SlideShare une entreprise Scribd logo
1  sur  36
CONTENTS
INTRODUCTION
SOURCES OF IMPURITIES
TYPES OF IMPURITIES
SOURCES OF ORGANIC IMPURITIES
GENOTOXIC IMPURITIES
REFERENCES
2
IMPURITIES?
Impurities are chemical substances composed of liquid, gas, or solid,
which differ from the chemical composition of the material or compound.
They are either naturally occurring or added during synthesis of a
chemical / commercial product.
During production, impurities may be purposely, accidentally, added into
the substance.
3
Standards have been established for permitted levels of
various impurities in a manufactured product.
A material's level of purity can only be stated as being
more or less pure than some other material.
Inorganic contaminants are not considered as an impurity
unless they are toxic, such as heavy metal or arsenic.
4
SOURCES OF IMPURITIES
Majority of the impurities are occurred during the synthetic
route of manufacturing process.
There are several possibilities of synthesizing a drug
It is possible that the same product of different sources may give
rise to different impurities.
5
The situation with the organic impurities.
•Toxicity is unknown.
•Not easily predictable.
•For this reason the ICH guidelines set threshold
limit above which the identification of the
impurity is obligatory.
6
The number of INORGANIC IMPURITIES and RESIDUAL
SOLVENTS are limited.
• Easily identified.
• Physiological effects and toxicity are well known.
• The limits set by the pharmacopoeias & ICH guidelines
guarantee that the harmful effects of these impurities do not
contribute to the toxicity or the side effects of the drug
substances.
7
TYPES OF IMPURITIES
According to
ICH guidelines
8
a) ORGANIC IMPURITIES
Arise during the
manufacturing process
and/or storage of the new
drug substance.
They can be identified or
unidentified, volatile or non-
volatile, and include:
Starting materials By-products Intermediates
Degradation
products
Reagents, ligands
and catalysts
9
b) INORGANIC IMPURITIES
Results from the
manufacturing
process.
They are
normally known
and identified and
include:
Reagents, ligands and
catalysts
Heavy metals or other
residual metals
Inorganic salts
Other materials (e.g.,
filter aids, charcoal)
10
c) RESIDUAL SOLVENTS
Solvents are
inorganic or organic
liquids.
They are used as vehicles
for the preparation of
solutions or suspensions
in the synthesis of a new
drug substance.
Since these are generally
of known toxicity, the
selection of appropriate
controls is easily
accomplished.
11
SOURCES OF ORGANIC IMPURITIES
•Arise during the manufacturing process or storage of the
drug substance.
•These impurities are derived from drug substance
synthetic processes and degradation reactions in drug
substances and drug products.
12
SYNTHETIC PROCESS
IMPURITY
DEGRADATION PROCESS
IMPURITY
•Starting materials
•Intermediates
•Reagents
•Ligands
•Catalysts used in the chemical
synthesis
•By-products from the side-
reactions of the chemical
synthesis.
ENANTIOMERIC
IMPURITIES
Degradation products of the
drug substances and drug
products occurs due to storage
or stress conditions
13
14
 These synthetic impurities are usually referred to as Process impurities.
 The goal is to determine the structures and origins of these impurities.
 This knowledge is critical for improving the synthetic chemical process,
in order to eliminate or minimize process impurities.
15
a) STARTING MATERIALS & INTERMEDIATES
“Starting materials and intermediates are used to construct the final
form of a drug substance”
Unreacted starting materials and intermediates, involved in the last steps of the synthesis, can
potentially survive the synthetic and purification process and appear in the final product as
impurities.
SYNTHESIS OF TIPRANAVIR
 Aniline - Intermediate in the last step of the synthesis.
 Due to the similarity between the structures of aniline and the final product, it is
difficult to totally eliminate it in the subsequent purification step.
 Consequently, it appears in the drug substance at around 0.1%.
16
b) IMPURITIES IN THE STARTING MATERIALS
“Impurities present in the staring materials follows the same reaction
pathways as the starting material itself, and the reaction products could carry
over to the final product as process impurities”
Example :The presence of a 4-trifluoromethyl positional isomer in
3- trifluoromethyl-alpha-ethylbenzhydrol (flumecinol), due to the presence of
4- trifluoromethylbenzene impurity in the starting material, 3-trifluoromethylbenzene.
17
c) REAGENTS, LIGANDS AND CATALYSTS
These are less commonly found in APIs.
However, in some cases they may pose a problem as impurities.
Chemical reagents, ligands, and catalysts used in the synthesis of a drug substance can be
carried over to the final products as trace level impurities.
Example:
SYNTHESIS OF A ß LACTAM DRUG SUBSTANCE:
Carbonic acid chloromethyl tetrahydro-pyran-4-yl ester (CCMTHP) - alkylating agent,
was observed in the final product as an impurity.
18
“Many chemical reactions are promoted by metal based catalysts”
Example:
A Ziegler-Natta catalyst contains titanium
Grubb’s catalyst contains ruthenium
Adam’s catalyst contains platinum.
In some cases, reagents or catalysts may react with intermediates or final
products to form by-products.
Example:
Pyridine, a catalyst used in the course of synthesis of mazipridone, reacts
with an intermediate to form a pyridinium impurity.
19
d) BY-PRODUCTS OF THE SYNTHESIS
By-products can
be formed
through a variety
of side reactions,
such as:
By-products from
the side reactions
are the common
process
impurities in
drugs.
The side-
reactions are
common during
the synthesis of
drug substances.
Chemical
reactions are not
100% selective;
Incomplete reaction ,Over reaction,Isomerisation ,Dimerisation ,Rearrangement
Unwanted reactions of starting materials ,Intermediates with chemical reagents
Catalysts.
20
e) PRODUCTS OF OVER-REACTION
“In many cases the previous steps of the syntheses are not selective enough
and the reagents attack the intermediate at the desired site”
Synthesis of Nanodralone decanoate:
-Last step - Decanoylation of the 17-OH group.
-Overreaction:The reagents also attack the 4-ene- 3 oxo group leading to an enol
ester- type impurity (3, 17β- dihydroxyestra-3, 5- diene disdecanoate).
21
f) PRODUCTS OF SIDE REACTIONS
Side reactions are unavoidable in drug synthesis.
Side reactions leads to trace level impurities to be detected and
elucidated during impurity profiling.
The formation of diketopiperazine derivative is a typical side reaction
in peptide synthesis.
22
DIKETOPIPERAZINE DERIVATIVE
23
24
IMPURITIES ORIGINATING FROM
DEGRADATION OF THE DRUG SUBSTANCE
Impurities can also be formed by degradation of the end product during
manufacturing of bulk drugs.
Degradation products resulting from storage or formulation to different dosage
forms or aging are common impurities in the medicines.
The definition of degradation product in the ICH guidelines is a molecule
resulting from a chemical change in the substance brought about by overtime
or due to the action of light, temperature, pH / water or by reaction with
excipient and/or the intermediate container closure system.
25
Example:
In the case of aspartame, in the presence of moisture, hydrolysis occurs
to form the degradation products L- aspartyl- LPhenyalanine and 3-
benzyl-6-carboxymethyl 2, 5-diketopierazine.
A third degradation product β-L- aspartyl-L-phenylalanine methyl
ester is also known to form.
Aspartame degradation also occurs during prolonged heat treatment.
26
 The majority of therapeutic chiral drugs used as pure enantiomers are
natural products
 High level of Enantio selectivity of their biosynthesis excludes the
presence of enantiomeric impurities
 In Synthetic chiral drugs, the racemates which are usually marketed, if
the pure enantiomer is administered, the antipode is considered to be
an impurity.
 The reason for its presence can be either the incomplete enantio
selectivity of the syntheses or incomplete resolution of the enantiomers
of the racemate.
ENANTIOMERIC IMPURITY
27
ICH guidelines exclude enantiomeric impurities, pharmacopoeias consider
them as ordinary impurities.
A single enantiomeric form of chiral drug is now considered as an
improved chemical entity that may offer a better pharmacological profile
and an increased therapeutic index with a more favourable reaction profile.
However, the pharmacokinetic profile of Levofloxacin (S-Isomeric form)
and Ofloxacin (R- isomeric form) are comparable, suggesting the lack of
advantages of single isomer in this regard.
The prominent single isomer drugs, which are being marketed, include
levofloxacin (S-ofloxacin), levalbuterol (R-albuterol) and esomeprazole
(Someprazole).
28
Examples of drugs containing enantiomeric impurities are:
Dexchlorophenarmine maleate (R enantiomer impurity allowed <0.5%)
Timolol maleate (R enantiomer impurity allowed < 1%)
Clopidogrel sulphate (R enantiomer impurity allowed < 1%)
*In general, an individual API may contain all of the above mentioned
types of organic impurities varying from negligible to significant level.
29
30
GENOTOXIC IMPURITIES
The property of chemical agents that damages the genetic information
within a cell causing mutations, which may lead to cancer.
“All mutagens are genotoxic, whereas not all genotoxic substances are
mutagenic”
Genotoxic impurities have also been defined as an “impurity that has been
demonstrated to be genotoxic in an appropriate genotoxicity test model,
e.g., bacterial gene mutation (Ames) test”.
31
A FIVE-CLASS SYSTEM FOR CATEGORIZING
GENOTOXIC IMPURITIES
CLASS1: “Impurities known to be genotoxic (mutagenic) and carcinogenic”
It includes known animal carcinogens with reliable data for a
genotoxic mechanism, and human carcinogens.
The genotoxic nature of the impurity is demonstrated using published
data on the chemical structure.
32
CLASS2: “Impurities knownto be genotoxic(mutagenic), but with unknown carcinogenic
potential”
It includes impurities with demonstrated mutagenicity based
on testing of the impurity in conventional genotoxicity tests.
CLASS3: “Impurities that havean alerting structure unrelated to thestructureof the API,and of
unknowngenotoxic(mutagenic) potential”
It includes impurities with functional moieties that can be linked to
genotoxicity based on structure
These moieties have not been tested as isolated compounds and are
identified based on chemistry and using SAR.
33
CLASS4:
”Impurities with an alerting structure related to the API and impurities that containan alerting
functional moiety that is shared withthe structure of the API”
CLASS5:
No alerting structure or indicationof genotoxic potential.
34
REFERENCES:
https://www.agilent.com/cs/library/primers/Public/5991-1876EN.pdf
https://www.quora.com/What-are-the-sources-of-impurities-in-pharmaceutical-chemicals
https://www.google.com/search?rlz=1C1CHBD_enIN728IN733&sxsrf=ACYBGNQnHQ
HhVobDMABD1qyiU8R_3I0AA:1569165696641&q=What+are+genotoxic+impurities%3F&sa=X
&ved=2ahUKEwi8jsTf3eTkAhVMWH0KHZqpCXcQzmd6BAgMEAw&biw=1242&bih=553
https://www.slideshare.net/KamalAmbalia/impurities-in-drug-substance-in-drug-product
http://www.nihs.go.jp/dgm/files/dgmheadoffice_reguratory5.pdf
35
36

Contenu connexe

Tendances

Tendances (20)

Reduction
ReductionReduction
Reduction
 
NMR spcetroscopy
NMR spcetroscopyNMR spcetroscopy
NMR spcetroscopy
 
Side reaction in peptide synthesis
Side reaction in peptide synthesisSide reaction in peptide synthesis
Side reaction in peptide synthesis
 
INTRODUCTION TO PROCESS CHEMISTRY.pptx
INTRODUCTION TO PROCESS CHEMISTRY.pptxINTRODUCTION TO PROCESS CHEMISTRY.pptx
INTRODUCTION TO PROCESS CHEMISTRY.pptx
 
Nitration (2)
Nitration (2)Nitration (2)
Nitration (2)
 
GC AAS.pptx
GC AAS.pptxGC AAS.pptx
GC AAS.pptx
 
Continuous flow reaction/ Chemistry
Continuous flow reaction/ ChemistryContinuous flow reaction/ Chemistry
Continuous flow reaction/ Chemistry
 
Oxidation (Unit Process-1) Pharmaceutical Process Chemistry
Oxidation (Unit Process-1) Pharmaceutical Process Chemistry Oxidation (Unit Process-1) Pharmaceutical Process Chemistry
Oxidation (Unit Process-1) Pharmaceutical Process Chemistry
 
CHEMISTRY OF PEPTIDES [M.PHARM, M.SC, BSC, B.PHARM]
CHEMISTRY OF PEPTIDES [M.PHARM, M.SC, BSC, B.PHARM]CHEMISTRY OF PEPTIDES [M.PHARM, M.SC, BSC, B.PHARM]
CHEMISTRY OF PEPTIDES [M.PHARM, M.SC, BSC, B.PHARM]
 
Nitration as per M.pharm syllabus of PCI
Nitration as per M.pharm syllabus of PCINitration as per M.pharm syllabus of PCI
Nitration as per M.pharm syllabus of PCI
 
Route selection
Route selectionRoute selection
Route selection
 
CONTINUOUS FLOW REACTORS (1).pptx
CONTINUOUS FLOW REACTORS (1).pptxCONTINUOUS FLOW REACTORS (1).pptx
CONTINUOUS FLOW REACTORS (1).pptx
 
T boc fmoc protocols in peptide synthesis
T boc fmoc protocols in peptide synthesisT boc fmoc protocols in peptide synthesis
T boc fmoc protocols in peptide synthesis
 
Synthetic reagents and applications
Synthetic reagents and applicationsSynthetic reagents and applications
Synthetic reagents and applications
 
MOLECULAR DOCKING AND DRUG RECEPTOR INTERACTION AGENT ACTING.pptx
MOLECULAR DOCKING AND DRUG RECEPTOR INTERACTION AGENT ACTING.pptxMOLECULAR DOCKING AND DRUG RECEPTOR INTERACTION AGENT ACTING.pptx
MOLECULAR DOCKING AND DRUG RECEPTOR INTERACTION AGENT ACTING.pptx
 
Lc ftir
Lc ftirLc ftir
Lc ftir
 
GC-AAS Hyphenated Technique.
GC-AAS Hyphenated Technique.GC-AAS Hyphenated Technique.
GC-AAS Hyphenated Technique.
 
Chemistry of peptide (BPHARM,MPHARM,MSC,BSC)
Chemistry of peptide (BPHARM,MPHARM,MSC,BSC)Chemistry of peptide (BPHARM,MPHARM,MSC,BSC)
Chemistry of peptide (BPHARM,MPHARM,MSC,BSC)
 
Homogenous Catalysis
Homogenous CatalysisHomogenous Catalysis
Homogenous Catalysis
 
Oxidizing agents&amp;ozonolysis
Oxidizing agents&amp;ozonolysisOxidizing agents&amp;ozonolysis
Oxidizing agents&amp;ozonolysis
 

Similaire à Impurities in API , types and their sources including genotoxic impurities

METABOLISM
METABOLISMMETABOLISM
METABOLISM
Nihal Calicut
 

Similaire à Impurities in API , types and their sources including genotoxic impurities (20)

IMPURITIES IN API’s INCLUDING GENOTOXIC IMPURITIES.pptx
IMPURITIES IN API’s INCLUDING GENOTOXIC IMPURITIES.pptxIMPURITIES IN API’s INCLUDING GENOTOXIC IMPURITIES.pptx
IMPURITIES IN API’s INCLUDING GENOTOXIC IMPURITIES.pptx
 
Impurities
ImpuritiesImpurities
Impurities
 
New Microsoft PowerPoint Presentation.pptx
New Microsoft PowerPoint Presentation.pptxNew Microsoft PowerPoint Presentation.pptx
New Microsoft PowerPoint Presentation.pptx
 
Degradation and Degradant Characterization
Degradation and Degradant CharacterizationDegradation and Degradant Characterization
Degradation and Degradant Characterization
 
Drug excipient compatibility
Drug excipient compatibilityDrug excipient compatibility
Drug excipient compatibility
 
Impurities in pharmaceutical substances
Impurities in pharmaceutical substancesImpurities in pharmaceutical substances
Impurities in pharmaceutical substances
 
Impurities in DS & DP
Impurities in DS & DPImpurities in DS & DP
Impurities in DS & DP
 
Drug excepients compatability studies
Drug excepients compatability studiesDrug excepients compatability studies
Drug excepients compatability studies
 
Basics of Impurity Profiling
Basics of Impurity ProfilingBasics of Impurity Profiling
Basics of Impurity Profiling
 
Accelerated Stability Testing.
Accelerated Stability Testing. Accelerated Stability Testing.
Accelerated Stability Testing.
 
Degradation study and analysis of impurities
Degradation study and analysis of impuritiesDegradation study and analysis of impurities
Degradation study and analysis of impurities
 
Drug Excipient Interaction.pptx
Drug Excipient Interaction.pptxDrug Excipient Interaction.pptx
Drug Excipient Interaction.pptx
 
ICH Q3AR2 explained - impurities in drug substances
ICH Q3AR2 explained - impurities in drug substancesICH Q3AR2 explained - impurities in drug substances
ICH Q3AR2 explained - impurities in drug substances
 
impurity and stability studies
impurity and stability studiesimpurity and stability studies
impurity and stability studies
 
Bio-catalytic Oxidation by Microorganism
Bio-catalytic Oxidation by MicroorganismBio-catalytic Oxidation by Microorganism
Bio-catalytic Oxidation by Microorganism
 
Basics impurity profiling and degradent characterization[134]
Basics impurity profiling and degradent characterization[134]Basics impurity profiling and degradent characterization[134]
Basics impurity profiling and degradent characterization[134]
 
METABOLISM
METABOLISMMETABOLISM
METABOLISM
 
Bch 315a
Bch 315aBch 315a
Bch 315a
 
Drug excipient Compatibility
Drug excipient CompatibilityDrug excipient Compatibility
Drug excipient Compatibility
 
Xenobiotics.pdf
Xenobiotics.pdfXenobiotics.pdf
Xenobiotics.pdf
 

Plus de College of Pharmacy,Sri Ramakrishna Institute of Paramedical Sciences,Coimbatore

Plus de College of Pharmacy,Sri Ramakrishna Institute of Paramedical Sciences,Coimbatore (9)

Synthesis, Docking Studies and Anticancer Activity of New Substituted Pyrimid...
Synthesis, Docking Studies and Anticancer Activity of New Substituted Pyrimid...Synthesis, Docking Studies and Anticancer Activity of New Substituted Pyrimid...
Synthesis, Docking Studies and Anticancer Activity of New Substituted Pyrimid...
 
Docking studies, synthesis, characterization of some novel Oxazine substitute...
Docking studies, synthesis, characterization of some novel Oxazine substitute...Docking studies, synthesis, characterization of some novel Oxazine substitute...
Docking studies, synthesis, characterization of some novel Oxazine substitute...
 
Development of agents acting on HIV protease enzyme utilising molecular model...
Development of agents acting on HIV protease enzyme utilising molecular model...Development of agents acting on HIV protease enzyme utilising molecular model...
Development of agents acting on HIV protease enzyme utilising molecular model...
 
PRINCIPLE , INSTRUMENTATION & APPLICATION OF SUPER CRITICAL FLUID CHROMATOGRAPHY
PRINCIPLE , INSTRUMENTATION & APPLICATION OF SUPER CRITICAL FLUID CHROMATOGRAPHYPRINCIPLE , INSTRUMENTATION & APPLICATION OF SUPER CRITICAL FLUID CHROMATOGRAPHY
PRINCIPLE , INSTRUMENTATION & APPLICATION OF SUPER CRITICAL FLUID CHROMATOGRAPHY
 
Nomenclature of stereoisomers
Nomenclature of stereoisomersNomenclature of stereoisomers
Nomenclature of stereoisomers
 
Protection for carboxylic group & Protection for the Amino group
Protection for carboxylic group & Protection for the Amino groupProtection for carboxylic group & Protection for the Amino group
Protection for carboxylic group & Protection for the Amino group
 
TAXANES AND PODOPHYLLOTOXINS
TAXANES AND PODOPHYLLOTOXINSTAXANES AND PODOPHYLLOTOXINS
TAXANES AND PODOPHYLLOTOXINS
 
IMPORTANCE OF IR SPECTROSCOPY IN STRUCTURAL ELUCIDATION OF ORGANIC COMPOUNDS
IMPORTANCE OF IR SPECTROSCOPY IN STRUCTURAL ELUCIDATION OF ORGANIC COMPOUNDSIMPORTANCE OF IR SPECTROSCOPY IN STRUCTURAL ELUCIDATION OF ORGANIC COMPOUNDS
IMPORTANCE OF IR SPECTROSCOPY IN STRUCTURAL ELUCIDATION OF ORGANIC COMPOUNDS
 
Rationale of prodrug design and practical consideration of
Rationale of prodrug design and practical consideration ofRationale of prodrug design and practical consideration of
Rationale of prodrug design and practical consideration of
 

Dernier

🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...
🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...
🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...
Call Girls In Delhi Whatsup 9873940964 Enjoy Unlimited Pleasure
 
Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...
Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...
Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...
chetankumar9855
 
Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls * UPA...
Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls  * UPA...Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls  * UPA...
Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls * UPA...
mahaiklolahd
 

Dernier (20)

Model Call Girls In Chennai WhatsApp Booking 7427069034 call girl service 24 ...
Model Call Girls In Chennai WhatsApp Booking 7427069034 call girl service 24 ...Model Call Girls In Chennai WhatsApp Booking 7427069034 call girl service 24 ...
Model Call Girls In Chennai WhatsApp Booking 7427069034 call girl service 24 ...
 
Call Girls Vasai Virar Just Call 9630942363 Top Class Call Girl Service Avail...
Call Girls Vasai Virar Just Call 9630942363 Top Class Call Girl Service Avail...Call Girls Vasai Virar Just Call 9630942363 Top Class Call Girl Service Avail...
Call Girls Vasai Virar Just Call 9630942363 Top Class Call Girl Service Avail...
 
Saket * Call Girls in Delhi - Phone 9711199012 Escorts Service at 6k to 50k a...
Saket * Call Girls in Delhi - Phone 9711199012 Escorts Service at 6k to 50k a...Saket * Call Girls in Delhi - Phone 9711199012 Escorts Service at 6k to 50k a...
Saket * Call Girls in Delhi - Phone 9711199012 Escorts Service at 6k to 50k a...
 
Independent Call Girls Service Mohali Sector 116 | 6367187148 | Call Girl Ser...
Independent Call Girls Service Mohali Sector 116 | 6367187148 | Call Girl Ser...Independent Call Girls Service Mohali Sector 116 | 6367187148 | Call Girl Ser...
Independent Call Girls Service Mohali Sector 116 | 6367187148 | Call Girl Ser...
 
Mumbai ] (Call Girls) in Mumbai 10k @ I'm VIP Independent Escorts Girls 98333...
Mumbai ] (Call Girls) in Mumbai 10k @ I'm VIP Independent Escorts Girls 98333...Mumbai ] (Call Girls) in Mumbai 10k @ I'm VIP Independent Escorts Girls 98333...
Mumbai ] (Call Girls) in Mumbai 10k @ I'm VIP Independent Escorts Girls 98333...
 
Trichy Call Girls Book Now 9630942363 Top Class Trichy Escort Service Available
Trichy Call Girls Book Now 9630942363 Top Class Trichy Escort Service AvailableTrichy Call Girls Book Now 9630942363 Top Class Trichy Escort Service Available
Trichy Call Girls Book Now 9630942363 Top Class Trichy Escort Service Available
 
🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...
🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...
🌹Attapur⬅️ Vip Call Girls Hyderabad 📱9352852248 Book Well Trand Call Girls In...
 
Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...
Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...
Call Girl In Pune 👉 Just CALL ME: 9352988975 💋 Call Out Call Both With High p...
 
Call Girls in Delhi Triveni Complex Escort Service(🔝))/WhatsApp 97111⇛47426
Call Girls in Delhi Triveni Complex Escort Service(🔝))/WhatsApp 97111⇛47426Call Girls in Delhi Triveni Complex Escort Service(🔝))/WhatsApp 97111⇛47426
Call Girls in Delhi Triveni Complex Escort Service(🔝))/WhatsApp 97111⇛47426
 
Night 7k to 12k Navi Mumbai Call Girl Photo 👉 BOOK NOW 9833363713 👈 ♀️ night ...
Night 7k to 12k Navi Mumbai Call Girl Photo 👉 BOOK NOW 9833363713 👈 ♀️ night ...Night 7k to 12k Navi Mumbai Call Girl Photo 👉 BOOK NOW 9833363713 👈 ♀️ night ...
Night 7k to 12k Navi Mumbai Call Girl Photo 👉 BOOK NOW 9833363713 👈 ♀️ night ...
 
Low Rate Call Girls Bangalore {7304373326} ❤️VVIP NISHA Call Girls in Bangalo...
Low Rate Call Girls Bangalore {7304373326} ❤️VVIP NISHA Call Girls in Bangalo...Low Rate Call Girls Bangalore {7304373326} ❤️VVIP NISHA Call Girls in Bangalo...
Low Rate Call Girls Bangalore {7304373326} ❤️VVIP NISHA Call Girls in Bangalo...
 
Russian Call Girls Service Jaipur {8445551418} ❤️PALLAVI VIP Jaipur Call Gir...
Russian Call Girls Service  Jaipur {8445551418} ❤️PALLAVI VIP Jaipur Call Gir...Russian Call Girls Service  Jaipur {8445551418} ❤️PALLAVI VIP Jaipur Call Gir...
Russian Call Girls Service Jaipur {8445551418} ❤️PALLAVI VIP Jaipur Call Gir...
 
Call Girls Raipur Just Call 9630942363 Top Class Call Girl Service Available
Call Girls Raipur Just Call 9630942363 Top Class Call Girl Service AvailableCall Girls Raipur Just Call 9630942363 Top Class Call Girl Service Available
Call Girls Raipur Just Call 9630942363 Top Class Call Girl Service Available
 
Call Girls Hosur Just Call 9630942363 Top Class Call Girl Service Available
Call Girls Hosur Just Call 9630942363 Top Class Call Girl Service AvailableCall Girls Hosur Just Call 9630942363 Top Class Call Girl Service Available
Call Girls Hosur Just Call 9630942363 Top Class Call Girl Service Available
 
Night 7k to 12k Chennai City Center Call Girls 👉👉 7427069034⭐⭐ 100% Genuine E...
Night 7k to 12k Chennai City Center Call Girls 👉👉 7427069034⭐⭐ 100% Genuine E...Night 7k to 12k Chennai City Center Call Girls 👉👉 7427069034⭐⭐ 100% Genuine E...
Night 7k to 12k Chennai City Center Call Girls 👉👉 7427069034⭐⭐ 100% Genuine E...
 
Pondicherry Call Girls Book Now 9630942363 Top Class Pondicherry Escort Servi...
Pondicherry Call Girls Book Now 9630942363 Top Class Pondicherry Escort Servi...Pondicherry Call Girls Book Now 9630942363 Top Class Pondicherry Escort Servi...
Pondicherry Call Girls Book Now 9630942363 Top Class Pondicherry Escort Servi...
 
Top Rated Hyderabad Call Girls Erragadda ⟟ 9332606886 ⟟ Call Me For Genuine ...
Top Rated  Hyderabad Call Girls Erragadda ⟟ 9332606886 ⟟ Call Me For Genuine ...Top Rated  Hyderabad Call Girls Erragadda ⟟ 9332606886 ⟟ Call Me For Genuine ...
Top Rated Hyderabad Call Girls Erragadda ⟟ 9332606886 ⟟ Call Me For Genuine ...
 
VIP Hyderabad Call Girls Bahadurpally 7877925207 ₹5000 To 25K With AC Room 💚😋
VIP Hyderabad Call Girls Bahadurpally 7877925207 ₹5000 To 25K With AC Room 💚😋VIP Hyderabad Call Girls Bahadurpally 7877925207 ₹5000 To 25K With AC Room 💚😋
VIP Hyderabad Call Girls Bahadurpally 7877925207 ₹5000 To 25K With AC Room 💚😋
 
Call Girls Service Jaipur {9521753030 } ❤️VVIP BHAWNA Call Girl in Jaipur Raj...
Call Girls Service Jaipur {9521753030 } ❤️VVIP BHAWNA Call Girl in Jaipur Raj...Call Girls Service Jaipur {9521753030 } ❤️VVIP BHAWNA Call Girl in Jaipur Raj...
Call Girls Service Jaipur {9521753030 } ❤️VVIP BHAWNA Call Girl in Jaipur Raj...
 
Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls * UPA...
Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls  * UPA...Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls  * UPA...
Call Girl in Indore 8827247818 {LowPrice} ❤️ (ahana) Indore Call Girls * UPA...
 

Impurities in API , types and their sources including genotoxic impurities

  • 1.
  • 2. CONTENTS INTRODUCTION SOURCES OF IMPURITIES TYPES OF IMPURITIES SOURCES OF ORGANIC IMPURITIES GENOTOXIC IMPURITIES REFERENCES 2
  • 3. IMPURITIES? Impurities are chemical substances composed of liquid, gas, or solid, which differ from the chemical composition of the material or compound. They are either naturally occurring or added during synthesis of a chemical / commercial product. During production, impurities may be purposely, accidentally, added into the substance. 3
  • 4. Standards have been established for permitted levels of various impurities in a manufactured product. A material's level of purity can only be stated as being more or less pure than some other material. Inorganic contaminants are not considered as an impurity unless they are toxic, such as heavy metal or arsenic. 4
  • 5. SOURCES OF IMPURITIES Majority of the impurities are occurred during the synthetic route of manufacturing process. There are several possibilities of synthesizing a drug It is possible that the same product of different sources may give rise to different impurities. 5
  • 6. The situation with the organic impurities. •Toxicity is unknown. •Not easily predictable. •For this reason the ICH guidelines set threshold limit above which the identification of the impurity is obligatory. 6
  • 7. The number of INORGANIC IMPURITIES and RESIDUAL SOLVENTS are limited. • Easily identified. • Physiological effects and toxicity are well known. • The limits set by the pharmacopoeias & ICH guidelines guarantee that the harmful effects of these impurities do not contribute to the toxicity or the side effects of the drug substances. 7
  • 8. TYPES OF IMPURITIES According to ICH guidelines 8
  • 9. a) ORGANIC IMPURITIES Arise during the manufacturing process and/or storage of the new drug substance. They can be identified or unidentified, volatile or non- volatile, and include: Starting materials By-products Intermediates Degradation products Reagents, ligands and catalysts 9
  • 10. b) INORGANIC IMPURITIES Results from the manufacturing process. They are normally known and identified and include: Reagents, ligands and catalysts Heavy metals or other residual metals Inorganic salts Other materials (e.g., filter aids, charcoal) 10
  • 11. c) RESIDUAL SOLVENTS Solvents are inorganic or organic liquids. They are used as vehicles for the preparation of solutions or suspensions in the synthesis of a new drug substance. Since these are generally of known toxicity, the selection of appropriate controls is easily accomplished. 11
  • 12. SOURCES OF ORGANIC IMPURITIES •Arise during the manufacturing process or storage of the drug substance. •These impurities are derived from drug substance synthetic processes and degradation reactions in drug substances and drug products. 12
  • 13. SYNTHETIC PROCESS IMPURITY DEGRADATION PROCESS IMPURITY •Starting materials •Intermediates •Reagents •Ligands •Catalysts used in the chemical synthesis •By-products from the side- reactions of the chemical synthesis. ENANTIOMERIC IMPURITIES Degradation products of the drug substances and drug products occurs due to storage or stress conditions 13
  • 14. 14
  • 15.  These synthetic impurities are usually referred to as Process impurities.  The goal is to determine the structures and origins of these impurities.  This knowledge is critical for improving the synthetic chemical process, in order to eliminate or minimize process impurities. 15
  • 16. a) STARTING MATERIALS & INTERMEDIATES “Starting materials and intermediates are used to construct the final form of a drug substance” Unreacted starting materials and intermediates, involved in the last steps of the synthesis, can potentially survive the synthetic and purification process and appear in the final product as impurities. SYNTHESIS OF TIPRANAVIR  Aniline - Intermediate in the last step of the synthesis.  Due to the similarity between the structures of aniline and the final product, it is difficult to totally eliminate it in the subsequent purification step.  Consequently, it appears in the drug substance at around 0.1%. 16
  • 17. b) IMPURITIES IN THE STARTING MATERIALS “Impurities present in the staring materials follows the same reaction pathways as the starting material itself, and the reaction products could carry over to the final product as process impurities” Example :The presence of a 4-trifluoromethyl positional isomer in 3- trifluoromethyl-alpha-ethylbenzhydrol (flumecinol), due to the presence of 4- trifluoromethylbenzene impurity in the starting material, 3-trifluoromethylbenzene. 17
  • 18. c) REAGENTS, LIGANDS AND CATALYSTS These are less commonly found in APIs. However, in some cases they may pose a problem as impurities. Chemical reagents, ligands, and catalysts used in the synthesis of a drug substance can be carried over to the final products as trace level impurities. Example: SYNTHESIS OF A ß LACTAM DRUG SUBSTANCE: Carbonic acid chloromethyl tetrahydro-pyran-4-yl ester (CCMTHP) - alkylating agent, was observed in the final product as an impurity. 18
  • 19. “Many chemical reactions are promoted by metal based catalysts” Example: A Ziegler-Natta catalyst contains titanium Grubb’s catalyst contains ruthenium Adam’s catalyst contains platinum. In some cases, reagents or catalysts may react with intermediates or final products to form by-products. Example: Pyridine, a catalyst used in the course of synthesis of mazipridone, reacts with an intermediate to form a pyridinium impurity. 19
  • 20. d) BY-PRODUCTS OF THE SYNTHESIS By-products can be formed through a variety of side reactions, such as: By-products from the side reactions are the common process impurities in drugs. The side- reactions are common during the synthesis of drug substances. Chemical reactions are not 100% selective; Incomplete reaction ,Over reaction,Isomerisation ,Dimerisation ,Rearrangement Unwanted reactions of starting materials ,Intermediates with chemical reagents Catalysts. 20
  • 21. e) PRODUCTS OF OVER-REACTION “In many cases the previous steps of the syntheses are not selective enough and the reagents attack the intermediate at the desired site” Synthesis of Nanodralone decanoate: -Last step - Decanoylation of the 17-OH group. -Overreaction:The reagents also attack the 4-ene- 3 oxo group leading to an enol ester- type impurity (3, 17β- dihydroxyestra-3, 5- diene disdecanoate). 21
  • 22. f) PRODUCTS OF SIDE REACTIONS Side reactions are unavoidable in drug synthesis. Side reactions leads to trace level impurities to be detected and elucidated during impurity profiling. The formation of diketopiperazine derivative is a typical side reaction in peptide synthesis. 22
  • 24. 24
  • 25. IMPURITIES ORIGINATING FROM DEGRADATION OF THE DRUG SUBSTANCE Impurities can also be formed by degradation of the end product during manufacturing of bulk drugs. Degradation products resulting from storage or formulation to different dosage forms or aging are common impurities in the medicines. The definition of degradation product in the ICH guidelines is a molecule resulting from a chemical change in the substance brought about by overtime or due to the action of light, temperature, pH / water or by reaction with excipient and/or the intermediate container closure system. 25
  • 26. Example: In the case of aspartame, in the presence of moisture, hydrolysis occurs to form the degradation products L- aspartyl- LPhenyalanine and 3- benzyl-6-carboxymethyl 2, 5-diketopierazine. A third degradation product β-L- aspartyl-L-phenylalanine methyl ester is also known to form. Aspartame degradation also occurs during prolonged heat treatment. 26
  • 27.  The majority of therapeutic chiral drugs used as pure enantiomers are natural products  High level of Enantio selectivity of their biosynthesis excludes the presence of enantiomeric impurities  In Synthetic chiral drugs, the racemates which are usually marketed, if the pure enantiomer is administered, the antipode is considered to be an impurity.  The reason for its presence can be either the incomplete enantio selectivity of the syntheses or incomplete resolution of the enantiomers of the racemate. ENANTIOMERIC IMPURITY 27
  • 28. ICH guidelines exclude enantiomeric impurities, pharmacopoeias consider them as ordinary impurities. A single enantiomeric form of chiral drug is now considered as an improved chemical entity that may offer a better pharmacological profile and an increased therapeutic index with a more favourable reaction profile. However, the pharmacokinetic profile of Levofloxacin (S-Isomeric form) and Ofloxacin (R- isomeric form) are comparable, suggesting the lack of advantages of single isomer in this regard. The prominent single isomer drugs, which are being marketed, include levofloxacin (S-ofloxacin), levalbuterol (R-albuterol) and esomeprazole (Someprazole). 28
  • 29. Examples of drugs containing enantiomeric impurities are: Dexchlorophenarmine maleate (R enantiomer impurity allowed <0.5%) Timolol maleate (R enantiomer impurity allowed < 1%) Clopidogrel sulphate (R enantiomer impurity allowed < 1%) *In general, an individual API may contain all of the above mentioned types of organic impurities varying from negligible to significant level. 29
  • 30. 30
  • 31. GENOTOXIC IMPURITIES The property of chemical agents that damages the genetic information within a cell causing mutations, which may lead to cancer. “All mutagens are genotoxic, whereas not all genotoxic substances are mutagenic” Genotoxic impurities have also been defined as an “impurity that has been demonstrated to be genotoxic in an appropriate genotoxicity test model, e.g., bacterial gene mutation (Ames) test”. 31
  • 32. A FIVE-CLASS SYSTEM FOR CATEGORIZING GENOTOXIC IMPURITIES CLASS1: “Impurities known to be genotoxic (mutagenic) and carcinogenic” It includes known animal carcinogens with reliable data for a genotoxic mechanism, and human carcinogens. The genotoxic nature of the impurity is demonstrated using published data on the chemical structure. 32
  • 33. CLASS2: “Impurities knownto be genotoxic(mutagenic), but with unknown carcinogenic potential” It includes impurities with demonstrated mutagenicity based on testing of the impurity in conventional genotoxicity tests. CLASS3: “Impurities that havean alerting structure unrelated to thestructureof the API,and of unknowngenotoxic(mutagenic) potential” It includes impurities with functional moieties that can be linked to genotoxicity based on structure These moieties have not been tested as isolated compounds and are identified based on chemistry and using SAR. 33
  • 34. CLASS4: ”Impurities with an alerting structure related to the API and impurities that containan alerting functional moiety that is shared withthe structure of the API” CLASS5: No alerting structure or indicationof genotoxic potential. 34
  • 36. 36