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1. 556-03-6
2. H-dl-tyr-oh
3. 2-amino-3-(4-hydroxyphenyl)propanoic Acid
4. Tyrosine, Dl-
5. (.+-.)-tyrosine
6. Mfcd00063074
7. A9bat9b32m
8. L-tryosine
9. Chebi:18186
10. Nsc-205006
11. 55520-40-6
12. Tirosina
13. Benzenepropanoic Acid, (s)-
14. Tyrosin
15. Poly-l-tyrosine
16. (+-)-tyrosine
17. 3-(4-hydroxyphenyl)-dl-alanine
18. Unii-a9bat9b32m
19. 2-amino-3-(4-hydroxyphenyl)-propanoic Acid
20. Laevo-tyrosine
21. 3-(p-hydroxyphenyl)alanine
22. Dl-p-tyrosine
23. Mfcd00063073
24. Dl-tyrozine
25. Tyrosine #
26. (2s)-tyrosine
27. (dl)-tyrosine
28. Einecs 209-113-1
29. Nsc 205006
30. Dl-tyrosine, 99%
31. Ai3-18479
32. (.+/-.)-tyrosine
33. .alpha.-amino-.beta.-(4-hydroxyphenyl)propionic Acid
34. Tyrosine, (l)
35. 2-amino-3-(p-hydroxyphenyl)propionic Acid
36. Schembl1580
37. Nciopen2_001002
38. (+/-)-tyrosine
39. L-tyrosine (phenol-4-13c)
40. Chembl108615
41. Dtxsid50859040
42. Nsc9973
43. Pharmakon1600-01300046
44. Bcp28669
45. Hy-y0123
46. Nsc-9973
47. Nsc82624
48. Bbl007890
49. Nsc205006
50. Nsc760112
51. Stk387122
52. Akos000119676
53. Akos016050613
54. Ab00245
55. Ab02505
56. Am82305
57. Ccg-202972
58. Intermediates Of Sacubitril(ahu-377)
59. Nsc-760112
60. Upcmld0enat5883816:001
61. 4-hydroxy-alpha-aminobenzenepropanoic Acid
62. Ac-24050
63. As-11716
64. Sy013607
65. Sy014304
66. 2-amino-3-(4-hydroxyphenyl)propionic Acid
67. Db-052763
68. Dl-tyrosine, Puriss., >=99.0% (nt)
69. 2-amino-3-(4-hydroxyphenyl)-propionic Acid
70. Cs-0008411
71. Eu-0066703
72. Ft-0602783
73. Ft-0625526
74. Ft-0628034
75. Ft-0693464
76. T0549
77. 2-amino-3-(4-hydroxy-phenyl)-propionic Acid
78. C01536
79. T-9020
80. 556t036
81. A830719
82. Sr-01000597209
83. (+/-)-2-amino-3-(4-hydroxyphenyl)propionic Acid
84. Sr-01000597209-1
85. Q27102882
86. Q27115119
87. Z57127380
88. F0345-2313
89. 5c49731f-8609-4eca-909d-8e4c8515147e
90. 1-[4-(acetylamino)phenyl]-n-(4-fluorobenzyl)-2-oxo-1,2-dihydropyridine-3-carboxamide
Molecular Weight | 181.19 g/mol |
---|---|
Molecular Formula | C9H11NO3 |
XLogP3 | -2.3 |
Hydrogen Bond Donor Count | 3 |
Hydrogen Bond Acceptor Count | 4 |
Rotatable Bond Count | 3 |
Exact Mass | 181.07389321 g/mol |
Monoisotopic Mass | 181.07389321 g/mol |
Topological Polar Surface Area | 83.6 Ų |
Heavy Atom Count | 13 |
Formal Charge | 0 |
Complexity | 176 |
Isotope Atom Count | 0 |
Defined Atom Stereocenter Count | 0 |
Undefined Atom Stereocenter Count | 1 |
Defined Bond Stereocenter Count | 0 |
Undefined Bond Stereocenter Count | 0 |
Covalently Bonded Unit Count | 1 |
ABOUT THIS PAGE
A DL-Tyrosine API manufacturer is defined as any person or entity involved in the manufacture, preparation, processing, compounding or propagation of DL-Tyrosine API, including repackagers and relabelers. The FDA regulates DL-Tyrosine API manufacturers to ensure that their products comply with relevant laws and regulations and are safe and effective to use. DL-Tyrosine API API Manufacturers are required to adhere to Good Manufacturing Practices (GMP) to ensure that their products are consistently manufactured to meet established quality criteria.
click here to find a list of DL-Tyrosine API manufacturers with USDMF, JDMF, KDMF, CEP, GMP, COA and API Price related information on PhamaCompass.
A DL-Tyrosine API supplier is an individual or a company that provides DL-Tyrosine API active pharmaceutical ingredient (API) or DL-Tyrosine API finished formulations upon request. The DL-Tyrosine API suppliers may include DL-Tyrosine API API manufacturers, exporters, distributors and traders.
click here to find a list of DL-Tyrosine API suppliers with USDMF, JDMF, KDMF, CEP, GMP, COA and API Price related information on PharmaCompass.
DL-Tyrosine API Active pharmaceutical ingredient (API) is produced in GMP-certified manufacturing facility.
GMP stands for Good Manufacturing Practices, which is a system used in the pharmaceutical industry to make sure that goods are regularly produced and monitored in accordance with quality standards. The FDA’s current Good Manufacturing Practices requirements are referred to as cGMP or current GMP which indicates that the company follows the most recent GMP specifications. The World Health Organization (WHO) has its own set of GMP guidelines, called the WHO GMP. Different countries can also set their own guidelines for GMP like China (Chinese GMP) or the EU (EU GMP).
PharmaCompass offers a list of DL-Tyrosine API GMP manufacturers, exporters & distributors, which can be sorted by USDMF, JDMF, KDMF, CEP (COS), WC, API price, and more, enabling you to easily find the right DL-Tyrosine API GMP manufacturer or DL-Tyrosine API GMP API supplier for your needs.
A DL-Tyrosine API CoA (Certificate of Analysis) is a formal document that attests to DL-Tyrosine API's compliance with DL-Tyrosine API specifications and serves as a tool for batch-level quality control.
DL-Tyrosine API CoA mostly includes findings from lab analyses of a specific batch. For each DL-Tyrosine API CoA document that a company creates, the USFDA specifies specific requirements, such as supplier information, material identification, transportation data, evidence of conformity and signature data.
DL-Tyrosine API may be tested according to a variety of international standards, such as European Pharmacopoeia (DL-Tyrosine API EP), DL-Tyrosine API JP (Japanese Pharmacopeia) and the US Pharmacopoeia (DL-Tyrosine API USP).
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