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Featured researches published by Yunwei Chen.


Bioconjugate Chemistry | 2011

Efficient Bifunctional Decadentate Ligand 3p-C-DEPA for Targeted α-Radioimmunotherapy Applications

Hyun A. Song; Chi Soo Kang; Kwamena E. Baidoo; Diane E. Milenic; Yunwei Chen; Anzhi Dai; Martin W. Brechbiel; Hyun-Soon Chong

A new bifunctional ligand 3p-C-DEPA was synthesized and evaluated for use in targeted α-radioimmunotherapy. 3p-C-DEPA was efficiently prepared via regiospecific ring opening of an aziridinium ion and conjugated with trastuzumab. The 3p-C-DEPA-trastuzumab conjugate was extremely rapid in binding (205/6)Bi, and the corresponding (205/6)Bi-3p-C-DEPA-trastuzumab complex was stable in human serum. Biodistribution studies were performed to evaluate in vivo stability and tumor targeting of (205/6)Bi-3p-C-DEPA-trastuzumab conjugate in tumor bearing athymic mice. (205/6)Bi-3p-C-DEPA-trastuzumab conjugate displayed excellent in vivo stability and targeting as evidenced by low organ uptake and high tumor uptake. The results of the in vitro and in vivo studies indicate that 3p-C-DEPA is a promising chelator for radioimmunotherapy of (212)Bi and (213)Bi.


Journal of Organic Chemistry | 2010

Efficient Synthesis of Functionalized Aziridinium Salts

Hyun-Soon Chong; Hyun A. Song; Mamta Dadwal; Xiang Sun; Inseok Sin; Yunwei Chen

Various aziridinium salts were efficiently prepared from bromination of a series of backbone substituted N,N-bisubstituted beta-amino alcohols and isolated via flash column chromatography. The effect of C-substitution, N-substitution, solvent, leaving group, and counteranions on formation of the isolable aziridinium salts was investigated.


Nuclear Medicine and Biology | 2015

Synthesis and evaluation of a new bifunctional NETA chelate for molecular targeted radiotherapy using90Y or177Lu

Chi Soo Kang; Yunwei Chen; Hyunbeom Lee; Dijie Liu; Xiang Sun; Junghun Kweon; Michael R. Lewis; Hyun-Soon Chong

INTRODUCTION Therapeutic potential of β-emitting cytotoxic radionuclides (90)Y and (177)Lu has been demonstrated in numerous preclinical and clinical trials. A bifunctional chelate that can effectively complex with the radioisotopes is a critical component for molecular targeted radiotherapy (90)Y and (177)Lu. A new bifunctional chelate 5p-C-NETA with a relatively long alkyl spacer between the chelating backbone and the functional unit for conjugation to a tumor targeting moiety was synthesized. 5p-C-NETA was conjugated to a model targeting moiety, a cyclic Arg-Gly-Asp-D-Tyr-Lys (RGDyK) peptide binding integrin αvβ3 protein overexpressed on various cancers. 5p-C-NETA was conjugated to c(RGDyK) peptide and evaluated for potential use in molecular targeted radiotherapy of (90)Y and (177)Lu. METHODS 5p-C-NETA conjugated with c(RGDyK) was evaluated in vitro for radiolabeling, serum stability, binding affinity, and the result of the in vitro studies of 5p-C-NETA-c(RGDyK) was compared to that of 3p-C-NETA-c(RGDyK). (177)Lu-5p-C-NETA-c(RGDyK) was further evaluated for in vivo biodistribution using gliobastoma bearing mice. RESULT The new chelate rapidly and tightly bound to a cytotoxic radioisotope for cancer therapy, (90)Y or (177)Lu with excellent radiolabeling efficiency and maximum specific activity under mild condition (>99%, RT, <1 min). (90)Y- and (177)Lu-radiolabeled complexes of the new chelator remained stable in human serum without any loss of the radiolanthanide for 14 days. Introduction of the tumor targeting RGD moiety to the new chelator made little impact on complexation kinetics and stability with (90)Y or (177)Lu. (177)Lu-radiolabeled 5p-C-NETA-c(RGDyK) conjugate was shown to target tumors in mice and produced a favorable in vivo stability profile. CONCLUSION The results of in vitro and in vivo evaluation suggest that 5p-C-NETA is an effective bifunctional chelate of (90)Y and (177)Lu that can be applied for generation of versatile molecular targeted radiopharmaceuticals.


Organic Letters | 2013

Stereoselective and regioselective intramolecular Friedel-Crafts reaction of aziridinium ions for synthesis of 4-substituted tetrahydroisoquinolines.

Hyun-Soon Chong; Yunwei Chen

Optically active 4-substituted tetrahydroisoquinolines were synthesized via intramolecular Friedel-Crafts (FC) reactions of aziridinium ions in a highly regio- and stereoselective manner. Control experiments suggest the formation and ring-opening of aziridinium ions as the key intermediates in the Lewis acid catalyzed FC reactions.


Bioorganic & Medicinal Chemistry | 2015

Synthesis and comparative biological evaluation of bifunctional ligands for radiotherapy applications of 90Y and 177Lu

Hyun-Soon Chong; Xiang Sun; Yunwei Chen; Inseok Sin; Chi Soo Kang; Michael R. Lewis; Dijie Liu; Varyanna C. Ruthengael; Yongliang Zhong; Ningjie Wu; Hyun A. Song

Zevalin® is an antibody-drug conjugate radiolabeled with a cytotoxic radioisotope ((90)Y) that was approved for radioimmunotherapy (RIT) of B-cell non-Hodgkins lymphoma. A bifunctional ligand that displays favorable complexation kinetics and in vivo stability is required for effective RIT. New bifunctional ligands 3p-C-DE4TA and 3p-C-NE3TA for potential use in RIT were efficiently prepared by the synthetic route based on regiospecific ring opening of aziridinium ions with prealkylated triaza- or tetraaza-backboned macrocycles. The new bifunctional ligands 3p-C-DE4TA and 3p-C-NE3TA along with the known bimodal ligands 3p-C-NETA and 3p-C-DEPA were comparatively evaluated for potential use in targeted radiotherapy using β-emitting radionuclides (90)Y and (177)Lu. The bifunctional ligands were evaluated for radiolabeling kinetics with (90)Y and (177)Lu, and the corresponding (90)Y or (177)Lu-radiolabeled complexes were studied for in vitro stability in human serum and in vivo biodistribution in mice. The results of the comparative complexation kinetic and stability studies indicate that size of macrocyclic cavity, ligand denticity, and bimodality of donor groups have a substantial impact on complexation of the bifunctional ligands with the radiolanthanides. The new promising bifunctional chelates in the DE4TA and NE3TA series were rapid in binding (90)Y and (177)Lu, and the corresponding (90)Y- and (177)Lu-radiolabeled complexes remained inert in human serum or in mice. The in vitro and in vivo data show that 3p-C-DE4TA and 3p-C-NE3TA are promising bifunctional ligands for targeted radiotherapy applications of (90)Y and (177)Lu.


Bioorganic & Medicinal Chemistry Letters | 2015

Novel 64Cu-radiolabeled bile acid conjugates for targeted PET imaging

Hyun-Soon Chong; Yunwei Chen; Chi Soo Kang; Xiang Sun; Ningjie Wu

A promising bifunctional chelate (N-NE3TA) was conjugated to bile acids, cholic acid (CA), deoxycholic acid (DCA), and chenodeoxycholic acid (CDCA) as tumor targeting vectors. Bile acid conjugates of N-NE3TA (CA-N-NE3TA, DCA-N-NE3TA, and CDCA-N-NE3TA) were comparatively evaluated for complexation with (64)Cu, an imaging probe for positron emission tomography (PET). N-NE3TA-bile acid conjugates were evaluated for radiolabeling kinetics with (64)Cu, and the corresponding (64)Cu-radiolabeled conjugates were screened for complex stability in human serum and EDTA solution. The NE3TA-bile acid conjugates instantly bound to (64)Cu with excellent radiolabeling efficiency at room temperature. All NE3TA-bile acid conjugates radiolabeled with (64)Cu remained inert in human serum for 2days without releasing a considerable amount of the radioactivity. The (64)Cu-radiolabeled complexes were further challenged by EDTA in a 100-fold molar excess. Bile acid-N-NE3TA conjugates radiolabeled with (64)Cu were quite stable with a minimal transfer of (64)Cu to EDTA at 4h time point. The in vitro data indicate that the bile acid-N-NE3TA conjugates deserve further biological evaluation for (64)Cu-based targeted PET imaging applications.


Journal of Inorganic Biochemistry | 2016

Transferrin conjugates of triazacyclononane-based bifunctional NE3TA chelates for PET imaging: Synthesis, Cu-64 radiolabeling, and in vitro and in vivo evaluation.

Chi Soo Kang; Ningjie Wu; Yunwei Chen; Xiang Sun; Nilantha Bandara; Dijie Liu; Michael R. Lewis; Buck E. Rogers; Hyun-Soon Chong

Three different polyaminocarboxylate-based bifunctional NE3TA (7-[2-[carboxymethyl)amino]ethyl]-1,4,7-triazacyclononane-1,4-diacetic acid) chelating agents were synthesized for potential use in copper 64-PET imaging applications. The bifunctional chelates were comparatively evaluated using transferrin (Tf) as a model targeting vector that binds to the transferrin receptor overexpressed in many different cancer cells. The transferrin conjugates of the NE3TA-based bifunctional chelates were evaluated for radiolabeling with (64)Cu. In vitro stability and cellular uptake of (64)Cu-radiolabeled conjugates were evaluated in human serum and prostate (PC-3) cancer cells, respectively. Among the three NE3TA-Tf conjugates tested, N-NE3TA-Tf was identified as the best conjugate for radiolabeling with (64)Cu. N-NE3TA-Tf rapidly bound to (64)Cu (>98% radiolabeling efficiency, 1min, RT), and (64)Cu-N-NE3TA-Tf remained stable in human serum for 2days and demonstrated high uptake in PC-3 cancer cells. (64)Cu-N-NE3TA-Tf was shown to have rapid blood clearance and increasing tumor uptake in PC-3 tumor bearing mice over a 24h period. This bifunctional chelate presents highly efficient chelation chemistry with (64)Cu under mild condition that can be applied for radiolabeling of various tumor-specific biomolecules with (64)Cu for potential use in PET imaging applications.


RSC Advances | 2015

Application of aziridinium ring opening for preparation of optically active diamine and triamine analogues: highly efficient synthesis and evaluation of DTPA-based MRI contrast enhancement agents

Xiang Sun; Yunwei Chen; Ningjie Wu; Chi Soo Kang; Hyun A. Song; Shengnan Jin; Yao Fu; Henry Bryant; Joseph A. Frank; Hyun-Soon Chong

Ring opening of aziridinium ions with nitrogen nucleophiles was applied to the highly efficient synthesis of optically active vicinal diamines and diethylene triamine pentaacetic acid (DTPA) analogues as potential magnetic resonance imaging (MRI) contrast enhancement agents. The synthetic method features a column-free isolation of the regiospecific and stereospecific nucleophilic substitution products of enantiomerically enriched aziridinium ions in excellent yield.


Journal of Radioanalytical and Nuclear Chemistry | 2014

Evaluation of benzyl-substituted DTPA analogues as decorporation agents of radionuclides

Chi Soo Kang; Yunwei Chen; Ekaterina Dadachova; Hyun Soon Chong

Optically active and racemic Bn-DTPA analogues were evaluated for potential decorporation of radioactive lanthanides. Complexation kinetics of the Bn-DTPA analogues with Sr(II), Ce(III), and Ce(IV) was measured using arsenazo III-based spectroscopic method. The Bn-DTPA analogues effectively and rapidly bound to Sr(II), Ce(III), and Ce(IV). Bn-DTPA was orally administered to mice and evaluated for decorporation of 85Sr and compared to that of the clinically available Ca(II)-DTPA. (rac)-Bn-DTPA removed 85Sr in mice more efficiently than DTPA. The Bn-DTPA analogues are promising decorporation agents for potential removal of 90Sr, 144Ce, and 141Ce.


Bioconjugate Chemistry | 2012

Synthesis and Preclinical Evaluation of Bifunctional Ligands for Improved Chelation Chemistry of 90Y and 177Lu for Targeted Radioimmunotherapy

Chi Soo Kang; Xiang Sun; Fang Jia; Hyun A. Song; Yunwei Chen; Michael R. Lewis; Hyun-Soon Chong

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Hyun-Soon Chong

Illinois Institute of Technology

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Xiang Sun

Illinois Institute of Technology

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Chi Soo Kang

Illinois Institute of Technology

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Hyun A. Song

Illinois Institute of Technology

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Ningjie Wu

Illinois Institute of Technology

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Dijie Liu

University of Missouri

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Anzhi Dai

Illinois Institute of Technology

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Hyunbeom Lee

Illinois Institute of Technology

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Inseok Sin

Illinois Institute of Technology

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