MENG, X.,
DUAN, C.,
PANG, H.,
CHEN, Q.,
HAN, B.,
MAGAFUROV, D.A.,
WU, P.,
LI, Z.,
ZHAO, S.,
WANG, R.,
LIN, L.,
JIANG, C.,
CAI, J.,
ZHA, C. (2019) pathways,
remodels the GBM immunosuppressive microenvironment by promoting M2 polarization of microglia
РОЛЬ МЕТИЛИРОВАНИЯ ДНК В НАРУШЕНИИ КОСТНОГО МЕТАБОЛИЗМАYalaev, B.I.,
Tyurin, A.V.,
Mirgalieva, R.Y.,
Khusainova, R.I.,
ЯЛАЕВ Б.И.,
ТЮРИН А.В.,
МИРГАЛИЕВА Р.Я.,
ХУСАИНОВА Р.И. (2019) pathogenetic links in its
structure. Decreases in bone mass and matrix mineralization as well as changes
MENG, X.,
DUAN, C.,
PANG, H.,
CHEN, Q.,
HAN, B.,
MAGAFUROV, D.A.,
WU, P.,
LI, Z.,
ZHAO, S.,
WANG, R.,
LIN, L.,
JIANG, C.,
CAI, J.,
ZHA, C. (2019) DNA DAMAGE REPAIR ALTERATIONS MODULATE M2 POLARIZATION OF MICROGLIA TO
REMODEL THE TUMOR
CHEN, Q.,
HAN, B.,
MENG, X.,
DUAN, C.,
YANG, C.,
WU, Z.,
MAGAFUROV, D.,
ZHAO, S.,
JIANG, C.,
CAI, J.,
SAFIN, S (2019) remodels the GBM immunosuppressive microenvironment by down regulating M2 macrophages and myeloid
-dimensional electroconvective
structure of a π/2-twisted nematic liquid crystal has been studied. This type of defects