| Application number | Title of the application | Filing Date | Status |
|---|
Array
(
[id] => 2741768
[patent_doc_number] => 05028531
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1991-07-02
[patent_title] => 'IGF-I fusion proteins; protection of IGF-I from degradation by host cell; and processes for the production thereof'
[patent_app_type] => 1
[patent_app_number] => 7/215826
[patent_app_country] => US
[patent_app_date] => 1988-07-06
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 27
[patent_figures_cnt] => 16
[patent_no_of_words] => 15664
[patent_no_of_claims] => 8
[patent_no_of_ind_claims] => 4
[patent_words_short_claim] => 22
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/028/05028531.pdf
[firstpage_image] =>[orig_patent_app_number] => 215826
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/215826 | IGF-I fusion proteins; protection of IGF-I from degradation by host cell; and processes for the production thereof | Jul 5, 1988 | Issued |
Array
(
[id] => 2747575
[patent_doc_number] => 05030570
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1991-07-09
[patent_title] => 'DNA encoding and method of expressing human monoamine oxidase type A'
[patent_app_type] => 1
[patent_app_number] => 7/213544
[patent_app_country] => US
[patent_app_date] => 1988-06-30
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 4
[patent_figures_cnt] => 4
[patent_no_of_words] => 5601
[patent_no_of_claims] => 12
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 12
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/030/05030570.pdf
[firstpage_image] =>[orig_patent_app_number] => 213544
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/213544 | DNA encoding and method of expressing human monoamine oxidase type A | Jun 29, 1988 | Issued |
| 07/209530 | PRODUCTION OF GLUCOSE OXIDASE IN RECOMBINANT SYSTEMS | Jun 20, 1988 | Abandoned |
| 07/206470 | RECOMBINANT TECHNIQUES FOR PRODUCTION OF BRAIN NATRIURETIC PEPTIDE | Jun 13, 1988 | Abandoned |
Array
(
[id] => 2888343
[patent_doc_number] => 05238916
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1993-08-24
[patent_title] => 'Oncogene encoded polypeptide having growth factor activity and methods of use thereof'
[patent_app_type] => 1
[patent_app_number] => 7/199933
[patent_app_country] => US
[patent_app_date] => 1988-05-27
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 23
[patent_figures_cnt] => 10
[patent_no_of_words] => 8837
[patent_no_of_claims] => 6
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 17
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/238/05238916.pdf
[firstpage_image] =>[orig_patent_app_number] => 199933
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/199933 | Oncogene encoded polypeptide having growth factor activity and methods of use thereof | May 26, 1988 | Issued |
Array
(
[id] => 2792699
[patent_doc_number] => 05143836
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1992-09-01
[patent_title] => 'Plasmids for expression of human superoxide dismutase (SOD) analogs containing lambda pl promoter with engineered restriction site for substituting ribosomal binding sites and methods of use thereof'
[patent_app_type] => 1
[patent_app_number] => 7/194424
[patent_app_country] => US
[patent_app_date] => 1988-05-13
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 24
[patent_figures_cnt] => 24
[patent_no_of_words] => 20275
[patent_no_of_claims] => 15
[patent_no_of_ind_claims] => 1
[patent_words_short_claim] => 365
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/143/05143836.pdf
[firstpage_image] =>[orig_patent_app_number] => 194424
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/194424 | Plasmids for expression of human superoxide dismutase (SOD) analogs containing lambda pl promoter with engineered restriction site for substituting ribosomal binding sites and methods of use thereof | May 12, 1988 | Issued |
Array
(
[id] => 2668119
[patent_doc_number] => 05070020
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1991-12-03
[patent_title] => 'Recombinant DNA expression vectors and DNA compounds that encode deacetoxycephalosporin C synthetase'
[patent_app_type] => 1
[patent_app_number] => 7/192273
[patent_app_country] => US
[patent_app_date] => 1988-05-09
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 16
[patent_figures_cnt] => 16
[patent_no_of_words] => 14819
[patent_no_of_claims] => 50
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 15
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/070/05070020.pdf
[firstpage_image] =>[orig_patent_app_number] => 192273
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/192273 | Recombinant DNA expression vectors and DNA compounds that encode deacetoxycephalosporin C synthetase | May 8, 1988 | Issued |
Array
(
[id] => 2850423
[patent_doc_number] => 05126266
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1992-06-30
[patent_title] => 'Xylose-fermenting yeast mutants'
[patent_app_type] => 1
[patent_app_number] => 7/188871
[patent_app_country] => US
[patent_app_date] => 1988-05-02
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 1679
[patent_no_of_claims] => 15
[patent_no_of_ind_claims] => 1
[patent_words_short_claim] => 168
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/126/05126266.pdf
[firstpage_image] =>[orig_patent_app_number] => 188871
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/188871 | Xylose-fermenting yeast mutants | May 1, 1988 | Issued |
| 07/186054 | RECOMBINANT AVIPOX VIRUS | Apr 24, 1988 | Abandoned |
Array
(
[id] => 2655957
[patent_doc_number] => 04971908
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1990-11-20
[patent_title] => 'Glyphosate-tolerant 5-enolpyruvyl-3-phosphoshikimate synthase'
[patent_app_type] => 1
[patent_app_number] => 7/179245
[patent_app_country] => US
[patent_app_date] => 1988-04-22
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 14
[patent_figures_cnt] => 12
[patent_no_of_words] => 18488
[patent_no_of_claims] => 15
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 36
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/04/971/04971908.pdf
[firstpage_image] =>[orig_patent_app_number] => 179245
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/179245 | Glyphosate-tolerant 5-enolpyruvyl-3-phosphoshikimate synthase | Apr 21, 1988 | Issued |
| 07/168959 | RECOMBINANT AVIPOXVIRUS | Mar 15, 1988 | Abandoned |
Array
(
[id] => 2769656
[patent_doc_number] => 04985363
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1991-01-15
[patent_title] => 'Microorganism capable of growing in 50% or more organic solvent'
[patent_app_type] => 1
[patent_app_number] => 7/163576
[patent_app_country] => US
[patent_app_date] => 1988-03-03
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 3558
[patent_no_of_claims] => 4
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 17
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/04/985/04985363.pdf
[firstpage_image] =>[orig_patent_app_number] => 163576
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/163576 | Microorganism capable of growing in 50% or more organic solvent | Mar 2, 1988 | Issued |
Array
(
[id] => 2667788
[patent_doc_number] => 05026544
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1991-06-25
[patent_title] => 'Methods and compositions for inhibiting the growth of neoplastic cells'
[patent_app_type] => 1
[patent_app_number] => 7/156704
[patent_app_country] => US
[patent_app_date] => 1988-02-16
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 1
[patent_figures_cnt] => 2
[patent_no_of_words] => 5182
[patent_no_of_claims] => 14
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 15
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/026/05026544.pdf
[firstpage_image] =>[orig_patent_app_number] => 156704
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/156704 | Methods and compositions for inhibiting the growth of neoplastic cells | Feb 15, 1988 | Issued |
Array
(
[id] => 2781120
[patent_doc_number] => 05087568
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1992-02-11
[patent_title] => 'Process for preparation of superoxide dismutase'
[patent_app_type] => 1
[patent_app_number] => 7/155157
[patent_app_country] => US
[patent_app_date] => 1988-02-11
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 2
[patent_figures_cnt] => 2
[patent_no_of_words] => 4690
[patent_no_of_claims] => 3
[patent_no_of_ind_claims] => 1
[patent_words_short_claim] => 70
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/087/05087568.pdf
[firstpage_image] =>[orig_patent_app_number] => 155157
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/155157 | Process for preparation of superoxide dismutase | Feb 10, 1988 | Issued |
Array
(
[id] => 2742953
[patent_doc_number] => 05011776
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1991-04-30
[patent_title] => 'Shuttle vector, utilizing the E. coli asparagine synthetase gene, and capable of dominant transfection and amplification in animal cells'
[patent_app_type] => 1
[patent_app_number] => 7/154912
[patent_app_country] => US
[patent_app_date] => 1988-02-11
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 5
[patent_figures_cnt] => 5
[patent_no_of_words] => 3840
[patent_no_of_claims] => 1
[patent_no_of_ind_claims] => 1
[patent_words_short_claim] => 146
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/011/05011776.pdf
[firstpage_image] =>[orig_patent_app_number] => 154912
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/154912 | Shuttle vector, utilizing the E. coli asparagine synthetase gene, and capable of dominant transfection and amplification in animal cells | Feb 10, 1988 | Issued |
| 07/117071 | RECOMBINANT DNA SEQUENCES, VECTORS CONTAINING THEM AND METHOD FOR THE USE THEREOF | Oct 22, 1987 | Abandoned |
Array
(
[id] => 2669647
[patent_doc_number] => 05026645
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1991-06-25
[patent_title] => 'RNA polymerase gene, microorganism having said gene and the production of RNA polymerase by the use of said microorganism'
[patent_app_type] => 1
[patent_app_number] => 7/109615
[patent_app_country] => US
[patent_app_date] => 1987-10-19
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 8
[patent_figures_cnt] => 9
[patent_no_of_words] => 3752
[patent_no_of_claims] => 3
[patent_no_of_ind_claims] => 3
[patent_words_short_claim] => 14
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/026/05026645.pdf
[firstpage_image] =>[orig_patent_app_number] => 109615
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/109615 | RNA polymerase gene, microorganism having said gene and the production of RNA polymerase by the use of said microorganism | Oct 18, 1987 | Issued |
| 07/104316 | BAR1 SECRETION SIGNAL | Oct 1, 1987 | Abandoned |
Array
(
[id] => 2865979
[patent_doc_number] => 05096823
[patent_country] => US
[patent_kind] => NA
[patent_issue_date] => 1992-03-17
[patent_title] => 'Cloning of the bioA, bioD, bioF, bioC and BioH genes of bacillus spraericus, vectors and transformed cells'
[patent_app_type] => 1
[patent_app_number] => 7/102740
[patent_app_country] => US
[patent_app_date] => 1987-09-30
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 38
[patent_figures_cnt] => 41
[patent_no_of_words] => 6857
[patent_no_of_claims] => 21
[patent_no_of_ind_claims] => 4
[patent_words_short_claim] => 9
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/05/096/05096823.pdf
[firstpage_image] =>[orig_patent_app_number] => 102740
[rel_patent_id] =>[rel_patent_doc_number] =>) 07/102740 | Cloning of the bioA, bioD, bioF, bioC and BioH genes of bacillus spraericus, vectors and transformed cells | Sep 29, 1987 | Issued |
| 07/102439 | BACILLUS SUBTILIS STRAIN WHOSE EXTRACELLULAR PROTEASE ACTIVITIES ARE REDUCED, METHOD FOR OBTAINING THE STRAIN AND METHOD FOR SECRETING PROTEINS BY USING THE STRAIN | Sep 28, 1987 | Abandoned |