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Dive into the research topics where Sun Joon Min is active.

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Featured researches published by Sun Joon Min.


Bioorganic & Medicinal Chemistry | 2013

Oxazolopyridines and thiazolopyridines as monoamine oxidase B inhibitors for the treatment of Parkinson’s disease

Hye Ri Park; Jiyoon Kim; Taekeun Kim; Seonmi Jo; Miyoung Yeom; Bongjin Moon; Il Han Choo; Jaeick Lee; Eun Jeong Lim; Ki Duk Park; Sun Joon Min; Ghilsoo Nam; Gyochang Keum; C. Justin Lee; Hyunah Choo

In Parkinsons disease, the motor impairments are mainly caused by the death of dopaminergic neurons. Among the enzymes which are involved in the biosynthesis and catabolism of dopamine, monoamine oxidase B (MAO-B) has been a therapeutic target of Parkinsons disease. However, due to the undesirable adverse effects, development of alternative MAO-B inhibitors with greater optimal therapeutic potential towards Parkinsons disease is urgently required. In this study, we designed and synthesized the oxazolopyridine and thiazolopyridine derivatives, and biologically evaluated their inhibitory activities against MAO-B. Structure-activity relationship study revealed that the piperidino group was the best choice for the R(1) amino substituent to the oxazolopyridine core structure and the activities of the oxazolopyridines with various phenyl rings were between 267.1 and 889.5nM in IC50 values. Interestingly, by replacement of the core structure from oxazolopyrine to thiazolopyridine, the activities were significantly improved and the compound 1n with the thiazolopyridine core structure showed the most potent activity with the IC50 value of 26.5nM. Molecular docking study showed that van der Waals interaction in the human MAO-B active site could explain the enhanced inhibitory activities of thiazolopyridine derivatives.


Bioorganic & Medicinal Chemistry Letters | 2013

Synthesis and biological evaluation of 2-(arylethynyl)quinoline derivatives as mGluR5 antagonists for the treatment of neuropathic pain.

Myung Hee Son; Ji Young Kim; Eun Jeong Lim; Du Jong Baek; Kihang Choi; Jae Kyun Lee; Ae Nim Pae; Sun Joon Min; Yong Seo Cho

We described here the synthesis and biological evaluation of mGluR5 antagonists containing a quinoline ring structure. Using intracellular calcium mobilization assay (FDSS assay), we identified compound 5n, showing high inhibitory activity against mGluR5. In addition, it was found that compound 5n has excellent stability profile. Finally, this compound exhibited favorable analgesic effects in spinal nerve ligation model of neuropathic pain, which is comparable to gabapentin.


Bioorganic & Medicinal Chemistry Letters | 2015

Synthesis and biological evaluation of aryl isoxazole derivatives as metabotropic glutamate receptor 1 antagonists: a potential treatment for neuropathic pain.

Gyeong Hi Cho; TaeHun Kim; Woo Seung Son; Seon Hee Seo; Sun Joon Min; Yong Seo Cho; Gyochang Keum; Kyu-Sung Jeong; Hun Yeong Koh; Jiyoun Lee; Ae Nim Pae

Glutamate is the major excitatory neurotransmitter and known to activate the metabotropic and ionotropic glutamate receptors in the brain. Among these glutamate receptors, metabotropic glutamate receptor 1 (mGluR1) has been implicated in various brain disorders including anxiety, schizophrenia and chronic pain. Several studies demonstrated that the blockade of mGluR1 signaling reduced pain responses in animal models, suggesting that mGluR1 is a promising target for the treatment of neuropathic pain. In this study, we have developed mGluR1 antagonists with an aryl isoxazole scaffold, and identify several compounds that are orally active in vivo. We believe that these compounds can serve as a useful tool for the investigation of the role of mGluR1 and a promising lead for the potential treatment of neuropathic pain.


Organic and Biomolecular Chemistry | 2014

Facile diverted synthesis of pyrrolidinyl triazoles using organotrifluoroborate

Sun Hwa Jung; Kihang Choi; Ae Nim Pae; Jae Kyun Lee; Hyunah Choo; Gyochang Keum; Yong Seo Cho; Sun Joon Min

This article describes the rapid and diversified synthesis of pyrrolidinyl triazoles for the discovery of mitochondrial permeability transition pore (mPTP) blockers. The 1,3-dipolar cycloaddition of ethynyl trifluoroborate with azidopyrrolidine produced a key intermediate, triazolyl trifluoroborate 4, which subsequently underwent a Suzuki-Miyaura coupling reaction to afford a series of 1,4-disubstituted triazoles 2. Subsequent biological evaluation of these derivatives indicated 2ag and 2aj as the most potent mPTP blockers exhibiting excellent cytochrome P450 (CYP) stability when compared to the previously reported oxime analogue 1. The present work clearly demonstrates that a 1,2,3-triazole can be used as a stable oxime surrogate. Furthermore, it suggests that late-stage diversification through coupling reactions of organotrifluoroborates is suitable for the rapid discovery of biologically active molecules.


Organic and Biomolecular Chemistry | 2014

Facile diverted synthesis of pyrrolidinyl triazoles using organotrifluoroborate: discovery of potential mPTP blockers

Sun Hwa Jung; Kihang Choi; Ae Nim Pae; Jae Kyun Lee; Hyunah Choo; Gyochang Keum; Yong Seo Cho; Sun Joon Min


Archive | 2014

BENZIMIDAZOLE DERIVATIVES AS MITOCHONDRIAL FUNCTION MODULATORS

Ae Nim Pae; Sun Joon Min; Eun Joo Roh; Ha Yun Yang; Tae Hoon Kim; Beoung Gun Park; Yong Seo Cho


Archive | 2012

METHOD OF PREPARING TETRABENAZINE AND DIHYDROTETRABENAZINE

Sun Joon Min; Yong Seo Cho; Jae Kyun Lee; Ae Nim Pae; Young Wook Son


Archive | 2013

2-(Substituted ethynyl)quinoline Derivatives as mGLUr5 Antagonists

Sun Joon Min; Yong Seo Cho; Ae Nim Pae; Eun Jeong Lim; Ji Yeong Kim; Myung Hee Son; Jae Kyun Lee


Archive | 2017

ALPHA-AMINOAMIDE DERIVATIVE COMPOUND AND PHARMACEUTICAL COMPOSITION COMPRISING SAME

박기덕; Ki Duk Park; 이창준; Chang Joon Lee; 김동진; Dong Jin Kim; 배애님; Ae Nim Pae; 추현아; Hyun Ah Choo; 민선준; Sun Joon Min; 강용구; Yong Koo Kang; 김윤경; Yun Kyung Kim; 송효정; Hyo Jung Song; 최지원; Ji Won Choi; 남민호; Min Ho Nam; 허준영; Jun Young Heo; 연슬기; Seul Ki Yeon; 장보고; Bo Ko Jang; 주은지; Eun Ji Ju


Archive | 2014

THIENOPYRIMIDINONE DERIVATIVES AS mGluR1 ANTAGONISTS

Hyunah Choo; Sun Joon Min; Seon Hee Seo; Jee Yeon Kim; Yoo Ran Ki; Minjoo Kim; Sora Kim; Young-Jae Kim

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Yong Seo Cho

Korea Institute of Science and Technology

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Ae Nim Pae

Kigali Institute of Science and Technology

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Jae Kyun Lee

Korea Institute of Science and Technology

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Seon Hee Seo

Korea Institute of Science and Technology

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Dong Jin Kim

Korea Institute of Science and Technology

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Ghilsoo Nam

Korea Institute of Science and Technology

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Gyeong Hi Cho

Korea Institute of Science and Technology

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Gyochang Keum

Korea Institute of Science and Technology

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Hyun Ah Choo

Korea Institute of Science and Technology

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Hyunah Choo

Korea Institute of Science and Technology

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