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Extract from the Register of European Patents

EP About this file: EP3332025

EP3332025 - METHOD FOR DETECTING A NUCLEIC ACID [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  13.11.2020
Database last updated on 14.11.2024
FormerThe patent has been granted
Status updated on  06.12.2019
FormerGrant of patent is intended
Status updated on  02.12.2019
FormerExamination is in progress
Status updated on  11.11.2019
FormerGrant of patent is intended
Status updated on  11.07.2019
FormerExamination is in progress
Status updated on  05.03.2019
FormerRequest for examination was made
Status updated on  11.05.2018
FormerThe international publication has been made
Status updated on  11.02.2017
Most recent event   Tooltip08.07.2022Lapse of the patent in a contracting state
New state(s): MK
published on 10.08.2022  [2022/32]
Applicant(s)For all designated states
GNA Biosolutions GmbH
Am Klopferspitz 19
82152 Planegg / DE
[2018/24]
Inventor(s)01 / STEHR, Joachim
Hechendorfer Str. 12
81477 München / DE
02 / BÜRSGENS, Federico
Adlzreiterstr. 31
80337 München / DE
03 / ULLERICH, Lars
Gabelsbergerstr. 48a
80333 München / DE
04 / OSINKINA, Lidiya
Johann-Clanze Str. 53
81369 München / DE
05 / REBUFFO-SCHEER, Cecilia
Hildachstr. 13d
81245 München / DE
 [2018/24]
Representative(s)Tautz, Raphael Gerhard
Tautz & Schuhmacher Patentanwälte GbR
Nibelungenstraße 84
80639 München / DE
[N/P]
Former [2018/24]DTS Patent- und Rechtsanwälte Schnekenbühl und Partner mbB
Marstallstrasse 8
80539 München / DE
Application number, filing date16750377.019.07.2016
[2018/24]
WO2016EP01259
Priority number, dateDE2015101006903.08.2015         Original published format: DE102015010069
[2018/24]
Filing languageEN
Procedural languageEN
PublicationType: A1 Application with search report
No.:WO2017020996
Date:09.02.2017
Language:EN
[2017/06]
Type: A1 Application with search report 
No.:EP3332025
Date:13.06.2018
Language:EN
The application published by WIPO in one of the EPO official languages on 09.02.2017 takes the place of the publication of the European patent application.
[2018/24]
Type: B1 Patent specification 
No.:EP3332025
Date:08.01.2020
Language:EN
[2020/02]
Search report(s)International search report - published on:EP09.02.2017
ClassificationIPC:C12Q1/6816
[2019/28]
CPC:
C12Q1/6816 (EP,US); C12Q1/6818 (US); C12Q1/686 (US)
C-Set:
C12Q1/6816, C12Q2563/107, C12Q2563/155, C12Q2565/113, C12Q2565/519 (EP,US)
Former IPC [2018/24]C12Q1/68
Designated contracting statesAL,   AT,   BE,   BG,   CH,   CY,   CZ,   DE,   DK,   EE,   ES,   FI,   FR,   GB,   GR,   HR,   HU,   IE,   IS,   IT,   LI,   LT,   LU,   LV,   MC,   MK,   MT,   NL,   NO,   PL,   PT,   RO,   RS,   SE,   SI,   SK,   SM,   TR [2018/24]
Extension statesBANot yet paid
MENot yet paid
Validation statesMANot yet paid
MDNot yet paid
TitleGerman:VERFAHREN ZUM NACHWEIS EINER NUKLEINSÄURE[2018/24]
English:METHOD FOR DETECTING A NUCLEIC ACID[2018/24]
French:PROCÉDÉ POUR DÉTECTER UN ACIDE NUCLÉIQUE[2018/24]
Entry into regional phase26.02.2018National basic fee paid 
26.02.2018Designation fee(s) paid 
26.02.2018Examination fee paid 
Examination procedure26.02.2018Examination requested  [2018/24]
26.02.2018Date on which the examining division has become responsible
08.10.2018Amendment by applicant (claims and/or description)
07.03.2019Despatch of a communication from the examining division (Time limit: M02)
30.04.2019Reply to a communication from the examining division
11.07.2019Communication of intention to grant the patent
07.11.2019Disapproval of the communication of intention to grant the patent by the applicant or resumption of examination proceedings by the EPO
07.11.2019Fee for grant paid
07.11.2019Fee for publishing/printing paid
02.12.2019Information about intention to grant a patent
02.12.2019Receipt of the translation of the claim(s)
Opposition(s)09.10.2020No opposition filed within time limit [2020/51]
Fees paidRenewal fee
26.02.2018Renewal fee patent year 03
18.06.2019Renewal fee patent year 04
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See the Register of the Unified Patent Court for opt-out data
Responsibility for the accuracy, completeness or quality of the data displayed under the link provided lies entirely with the Unified Patent Court.
Lapses during opposition  TooltipHU19.07.2016
AL08.01.2020
AT08.01.2020
CY08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
MC08.01.2020
MK08.01.2020
MT08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
TR08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
IE19.07.2020
LU19.07.2020
BE31.07.2020
CH31.07.2020
LI31.07.2020
[2022/31]
Former [2022/30]HU19.07.2016
AL08.01.2020
AT08.01.2020
CY08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
MC08.01.2020
MT08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
TR08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
IE19.07.2020
LU19.07.2020
BE31.07.2020
CH31.07.2020
LI31.07.2020
Former [2022/27]HU19.07.2016
AT08.01.2020
CY08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
MC08.01.2020
MT08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
TR08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
IE19.07.2020
LU19.07.2020
BE31.07.2020
CH31.07.2020
LI31.07.2020
Former [2021/37]AT08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
MC08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
IE19.07.2020
LU19.07.2020
BE31.07.2020
CH31.07.2020
LI31.07.2020
Former [2021/24]AT08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
MC08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
LU19.07.2020
BE31.07.2020
CH31.07.2020
LI31.07.2020
Former [2021/20]AT08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
MC08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
LU19.07.2020
CH31.07.2020
LI31.07.2020
Former [2021/13]AT08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
MC08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
Former [2021/10]AT08.01.2020
CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
IT08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
PL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SI08.01.2020
SK08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
Former [2020/50]CZ08.01.2020
DK08.01.2020
EE08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SK08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
Former [2020/49]CZ08.01.2020
DK08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SK08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
Former [2020/48]DK08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RO08.01.2020
RS08.01.2020
SE08.01.2020
SM08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
Former [2020/47]DK08.01.2020
ES08.01.2020
FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RS08.01.2020
SE08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
Former [2020/40]FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RS08.01.2020
SE08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
IS08.05.2020
PT31.05.2020
Former [2020/39]FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RS08.01.2020
SE08.01.2020
BG08.04.2020
NO08.04.2020
GR09.04.2020
PT31.05.2020
Former [2020/38]FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RS08.01.2020
SE08.01.2020
NO08.04.2020
GR09.04.2020
PT31.05.2020
Former [2020/37]FI08.01.2020
HR08.01.2020
LT08.01.2020
LV08.01.2020
NL08.01.2020
RS08.01.2020
SE08.01.2020
NO08.04.2020
PT31.05.2020
Former [2020/35]FI08.01.2020
LT08.01.2020
NL08.01.2020
NO08.04.2020
Former [2020/33]NL08.01.2020
Cited inInternational search[XAI]US2003059850  (EVANS DAVID MARK [US]) [X] 1-7,12,13 * paragraphs [0009] - [0011] - [0068]; figure 5; claims 1-9,12-15,22,25-27 * [A] 9,10 [I] 8,11,14-17;
 [A]US2010075335  (RAMOS FRANCO TAVARES JOSE RICARDO [PT], et al) [A] 1-17 * figures 1,2; claims 1-6 *;
 [A]WO2011160887  (SIEMENS HEALTHCARE DIAGNOSTICS [US], et al) [A] 1-17 * pages 5-8,12; claims 1-8 *;
 [A]US2015017258  (AZZAZY HASSAN MOHAMED EL-SAID [EG], et al) [A] 1-17 * figure 1; claims 1,2,3,23 *;
 [I]  - HAO WANG ET AL, "Gold Nanoparticle-Based Colorimetric and "Turn-On" Fluorescent Probe for Mercury(II) Ions in Aqueous Solution", ANALYTICAL CHEMISTRY, US, (20081201), vol. 80, no. 23, doi:10.1021/ac801382k, ISSN 0003-2700, pages 9021 - 9028, XP055312594 [I] 17 * page 9028, column 2; figure 1 *

DOI:   http://dx.doi.org/10.1021/ac801382k
 [AD]  - RON GILL ET AL, "Fast, single-step, and surfactant-free oligonucleotide modification of gold nanoparticles using DNA with a positively charged tail", CHEMICAL COMMUNICATIONS - CHEMCOM., (20131011), vol. 49, no. 97, doi:10.1039/c3cc47138a, ISSN 1359-7345, pages 11400 - 11402, XP055303513 [AD] 1-17 * page 11402, column 1, paragraph 3 - column 2, paragraph 1; figures 1,4 *

DOI:   http://dx.doi.org/10.1039/c3cc47138a
 [A]  - ROEJAREK KANJANAWARUT AND XIAODI SU, "Colorimetric Detection of DNA Using Unmodified Metallic Nanoparticles and Peptide Nucleic Acid Probes", ANALYTICAL CHEMISTRY, AMERICAN CHEMICAL SOCIETY, US, vol. 81, no. 15, doi:10.1021/AC900525K, ISSN 0003-2700, (20090801), pages 6122 - 6129, (20090702), XP008154314 [A] 1-17 * Scheme 1; page 6124 - page 6125 *

DOI:   http://dx.doi.org/10.1021/ac900525k
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