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Search results for clindamycin root_relationships_relatedSubstance_refPname in Related Substance Name (approximate match)
Status:
Other
Class:
STRUCTURALLY DIVERSE
Status:
Other
Class:
STRUCTURALLY DIVERSE
Status:
Other
Class:
STRUCTURALLY DIVERSE
Status:
First approved in 2004
Source:
21 CFR 352
Source URL:
Class:
STRUCTURALLY DIVERSE
Status:
Other
Class:
G1 SPECIFIED SUBSTANCE
Status:
Possibly Marketed Outside US
Source:
BLA125812
(2024)
Source URL:
First approved in 2024
Source:
BLA125812
Source URL:
Class:
G1 SPECIFIED SUBSTANCE
Status:
Investigational
Source:
NCT01414153: Phase 2 Interventional Completed Exudative Age-related Macular Degeneration
(2012)
Source URL:
Class:
CONCEPT
Status:
Other
Class:
CONCEPT
Status:
US Approved Rx
(2014)
Source:
NDA205436
(2014)
Source URL:
First approved in 2014
Source:
NDA205436
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Tedizolid phosphate is an oxazolidinone prodrug which in the body is dephosphorylated to the active compound tedizolid. The antibacterial activity of tedizolid is mediated by binding to the 50S subunit of the bacterial ribosome resulting in inhibition of protein synthesis. Tedizolid inhibits bacterial protein synthesis through a mechanism of action different from that of other non-oxazolidinone class antibacterial drugs; therefore, cross-resistance between tedizolid and other classes of antibacterial drugs is unlikely. Tedizolid is bacteriostatic against Gram Positive bacteria such as enterococci, staphylococci, and streptococci. No drug-drug interactions were identified with tedizolid.
Status:
US Approved Rx
(2014)
Source:
NDA205436
(2014)
Source URL:
First approved in 2014
Source:
NDA205436
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Tedizolid phosphate is an oxazolidinone prodrug which in the body is dephosphorylated to the active compound tedizolid. The antibacterial activity of tedizolid is mediated by binding to the 50S subunit of the bacterial ribosome resulting in inhibition of protein synthesis. Tedizolid inhibits bacterial protein synthesis through a mechanism of action different from that of other non-oxazolidinone class antibacterial drugs; therefore, cross-resistance between tedizolid and other classes of antibacterial drugs is unlikely. Tedizolid is bacteriostatic against Gram Positive bacteria such as enterococci, staphylococci, and streptococci. No drug-drug interactions were identified with tedizolid.