenyl) porphyrin) (tdhpp), 5, 10, 15, 20-tetrakis (4-hydroxyphenyl) porphyrin (thpp) and 5, 10, 15, 20-tetrakis (3,4-dimethoxyphenyl) porphyrin) (tdmpp) were labeled with 111incl3 (produced from ...
Autologous white blood cells were labelled with Indium 111 (111In wbc) and reinjected into 18 children with suspected infection and 10 children with suspected inflammatory bowel disease aged 5 weeks to 15 years. In addition two immunosuppressed children with suspected infection received donor 111In wbc. Gamma camera images were obtained between one and four hours and 20 and 24 hours. Other appr...
Background: Gallium-66 (T1/2= 9.49 h) is an interesting radionuclide that has potential for positron emission tomography (PET) imaging of biological processes in intermediate to slow target tissue uptake. Oxine has been labeled with this radioisotope in the form of [66Ga]gallium chloride for its possible diagnostic properties. Materials and methods: 66Ga was produced in the 30 MeV cyclotron (Cy...
هدف از انجام این تحقیق، بررسی عوامل مؤثر بر تهیهی کمپلکس Ga-oxine67 برای مقاصد نشاندارسازی گلبولهای سفید خون میباشد. Ga67 تولید شده در سیکلوترون (MeV30) پژوهشکده تحقیقات کشاورزی، پزشکی و صنعتی کرج از طریق بمباران پروتونی هدف روی غنی شده و با استفاده از واکنش Ga67 (n2p,)Zn68 به شکل 3GaCl67 در شرایط بهینه برای تهیهی کمپلکس Ga-...
The purpose of this study was to establish whether liposomes administered via the intravenous route promote granulocyte aggregation and pulmonary leukostasis. White cells (labelled with [111In]tropolanate) and positively and negatively charged liposomes (containing entrapped [99mTc]DTPA) were administered i.v. to rats. The blood clearance and tissue distribution of 111In label was not altered b...
Gelatin-based plasma expander effectively reduces renal uptake of 111In-octreotide in mice and rats.
UNLABELLED 111In-Diethylenetriaminepentaacetic acid-octreotide generally is used for the scintigraphic imaging of neuroendocrine and other somatostatin receptor-positive tumors. On the basis of the successful targeting of octreotide, radiolabeled somatostatin analogs, such as 90Y-(1,4,7,10-tetraazacyclododecane-N,N',N'',N'''-tetraacetic acid [DOTA])0-Tyr3-octreotide and 177Lu-DOTA0-Tyr3-octreot...
BACKGROUND Studies combining immune checkpoint inhibitors with external beam radiation have shown a therapeutic advantage over each modality alone. The purpose of these works is to evaluate the potential of targeted delivery of high LET radiation to the tumor microenvironment via an immune checkpoint inhibitor. METHODS The impact of protein concentration on the distribution of 111In-DTPA-anti...
BACKGROUND Peptide receptor scintigraphy with the radioactive somatostatin analogue, [111In-DTPA0]octreotide, is a sensitive and specific technique to show in vivo the presence and abundance of somatostatin receptors on various tumours. AIM With this technique primary tumours and metastases of neuroendocrine cancers as well as of many other cancer-types can be localised. This technique is cur...
PURPOSE Modular nanotransporters (MNTs) are artificial multifunctional systems designed to facilitate receptor-specific transport from the cell surface into the cell nucleus through inclusion of polypeptide domains for accomplishing receptor binding and internalization, as well as sequential endosomal escape and nuclear translocation. The objective of this study was to develop a new MNT targete...
BACKGROUND Neuroendocrine tumors are well vascularized and express specific cell surface markers, such as somatostatin receptors and the glucagon-like peptide-1 receptor (GLP-1R). Using the Rip1Tag2 transgenic mouse model of pancreatic neuroendocrine tumors (pNET), we have investigated the potential benefit of a combination of anti-angiogenic treatment with targeted internal radiotherapy. MET...
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