Education
School ¡X Major ¡X Degree | Duration |
---|---|
°ª¶¯Âå¾Ç¤j¾Ç ¡X ÃľǨt(²¦) ¡X ³Õ¤h Doctorate, , |
2003/09 ¡X 2008/06 |
°ª¶¯Âå¾Ç¤j¾Ç ¡X ¤ÑµMÃĪ«¬ã¨s©Ò(²¦) ¡X ºÓ¤h Master, , |
1998/09 ¡X 2000/06 |
¹Å«nÃIJz¾Ç°| ¡X ÃľǨt(²¦) ¡X ¾Ç¤h Bachelor, , |
1996/09 ¡X 1998/06 |
Intramural Experience
Office/Department/Institute | Position | Duration |
---|---|---|
»ùÛ«~¾Ç¨tºÓ¤h¯Z Master's Program in Fragrance and Cosmetic Science | Director | 2024/10/05 ¡X 2027/10/04 |
»ùÛ«~¾Ç¨t Department of Fragrance and Cosmetic Science | Chair | 2024/10/05 ¡X 2027/10/04 |
»ùÛ«~¾Ç¨t Department of Fragrance and Cosmetic Science | Professor | 2018/08/01 ¡X |
»ùÛ«~¾Ç¨t Department of Fragrance and Cosmetic Science | Associate Professor | 2013/08/01 ¡X 2018/07/31 |
»ùÛ«~¾Ç¨t Department of Fragrance and Cosmetic Science | Assistant Professor | 2009/02/01 ¡X 2013/07/31 |
Extramural Experience
Discipline
NO | Discipline | Expertise |
---|---|---|
1 | ¥Íª«Âå¹AÃþ Biology, Medicine and Agriculture | ¹«~¤Î¹A¤Æ Food and Agricultural Chemistry |
2 | ¥Íª«Âå¹AÃþ Biology, Medicine and Agriculture | ÃľǤΤ¤ÂåÃÄ Pharmacy and Chinese Medicine and Pharmacy |
Research & Technology Platform Open to the Outside
Interested Area(s)for Interdisciplinary Research
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Area(s) of Expertise & Research
¤¤¯óÃĤ§§ÜÀù¬¡©Ê¤ÀªR¡B©`¦Ì»s¾¯¡B§Ü®ñ¤Æ¬¡©Ê¤ÀªR¡B¹«~»P¤ÑµMÃĪ«¦¨¤À¤ÀªR¤Î¤¤¯óÃÄ»ùÛ¬ÛÃö¦¨¤À¬¡©Ê¤ÀªR¤¤¯óÃÄ¡B§ÜÀù¡B©`¦Ì»s¾¯¡BÂå¾Ç¬ü®e
Anticancer research on traditional chinese medicine Nanoparticles preparation Medical cosmeticology
Publication
NO | Publication |
---|---|
1 | Myricetin Nanofibers Enhanced Water Solubility and Skin Penetration for Increasing Antioxidant and Photoprotective Activities. Myricetin Nanofibers Enhanced Water Solubility and Skin Penetration for Increasing Antioxidant and Photoprotective Activities. |
2 | Determination of the Bacterial Community of Mustard Pickle Products and Their Microbial and Chemical Qualities. Determination of the Bacterial Community of Mustard Pickle Products and Their Microbial and Chemical Qualities. |
3 | Liposomes Encapsulating Morin: Investigation of Physicochemical Properties, Dermal Absorption Improvement and Anti-Aging Activity in PM-Induced Keratinocytes. Liposomes Encapsulating Morin: Investigation of Physicochemical Properties, Dermal Absorption Improvement and Anti-Aging Activity in PM-Induced Keratinocytes. |
4 | Prinsepiae Nux Extract Activates NRF2 Activity and Protects UVB-Induced, Damage in Keratinocyte Prinsepiae Nux Extract Activates NRF2 Activity and Protects UVB-Induced, Damage in Keratinocyte |
5 | Antioxidant, Anti-Inflammation and Antiaging Activities of Artocarpus altilis Methanolic Extract on Urban Particulate Matter-Induced HaCaT Keratinocytes Damage Antioxidant, Anti-Inflammation and Antiaging Activities of Artocarpus altilis Methanolic Extract on Urban Particulate Matter-Induced HaCaT Keratinocytes Damage |
6 | Pterostilbene Nanoparticles Downregulate Hypoxia-Inducible Factors in Hepatoma Cells Under Hypoxic Conditions. Pterostilbene Nanoparticles Downregulate Hypoxia-Inducible Factors in Hepatoma Cells Under Hypoxic Conditions. |
7 | Identification of Beilschmiedia tsangii Root Extract as a Liver Cancer Cell¡VNormal Keratinocyte Dual-Selective NRF2 Regulator Identification of Beilschmiedia tsangii Root Extract as a Liver Cancer Cell¡VNormal Keratinocyte Dual-Selective NRF2 Regulator |
8 | Oleanolic Acid Nanofibers Attenuated Particulate Matter-Induced Oxidative Stress in Keratinocytes. Oleanolic Acid Nanofibers Attenuated Particulate Matter-Induced Oxidative Stress in Keratinocytes. |
9 | Topical Artocarpus communis Nanoparticles Improved the Water Solubility and Skin Permeation of Raw A. communis Extract, Improving Its Photoprotective Effect Topical Artocarpus communis Nanoparticles Improved the Water Solubility and Skin Permeation of Raw A. communis Extract, Improving Its Photoprotective Effect |
10 | Pterostilbene Attenuates Particulate Matter-Induced Oxidative Stress, Inflammation and Aging in Keratinocytes Pterostilbene Attenuates Particulate Matter-Induced Oxidative Stress, Inflammation and Aging in Keratinocytes |
11 | ¹q¯¼Â´¥ÕòÔĪ¾J©`¦ÌÅÖºû¤Î¨ä¥Íª«Âå¾ÇÀ³¥Î Electrospun resveratrol-loaded polyvinylpyrrolidone/ cyclodextrin nanofibers and their biomedical applications |
12 | Inclusion complex of saikosaponin-d with hydroxypropyl-£]-cyclodextrin: Improved physicochemical properties and anti-skin cancer activity Inclusion complex of saikosaponin-d with hydroxypropyl-£]-cyclodextrin: Improved physicochemical properties and anti-skin cancer activity |
13 | Liposomal Avicequinone-B formulations: Aqueous solubility, physicochemical properties and apoptotic effects on cutaneous squamous cell carcinoma cells Liposomal Avicequinone-B formulations: Aqueous solubility, physicochemical properties and apoptotic effects on cutaneous squamous cell carcinoma cells |
14 | Improvement of skin penetration, antipollutant activity and skin hydration of 7,3¡¬,4¡¬- trihydroxyisoflavone cyclodextrin inclusion complex Improvement of skin penetration, antipollutant activity and skin hydration of 7,3¡¬,4¡¬- trihydroxyisoflavone cyclodextrin inclusion complex |
15 | §Q¥Î¤ò²ÓºÞ¹q°Ê·LM¼hªR§Þ³Nµ²¦X¹êÅç³]pªk´ú©wBupleuri Radix¤¤¤§®ãJ¨m苷 Determination of Saikosaponins in Bupleuri Radix by Micellar Electrokinetic Chromatography with Experimental Design |
16 | Preparation, characterizations and anti-pollutant activity of 7,3¡¬,4¡¬-trihydroxyisoflavone nanoparticles in particulate matter- induced HaCaT keratinocytes Preparation, characterizations and anti-pollutant activity of 7,3¡¬,4¡¬-trihydroxyisoflavone nanoparticles in particulate matter- induced HaCaT keratinocytes |
17 | Naphtho[1,2-b]furan-4,5-dione is a potent anti-MRSA agent against planktonic, biofilm, and intracellular bacteria Naphtho[1,2-b]furan-4,5-dione is a potent anti-MRSA agent against planktonic, biofilm, and intracellular bacteria |
18 | Pterostilbene, a methoxylated resveratrol derivative, efficiently eradicates planktonic, biofilm, and intracellular MRSA by topical application Pterostilbene, a methoxylated resveratrol derivative, efficiently eradicates planktonic, biofilm, and intracellular MRSA by topical application |
19 | Densification and biocompatibility of sintering 3.0 mol% yttria- tetragonal ZrO2 polycrystal ceramics with x wt% Fe2O3 and 5.0 wt% mica powders additive. Densification and biocompatibility of sintering 3.0 mol% yttria- tetragonal ZrO2 polycrystal ceramics with x wt% Fe2O3 and 5.0 wt% mica powders additive. |
20 | Magnolol nanoparticles exhibit improved water solubility and suppress TNF-£\-induced VCAM-1 expression in endothelial cells Magnolol nanoparticles exhibit improved water solubility and suppress TNF-£\-induced VCAM-1 expression in endothelial cells |
21 | Cudraflavone C Induces Apoptosis of A375.S2 Melanoma Cells through Mitochondrial ROS Production and MAPK Activation Cudraflavone C Induces Apoptosis of A375.S2 Melanoma Cells through Mitochondrial ROS Production and MAPK Activation |
22 | Magnolol Nanoparticles Exhibit Improved Water Solubility and Suppress TNF-alpha-Induced VCAM-1 Expression in Endothelial Cells Magnolol Nanoparticles Exhibit Improved Water Solubility and Suppress TNF-alpha-Induced VCAM-1 Expression in Endothelial Cells |
23 | §K¬Ì§í¨îÃĪ«ªº¨Ï¥Î©M±aª¬¯p¯l±wªÌ¬õ´³¯T½Hªº·ÀI¡G¤@Ó¥þ°ê©Êªº¯f¨Ò¹ï·Ó¬ã¨s Immunosuppressive medication use and risk of herpes zoster (HZ) in patients with systemic lupus erythematosus (SLE): A nationwide case-control study |
24 | ®ãJ¤Î¨ä¥Dn¥Íª«¬¡©Ê¤Æ¦Xª«®ãJ¨m苷-Dªº¯Ç¦ÌÁû²É»s¾¯ªº§Ü¶Â¦â¯À½F¬¡©Ê Anti-melanoma activity of Bupleurum chinense, Bupleurum kaoi and nanoparticle formulation of their major bioactive compound saikosaponin-d |
25 | ¥H»Ä©Ê¨Ì¿à©Ê»E¦Xª«¥]ÂÐ7,3¡¬,4¡¬-trihydroxyisoflavone¤§©`¦ÌÁû²É»s¾¯§@¬°¥~¥Îµ¹ÃĨt²Î Design of acid-responsive polymeric nanoparticles for 7,3¡¬,4¡¬-trihydroxyisoflavone topical administration |
26 | Eupafolin§ïµ½ªÅ®ð¦Ã¬Vª«¾ÉP¤HÃþ¨¤½è²ÓMCOX-2¤ÎPGE-2ªºªºªí²{ Eupafolin ameliorate COX-2 expression and PGE2 production in particulate pollutants-exposed human keratinocytes through ROS/MAPKs pathways. |
27 | Eupafolin nanoparticles protect HaCaT keratinocytes from particulate matter-induced inflammation and oxidative stress Eupafolin nanoparticles protect HaCaT keratinocytes from particulate matter-induced inflammation and oxidative stress |
28 | ¶Ý¤¤©Ê¥Õ¦å²yM¥~ºôªº¦æ¦¨¦b°®Å~¯f¤H·|¼W¥[¦Ó¥B·|«P¶iªí¥Ö¨¤½è²ÓM£]-defensin-2ªº²£¥Í Neutrophil extracellular trap formation is increased in psoriasis and induces human £]-defensin-2 production in epidermal keratinocytes |
29 | »OÆW°ü¤k¨Ï¥ÎÁy³¡¬ü¥Õ²£«~®Ä¥Îªº«ÈÆ[©M¦Û§Ú·Pª¾¬ã¨s Objective and self-perceived facial skin status using whitening efficacy of cosmetic products on Taiwanese women |
30 | Enhanced autophagic activity of fartocarpin in human hepatocellular carcinoma cells through improving its solubility by a nanoparticle system. Enhanced autophagic activity of fartocarpin in human hepatocellular carcinoma cells through improving its solubility by a nanoparticle system. |
31 | Artocarpin ·|«P¶i¥Ö½§Å쪬²ÓMÀùHSC-1²ÓM®èªºä¤`¦Ó¥B¥¦ªº²ÓM¬r©Ê·|¨ü¨ì³J¥Õ½è¤Î¾i¤À¿@«×¼vÅT Artocarpin induces apoptosis in human cutaneous squamous cell carcinoma HSC-1 cells and its cytotoxic activity is dependent on protein-nutrient concentration |
32 | Artocarpus communis Extracts Induce Autophagic Instead of Apoptotic Cell Death in Human Hepatocellular Carcinoma Cells. Artocarpus communis Extracts Induce Autophagic Instead of Apoptotic Cell Death in Human Hepatocellular Carcinoma Cells. |
33 | ¿AÄõ¯À³z¹L°§Cintercellular cell adhesion molecule-1ªí²{¨Ó¹w¨¾TNF-alpha¤Þ°_ªºªÍŦµoª¢ The protective effect of eupafolin against TNF-alpha-induced lung inflammation via the reduction of intercellular cell adhesion molecule-1 expression |
34 | Phase transformation behavior of 3 mol% yttria partially-stabilized ZrO2 (3Y-PSZ) precursor powder by an isothermal method Phase transformation behavior of 3 mol% yttria partially-stabilized ZrO2 (3Y-PSZ) precursor powder by an isothermal method |
35 | Growth kinetics of tetragonal and monoclinic ZrO2 crystallites in 3 mol% yttria partially stabilized ZrO2 (3Y-PSZ) precursor powder Growth kinetics of tetragonal and monoclinic ZrO2 crystallites in 3 mol% yttria partially stabilized ZrO2 (3Y-PSZ) precursor powder |
36 | Eupafolin, a skin whitening flavonoid isolated from Phyla nodiflora, downregulated melanogenesis: Role of MAPK and Akt pathways Eupafolin, a skin whitening flavonoid isolated from Phyla nodiflora, downregulated melanogenesis: Role of MAPK and Akt pathways |
37 | HPLC-fingerprints and antioxidant constituents of Phyla nodiflora HPLC-fingerprints and antioxidant constituents of Phyla nodiflora |
38 | Antihepatoma activity of Artocarpus communis is higher in fractions with high artocarpin content. Antihepatoma activity of Artocarpus communis is higher in fractions with high artocarpin content. |
39 | CXCR7 ªºªí²{»P¥Ö½§Å쪬²ÓMÀù¸~½F²`«×¬ÛÃö¨Ã·|¸g¥ÑERKªº¬¡¤Æ«P¶iÀù²ÓM¦s¬¡ CXCR7 expression correlates with tumor depth in cutaneous squamous cell carcinoma skin lesions and promotes tumor cell survival through ERK activation |
40 | Phase transformation and crystalline growth of 4 mol% yttria partially stabilized zirconia Phase transformation and crystalline growth of 4 mol% yttria partially stabilized zirconia |
41 | Eupafolin inhibits PGE2 production and COX2 expression in LPS-stimulated human dermal fibroblasts by blocking JNK/AP-1 and Nox2/p47(phox) pathway. Eupafolin inhibits PGE2 production and COX2 expression in LPS-stimulated human dermal fibroblasts by blocking JNK/AP-1 and Nox2/p47(phox) pathway. |
42 | Effect of Artocarpus communis Extract on UVB Irradiation-Induced Oxidative Stress and Inflammation in Hairless Mice. Effect of Artocarpus communis Extract on UVB Irradiation-Induced Oxidative Stress and Inflammation in Hairless Mice. |
43 | Prenylated flavonoids from Artocarpus altilis: Antioxidant activities and inhibitory effects on melanin production. Prenylated flavonoids from Artocarpus altilis: Antioxidant activities and inhibitory effects on melanin production. |
44 | Curcumin Nanoparticles Ameliorate ICAM-1 Expression in TNF-a-Treated Lung Epithelial Cells through p47 phox and MAPKs/AP-1 Pathways. Curcumin Nanoparticles Ameliorate ICAM-1 Expression in TNF-a-Treated Lung Epithelial Cells through p47 phox and MAPKs/AP-1 Pathways. |
45 | Effect of solute and surfactant addition on the crystallization and morphology of hydroxyapatite powders synthesized by hydrolysis of calcium hydrogen phosphate dehydrate (DCPD) Effect of solute and surfactant addition on the crystallization and morphology of hydroxyapatite powders synthesized by hydrolysis of calcium hydrogen phosphate dehydrate (DCPD) |
46 | Process parameters on the crystallization and morphology of hydroxyapatite powders prepared by a hydrolysis method Process parameters on the crystallization and morphology of hydroxyapatite powders prepared by a hydrolysis method |
47 | Artocarpin attenuates ultraviolet B-induced skin damage in hairless mice by antioxidant and anti-inflammatory effect. Artocarpin attenuates ultraviolet B-induced skin damage in hairless mice by antioxidant and anti-inflammatory effect. |
48 | Norartocarpetin from a folk medicine Artocarpus communis plays a melanogenesis inhibitor without cytotoxicity and skin irritation in mice. Norartocarpetin from a folk medicine Artocarpus communis plays a melanogenesis inhibitor without cytotoxicity and skin irritation in mice. |
49 | 9 mol ¢H®ñ¤Æ¾N¥]ÂФG®ñ¤ÆÜg¯Ç¦Ì´¹¯»ÅéÀ³¥Î©ó¨¾ÅΤƧ©«~¤¤ Preparation of TiO2 Nanocrystallite Powders Coated with 9 mol% ZnO for Cosmetic Applications in Sunscreens |
50 | Characteristics and Antioxidant Activities of Silymarin Nanoparticles. Characteristics and Antioxidant Activities of Silymarin Nanoparticles. |
51 | Resveratrol nanoparticle system improves dissolution properties and enhances the hepatoprotective effect of resveratrol through antioxidant and anti-inflammatory pathway. Resveratrol nanoparticle system improves dissolution properties and enhances the hepatoprotective effect of resveratrol through antioxidant and anti-inflammatory pathway. |
52 | Understanding the Biocompatibility of Sintered Calcium Phosphate with Ratio of [Ca]/[P] = 1.50 Understanding the Biocompatibility of Sintered Calcium Phosphate with Ratio of [Ca]/[P] = 1.50 |
53 | Effect of solute and surfactant addition on the crystallization and morphology of hydroxyapatite powders synthesized by hydrolysis of calcium hydrogen phosphate dehydrate (DCPD) Effect of solute and surfactant addition on the crystallization and morphology of hydroxyapatite powders synthesized by hydrolysis of calcium hydrogen phosphate dehydrate (DCPD) |
54 | ¥Û³AµÑ¨úª«¤§¬ü¥Õ¬¡©Ê¾÷Âà Melanogenesis Inhibitor(s) from Phyla nodiflora Extract. |
55 | Enhancement of dissolution and antioxidant activity of kaempferol using a nanoparticle engineering process. Enhancement of dissolution and antioxidant activity of kaempferol using a nanoparticle engineering process. |
56 | Curcumin Nanoparticles improve the Physicochemical Properties of Curcumin and Effectively enhance Its Antioxidant and Antihepatoma Activities. Curcumin Nanoparticles improve the Physicochemical Properties of Curcumin and Effectively enhance Its Antioxidant and Antihepatoma Activities. |
57 | Naringenin-Loaded Nanoparticles Improve the Physicochemical Properties and the Hepatoprotective Effects of Naringenin in Orally-Administered Rats with CCl4-Induced Acute Liver Failure Naringenin-Loaded Nanoparticles Improve the Physicochemical Properties and the Hepatoprotective Effects of Naringenin in Orally-Administered Rats with CCl4-Induced Acute Liver Failure |
58 | Preparation, physicochemical characterization, and antioxidant effects of quercetin nanoparticles. Preparation, physicochemical characterization, and antioxidant effects of quercetin nanoparticles. |
59 | Concordance between antioxidant activities and flavonol content in different extracts and fractions of Cuscuta chinensis. Concordance between antioxidant activities and flavonol content in different extracts and fractions of Cuscuta chinensis. |
60 | Nanoparticles formulation of Cuscuta chinensis prevents acetaminophen-induced hepatotoxicity in rats. Nanoparticles formulation of Cuscuta chinensis prevents acetaminophen-induced hepatotoxicity in rats. |
61 | Hepatoprotective and antioxidant effect of Cuscuta chinensis against acetaminophen-induced hepatotoxicity in rats. Hepatoprotective and antioxidant effect of Cuscuta chinensis against acetaminophen-induced hepatotoxicity in rats. |
62 | A kampo medicine, Yin-Chiao-san , prevents bleomycin-induced pulmonary injury in rats. A kampo medicine, Yin-Chiao-san , prevents bleomycin-induced pulmonary injury in rats. |
63 | Hepatoprotective Effects of Chai-Hu-Ching-Kan-Tang on Acetaminophen-Induced Acute Liver Injury in Rats. Hepatoprotective Effects of Chai-Hu-Ching-Kan-Tang on Acetaminophen-Induced Acute Liver Injury in Rats. |
64 | Protective effect of Houttuynia cordata extract on bleomycin-induced pulmonary fibrosis in rats. Protective effect of Houttuynia cordata extract on bleomycin-induced pulmonary fibrosis in rats. |
65 | Protective effects of Ligustrum lucidum fruit extract on acute butylated hydroxytoluene-induced oxidative stress in rats. Protective effects of Ligustrum lucidum fruit extract on acute butylated hydroxytoluene-induced oxidative stress in rats. |
Project
NO |
YEAR ¡X Source ¡X No ¡X Type
Project Name
|
Duration |
---|---|---|
1 |
113 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSTC113-2320-B-037-022 ¡X 1 Ó¤H«¬
¥Hin silico©Min vitro¤èªk±´°QµµÀÈ芪l¥Íª«¶Ç»¼Åé«OÅ@ªÅ®ð¦¾¬Vª«¤Þ°_ªº¨¤½è²ÓM·l¶Ë¤À¤l¥Íª«¾÷¨î( )
|
2024/08/01 ~ 2025/07/31 |
2 |
111 ¡X KK °ª¬ì¤j°ªÂå²£¾Ç¦X§@¸É§U ¡X ¡X
¥H°ªÀ£¥[¤u§Þ³N´£¤ÉJÅÚ½³¥Ä¤§¹¥Î¦w¥þ©Ê»P¥Íª«¬¡©Ê( )
|
2022/11/01 ~ 2023/10/31 |
3 |
111 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST111-2320-B-037-016 ¡X 1 Ó¤H«¬
¥Õ·¨¯À¦hºØ©`¦Ì¶Ç¿é¨t²Î¶}µo¬ã¨s¤Î¨ä¹w¨¾¥Ö½§¹L«×¨¤½è¤Æ¤§¤À¤l¥Íª«¾÷¨î±´°Q( )
|
2022/08/01 ~ 2023/07/31 |
4 |
111 ¡X NF °ê¬ì·|¹ªÀy¥ø·~°Ñ»P°ö¨|³Õ¤h¬ã¨s¥Í¸Õ¿ì¤è®× ¡X NSTC111-2320-B-037-016 ¡X
囼¬ì·|¸É§U¥ø·~°Ñ»P°ö¨|³Õ¤h¬ã¨s¥Í¸Õ¿ì¤è®×³Õ¤h¬ã¨s¥Í¼ú¾Çª÷-§Q¦Ê¬ü¿³·~ªÑ¥÷¦³¤½¥q( )
|
2023/02/01 ~ 2023/07/31 |
5 |
111 ¡X X °ª©_¦X§@pµe ¡X 112CM-KMU-09 ¡X
Artocarpin¤Î¨ä¼Ð¹v¦¡©`¦Ì»s¾¯§Ü¥Ö½§¶Â¦â¯ÀÀù²ÓM¤§¾÷Âà( )
|
2023/08/01 ~ 2024/07/31 |
6 |
110 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST110-2320-B-037-015 ¡X 1 Ó¤H«¬
¤ì½¹½º¤Î¨ä¬¡©Ê¦¨¤À©`¦Ì³t·»¾¯«¬¦b³Ð·sÂàĶ¤ÆùÛ«~ªº¬ã¨s±´°Q( )
|
2021/08/01 ~ 2022/07/31 |
7 |
110 ¡X NF °ê¬ì·|¹ªÀy¥ø·~°Ñ»P°ö¨|³Õ¤h¬ã¨s¥Í¸Õ¿ì¤è®× ¡X MOST110-2320-B-037-015 ¡X
¬ì§Þ³¡¸É§U¥ø·~°Ñ»P°ö¨|³Õ¤h¬ã¨s¥Í¸Õ¿ì¤è®×³Õ¤h¬ã¨s¥Í¼ú¾Çª÷-Îë¦t¥Í§ÞªÑ¥÷¦³¤½¥q( )
|
2022/01/01 ~ 2022/07/31 |
8 |
109 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST109-2320-B-037-022 ¡X 1 Ó¤H«¬
¤ò¬UµÑ¨úª«»sµ{Àu¤Æ¤Î¨ä§ïµ½ªÅ®ð¦Ã¬V²É¤lPM2.5½Õ±±HIF-1£\/Aquaproin-3¤Þ°_¤§¥Ö½§¨¤½è²ÓM¦Ñ¤Æ®ÄÀ³¤§¬ã¨s( )
|
2020/08/01 ~ 2021/07/31 |
9 |
109 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST109-2811-B-037-528 ¡X 9 ³Õ¤h«á¬ã¨sû
³Õ¤h«á¬ã¨sû--¶ÀÄ_ùÜ( )
|
2020/09/01 ~ 2021/07/31 |
10 |
108 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST108-2320-B-037-016 ¡X 1 Ó¤H«¬
®Û¤ì¶ÀତΨä©`¦ÌÅÖºû¹w¨¾Ãúŵ²É¤l¤Þ°_ªº¨¤½è²ÓM®ñ¤ÆÀ£¤O¡Bµoª¢¤Î¦Ñ¤Æ¾÷¨î»P¶q²£»s³Æ§Þ³N¶}µo±´°Q( )
|
2019/08/01 ~ 2020/10/31 |
11 |
108 ¡X TC ¬ã¨s¤¤¤ßpµe ¡X KMU-TC108A03-10 ¡X 6 ¬ã¨s¤¤¤ß
³Ð·s³t·»¾¯«¬¦bÂàĶ¤ÆùÛ«~¶}µo¤§À³¥Î¬ã¨s-¥H¤ë®ç¤Î¨ä¬¡©Ê¦¨¤À¬°¨Ò( )
|
2019/08/01 ~ 2020/07/31 |
12 |
108 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST109-2813-C-037-013-B ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
109¦~«×¤j±M¾Ç¥Í¬ã¨spµe-¤ý¬Mµ®(»ùÛ2)( )
|
2020/07/01 ~ 2021/02/28 |
13 |
107 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST107-2320-B-037-009 ¡X 1 Ó¤H«¬
µµÀÈ芪§ÜÃúŵ¥Íª«¬¡©Ê¾÷¨î¤Î¨ä©`¦ÌÅÖºû¤§¸g¥Ö§l¦¬§ïµ½¾÷¨î¬ã¨s( )
|
2018/08/01 ~ 2019/10/31 |
14 |
107 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST108-2813-C-037-052-B ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
108¦~«×¤j±M¾Ç¥Í¬ã¨spµe-½²©y¿²(»ùÛ3)( )
|
2019/07/01 ~ 2020/02/29 |
15 |
106 ¡X M °ªÂå(ºØ¤lpµe) ¡X KMU-M107004 ¡X
Artocarpin¤Î©`¦ÌÅÖºû¤§·»¸Ñ«×¤Î¦w©w©Ê»P¹w¨¾ªÅ®ðÄa¯B²É¤l¤Þ°_¥Ö½§²ÓM¶Ë®`¾÷¨î¬ã¨s( )
|
2018/01/01 ~ 2018/12/31 |
16 |
105 ¡X M °ªÂå(ºØ¤lpµe) ¡X KMU-M106030 ¡X
§t¤j¨§²§¶À଩`¦Ì»s¾¯¨ÅÁ÷¦A§ïµ½²§¦ì©Ê¥Ö½§ª¢ªº¥Ö½§°®Àꤧ¬ã¨s( )
|
2017/01/01 ~ 2017/12/31 |
17 |
105 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST106-2813-C-037-018-B ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
106¦~«×¤j±M¾Ç¥Í¬ã¨spµe-·¨²E¯ô(»ùÛ3)( )
|
2017/07/01 ~ 2018/02/28 |
18 |
104 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST104-2320-B-037-009 ¡X 1 Ó¤H«¬
¤j¨§²§¶ÀଥNÁª«(7,3¡¦,4'-trihydroxyisoflavone¤Î7,8,4'-trihydroxyisoflavone)©`¦Ì¾¯«¬°§CªÅ®ðÄa¯B·L²É»¤µo¨¤½è²ÓM®ñ¤ÆÀ£¤O¡Bµoª¢¡B¦Ñ¤Æ¤Î«OÀ㤧¾÷¨î( )
|
2015/08/01 ~ 2016/07/31 |
19 |
104 ¡X TP ³»¦ypµe(°ªÂå) ¡X KMU-TP104D03 ¡X
¤lpµe¤T¡B±´°Qªx¯À¤Æ§@¥Î(ubiquitination)»PSUMO ³J¥Õ½è×¹¢¦b²ÓM¦Ñ¤Æ¤¤§êºtªº¨¤¦â( )
|
2015/10/01 ~ 2016/09/30 |
20 |
104 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST105-2815-C-037-033-B ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
105¦~«×¤j±M¾Ç¥Í¬ã¨spµe-ªL¿o¦¨(»ùÛ2)( )
|
2016/07/01 ~ 2017/02/28 |
21 |
103 ¡X M °ªÂå(ºØ¤lpµe) ¡X KMU-M104001 ¡X
¤j¨§²§¶Àର§CªÅ®ðÄa¯B·L²É»¤µo¨¤½è²ÓM®ñ¤ÆÀ£¤O¤Îµoª¢¤§¾÷¨î¬ã¨s( )
|
2015/01/01 ~ 2015/12/31 |
22 |
102 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC102-2313-B-037-001 ¡X 1 Ó¤H«¬
¥xÆW°ª»ùȸgÀÙ´Óª«°ª¤ó®ãJ»P¨ä¬¡©Ê¦¨¤À¤§©`¦Ì·s¾¯«¬»s³Æ¤Î¨ä¬ü¥Õ»P§Ü¥Ö½§Àù¾÷Âà±´°Q( )
|
2013/08/01 ~ 2014/07/31 |
23 |
101 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC99-2313-B-037-001-MY3 ¡X 1 Ó¤H«¬
ÄÑ¥]¾ðµÑ¨úª«¤Î¨ä¬¡©Ê¦¨¤À©`¦Ì¥~¥Î¾¯«¬¦bµµ¥~½u»¤µo¶Â¦â¯À¥Í¦X¦¨¤Î¥Ö½§¥ú®ñ¤ÆÀ£¤O¤§¥Ö½§¬ü¥Õ¤Î§Ü®ñ¤Æ¾÷Âà±´°Q(3/3)( )
|
2012/08/01 ~ 2013/07/31 |
24 |
101 ¡X X °ª©_¦X§@pµe ¡X 102CM-KMU-06 ¡X
ÄÑ¥]¾ðµÑ¨úª«¤Î¨ä¯Â¤Æ¦Xª«©`¦Ì¾¯«¬¤§§Ü¨xÀù¾÷Âà±´°Q( )
|
2013/05/01 ~ 2014/04/30 |
25 |
100 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC99-2313-B-037-001-MY3 ¡X 1 Ó¤H«¬
ÄÑ¥]¾ðµÑ¨úª«¤Î¨ä¬¡©Ê¦¨¤À©`¦Ì¥~¥Î¾¯«¬¦bµµ¥~½u»¤µo¶Â¦â¯À¥Í¦X¦¨¤Î¥Ö½§¥ú®ñ¤ÆÀ£¤O¤§¥Ö½§¬ü¥Õ¤Î§Ü®ñ¤Æ¾÷Âà±´°Q(2/3)( )
|
2011/08/01 ~ 2013/07/31 |
26 |
099 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC99-2313-B-037-001-MY3 ¡X 1 Ó¤H«¬
ÄÑ¥]¾ðµÑ¨úª«¤Î¨ä¬¡©Ê¦¨¤À©`¦Ì¥~¥Î¾¯«¬¦bµµ¥~½u»¤µo¶Â¦â¯À¥Í¦X¦¨¤Î¥Ö½§¥ú®ñ¤ÆÀ£¤O¤§¥Ö½§¬ü¥Õ¤Î§Ü®ñ¤Æ¾÷Âà±´°Q(1/3)( )
|
2010/08/01 ~ 2013/07/31 |
27 |
099 ¡X Q ·s¸u±Ð®vpµe(®Õ¤º) ¡X Q100020 ¡X
Àn¦Þ癀¤Î¬¡©Ê¦¨¤À¤§¬ü¥Õ¤À¤l¥Íª«¾÷Âà±´°Q( )
|
2011/01/01 ~ 2011/12/31 |
28 |
099 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X NSC100-2815-C-037-011-B ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
100¦~«×¤j±M¾Ç¥Í°Ñ»P±MÃD¬ã¨spµe--´^¶h²[(»ùÛ3)( )
|
2011/07/01 ~ 2012/02/29 |
29 |
098 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC98-2313-B-037-001 ¡X 1 Ó¤H«¬
·s¿oÁ¤¶À¯À©`¦Ì»s¾¯ª«²z¤Æ¾Ç©Ê½è±´°Q¤Î¨ä§ÜC«¬¨xª¢¡B§Ü¨xÀù¬¡©Ê¤§¶}µo¬ã¨s( )
|
2009/08/01 ~ 2010/07/31 |
30 |
098 ¡X Q ·s¸u±Ð®vpµe(®Õ¤º) ¡X KMU-Q099031 ¡X
·s¿oÁ¤¶À¯À©`¦Ì¾¯«¬¤§§Ü¥Ö½§Àù¤À¤l¾÷Âà±´°Q( )
|
2010/02/01 ~ 2010/12/31 |
31 |
098 ¡X X °ª©_¦X§@pµe ¡X 99CM-KMU-06 ¡X
¥ÕòÔĪ¾J©`¦Ì»s¾¯¤§ª«²z¤Æ¾Ç©Ê½è±´°Q¤Î§Ü®ñ¤Æ»P«O¨x¬¡©Ê¬ã¨s( )
|
2010/05/01 ~ 2011/04/30 |
32 |
097 ¡X Q ·s¸u±Ð®vpµe(®Õ¤º) ¡X ¡X 1 Ó¤H«¬
·s¿o¤ô¸Áª»«©`¦Ì¾¯«¬¤§ª«²z¤Æ¾Ç©Ê½è¤Î¨ä§Ü®ñ¤Æ¡B§ÜÀù¬¡©Ê¬ã¨s( )
|
2009/05/01 ~ 2009/12/31 |
33 |
097 ¡X X °ª©_¦X§@pµe ¡X 98CM-KMU-07 ¡X
¶Àà¬Ãþª«½è¤s©`×ô¤Î¨ä©`¦Ìª«½è¤§§Ü®ñ¤Æ¬¡©Êµû¦ô( )
|
2009/05/01 ~ 2010/04/30 |
Patent
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1 | ¥Û³AµÑ¨úª«¥Î©ó¥Ö½§¬ü¥Õ | ¤¤µØ¥Á°ê | 2016/02/21 | I522127 |
2 | ÄÑ¥]¾ðµÑ¨úª«°µ¬°¨¾ÅΫO¾i«~²K¥[ª«¨Ó¹w¨¾µµ¥~½u¶Ë®`¥Ö½§¤§¥Î³~ | ¤¤µØ¥Á°ê | 2015/08/21 | I496593 |
3 | ÄÑ¥]¾ðµÑ¨úª«¹w¨¾µµ¥~½u¶Ë®`¥Ö½§ªº¥Î³~ | ¤¤°ê | 2017/04/12 | 2447356 |
4 | 7, 3¡¦, 4¡¦-¤j¨§²§¶À଻s¾¯ªº»s³Æ¤èªk | ¤¤µØ¥Á°ê | 2017/05/21 | I583404 |
5 | §ÜÃúŵ²Õ¦Xª« | ¤¤µØ¥Á°ê | 2020/04/01 | I689304 |
6 | ¤@ºØ§t¦³ÄÑ¥]¾ðµÑ¨úª«ªº³t·»²Õ¦Xª«¤§»s³Æ¤èªk | ¤¤µØ¥Á°ê | 2022/08/01 | I772837 |