Multi-Objective-Guided Discrete Flow Matching (MOG-DFM) uses a novel multi-objective optimization algorithm for discrete flow matching to guide the generation of peptide sequences that optimize multiple properties at the same time. It optimized the following properties: hemolysis, non-foulding behaviour, solubility, half-life, and binding affinity.
id: deep-toad-ivy

FcRn
Medium
1.2e-7 M
True
1.0 kDa
10
id: swift-bee-lotus
No preview available
FcRn
Medium
1.3e-7 M
True
1.2 kDa
10
id: crimson-bee-wave

FcRn
Medium
1.7e-7 M
True
1.3 kDa
10
id: steady-heron-orchid

FcRn
Medium
2.7e-7 M
True
1.2 kDa
10
id: violet-cobra-granite

FcRn
Medium
3.0e-7 M
True
1.3 kDa
10
id: frozen-bison-pearl

FcRn
Medium
4.1e-7 M
True
1.0 kDa
10
id: violet-ant-cypress

FcRn
None
--
False
1.2 kDa
10
id: quiet-lynx-crystal

FcRn
None
--
True
1.3 kDa
10
id: quiet-panther-frost

FcRn
None
--
True
1.1 kDa
10
id: swift-dove-pine

FcRn
None
--
True
1.2 kDa
10
id: pale-heron-topaz

FcRn
None
--
True
1.4 kDa
10
id: shy-deer-cedar

FcRn
None
--
True
1.2 kDa
10
id: lunar-ox-ruby

FcRn
None
--
True
1.2 kDa
10
id: pale-lynx-opal

FcRn
None
--
True
1.2 kDa
10
id: gentle-heron-wave

FcRn
None
--
True
1.4 kDa
10
id: swift-fox-lotus
No preview available
FcRn
None
--
True
--
10
id: soft-goat-cypress

FcRn
None
--
True
1.3 kDa
10
id: shy-deer-granite

FcRn
None
--
True
1.0 kDa
10
id: rough-ibis-oak

FcRn
None
--
True
1.1 kDa
10
id: vast-swan-moss

FcRn
None
--
True
1.3 kDa
10
id: solid-wolf-iron

FcRn
None
--
True
1.3 kDa
10