What does SILACU mean?
SILACU means sodium-independent, low affinity uptake system
This acronym/slang usually belongs to Undefined category.
What is the abbreviation for sodium-independent, low affinity uptake system?
sodium-independent, low affinity uptake system can be abbreviated as SILACU
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Most popular questions people look for before coming to this page
Q: A: |
What does SILACU stand for? SILACU stands for "sodium-independent, low affinity uptake system". |
Q: A: |
How to abbreviate "sodium-independent, low affinity uptake system"? "sodium-independent, low affinity uptake system" can be abbreviated as SILACU. |
Q: A: |
What is the meaning of SILACU abbreviation? The meaning of SILACU abbreviation is "sodium-independent, low affinity uptake system". |
Q: A: |
What is SILACU abbreviation? One of the definitions of SILACU is "sodium-independent, low affinity uptake system". |
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What does SILACU mean? SILACU as abbreviation means "sodium-independent, low affinity uptake system". |
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What is shorthand of sodium-independent, low affinity uptake system? The most common shorthand of "sodium-independent, low affinity uptake system" is SILACU. |
Abbreviations or Slang with similar meaning
- LAPF4 - Low Affinity Platelet Factor 4
- LNGFR - Low Affinity Nerve Growth Factor Receptor
- SDHACU - Sodium-Dependent High-Affinity Choline Uptake
- LANR - Low-Affinity Neurotrophin Receptor
- LAGS - Low Affinity Glucocorticoid Binding Site
- LAVS - Low-Affinity Vanadate-Sensitive
- L-NGFR - low-affinity nerve growth factor receptor
- LA - low affinity
- LADA - low-affinity dynein ATPase
- LAH - low affinity heparin
- LAST - low-affinity sulfate transporter
- LATS - low-affinity transport system
- LAR - low affinity receptors
- LARBS - Low Affinity Rolipram Binding Sites
- LNR - low affinity neurotrophin receptor
- LNGF - low-affinity nerve growth factor
- SDHACU - sodium-dependent, high affinity choline uptake system
- SDHAU - sodium-dependent high affinity uptake
- SDHCU - sodium-dependent high affinity choline uptake
- SILAU - sodium-dependent low affinity uptake