The membrane attack complex (MAC) is the pore-forming toxin of the complement system, a relatively early evolutionary acquisition that confers upon complement the capacity to directly kill pathogens. The MAC is more than just a bactericidal missile, having the capacity when formed on self-cells to initiate a host of cell activation events that can have profound consequences for tissue homeostasis in the face of infection or injury. Although the capacity of complement to directly kill pathogens has been recognised for over a century, and the pore-forming killing mechanism for at least 50 years, there remains considerable uncertainty regarding precisely how MAC mediates its killing and cell activation activities. A recent burst of new informa...
The membrane attack complex (MAC) is a hetero-oligomeric protein assembly that kills pathogens by pe...
The membrane attack complex (MAC) is one of the immune system’s first responders. Complement protein...
The final common pathway of all routes of complement activation involves the non-enzymatic assembly ...
The membrane attack complex (MAC) is the pore-forming toxin of the complement system, a relatively e...
The membrane attack complex (MAC) is an important innate immune effector of the complement terminal ...
The membrane attack complex (MAC) is an important innate immune effector of the complement terminal ...
The complement system is an important innate immune defense, containing about 30 secreted and membra...
The membrane attack complex (MAC) is an important i nnate immune effector of the complement terminal...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
The human complement system is part of the innate immune response that acts to eliminate pathogenic ...
The membrane attack complex (MAC) is a hetero-oligomeric protein assembly that kills pathogens by pe...
The membrane attack complex (MAC) is one of the immune system’s first responders. Complement protein...
The final common pathway of all routes of complement activation involves the non-enzymatic assembly ...
The membrane attack complex (MAC) is the pore-forming toxin of the complement system, a relatively e...
The membrane attack complex (MAC) is an important innate immune effector of the complement terminal ...
The membrane attack complex (MAC) is an important innate immune effector of the complement terminal ...
The complement system is an important innate immune defense, containing about 30 secreted and membra...
The membrane attack complex (MAC) is an important i nnate immune effector of the complement terminal...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
In response to complement activation, the membrane attack complex (MAC) assembles from fluid-phase p...
The human complement system is part of the innate immune response that acts to eliminate pathogenic ...
The membrane attack complex (MAC) is a hetero-oligomeric protein assembly that kills pathogens by pe...
The membrane attack complex (MAC) is one of the immune system’s first responders. Complement protein...
The final common pathway of all routes of complement activation involves the non-enzymatic assembly ...