• 제목/요약/키워드: Chemical imaging

검색결과 364건 처리시간 0.031초

Biodistribution and PET imaging of [18F]FMISO in mousecolon cancer xenografted mice

  • Seelam, Sudhakara Reddy;Lee, Ji Youn;Kim, Young Joo;Lee, Yun-Sang;Jeong, Jae Min
    • 대한방사성의약품학회지
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    • 제1권2호
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    • pp.137-144
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    • 2015
  • Hypoxia is an important adverse prognostic factor for tumor progression and is a major cause of failure of radiation therapy. In case of short-term hypoxia, the metabolism can recover to normal, but if hypoxia persists, it causes irreversible cell damage and finally leads to death. So a hypoxia marker would be very useful in oncology. In particular, 2-nitroimidazole can be reduced to form a reactive chemical species, which can bind irreversibly to cell components in the absence of sufficient oxygen, thus, the development of radiolabeled nitroimidazole derivatives for the imaging of hypoxia remains an active field of research to improve cancer therapy result. 2-nitroimidazole based hypoxia marker, [$^{18}F$]FMISO holds promise for the evaluation of tumor hypoxia by Positron emission tomography (PET), at both global and local levels. In the present study, [$^{18}F$]FMISO was synthesized using an automatic synthesis module with high radiochemical purity (>99%) in 60 min. Immunohistochemical analysis using pimonidazole confirmed the presence of hypoxia in xenografted CT-26 tumor tissue. A biodistribution study in CT-26 xenografted mice showed that the increased tumor-to-muscle ratio and tumor-to-blood ratios from 10 to 120 min post-injection. In the PET study, [$^{18}F$]FMISO also showed increased tumor-to-muscle ratios from 10 to 120 min post-injection. In conclusion, this study demonstrates the feasibility and utility of [$^{18}F$]FMISO for imaging hypoxiain mouse colon cancer model using small animal PET.

호흡정지 T1 강조 간 자기공명영상에서 동위상 역위상 FMPSPGR 영상의 비교 (Comparison of In-Phase and Opposed-Phase FMPSPGR Images in Breath-hold T1-weighted MR IMaging of Liver)

  • 김명진;김만득;정재준;이종태;유형식
    • Investigative Magnetic Resonance Imaging
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    • 제1권1호
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    • pp.142-147
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    • 1997
  • 목적: 호흡정지 간 자기공영상에서 국소 간 병변을 발견함에 있어 동위상(inphase) 방식과 역위상(opposed-phase) 방식의 fast multiplanar spoiled gradient recalled(FMPSPGR) 영상간의 효율성을 비교하고자 하였다. 대상 및 방법: 다른 검사를 통해 국소 간 병변이 발견되었거나 의심되었던 45명의 환자의 78개의 병변에 대한 고속경사에코대열의 동위상과 역위상 영상을 비교하였다. 병변 발견률을 평가하기 위해 세 명의 사전 정보 없는 판독의가 독립적으로 영상을 검토하였다. 간의 신호대잡음비, 병변과 간의 대조대잡음비 및 간과 비장 간 대조대잡음비를 비교하였다. 세 명의 동의에 의해 어느 대열에서 영상의 질이 더 나은지 결정하였다. 결과: 역위상 영상에서 판독의 1, 2, 3이 각각 61(78%), 61(78%), 및 63(89%)개의 병변을 정확히 발견하였다. 동위상 영상에서 각 판독의가 66(85%), 65(83%) 및 65(93%)개의 병변을 발견하였다. 두 영상을 조합하였을 때, 71(91%), 69(88%) 및 76(97%)개의 병변이 각각 발견되었다. 간세포암이 증례에서 간-병변간 대조대잡음비는 역위상 영상에서 더 컸으나(p<0.05), 다른 병변에서의 의미 있는 차이는 보이지 않았다. 간-비장간 대조잡음비는 역위상 영상에서 높았으나(p<0.1), 간의 신호대잡음비는 동위상 영상에서 더 높았다. 결론: 국소적 간 병변을 놓치지 않고 발견 하기 위새서는 동위상 영상과 역위상 영상을 모두 이용하는 것이 바람직하다.

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Synthesis of O-(3-[18F]Fluoropropyl)-L-tyrosine (L-[18F]FPT) and Its Biological Evaluation in 9L Tumor Bearing Rat

  • Moon, Byung-Seok;Kim, Sang-Wook;Lee, Tae-Sup;Ahn, Soon-Hyuk;Lee, Kyo-Chul;An, Gwang-Il;Yang, Seung-Dae;Chi, Dae-Yoon;Choi, Chang-Woon;Lim, Sang-Moo;Chun, Kwon-Soo
    • Bulletin of the Korean Chemical Society
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    • 제26권1호
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    • pp.91-96
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    • 2005
  • O-(3-[$^{18}$F]Fluoropropyl)-L-tyrosine (L-[$^{18}$F]FPT) was synthesized by nucleophilic radiofluorination followed by acidic hydrolysis of protective groups and evaluated with 9 L tumor bearing rat. L-[$^{18}$F]FPT is an homologue of O-(2-[$^{18}$F]fluoroethyl)-L-tyrosine (L-[$^{18}$F]FET) which recently is studied as a tracer for tumor imaging using positron emission tomography (PET). [$^{18}$F]FPT was directly prepared from the precursor of O-(3-ptoluenesulfonyloxypropyl)- N-(tert-butoxycarbonyl)-L-tyrosine methyl ester. FPT-PET image was obtained at 60 min in 9 L tumor bearing rats. The radiochemical yield of [$^{18}$F]FPT was 0-45% (decay corrected) and the radiochemical purity was more than 95% after HPLC purification. The total time elapsed for the synthesis of [$^{18}$F]FPT was 100 min from EOB (End-of-bombardment). A comparison of uptake studies between [$^{18}$F]FPT and [$^{18}$F]FET was performed. In biodistribution, [$^{18}$F]FPT showed similar pattern with [$^{18}$F]FET in various tissues, but [$^{18}$F]FPT showed low uptake in brain. Furthermore, [$^{18}$F]FPT showed higher tumor-to-brain ratio than [$^{18}$F]FET. In conclusion, [$^{18}$F]FPT seems to be more useful amino acid tracer than [$^{18}$F]FET for brain tumors imaging with PET.

Cutoff Values for Diagnosing Hepatic Steatosis Using Contemporary MRI-Proton Density Fat Fraction Measuring Methods

  • Sohee Park;Jae Hyun Kwon;So Yeon Kim;Ji Hun Kang;Jung Il Chung;Jong Keon Jang;Hye Young Jang;Ju Hyun Shim;Seung Soo Lee;Kyoung Won Kim;Gi-Won Song
    • Korean Journal of Radiology
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    • 제23권12호
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    • pp.1260-1268
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    • 2022
  • Objective: To propose standardized MRI-proton density fat fraction (PDFF) cutoff values for diagnosing hepatic steatosis, evaluated using contemporary PDFF measuring methods in a large population of healthy adults, using histologic fat fraction (HFF) as the reference standard. Materials and Methods: A retrospective search of electronic medical records between 2015 and 2018 identified 1063 adult donor candidates for liver transplantation who had undergone liver MRI and liver biopsy within a 7-day interval. Patients with a history of liver disease or significant alcohol consumption were excluded. Chemical shift imaging-based MRI (CS-MRI) PDFF and high-speed T2-corrected multi-echo MR spectroscopy (HISTO-MRS) PDFF data were obtained. By temporal splitting, the total population was divided into development and validation sets. Receiver operating characteristic (ROC) analysis was performed to evaluate the diagnostic performance of the MRI-PDFF method. Two cutoff values with sensitivity > 90% and specificity > 90% were selected to rule-out and rule-in, respectively, hepatic steatosis with reference to HFF ≥ 5% in the development set. The diagnostic performance was assessed using the validation set. Results: Of 921 final participants (624 male; mean age ± standard deviation, 31.5 ± 9.0 years), the development and validation sets comprised 497 and 424 patients, respectively. In the development set, the areas under the ROC curve for diagnosing hepatic steatosis were 0.920 for CS-MRI-PDFF and 0.915 for HISTO-MRS-PDFF. For ruling-out hepatic steatosis, the CS-MRI-PDFF cutoff was 2.3% (sensitivity, 92.4%; specificity, 63.0%) and the HISTO-MRI-PDFF cutoff was 2.6% (sensitivity, 88.8%; specificity, 70.1%). For ruling-in hepatic steatosis, the CS-MRI-PDFF cutoff was 3.5% (sensitivity, 73.5%; specificity, 88.6%) and the HISTO-MRI-PDFF cutoff was 4.0% (sensitivity, 74.7%; specificity, 90.6%). Conclusion: In a large population of healthy adults, our study suggests diagnostic thresholds for ruling-out and ruling-in hepatic steatosis defined as HFF ≥ 5% by contemporary PDFF measurement methods.

Surface Structures and Thermal Desorption Behaviors of Cyclopentanethiol Self-Assembled Monolayers on Au(111)

  • Kang, Hun-Gu;Kim, You-Young;Park, Tae-Sun;Park, Joon-B.;Ito, Eisuke;Hara, Masahiko;Noh, Jae-Geun
    • Bulletin of the Korean Chemical Society
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    • 제32권4호
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    • pp.1253-1257
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    • 2011
  • The surface structures, adsorption conditions, and thermal desorption behaviors of cyclopentanethiol (CPT) self-assembled monolayers (SAMs) on Au(111) were investigated by scanning tunneling microscopy (STM), X-ray photoelectron spectroscopy (XPS), and thermal desorption spectroscopy (TDS). STM imaging revealed that although the adsorption of CPT on Au(111) at room temperature generates disordered SAMs, CPT molecules at $50^{\circ}C$ formed well-ordered SAMs with a $(2{\surd}3{\times}{\surd}5)R41^{\circ}$ packing structure. XPS measurements showed that CPT SAMs at room temperature were formed via chemical reactions between the sulfur atoms and gold surfaces. TDS measurements showed two dominant TD peaks for the decomposed fragments ($C_5H_9^+$, m/e = 69) generated via C-S bond cleavage and the parent molecular species ($C_5H_9SH^+$, m/e = 102) derived from a recombination of the chemisorbed thiolates and hydrogen atoms near 440 K. Interestingly, dimerization of sulfur atoms in n-alkanethiol SAMs usually occurs during thermal desorption and the same reaction did not happen for CPT SAMs, which may be due to the steric hindrance of cyclic rings of the CPT molecules. In this study, we demonstrated that the alicyclic ring of organic thiols strongly affected the surface structure and thermal desorption behavior of SAMs, thus providing a good method for controlling chemical and physical properties of organic thiol SAMs.

Controlled Synthesis of Hexagonal Boron Nitride on Cu Foil Using Chemical Vapor Deposition

  • Han, Jaehyun;Lee, Jun-Young;Kwon, Heemin;Yeo, Jong-Souk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.630-630
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    • 2013
  • Recently, atomically smooth hexagonal boron nitride(h-BN) known as a white graphene has drawn great attention since the discovery of graphene. h-BN is a III-V compound and has a honeycomb structure very similar to graphene with smaller lattice mismatch. Because of strong covalent sp2bonds like graphene, h-BN provides a high thermal conductivity and mechanical strength as well as chemical stability of h-BN superior to graphene. While graphene has a high electrical conductivity, h-BN has a highly dielectric property as an insulator with optical band gap up to 6eV. Similar to the graphene, h-BN can be applied to a variety of field, such as gate dielectric layers/substrate, ultraviolet emitter, transparent membrane, and protective coatings. However, up until recently, obtaining and controlling good quality monolayer h-BN layers have been too difficult and challenging. In this work, we investigate the controlled synthesis of h-BN layers according to the growth condition, time, temperature, and gas partial pressure. h-BN is obtained by using chemical vapor deposition on Cu foil with ammonia borane (BH3NH3) as a source for h-BN. Scanning Transmission Electron Microscopy (STEM, JEOL-JEM-ARM200F) is used for imaging and structural analysis of h-BN layer. Sample's surface morphology is characterized by Field emission scanning electron microscopy (SEM, JEOL JSM-7100F). h-BN is analyzed by Raman spectroscopy (HORIBA, ARAMIS) and its topographic variations by Atomic force microscopy (AFM, Park Systems XE-100).

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양자점 기반 다중 바이오마커 검출법의 연구동향 (Recent Progress in Multiplexed Detection of Biomarkers Based on Quantum Dots)

  • 김예린;최유림;김봉근;나현빈
    • 공업화학
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    • 제33권5호
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    • pp.451-458
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    • 2022
  • 반도체 양자점은 우수한 형광 특성을 가진 광학 탐침자로 생명-의학 영상화 기술 및 바이오센싱 분야에서 광범위하게 활용되고 있다. 양자점은 넓은 광흡수 에너지띠, 좁은 형광 에너지띠와 같은 광학 특성을 가지므로 서로 다른 형광 파장을 지닌 양자점을 조합해 다종의 신호를 생성할 수 있도록 구성하면 복수의 바이오마커를 동시에 검출할 수 있다. 본 총설에서는 이와 같은 다중 검출 분석법에서의 양자점 및 이에 기반한 양자점 나노비드가 가지는 장점과 활용 사례를 기술하고 다중 형광 바이오마커 검출법의 최근 개발 동향 및 개선사항을 요약 정리하였다. 특히 양자점을 활용한 형광-결합 면역흡착 분석법, 양자점 나노비드를 이용한 면역크로마토그래피 분석법 등 면역 분석법에서의 신호 전환 소재 디자인을 중심으로 최근의 연구 결과를 검토하였다. 정확성과 민감도가 우수한 다중 바이오마커 검출 기술이 확보된 데이터를 처리하고 해석하는 인공지능 알고리즘과 결합될 경우 질병의 조기 진단을 포함한 다양한 분야에 활용가능한 새로운 검출 플랫폼의 개발로 이어질 것으로 기대된다.

Role of Chemical Exchange Saturation Transfer and Magnetization Transfer MRI in Detecting Metabolic and Structural Changes of Renal Fibrosis in an Animal Model at 3T

  • Anqin Li;Chuou Xu;Ping Liang;Yao Hu;Yaqi Shen;Daoyu Hu;Zhen Li;Ihab R. Kamel
    • Korean Journal of Radiology
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    • 제21권5호
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    • pp.588-597
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    • 2020
  • Objective: To investigate the value of combined chemical exchange saturation transfer (CEST) and conventional magnetization transfer imaging (MT) in detecting metabolic and structural changes of renal fibrosis in rats with unilateral ureteral obstruction (UUO) at 3T MRI. Materials and Methods: Thirty-five Sprague-Dawley rats underwent UUO surgery (n = 25) or sham surgery (n = 10). The obstructed and contralateral kidneys were evaluated on days 1, 3, 5, and 7 after surgery. After CEST and MT examinations, 18F-labeled fluoro-2-deoxyglucose positron emission tomography was performed to quantify glucose metabolism. Fibrosis was measured by histology and western blots. Correlations were compared between asymmetrical magnetization transfer ratio at 1.2 ppm (MTRasym(1.2ppm)) derived from CEST and maximum standard uptake value (SUVmax) and between magnetization transfer ratio (MTR) derived from MT and alpha-smooth muscle actin (α-SMA). Results: On days 3 and 7, MTRasym(1.2ppm) and MTR of UUO renal cortex and medulla were significantly different from those of contralateral kidneys (p < 0.05). On day 7, MTRasym(1.2ppm) and MTR of UUO renal cortex and medulla were significantly different from those of sham-operated kidneys (p < 0.05). The MTRasym(1.2ppm) of UUO renal medulla was fairly negatively correlated with SUVmax (r = -0.350, p = 0.021), whereas MTR of UUO renal medulla was strongly negatively correlated with α-SMA (r = -0.744, p < 0.001). Conclusion: CEST and MT could provide metabolic and structural information for comprehensive assessment of renal fibrosis in UUO rats in 3T MRI and may aid in clinical monitoring of renal fibrosis in patients with chronic kidney disease.

Imaging Neuroreceptors in the Living Human Brain

  • Wagner Jr Henry N.;Dannals Robert F.;Frost J. James;Wong Dean F.;Ravert Hayden T.;Wilson Alan A.;Links Jonathan M.;Burns H. Donald;Kuhar Michael J.;Snyder Solomon H.
    • 대한핵의학회지
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    • 제18권2호
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    • pp.17-23
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    • 1984
  • For nearly a century it has been known that chemical activity accompanies mental activity, but only recently has it been possible to begin to examine its exact nature. Positron-emitting radioactive tracers have made it possible to study the chemistry of the human mind in health and disease, using chiefly cyclotron-produced radionuclides, carbon-11, fluorine-18 and oxygen-15. It is now well established that measurable increases in regional cerebral blood flow, glucose and oxygen metabolism accompany the mental functions of perception, cognition, emotion and motion. On May 25, 1983 the first imaging of a neuroreceptor in the human brain was accomplished with carbon-11 methyl spiperone, a ligand that binds preferentially to dopamine-2 receptors, 80% of which are located in the caudate nucleus and putamen. Quantitative imaging of serotonin-2, opiate, benzodiazapine and muscarinic cholinergic receptors has subsequently been accomplished. In studies of normal men and women, it has been found that dopamine and serotonin receptor activity decreases dramatically with age, such a decrease being more pronounced in men than in women and greater in the case of dopamine receptors than serotonin-2 receptors. Preliminary studies in patients with neuropsychiatric disorders suggests that dopamine-2 receptor activity is diminished in the caudate nucleus of patients with Huntington's disease. Positron tomography permits quantitative assay of picomolar quantities of neuro-receptors within the living human brain. Studies of patients with Parkinson's disease, Alzheimer's disease, depression, anxiety, schizophrenia, acute and chronic pain states and drug addiction are now in progress. The growth of any scientific field is based on a paradigm or set of ideas that the community of scientists accepts. The unifying principle of nuclear medicine is the tracer principle applied to the study of human disease. Nineteen hundred and sixty-three was a landmark year in which technetium-99m and the Anger camera combined to move the field from its latent stage into a second stage characterized by exponential growth within the framework of the paradigm. The third stage, characterized by gradually declining growth, began in 1973. Faced with competing advances, such as computed tomography and ultrasonography, proponents and participants in the field of nuclear medicine began to search for greener pastures or to pursue narrow sub-specialties. Research became characterized by refinements of existing techniques. In 1983 nuclear medicine experienced what could be a profound change. A new paradigm was born when it was demonstrated that, despite their extremely low chemical concentrations, in the picomolar range, it was possible to image and quantify the distribution of receptors in the human body. Thus, nuclear medicine was able to move beyond physiology into biochemistry and pharmacology. Fundamental to the science of pharmacology is the concept that many drugs and endogenous substances, such as neurotransmitters, react with specific macromolecules that mediate their pharmacologic actions. Such receptors are usually identified in the study of excised tissues, cells or cell membranes, or in autoradiographic studies in animals. The first imaging and quantification of a neuroreceptor in a living human being was performed on May 25, 1983 and reported in the September 23, 1983 issue of SCIENCE. The study involved the development and use of carbon-11 N-methyl spiperone (NMSP), a drug with a high affinity for dopamine receptors. Since then, studies of dopamine and serotonin receptors have been carried out in over 100 normal persons or patients with various neuropsychiatric disorders. Exactly one year later, the first imaging of opitate receptors in a living human being was performed [1].

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Iodine-131-Iodomethyluridine을 이용한 종양세포증식의 영상화에 관한 실험적 연구 (Imaging of Tumor Proliferation Using Iodine-131-Iodomethyluridine)

  • 민경윤;김창근;김현정;임형근;노지영;정선관;원종진;양경문
    • 대한핵의학회지
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    • 제30권3호
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    • pp.344-350
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    • 1996
  • Iododeoxyuridine의 유사체인 Iodine-131-5-Iodo-2'-O-methyluridine을 합성하여 종양세포의 증식을 영상화하고자 하였다. 2'-O-methyluridine을 이용하여 Iodine-131-Iodomethyluridine을 요오드발생 반응(Iodogen reaction)으로 간편하게 합성하였고 이를 이용한 자가방사영상과 핵의학영상에서 종양세포의 증식을 영상화 할 수 있었다. 이상의 결과는 Iodine-131-Iodomethyluridine을 이용하여 종양세포의 증식을 감마카메라로 영상화하여 세포증식이 활발한 생존 종양조직이나 재발을 평가할 수 있는 가능성이 있음을 시사한다.

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