Authors:
KOBAYASHI S
YOSHIDA K
OHSHIMA T
ESUMI N
PARALKAR VM
WISTOW GJ
KULKARNI AB
Citation: S. Kobayashi et al., DNA-SEQUENCE MOTIFS ARE ASSOCIATED WITH ABERRANT HOMOLOGOUS RECOMBINATION IN THE MOUSE MACROPHAGE-MIGRATION INHIBITORY FACTOR (MIF) LOCUS, Gene, 215(1), 1998, pp. 85-92
Authors:
PARALKAR VM
VAIL AL
GRASSER WA
BROWN TA
XU H
VUKICEVIC S
KE HZ
QI H
OWEN TA
THOMPSON DD
Citation: Vm. Paralkar et al., CLONING AND CHARACTERIZATION OF A NOVEL MEMBER OF THE TRANSFORMING GROWTH FACTOR-BETA BONE MORPHOGENETIC PROTEIN FAMILY/, The Journal of biological chemistry, 273(22), 1998, pp. 13760-13767
Authors:
KE HZ
PARALKAR VM
GRASSER WA
CRAWFORD DT
QI H
SIMMONS HA
PIRIE CM
CHIDSEYFRINK KL
OWEN TA
SMOCK SL
CHEN HK
JEE WSS
CAMERON KO
ROSATI RL
BROWN TA
DASILVAJARDINE P
THOMPSON DD
Citation: Hz. Ke et al., EFFECTS OF CP-336,156, A NEW, NONSTEROIDAL ESTROGEN AGONIST ANTAGONIST, ON BONE, SERUM-CHOLESTEROL, UTERUS, AND BODY-COMPOSITION IN RAT MODELS/, Endocrinology, 139(4), 1998, pp. 2068-2076
Authors:
PARALKAR VM
GRASSER WA
OWEN TA
VAIL AL
PIRIE CM
THOMPSON DD
Citation: Vm. Paralkar et al., 5-FLUOROURACIL TREATMENT OF RAT BONE-MARROW CELLS PRODUCES A POPULATION OF STEM-CELLS THAT CAN RESPOND TO PROSTAGLANDINE(2) (PGE(2)) AND DIFFERENTIATE TO THE OSTEOBLASTIC LINEAGES, Journal of bone and mineral research, 12, 1997, pp. 339-339
Authors:
GRASSER WA
PAN LC
THOMPSON DD
PARALKAR VM
Citation: Wa. Grasser et al., COMMON MECHANISM FOR THE ESTROGEN AGONIST AND ANTAGONIST ACTIVITIES OF DROLOXIFENE, Journal of cellular biochemistry, 65(2), 1997, pp. 159-171
Authors:
GRASSER WA
OWEN TA
MANSOLF AL
PIRIE CM
THOMPSON DD
PARALKAR VM
Citation: Wa. Grasser et al., 5-FLUOROURACIL TREATMENT OF RAT BONE-MARROW CELLS PRODUCES A POPULATION OF STEM-CELLS THAT CAN DIFFERENTIATE TO THE OSTEOBLASTIC AND OSTEOCLASTIC LINEAGES, Molecular biology of the cell, 7, 1996, pp. 3389-3389
Authors:
GRASSER WA
MANSOLI AL
PIRIE CM
CAMERON KO
TOLER SM
ROSATI RL
BROWN TA
DASILVAJARDINE P
THOMPSON DD
PARALKAR VM
Citation: Wa. Grasser et al., CP-336,156 AND ESTROGEN IDENTICALLY INHIBIT OSTEOCLASTOGENESIS IN RATBONE-MARROW CULTURES THROUGH AN APOPTOTIC MECHANISM, Journal of bone and mineral research, 11, 1996, pp. 392-392