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Chemistry

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Also known as: Redeptin, Imap, 1841-19-6, Fluspirilen, Mcn-jr-6218, Fluspirilenum [inn-latin]
Molecular Formula
C29H31F2N3O
Molecular Weight
475.6  g/mol
InChI Key
QOYHHIBFXOOADH-UHFFFAOYSA-N
FDA UNII
C5QA4GLR9M

Fluspirilene
A long-acting injectable antipsychotic agent used for chronic schizophrenia.
1 2D Structure

Fluspirilene

2 Identification
2.1 Computed Descriptors
2.1.1 IUPAC Name
8-[4,4-bis(4-fluorophenyl)butyl]-1-phenyl-1,3,8-triazaspiro[4.5]decan-4-one
2.1.2 InChI
InChI=1S/C29H31F2N3O/c30-24-12-8-22(9-13-24)27(23-10-14-25(31)15-11-23)7-4-18-33-19-16-29(17-20-33)28(35)32-21-34(29)26-5-2-1-3-6-26/h1-3,5-6,8-15,27H,4,7,16-21H2,(H,32,35)
2.1.3 InChI Key
QOYHHIBFXOOADH-UHFFFAOYSA-N
2.1.4 Canonical SMILES
C1CN(CCC12C(=O)NCN2C3=CC=CC=C3)CCCC(C4=CC=C(C=C4)F)C5=CC=C(C=C5)F
2.2 Other Identifiers
2.2.1 UNII
C5QA4GLR9M
2.3 Synonyms
2.3.1 MeSH Synonyms

1. Beta, Fluspirilen

2. Fluspi

3. Fluspirilen Beta

4. Fluspirilen Lindo

5. Imap

6. Kivat

7. Redeptin

8. Spirodiflamine

2.3.2 Depositor-Supplied Synonyms

1. Redeptin

2. Imap

3. 1841-19-6

4. Fluspirilen

5. Mcn-jr-6218

6. Fluspirilenum [inn-latin]

7. Fluspirileno [inn-spanish]

8. R 6218

9. 8-[4,4-bis(4-fluorophenyl)butyl]-1-phenyl-1,3,8-triazaspiro[4.5]decan-4-one

10. Fluspiriline

11. R 6218;redeptin

12. R-6218

13. C5qa4glr9m

14. 1-phenyl-4-oxo-8-(4,4-bis(4-fluorophenyl)butyl)-1,3,8-triazaspiro(4,5)decane

15. 8-(4,4-bis(p-fluorophenyl)butyl)-1-phenyl-1,3,8-triazaspiro-(4.5)decan-4-one

16. Chembl46516

17. 1,3,8-triazaspiro(4.5)decan-4-one, 8-(4,4-bis(4-fluorophenyl)butyl)-1-phenyl-

18. Ncgc00015424-04

19. Ncgc00015424-11

20. Fluspirileno

21. Fluspirilenum

22. Cas-1841-19-6

23. 1,3,8-triazaspiro[4.5]decan-4-one, 8-[4,4-bis(4-fluorophenyl)butyl]-1-phenyl-

24. Dsstox_cid_25152

25. Dsstox_rid_80706

26. Dsstox_gsid_45152

27. Fluspirilene [usan:inn:ban]

28. Smr000058304

29. Imap (tn)

30. Lopac-f-100

31. Sr-01000075385

32. Einecs 217-418-6

33. Unii-c5qa4glr9m

34. Fluspirilene (usan/inn)

35. Spiropiperidine Analogue, 1

36. Brn 0633853

37. 8-(4,4-bis(4-fluorophenyl)butyl)-1-phenyl-1,3,8-triazaspiro[4.5]decan-4-one

38. Prestwick0_000906

39. Prestwick1_000906

40. Prestwick2_000906

41. Prestwick3_000906

42. Fluspirilene [mi]

43. F-100

44. Fluspirilene [inn]

45. Gtpl85

46. 8-[4,4-bis(4-fluorophenyl)butyl]-4-phenyl-2,4,8-triazaspiro[4.5]decan-1-one

47. Fluspirilene [usan]

48. Cid_3396

49. Lopac0_000518

50. Oprea1_804941

51. Schembl42082

52. Bspbio_000752

53. Bspbio_001343

54. Fluspirilene [mart.]

55. 5-26-04-00097 (beilstein Handbook Reference)

56. Mls000069357

57. Mls001333730

58. Fluspirilene [who-dd]

59. Spbio_002951

60. Mcn-jr 6218

61. Bpbio1_000828

62. Dtxsid7045152

63. Bdbm26948

64. Chebi:93369

65. Tqp0727

66. Hms1570f14

67. Hms1791d05

68. Hms1989d05

69. Hms2089c15

70. Hms2097f14

71. Hms2233b20

72. Hms3261h17

73. Hms3372h20

74. Hms3402d05

75. Hms3714f14

76. Zinc537755

77. Fluspirilene [ep Monograph]

78. Bcp09254

79. Fluspirilene (r 6218; Redeptin)

80. Hy-b1655

81. Tox21_110142

82. Tox21_500518

83. Nsc772296

84. Akos015969747

85. Tox21_110142_1

86. Ccg-204608

87. Db04842

88. Lp00518

89. Nsc-772296

90. Sdccgsbi-0050501.p002

91. 1,3,8-triazaspiro[4.5]decan-4-one, 8-[4,4-bis(p-fluorophenyl)butyl]-1-phenyl-

92. Ncgc00015424-01

93. Ncgc00015424-02

94. Ncgc00015424-03

95. Ncgc00015424-05

96. Ncgc00015424-06

97. Ncgc00015424-07

98. Ncgc00015424-08

99. Ncgc00015424-09

100. Ncgc00015424-10

101. Ncgc00015424-15

102. Ncgc00016595-01

103. Ncgc00093913-01

104. Ncgc00093913-02

105. Ncgc00093913-03

106. Ncgc00093913-04

107. Ncgc00093913-05

108. Ncgc00261203-01

109. As-16749

110. Ab00513956

111. Cs-0013609

112. Eu-0100518

113. Ft-0668770

114. D02629

115. Ab00513956-10

116. L001195

117. Q408300

118. J-011797

119. Sr-01000075385-1

120. Sr-01000075385-5

121. Brd-k77947974-001-04-9

122. Ethyl1-(tert-butyl)-4,5-dioxopyrrolidine-3-carboxylate

123. Fluspirilene, European Pharmacopoeia (ep) Reference Standard

124. 8-(4,4-bis(p-fluorophenyl)butyl)-1-phenyl-1,3,8-triazaspiro(4,5)decan-4-one

2.4 Create Date
2005-03-25
3 Chemical and Physical Properties
Molecular Weight 475.6 g/mol
Molecular Formula C29H31F2N3O
XLogP35.6
Hydrogen Bond Donor Count1
Hydrogen Bond Acceptor Count5
Rotatable Bond Count7
Exact Mass475.24351894 g/mol
Monoisotopic Mass475.24351894 g/mol
Topological Polar Surface Area35.6 Ų
Heavy Atom Count35
Formal Charge0
Complexity653
Isotope Atom Count0
Defined Atom Stereocenter Count0
Undefined Atom Stereocenter Count0
Defined Bond Stereocenter Count0
Undefined Bond Stereocenter Count0
Covalently Bonded Unit Count1
4 Drug and Medication Information
4.1 Drug Indication

Used for the treatment of schizophrenia.


5 Pharmacology and Biochemistry
5.1 Pharmacology

Fluspirilene is a relatively long-acting injectable depot antipsychotic drug used for schizophrenia. Fluspirilene does not differ greatly from other depot antipsychotics (fluphenazine decanoate, fluphenazine enathate, perphenazine onanthat, pipotiazine undecylenate) with respect to treatment efficacy, response or tolerability. Outcomes suggest that fluspirilene does not differ significantly from oral antipsychotics or in different weekly regimens, although much cannot be inferred because of the shortage of trials.


5.2 MeSH Pharmacological Classification

Antipsychotic Agents

Agents that control agitated psychotic behavior, alleviate acute psychotic states, reduce psychotic symptoms, and exert a quieting effect. They are used in SCHIZOPHRENIA; senile dementia; transient psychosis following surgery; or MYOCARDIAL INFARCTION; etc. These drugs are often referred to as neuroleptics alluding to the tendency to produce neurological side effects, but not all antipsychotics are likely to produce such effects. Many of these drugs may also be effective against nausea, emesis, and pruritus. (See all compounds classified as Antipsychotic Agents.)


Dopamine Antagonists

Drugs that bind to but do not activate DOPAMINE RECEPTORS, thereby blocking the actions of dopamine or exogenous agonists. Many drugs used in the treatment of psychotic disorders (ANTIPSYCHOTIC AGENTS) are dopamine antagonists, although their therapeutic effects may be due to long-term adjustments of the brain rather than to the acute effects of blocking dopamine receptors. Dopamine antagonists have been used for several other clinical purposes including as ANTIEMETICS, in the treatment of Tourette syndrome, and for hiccup. Dopamine receptor blockade is associated with NEUROLEPTIC MALIGNANT SYNDROME. (See all compounds classified as Dopamine Antagonists.)


5.3 ATC Code

N05AG01

S76 | LUXPHARMA | Pharmaceuticals Marketed in Luxembourg | Pharmaceuticals marketed in Luxembourg, as published by d'Gesondheetskeess (CNS, la caisse nationale de sante, www.cns.lu), mapped by name to structures using CompTox by R. Singh et al. (in prep.). List downloaded from https://cns.public.lu/en/legislations/textes-coordonnes/liste-med-comm.html. Dataset DOI:10.5281/zenodo.4587355


N - Nervous system

N05 - Psycholeptics

N05A - Antipsychotics

N05AG - Diphenylbutylpiperidine derivatives

N05AG01 - Fluspirilene


ABOUT THIS PAGE

Fluspirilene Manufacturers

A Fluspirilene manufacturer is defined as any person or entity involved in the manufacture, preparation, processing, compounding or propagation of Fluspirilene, including repackagers and relabelers. The FDA regulates Fluspirilene manufacturers to ensure that their products comply with relevant laws and regulations and are safe and effective to use. Fluspirilene API Manufacturers are required to adhere to Good Manufacturing Practices (GMP) to ensure that their products are consistently manufactured to meet established quality criteria.

Fluspirilene Suppliers

A Fluspirilene supplier is an individual or a company that provides Fluspirilene active pharmaceutical ingredient (API) or Fluspirilene finished formulations upon request. The Fluspirilene suppliers may include Fluspirilene API manufacturers, exporters, distributors and traders.

click here to find a list of Fluspirilene suppliers with USDMF, JDMF, KDMF, CEP, GMP, COA and API Price related information on PharmaCompass.

Fluspirilene CEP

A Fluspirilene CEP of the European Pharmacopoeia monograph is often referred to as a Fluspirilene Certificate of Suitability (COS). The purpose of a Fluspirilene CEP is to show that the European Pharmacopoeia monograph adequately controls the purity of Fluspirilene EP produced by a given manufacturer. Suppliers of raw materials can prove the suitability of Fluspirilene to their clients by showing that a Fluspirilene CEP has been issued for it. The manufacturer submits a Fluspirilene CEP (COS) as part of the market authorization procedure, and it takes on the role of a Fluspirilene CEP holder for the record. Additionally, the data presented in the Fluspirilene CEP (COS) is managed confidentially and offers a centralized system acknowledged by numerous nations, exactly like the Fluspirilene DMF.

A Fluspirilene CEP (COS) is recognised by all 36 nations that make up the European Pharmacopoeia Convention. Fluspirilene CEPs may be accepted in nations that are not members of the Ph. Eur. at the discretion of the authorities there.

click here to find a list of Fluspirilene suppliers with CEP (COS) on PharmaCompass.

Fluspirilene GMP

Fluspirilene 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 Fluspirilene 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 Fluspirilene GMP manufacturer or Fluspirilene GMP API supplier for your needs.

Fluspirilene CoA

A Fluspirilene CoA (Certificate of Analysis) is a formal document that attests to Fluspirilene's compliance with Fluspirilene specifications and serves as a tool for batch-level quality control.

Fluspirilene CoA mostly includes findings from lab analyses of a specific batch. For each Fluspirilene 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.

Fluspirilene may be tested according to a variety of international standards, such as European Pharmacopoeia (Fluspirilene EP), Fluspirilene JP (Japanese Pharmacopeia) and the US Pharmacopoeia (Fluspirilene USP).

Inform the supplier about your product requirements, specifying if you need a product with particular monograph like EP (Ph. Eur.), USP, JP, BP, or any other quality. In addition, clarify whether you need hydrochloride (HCl), anhydricum, base, micronisatum or a specific level of purity. To find reputable suppliers, utilize the filters and select those certified by GMP, FDA, or any other certification as per your requirement.
For your convenience, we have listed synonyms and CAS numbers to help you find the best supplier. The use of synonyms and CAS numbers can be helpful in identifying potential suppliers, but it is crucial to note that they might not always indicate the exact same product. It is important to confirm the product details with the supplier before making a purchase to ensure that it meets your requirements.
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