PAGE for COLLABORATION
PAGE for MEMORANDUM
PAGE for
PUBLICATION / FIELD [JPN] Jan. '12
§I. SURFACE CHEMISTRY | ||
@)Glycyrrhizic Acid in Aqurous Media | 2,3,6,7,8,10,4. | |
§II. INTERACTION | ||
@)Flocculation-Deflocculation | 1. | |
A)Flocculation-Deflocculation in a Two-Dimensional System | 14,18. | |
B)Flocculation Kinetics of the Monodisperse System | 32. | |
C)Solid-State Interaction | 31,46. | |
D)Fluorescence Intensities and Physico-chemical Properties | 5,22. | |
§III. Dissolution & Release | ||
@)Changes of Surface Area in the Dissolution Process | 13,15,16,17,19,Tech. 1,Tech. 2. | |
A)Dissolution of Solid Dosage Form | 20,21,23,27,29,33,34. | |
B)Release from or through a Wax Matrix System | 28,44,45,47,48, 58, 62. | |
C)Release from Polymer Matrix System | 50,61, 66,74,76 | |
D)Tablet Rapidly Disintegrating in the Oral Cavity | 35,37,39, 67. | |
E)Column Dissolution | 11. | |
§IV. Pharmaceutical Technology | ||
@)Excipient & | 38,49, 51. | |
A)Granulation | 42. | |
B)Pharmaceutical Preparation of Crude Drug Powder | 24,25,26,30,65. | |
C)Particle Designation | 36,59, 60. | |
D)Adhesive Force of Fine Particles | 40,41,43, 52. | |
§V. Pharmacy & Bioactivity | ||
Bioactivity and Physico-Chemical Properties | 9,12. | |
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§I. SURFACE CHEMISTRY
@) Physico-Chemical Properties of Glycyrrhizic
Acid in Aqueous Media [ MEMO ]
2.Akinobu Otsuka, Yorinobu Yonezawa, Katsuhide
Iba, Tsuneji Tatsumi, Hisakazu Sunada:
Physico-Chemical Properties of Glycyrrhizic
Acid in Aqueous Media.
I. Surface-active Properties and Formation of
Melecular Aggregates
YAKUGAKU ZASSHI, 96 (2), 203 - 208 (1976)
3.Akinobu Otsuka, Yorinobu Yonezawa, Yasuhiko
Nakamura,
Physico-Chemical Properties of Glycyrrhizic
Acid in Aqueous Media.
II. Effect on Flocculation-Deflocculation Behavior
of Suspensions of Sulfathiazole and Graphite
J. Pharm. Sci., 67 (2), 151 - 154 (1978)
6.Yorinobu Yonezawa, Akinobu Otsuka:
Physico-Chemical Properties of Glycyrrhizic
Acid in Aqueous Media.
III. Solubilizing Properties for Dyes and Medicinal
Substance
YAKUGAKU ZASSHI, 101 (9), 829 - 835 (1981)
7.Yorinobu Yonezawa, Akinobu Otsuka:
Physico-Chemical Properties of Glycyrrhizic
Acid in Aqueous Media.
IV. Emulsification of Oleic Acid
YAKUGAKU ZASSHI, 103 (2), 203 - 208 (1983)
8.Yorinobu Yonezawa, Hisakazu Sunada, Akinobu
Otsuka, Msayuki Nakagaki:
Physico-Chemical Properties of Glycyrrhizic
Acid in Aqueous Media.
V. Critical Micelle Concentration of Mixed Solution
of Glycyrrhizin and Sodium Cholate
YAKUGAKU ZASSHI, 103 (10), 1085 - 1090 (1983)
10.Yorinobu Yonezawa, Akinobu Otsuka, Hisakazu
Sunada:
Emulsifying Ability of Glycyrrizin and Stability
of the Emulsions
J. Jpn Cosmet. Sci. Soc., 8 (1), 61 - 66 (1984)
4.Akinobu Otsuka, Yorinobu Yonezawa, Junko
Watanabe:
Determination of Critical Micelle Concentration
of Sodium Cholate by Iodine Method
YAKUGAKU ZASSHI, 99 (2), 217 - 219 (1979)
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§II. INTERACTION
@)Flocculation-Deflocculation
1.Akinobu Otsuka, Hisakazu Sunada, Yorinobu
Yonezawa,
Adsorption of Nonionic Surfactants on Sulfathiazole
and Naphthalene and Flocculation-
Deflocculation Behavior of These Suspensions
J. Pharm. Sci., 62 (5), 751-754 (1973)
A)Flocculation-Deflocculation in a Two-Dimensional
System
14.Hisakazu Sunada, Yoshiko Hirai, Akinobu Otsuka,
Yorinobu Yonezawa,
Flocculation Studies of Granulated Stearyl
Alcohol on the Surface of Aqueous Media.
II. Flocculation-Deflocculation Mechanism in
a Two-Dimensional System
Chem. Pharm. Bull., 36 (9), 3584 - 3588 (1988)
18.Hisakazu Sunada, Yumiko Takahashi, Takashi
Kurimoto, Yoshiko Hirai, Yorinobu Yonezawa,
Akinobu Otsuka, Yoshiaki Kawashima,
Flocculation Studies of Granulated Stearyl
Alcohol on the Surface of Aqueous Media.
III. Changes of Aggromerate Structure in
a Two-Dimensional System with Anionic Surface-Active Agent
Chem. Pharm. Bull., 37 (12), 3355 - 3358 (1989)
B)Flocculation Kinetics of the Monodisperse
System
32.Yoshihiro Aoki, Yoshiharu Yamada, Kazumi
Danjo, Yorinobu Yonezawa, Hisakazu Sunada,
Flocculation Kinetics of the Monodisperse
System. II.
Computer Simulation of Flocculation with
Compaction by the Two-Dimensional Geometrical Random Coalescence Model
Chem. Pharm. Bull., 43 (7), 1197 -1203 (1995)
C)Solid-State Interaction
31.Haruo Sekizaki, Kazumi Danjo, Hiroshi Eguchi,
Yorinobu Yonezawa, Hisakazu Sunada, Akinobu Otsuka,
Solid-State Interaction of Ibuprofen with
Polyvinylpyrrolidone
Chem. Pharm. Bull., 43 (6), 988 - 993 (1995)
46.Masatoshi OZAWA, Koji HASEGAWA, Yorinobu
YONEZAWA, Hisakazu SUNADA
Preparation of Solid Dispersion for Ethenzamide-Carbopol
and Theophyline-Carbopol SystemUsing a Twin Screw Extruder
Chem. Pharm. Bull., 50( 6), 802 - 807 (2002)
D)Fluorescence Intensities and Physico-chemical
Properties
5.Kimpei Yamamoto, Hisakazu Sunada, Yorinobu
Yonezawa, Akinobu Otsuka:
Application of Free-Wilsons's Analitycal
Method to the Fluorescence Intensities of
Aluminum Chelate of 2-hydroxyazomethine Derivatives
BUNSEKI KAGAKU, 28, 205-208 (1979)
22.Kimpei Yamamoto, Hisakazu Sunada, Yorinobu
Yonezawa, Akinobu Otsuka:
Relationship between the fluorescence intensities
and physico-chemical properties of Gallium and alminiumchelates of
2-hydroxyphenylazomethine and 2,2'-dihydroxyazobenzene
derivatives
BUNSEKI KAGAKU, 40(9), 495-498 (1991)
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§III. Dissolution & Release
@) Changes of Surface Area in the Dissolution
Process of Crystalline Substances [ MEMO ]
13.Hisakazu Sunada, Akio Yamamoto, Akinobu Otsuka,
Yorinobu Yonezawa,
Changes of Surface Area in the Dissolution
Process of Crystalline Substances
Chem. Pharm. Bull., 36 (7), 2557 - 2561 (1988)
15.Hisakazu Sunada, Itaru Shinohara, Akinobu
Otsuka, Yorinobu Yonezawa,
Changes of Surface Area in the Dissolution
Process of Crystalline Substances.
II. Dissolution and Simulation Curves for
Mixed Systems of Sieved Particles
Chem. Pharm. Bull., 37 (2), 467 - 470 (1989)
16.Hisakazu Sunada, Itaru Shinohara, Akinobu
Otsuka, Yorinobu Yonezawa,
Changes of Surface Area in the Dissolution
Process of Crystalline Substances.
III. Dissolution and Simulation curves for
Symmetrical Particle-Size Distributed Model
Systems
Chem. Pharm. Bull., 37 (5), 1362 - 1365 (1989)
17.Hisakazu Sunada, Itaru Shinohara, Akinobu
Otsuka, Yorinobu Yonezawa,
Changes of Surface Area in the Dissolution
Process of Crystalline Substances.
IV. Dissolution and Simulation Curves Estimated
from Changes of Surface Area and Cube Root
Law
Chem. Pharm. Bull., 37 (7), 1889 - 1894 (1989)
19.Yorinobu Yonezawa, Itaru Shinohara, Akinobu
Otsuka, Hisakazu Sunada,
Changes of Surface Area in the Dissolution
Process of Crystalline Substances.
V. Dissolution and Simulation Curves for
Log-Normal Particle-Size-Distributed Model
Systems
Chem. Pharm. Bull., 38 (4), 1024 - 1026 (1990)
Tech.1.Yorinobu Yonezawa, Itaru Shinohara, Akinobu
Otsuka, Hisakazu Sunada:
Simulation of Dissolution of Crystalline
Particle
FUNTAIKOUGAKUKAISHI, 27(9), 621-625 (1990)
Tech. 2.Yorinobu Yonezawa, Itaru Shinohara, Akinobu
Otsuka, Hisakazu Sunada:
Simulation of Dissolution of Crystalline
Particle (II)
FUNTAIKOUGAKUKAISHI, 28(9), 567-571 (1991)
A) Dissolution of Solid Dosage Form [ MEMO ]
an another derivation of Hixson-Crowell equations
20.Yorinobu Yonezawa, Itaru Shinohara, Akinobu
Otsuka, Hisakazu Sunada,
Dissolution and Simulation Curves for Log-Normal
Particle-Size-Distributed Model System
Chem. Pharm. Bull., 38 (11), 3107 - 3111 (1990)
21.Yorinobu Yonezawa, Kenji Shirakuara, Akinobu
Otsuka, Hisakazu Sunada,
Dissolution of Solid Dosage Form.
II. Equations for the Dissolution of Nondisintegrating
Tablet under the Sink Condition
Chem. Pharm. Bull., 39 (3), 769 - 772 (1991)
23.Yorinobu Yonezawa, Kenji Shirakuara, Akinobu
Otsuka, Hisakazu Sunada,
Dissolution of Solid Dosage Form.
III. Equations for the Dissolution of a Nondisintegrating
Single Component Tablet under a Nonsink Condition
Chem. Pharm. Bull., 39 (12), 3355 - 3358 (1991)
27.Yorinobu Yonezawa, Itaru Shinohara, Midori
Sasaki, Akinobu Otsuka, Hisakazu Sunada,
Dissolution of Solid Dosage Form.
IV. Equations for the Non-sink Dissolution
of a Monodisperse System
Chem. Pharm. Bull., 42 (2), 349 - 353 (1994)
29.Yorinobu Yonezawa, Shuichi Kawase, Midori
Sasaki, Itaru Shinohara, Hisakazu Sunada,
Dissolution of Solid Dosage Form.
V. New Form Equations for the Non-sink Dissolution
of a Monodisperse System
Chem. Pharm. Bull., 43 (2), 304 -310 (1995)
33.Yorinobu Yonezawa, Shuichi Kawase, Midori
Sasaki, Akiko Wada, Hisakazu Sunada,
Dissolution of Solid Dosage Form.
VI. Dissolution of Nondisintegrating Single
Component Tablet under Non-Sink Condition
Chem. Pharm. Bull., 43 (11), 1961 -1965 (1995)
34.Yorinobu Yonezawa, Shuichi Kawase, Yuji Jinde,
Hisakazu Sunada,
Dissolution of Solid Dosage Form.
VII. Effect of Shape on the Dissolution of
Nondisintegrating Single Component Tablet
under Non-sink Condition
Chem. Pharm. Bull., 44 (5), 1043 -1048 (1996)
B) Release from or through a Wax Matrix System [ MEMO ]
28.Yasutomi Kato, Hisakazu Sunada, Yorinobu
Yonezawa, Ryuzo Ishino,
Sustained Release Mechanisms of Wax Matrix
System for Controlled Release
Chem. Pharm. Bull., 42 (8), 1646 - 1650 (1994)
44.Yorinobu Yonazawa, Sumio Ishida, Hisakazu Sunada
Release from or through a Wax Matrix System.
I. Basic Release Properties of the Wax Matrix
System
Chem. Pharm. Bull., 49(11), 1448 - 1451 (2001)
45.Yorinobu Yonazawa, Sumio Ishida, Shinobu Suzuki, Hisakazu Sunada
Release from or through a Wax Matrix System.
II. Basic Properties of Release from or through
the Wax Matrix System
Chem. Pharm. Bull., 50( 2), 220 - 224 (2002)
47.Yorinobu Yonazawa, Sumio Ishida, Shinobu Suzuki, Hisakazu Sunada
Release from or through a Wax Matrix System.
III. Basic Properties of Release through
the Wax Matrix System
Chem. Pharm. Bull., 50( 6), 814 - 817 (2002)
48.Yorinobu Yonezawa, Sumio Ishida, Shinobu Suzuki, Hisakazu Sunada
Release from or through a Wax Matrix System.
IV. Generalized Expression of Release Process
for Reservoir Device Tablet
Chem. Pharm. Bull., 50( 9), 1219 - 1222 (2002)
58.Yorinobu Yonezawa, Sumio Ishida, Hisakazu Sunada:
Release from or through a Wax Matrix
System.
V. Applicability of Square-Root Time Law
Equation for Release from a Wax Matrix Tablet
Chem. Pharm. Bull., 51( 8), 904 -908 (2003)
62.Yorinobu Yonezawa, Sumio Ishida, Hisakazu Sunada:
Release from or through a Wax Matrix
System.
VI. Analysis and Prediction of the Entire
Release Process of the Wax Matrix Tablet
Chem. Pharm. Bull., 53( 8), 915 -918 (2005)
C) Release from or through a Polymer Matrix
System
50.Atsuko Fukui, Ryuta Fujii, Yorinobu Yonezawa,
Hisakazu Sunada:
Analysis of Release Process of Phenylpropanolamine
Hydrochloride from Ethylcellulose Matrix
Granules
Chem. Pharm. Bull., 50(11), 1439 -11442 (2002)
61.Atsuko Fukui, Ryuta Fujii, Yorinobu Yonezawa,
and Hisakazu Sunada:
Analysis of the Release Process of
Phenylpropranolamine Hydrochloridw from Ethylcellulose
Matrix Granules
II. Effects of the Binder Solution
on the Release Process
Chem. Pharm. Bull., 52 (3), 298 - 302 (2004)
68.Atsuko Fukui, Ryuta Fujii, Yorinobu Yonezawa,
Hisakazu Sunada:
Analysis of Release Process of Phenylpropanolamine
Hydrochloride from Ethylcellulose Matrix Granules
III.Effects of the Dissolution Condition on the
Release Process
Chem. Pharm. Bull., 54(8), 1091 -1096 (2006)
74.Atsuko Fukui, Ryuta Fujii, Yorinobu Yonezawa, Hisakazu
Sunada:
Analysis of the Release Process of Phenylpropanolamine
Hydrochloride from Ethylcellulose Matrix
Granules
IV. Evaluation of the Controlled Release
Properties for in Vivo and in Vitro Release
Systems
Chem. Pharm. Bull., 55( 11), 1569 - 1573 (2007
76.Atsuko Fukui, Ryuta Fujii, Yorinobu Yonezawa,
Hisakazu Sunada:
Analysis of the Release Process of Phenylpropanolamine
Hydrochloride from Ethylcellulose Matrix
Granules .
V. Release Properties of Ethylcellulose
Layered Matrix Granules
Chem. Pharm. Bull., 56(4), 525 - 529 (2008)
D) Tablet Rapidly Disintegrating in the Oral Cavity
35.Yunxia Bi, Hisakazu Sunada, Yorinobu Yonezawa,
Kazumi Danjo, Akinobu Otsuka, Kotarou Iida,
Preparation and Evaluation of a Compressed
Tablet Rapidly Disintegrating in the Oral Cavity
Chem. Pharm. Bull., 44 (11), 2121 -2127 (1996)
37.Yunxia Bi, Hisakazu Sunada, Yorimobu Yonezawa,
Kazukmi Danjo,
Evaluation of Rapidly Disintegrationg Tablets
Prepared by a Direct Compression Method
Drug Development and Industrial Pharmacy, 25(5), 571-581 (1999)
39.Yunxia Bi, Yorinobu Yonezawa, Hisakazu Sunada,
Rapidly Disintegrating Tablets Prepared
by the Wet Compression Method: Mechanism and Optimization
J. Pharm. Sci., 88(10), 1004-1010 (1999)
66.Yoko Yamada, Mariko Nakamura, Yasuhiro
Shimada, Yorinobu Yonezawa, Hisakazu Sunada:
Preparation and Evaluation of Rapidly
Disintegrating Tablet in the Oral Cavity
by the Dry Compression Method
- Availability of Powdered Cellulose
as an Excipient -
YAKUZAIGAKU, 66(6), 473 -481 (2006)
E) Column Dissolution
11.Jens Thuro Carstensen, Yorinobu Yonezawa,
Dissolution Profiles in Column Dissolution
J. Pharm. Sci., 75 (8), 764 -768 (1986)
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§IV. Pharmaceutical Technology
@) Excipient &
38.Kenta Goto, Hisakazu Sunada, Kazumi Danjo,
Yorinobu Yonezawa,
Pharmaceutical Evaluation of Multipurpose
Excipients for Direct Compressed Tablet
Manufacture: Comparison of the Capabilities
of Multipurpose Excipients with Those in General Use
Drug Development and Industrial Pharmacy, 25(8), 869-878 (1999)
49.Miho Kimura, Yasuhiro Shimada, Takao Oshima,
Daichi Shibata, Naoto Hattori, Yorinobu Yonezawa,
Hisakazu Sunada:
The Evaluation of Powdered Cellulose as
a Pharmaceutical Excipient
YAKUZAIGAKU, 62(3),113-123 (2000)
51.Daichi Shibata, Yasuhiro Shimada, Yorinobu
Yonezawa, Hisakazu Sunada, Naoya Otomo, Kenji
Kasahara:
Application and Evaluation of Sucrose Fatty
Acid Esters as Lubricants in the Production of Pharmaceuticals
YAKUZAIGAKU, 62(4), 133-145 (2002)
A) Granulation
42.Takeshi Kawaguchi, Hisakazu Sunada, Yorinobu
Yonezawa, Kazumi Danjo, Masaki Hasegawa,
Tadashi Makino, Hiroshi Sakamoto, Kanji
Fujita, Tadatugu Tanino, Hiroyasu Kokubo:
Granulation of Acetaminophen by a Rotating
Fluidized-Bed Granulator
Pharmaceutical Development and Technology, 5 (2), 141- 151 (2000)
B) Pharmaceutical Preparation of Crude Drug
Powder
24.Li Xiaoman, Yorinobu Yonezawa, Kazumi Danjo,
Hisakazu Sunada, Noboru Matsui:
Secondary Granulation of Senna Powder by
Agitation Method
YAKUZAIGAKU, 53(1), 63-69 (1993)
25.Hideo Yamaguchi, Yorinobu Yonezawa, Kazumi
Danjo, Hisakazu Sunada, Noritaka Seko, Ryuzo
Ishino:
Relationship between Characteristics of Powder
and Granule on Granulation of Senna Powder
YAKUZAIGAKU, 53(1), 70-79 (1993)
26.Noritaka Seko, Hisakazu Sunada, Kazumi Danjo,
Akinobu Otsuka, Yorinobu Yonezawa, Noboru Matsui,
Pharmaceutical Preparation of Crude Drug
Powder. III.
The Effect of the Physical Properties of
the Binder Solution on the Characteristics
of the Granule from the Mixed Powders
Chem. Pharm. Bull., 41 (5), 937 - 941 (1993)
30.Hideo Yamaguchi, Hisakazu Sunada, Yorinobu
Yonezawa, Kazumi Danjo:
Relationship between Characteristics of Raw
Materials and Its Products of Crude Drug
Powder
YAKUZAIGAKU, 55(1), 17-27 (1995)
65.Koh Konishi, Hisakazu Sunada, Yorinobu
Yonezawa, Kazumi Danjo:
Pharmaceutical Manufacturing of Crude
Drug Powder - Dry Compacting Method with
a Roller Compactor -
YAKUZAIGAKU, 66(2), 151 -159 (2006)
C) Particle Designation
36.Masami Tasaka, Sunada, Yorinobu Yonezawa:
Characterization of Core Particles for
Film Cating with High Active Ingredient Content
YAKUZAIGAKU, 59(2), 57-66(1999)
59.Xiaoyan Wang, Fude Cui, Yorinobu Yonezawa,
Hisakazu Sunada,
Preparation and Evaluation of Combination
Tablet Containing
- Granulation and Layering to Prevent
Incompatibility -
YAKUZAIGAKU, 63(4), 207 -217 (2003)
60.Xiaoyan Wang, Fude Cui, Yorinobu Yonezawa,
Hisakazu Sunada,
Preparation and Evaluation of High
Drug Content Particles
Drug Development and Industrial Pharmacy, 29(10), 1109-1118 (2003)
D) Adhesive Force of Fine Particles
40.Yasuhiro Shimada, Tatsuya Ito, Yorinobu Yonezawa,
Hisakazu Sunada, Masahiko Yokosuka, Kei Takebayashi:
Measurements of the Adhesive Force of Contaminative
Particles on the Capsule Surface and Method of Their Removal
YAKUZAIGAKU, 60(1), 35-42 (2000)
41.Yasuhiro Shimada, Mayu Sunada, Mari Mizuno,
Yorinobu Yonezawa, Hisakazu Sunada, Kei Takebayashi, Masahiko Yokosuka, Haruki
Kimura:
Measurement of the adhesive force of fine
particles on tablet surface and method of
their removal
Drug Development and Industrial Pharmacy, 26(2), 149-158 (2000)
43.Yasuhiro Shimada, Yorinobu Yonezawa, Hisakazu
Sunada, Ryusei Nonaka, Kenzo Kato, Hiroshi
Morishita:
The Development of an Apparatus for Measuring
the Adhesive Force betwen Fine Particles
J. Soc. Powder Technol., Japan, 37(9), 28-34 (2000)
52.Yasuhiro Shimada, Yorinobu Yonezawa, Hisakazu
Sunada,
Measurement and Evaluation of the Adhesive
Force between Particles by the Direct Separation
Method
J. Pharm. Sci., 92( 3), 526-534 (2003)
56.Yasuhiro Shimada, Yorinobu Yonezawa, Hisakazu
Sunada
表面改質法を用いた微小粒子間付着力の制御とその評価
J. Soc. Powder Technol., Japan, 40(5), 334-338 (2003)
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§V. Pharmacy & Bioactivity
9.Yasuo Nakamoto, Toshiyuki Takeeda, Etsuko
Kamiya, Kazuhiro Morimoto, Masahide Yasuda,
Katsuaki Morishita, Yorinobu Yonezawa, Akinobu
Otsuka,
ENHANCEMENT OF LYMPHATIC TRANSPORT OF 1-(2-TETRA-HYDROFURYL)-5-FLUORO-URACIL BY POLYACRYLIC ACID AQUEOUS GEL
AND EMULSION TYPE SUPPOSITORIES IN
RAT
J. Pharm. Dyn., 6, 637-642 (1983)
12.Hisakazu Sunada, Manabu Sugimoto, Yorinobu
Yonezawa, Akinobu Otsuka:
Relationship between Bioactivity and Physico-Chemical
Properties of Indoprofen and Its Related Compounds
YAKUZAIGAKU, 48(1), 58-63 (1988)
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