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CAS RN: 348-67-4 | Product Number: M0102
D-Methionine

Purity: >99.0%(T)(HPLC)
Chemical Substance Law (ENCS):
2-1254
Synonyms:
- H-D-Met-OH
Product Documents:
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* The displayed price is the unit price and does not include consumption tax. The unit prices displayed are the latest and are subject to change without notice.
* To send your quote request for bulk quantities, please click on the "Request Bulk Quote" button. Please note that we cannot offer bulk quantities for some products.
*TCI frequently reviews storage conditions to optimize them. Please note that the latest information on the storage temperature for the products is described on our website.
Product Number | M0102 |
Purity / Analysis Method ![]() |
>99.0%(T)(HPLC) |
Molecular Formula / Molecular Weight | C__5H__1__1NO__2S = 149.21 |
Physical State (20 deg.C) | Solid |
Storage Temperature ![]() |
Room Temperature (Recommended in a cool and dark place, <15°C) |
CAS RN | 348-67-4 |
Reaxys Registry Number | 1722293 |
PubChem Substance ID | 87572209 |
SDBS (AIST Spectral DB) | 4748 |
MDL Number | MFCD00002622 |
Specifications
Appearance | White to Almost white powder to crystal |
Purity(HPLC) | min. 99.0 area% |
Purity(Nonaqueous Titration) | min. 99.0 % |
Specific rotation [a]20/D | -23.0 to -25.0 deg(C=4,HCl(1+1)) |
Solubility in hot Water | almost transparency |
Properties (reference)
Specific Rotation | -24° (C=4,HCl (1+1)) |
GHS
Related Laws:
Chemical Substance Law (ENCS) |
2-1254 |
RTECS# | PD0455000 |
Transport Information:
Application
Spore Germination Inhibitor
L-Methionine (M0099) is one of the amino acids known as a bacterial spore germinant.1) It has been reported that D-methionine failed to trigger spore germination in Clostridium sporogenes or C. botulinum but prevented germination induced by L-methionine.2)
References
- 1) Cooperativity Between Different Nutrient Receptors in Germination of Spores of Bacillus subtilis and Reduction of This Cooperativity by Alterations in the GerB Receptor
- 2) Functional Characterisation of Germinant Receptors in Clostridium botulinum and Clostridium sporogenes Presents Novel Insights into Spore Germination Systems
- D-Amino Acids Trigger Biofilm Disassembly
- D-amino acids reduce Enterococcus faecalis biofilms in vitro and in the presence of antimicrobials used for root canal treatment
- D-amino Acid Inhibits Biofilm but not New Bone Formation in an Ovine Model
- D-Amino Acids Enhance the Activity of Antimicrobials against Biofilms of Clinical Wound Isolates of Staphylococcus aureus and Pseudomonas aeruginosa
Application
Biofilm research
The product is for research purpose only.
References
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