Insulin Opportunity: Technical Presentation
Insulin Opportunity: Technical Presentation
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Patent Portfolio
There is a solid IP Portfolio for the regular insulin process Patent Estate
Intellectual Property Portfolio
Title Katten Ref. Application /
Patent # Filing/ Issue Date Application Data/ '
Status
hGh and Methods for
Preparation • 343445-00006 • 61.305.451 • 2/17/2010 • Provisional App.; To
convert on 2/17/2011
Insulin Production Methods and
Pro-Insulin Constructs • 343445-00005 • 7,790.677 •
• 5/20/2007(FD)
9/7/2010 (ID) •
• Issued
1st Maintenance Fee
due 3/7/2014
Insulin Production Methods and
Pro-Insulin Constructs • 343445-00013 • 12/658,852 • 2/16/2010 •
• Continuation of
11/715.731
Published 8/19/2010
Improved Insulin Aspart Analog
Preparations and Methods of
Manufacturing and Formulating
Same • 343445-00014 • TBD • In progress • In preparation
Improved Insulin Glargine
Analog Preparations and
Methods of Manufacturing and
Formulating Same • 343445-00016 • TBD • In progress • In preparation
Liquid Insulin Compositions
and Improved Methods of
Manufacturing Liquid and
Crystalline Insulin Preparations
and Formulations • 1343445-00015 • TBD • In progress • In preparation
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Physiochemical Properties Technical Data
Our generic meets the Doctrine of Equivalence for USP Grade Insulin-Humulin
Physiochemical Composition
Physiochemical Property Value
Amino acid sequence
Amino acid composition
Peptide map
Disulfide bridges
Molecular weight
Isoform pattern
Electrophoretic patterns
Liquid chromatographic patterns
Potency ♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
♦ Equivalent to insulin hormone, USP
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Insulin Specifications Technical Data
As the data shows, our generic has specifications that are equivalent to USP Grade
Insulin
Component Specifications
Attribute Analytical Method Acceptance Criteria
Appearance ♦ Visual ♦ Clear, colorless solution with no visible particulates
Identity ♦ RP-HPLC USP ♦ Retention time (Rd of the major peak in the chromatogram of the
assay preparation corresponds to that in the chromatogram of
the standard preparation, as obtained in the Assay
Bacterial Endotoxins ♦ USP <85> ♦ NMT 80 USP Endotoxin Units/100 Insulin Human Units
Sterility ♦ USP <71> ♦ Meets requirements when tested as directed for Membrane
Filtration under Test for Sterility of the Products to be Examined
Particulate Matter ♦ USP <788> ♦ Meets requirements for small volume injections
Limit of High Molecular
Weight Proteins ♦ RP-HPLC USP ♦ NMT.1.7%
pH ♦ USP <791> ♦ 7.0 to 7.8, determined potentiometrically
Zinc ♦ USP<591> ♦ 10 to 40 ug/100 USP Insulin Human Units
Assay ♦ RP-HPLC USP ♦ 3.30 to 3.64 mg/mL
Potency ♦ 95.0% to 105.0% of label claim expressed in USP Insulin Human
Units/mL
Degradation Products ♦
♦
♦ Report all individual impurities >0.1% - Report Result
Indentify all individual impurities >0.5% - Report Result
Total degradation products: All peaks above reporting threshold
<=3.0%
Other ♦ USP<1> ♦ Meets requirements for injections
APET ♦ USP<51> ♦
♦ Bacterix NLT 1.O log reduction from the initial calculated count at
7 days, NLT 3.0 log reduction from the initial count at 14 days,
and no increase from the 14 days' count at 28 days
Yeast and molds: no increase from the initial calculated count at
7, 14, and 28 days
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HPLC Results Technical Data
As the graphs illustrate, our generic is able to produce higher purity insulin with less
polymeric forms than USP Grade Insulin
3 QCS-09-155 Filtered - Our Commercial Grade
nsulin 16 Standard A - USP Grade Insulin
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R & D Insulin Drug Substances Technical Data
As the related substances analysis shows, our generic has the same peaks as USP
Insulin, however, it has fewer contaminants
Related Substances
R & D Insulin Drug Substances
Identity Retention Time F'eak Area Relative Area %
Insulin • 21.19 • 884.701 • 99.11
A5/B4 Desamido •
• 22.96
26.3 •
• 0.842
0.508 •
• 0.11
0.07
A21 Desamido •
• 27.29
28.65 •
• 0.808
0.360 •
• 0.10
0.05
Multimer • 46.23 • 2.575 • 0.29
Insulin Human USP Standard
Identity Retention Time Peak Area Relative Area %
Insulin • 21.06 • 1275.883 • 98.35
A5/B4 Desamido • 23.29 • 3.084 • 0.23
• 25.36 • 0.330 • 0.05
A21 Desamido • 27.26 • 5.746 • 0.49
• 31.93 • 0.350 • 0.05
• 37.87 • 0.330 • 0.05
Multimer • 45.60 • 1.440 • 0.14
Multimer • 46.21 • 1.086 • 0.11
Multimer • 46.75 • 1.155 • 0.13
Multimer • 47.07 • 0.383 • 0.06
Multimer • 47.89 • 0.360 • 0.05
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Peptide Mapping Technical Data
As the data shows, the amino acid bonds in our generic are localized in the identical
place as the USP Standard Reference
Non-Reduced Peptide Map Using V8 Protease
Peptide Fragments
Fragment
Number USP Reference Standard R&D insulin
I Achain gln-eys-cys-thr-scr-ile-eys-ser-
Ieu-tyr-gln-leu-glu
Banda phe-val-asn-gIn-his-lcu-eys-gly-
ser-his-leu-val-glu Achain gin-eys-cys-thr-ser-ile-cys-ser-
leu-tyr-gln-leu-glu
Bchain phe-val-asn-gln-his-leu-cys-gly-
ser-his-leu-val-glu
III Achain asn-tyr-cys-asn
Bchain ala-leu-tyr-leu-val-cys-gly-glu Achain asn-tyr-cys-asn
Bchain ata-leu-tyr-leu-val-cys-gly-glu
III Arg-gly-phc-phe-tyr-thr-pro-lys-thr Arg-gly-phe-phe-ty -r-thr-pro-lys-thr
IV Gly-ile-val-glu Gly-i le-val-ulu
Reduced Peptide Map Using V8 Protease
Peptide Fragments
Fragment
Number USP Reference Standard R&D Insulin
1 Gly-ile-val-glu Gly-ile-val-gl u
II Gin-cys-eys-thr-ser-ile-cys-ser-leu-tyr-gln-
leu-glu GIncys-cys-tiu --ser-ile-cys-ser-leu-tyr-gln-
leu-giu
III Asn-tyr-cys-asn Asn-tyr-cys-asn
I V Phe-val-asn-gln-his-leu-cys-gly-ser-his-
I eu-val-gl u Phe-val-asn-gln-his-leu-eys-gl y-ser-his-I eu-
val-gl u
V A la-leu-tvr-leu-val-cys-gly-glu A la-leu-tyr-leu-val-eys-gly-glu
A rg-gly-phe-phe-tyr-thr-pro-lys-thr VI A rg-gly-phe-phe-tyr-thr-pro-lys-thr
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Electrophorectic Patterns Technical Data
As the graphs illustrate, our generic has the identical electrophoretic patterns as USP
grade insulin
Figure 3.2.56: Non-Reduced Gel (run on Nupage 4-12% BD TrIs gel with a MES
SDS Running Buffer)
SNP
Human Insulin
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marker LISP SID
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8 Figure 325.7: Reduced Gel (run on Nupage 4-12% Bis-iris gel with a MES SDS
Running Buffer)
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📷 Images in this document (8 detected; 6 largest described)
AI-generated factual descriptions of embedded images (llava:13b). These are searchable across the corpus.
[Image 1] The image displays a slide from a presentation, specifically page 12, with the title "HC HPLC Results." The slide contains two graphs, which appear to be related to the results of a High-Performance Liquid Chromatography (HPLC) test. The graphs are labeled "USP 1015" and "USP 1016," suggesting they are related to specific United States Pharmacopeia standards. The graphs show peaks and valleys, whi
[Image 2] The image shows a slide from a presentation, specifically titled "Peptide Mapping." The slide contains a table with various columns, including "Peptide," "Peptide ID," "Peptide Sequence," "Peptide Molecular Weight," and "Peptide Molecular Formula." The table lists several peptides with their corresponding identifiers, sequences, weights, and formulas. The slide is part of a larger presentation, as
[Image 3] The image displays a slide from a presentation, specifically focusing on "Electrophoretic Patterns." The slide contains two graphs, each representing a different type of electrophoretic pattern. The graphs are labeled "Type I" and "Type II," and they are accompanied by a brief text that explains the significance of these patterns in the context of USP grade diabetic urine. The text is too small to
[Image 4] The image displays a slide from a presentation, titled "Insulin specifications." The slide is structured with a table that lists various attributes of insulin, such as "Purity," "Potency," "Stability," and "Safety." Each attribute has a corresponding set of specifications or characteristics, such as "USP Grade," "Analytical Method," "Acceptance Criteria," and "Quality Control." The slide is part o
[Image 5] The image shows a slide from a presentation, specifically focusing on "Physical properties" for USP grade insulin. The slide lists various physical properties such as pH, potency, and other chemical and physical characteristics of insulin. The slide is part of a larger presentation, as indicated by the "17" in the bottom right corner, suggesting it is one of many slides in the presentation. The sl
[Image 6] The image shows a slide from a presentation, titled "Patent Portfolio." The slide lists various patents with their respective titles, application numbers, filing dates, and statuses. The patents are related to medical and healthcare fields, as indicated by the titles such as "Regular Insulin Process" and "Regular Insulin Process." The slide also includes a logo at the bottom right corner, which ap