中文
Announcement
More
Progress in Chemistry 2011, Vol. 23 Issue (7): 1493-1500 Previous Articles   Next Articles

• Special issues •

Technetium-99m Radiopharmaceutical Chemistry

Mei Lei, Chu Taiwei*   

  1. Beijing National Laboratory for Molecular Sciences, Radiochemistry and Radiation Chemistry Key Laboratory of Fundamental Science, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China
  • Received: Revised: Online: Published:
PDF ( 1094 ) Cited
Export

EndNote

Ris

BibTeX

Technetium based radiopharmaceuticals have been widely used in scientific research and clinic. A large amount of new radiopharmaceuticals have been exploited and used. However, how to develop pharmaceuticals with better treatments and wider applicability to meet the need of clinic is still an urgent problem. The introduction of new ligands and cores and development of new strategies of labeling have become a hot subject in the technetium based radiopharmaceutical field. In order to provide some references to the researchers,introduction of some new labeling methods used for technetium-99m-labeled radiopharmaceuticals, including new ligands and methods for 99mTc-tricarbonyl technetium labeling, preparation and application of the high-valent technetium, are carried out in this paper.

Contents
1 Introduction
2 Recent progress of labeling with tricarbonyl technetium
2.1 New ligands for labeling of tricarbonyl technetium
2.2 New strategy for labeling of tricarbonyl technetium
3 Complex of high-valent technetium
4 Conclusion and outlook

CLC Number: 


[1] Reichert D E, Lewis J S, Anderson C J. Coord. Chem. Rev., 1999, 184: 3-66

[2] Banerjee S, Pillai M R A, Ramamoorthy N. Semin. Nucl. Med., 2001, 31: 260-277

[3] Jurisson S S, Lydon J D. Chem. Rev., 1999, 99: 2205-2218

[4] Liu S, Edwards D S. Top. Curr. Chem., 2002, 222: 259-278

[5] Neirinckx R D, Canning L R, Piper I M, Nowotnik D P, Pickett R D, Holmes R A, Volkert W A, Forster A M, Weisner P S, Marriott J A, Chaplin S B. J. Nucl. Med., 1987, 28: 191-202

[6] Jurisson S, Berning D, Jia W, Ma D. Chem. Rev., 1993, 93: 1137-1156

[7] Williams S J, Mousa S A, Morgan R A, Carroll T R, Maheu L J. J. Nucl. Med., 1986, 27: 877-878

[8] Liu S. Chem. Soc. Rev., 2004, 33: 1-18

[9] Schibli R, Schubiger P A. Eur. J. Nucl. Med., 2002, 29: 1529-1542

[10] Alberto R, Schibli R, Egli A, Schubiger A P, Abram U, Kaden T A. J. Am. Chem. Soc., 1998, 120: 7987-7988

[11] Alberto R. Eur. J. Inorg. Chem., 2009, 21-31

[12] Wald J, Alberto R, Ortner K, Candreia L. Angew. Chem., Int. Ed., 2001, 40: 3062-3066

[13] Liu Y, Spingler B, Schmutz P, Alberto R. J. Am. Chem. Soc., 2008, 130: 1554-1555

[14] N'Dongo H W P, Can D, Liu Y, Schmutz P, Spingler B, Alberto R. J. Organomet. Chem., 2009, 694: 981-987

[15] N'Dongo H W P, Raposinho P D, Fernandes C, Santos I, Can D, Schmutz P, Spingler B, Alberto R. Nucl. Med. Biol., 2010, 37: 255-264

[16] Masi S, Top S, Boubekeur L, Jaouen G, Mundwiler S, Spingler B, Alberto R. Eur. J. Inorg. Chem., 2004, 2013-2017

[17] Maria L, Paulo A, Santos I C, Santos I, Kurz P, Spingler B, Alberto R. J. Am. Chem. Soc., 2006, 128: 14590-14598

[18] Stephenson K A, Zubieta J, Banerjee S R, Levadala M K, Taggart L, Ryan L, McFarlane N, Boreham D R, Maresca K P, Babich J W, Valliant J F. Bioconjugate Chem., 2004, 15: 128-136

[19] Stephenson K A, Banerjee S R, Besanger, T, Sogebin O O, Levadala M K, McFarlane N, Lemon J A, Boreham D R, Maresca K P, Brennan J D, Babich J W, Zubieta J, Valliant J F. J. Am. Chem. Soc., 2004, 126: 8598-8599

[20] Maresca K P, Hillier S M, Femia F J, Zimmerman C N, Levadala M K, Banerjee S R, Hicks J, Sundararajan C, Valliant J, Zubieta J, Eckelman W C, Joyal J L, Babich J W. Bioconjugate Chem., 2009, 20: 1625-1633

[21] Liu Y, Pak J K, Schmutz P, Bauwens M, Mertens J, Knight H, Alberto R. J. Am. Chem. Soc., 2006, 128: 15996-15997

[22] Kolb H C, Finn M G, Sharpless K B. Angew. Chem. Int. Ed., 2001, 40: 2004-2021

[23] Kolb H C, Sharpless K B. Drug Discov. Today, 2003, 8: 1128-1137

[24] Ramenda T, Kniess T, Bergmann R, Steinbach J, Wuest F. Chem. Commun., 2009, 7521-7523

[25] Mindt T L, Struthers H, Brans L, Anguelov T, Schweinsberg C, Maes V, Tourwe D, Schibli R. J. Am. Chem. Soc., 2006, 128: 15096-15097.

[26] Mindt T L, Müller C, Melis M, de Jong M, Schibli R. Bioconjugate Chem. 2008, 19: 1689-1695

[27] Struthers H, Spingler B, Mindt T L, Schibli R. Chem. Eur. J., 2008, 14: 6173-6183

[28] Schibli R, La Bella R, Alberto R, Garcia-Garayoa E, Ortner K, Abram U, Schubiger P A. Bioconjugate Chem., 2000, 11: 345-351

[29] Rattat D, Eraets K, Cleynhens B, Knight H, Fonge H, Verbruggen A. Tetrahedron Lett., 2004, 45: 2531-2534

[30] Mundwiler S, Kgndig M, Ortner K, Alberto R. Dalton Trans., 2004, 1320-1328

[31] Kunze S, Zobi T, Kurz P, Spingler B, Alberto R. Angew. Chem. Int. Ed., 2004, 43: 5025-5029

[32] Agorastos N, Borsig L, Renard A, Antoni P, Viola G, Spingler B, Kurz P, Alberto R. Chem. Eur. J., 2007, 13: 3842-3852

[33] Braband H, Tooyama Y, Fox T, Alberto R. Chem. Eur. J., 2009, 15: 633-638

[1] Zhi-Gang Wang, Shu-Lin Liu, An-An Liu, Li-Juan Zhang, Cong Yu, Dai-Wen Pang. Single-Virus Tracking [J]. Progress in Chemistry, 2021, 33(1): 13-24.
[2] Zhu Debin*, Ma Wenge, Xing Xiaobo . Application of Electrochemiluminescence Assay in Nucleic Acid Detection [J]. Progress in Chemistry, 2012, 24(12): 2367-2373.
[3] Chen Mengjun, Yang Wantai, Yin Meizhen* . Synthesis and Applications of Nanoparticles in Biology [J]. Progress in Chemistry, 2012, 24(12): 2403-2414.
[4] Huang Huafan, Liang Kun, Liu Yupeng, Huang Shitang, Chu Taiwei. New Methods and Techniques for F-18-labeled Radiopharmaceuticals [J]. Progress in Chemistry, 2011, 23(7): 1501-1506.
[5] Chen Bingkun, Zhong Haizheng, Zou Bingsuo. Ⅰ-Ⅲ-Ⅵ Semiconductor Nanocrystals [J]. Progress in Chemistry, 2011, 23(11): 2276-2286.
[6] . Quantification of Proteins by Use of ICP-MS [J]. Progress in Chemistry, 2010, 22(11): 2199-2206.
[7] Zhou Ming* Fei Hao Liu Yang Li Wanfei. Metal Complexes and Their Applications in Bioassay, Bio-Imaging and Protein Staining [J]. Progress in Chemistry, 2010, 22(01): 201-209.
[8] Zhu Lanlan, Yin Xuefeng**. Fluorescent Labeling Chemistry in Single Cell Analysis [J]. Progress in Chemistry, 2008, 20(12): 2045-2052.
[9]

Wang Meng, Xu Shukun**, Yang Dongzhi

. Synthesis, Modification and Applications of Sodium Yttrium Fluoride Up-Conversion Fluorescence Materials [J]. Progress in Chemistry, 2008, 20(12): 1880-1885.
[10] Qiu Xiaoyan1,2  Cui Meng1 Liu Zhiqiang1 Liu Shuying1**. Protein Disulfide Bond Determination and Its Analysis by Mass Spectrometry [J]. Progress in Chemistry, 2008, 20(06): 975-983.
[11] Hong Wang|Huashan Zhang**. Fluorescent Labeling Reagents and Molecular Probes used in Separation and Detection of Bioactive Substances [J]. Progress in Chemistry, 2007, 19(05): 633-642.
[12] Gong Yanjun 1,2*. Preparation of II-VI Semiconductor Fluorescent Nanocrystals and Complex Fluorescent Spheres and Their Applications [J]. Progress in Chemistry, 2007, 19(04): 502-509.
[13] Xiaojing Li,Tao Chen,Xun Chen,Xianggao Li,Xueming Zhao*. Advances in 13C Metabolic Flux Analysis [J]. Progress in Chemistry, 2006, 18(0708): 995-1001.
[14]

Yang Xiaoda, Chang Wenbao, Ci Yunxiang

. Immunoassay: A Comprehensive Review and Prospect [J]. Progress in Chemistry, 1995, 7(02): 83-.