METHOD FOR HUMAN GENOTYPE DETERMINATION BY MUTATION IVS14+1GA B 14 INTRON OF DPYD GENE Russian patent published in 2019 - IPC C12N15/00 

Abstract RU 2709710 C1

FIELD: biotechnology.

SUBSTANCE: invention represents a method consisting in application of specific oligonucleotide sequences with registration of results of CPR in real time using method of analysis of curves of melting (HRM). Reaction mixtures include specific primers, as well as an adapted buffer for Taq-polymerase, which increases sensitivity of the method.

EFFECT: invention makes it possible to reduce costs for molecular-genetic research, to increase its availability and accuracy of testing due to use of original oligonucleotide sequences and optimized reaction mixtures.

1 cl, 2 ex

Similar patents RU2709710C1

Title Year Author Number
METHOD FOR HUMAN GENOTYPE DETERMINATION BY MUTATION c.496A>G IN 6 EXON OF DPYD GENE 2019
  • Lyubchenko Lyudmila Nikolaevna
  • Semyanikhina Aleksandra Vladimirovna
  • Pospekhova Natalya Ivanovna
  • Golovina Darya Andreevna
  • Safronova Vera Mikhajlovna
  • Mamedli Zaman Zaur Ogly
  • Meshcheryakov Andrej Albertovich
  • Filippova Margarita Gennadevna
  • Stilidi Ivan Sokratovich
RU2701375C1
METHOD FOR HUMAN GENOTYPE DETERMINATION BY MUTATION c.1236GA IN 11 EXON OF DPYD GENE 2019
  • Lyubchenko Lyudmila Nikolaevna
  • Semyanikhina Aleksandra Vladimirovna
  • Pospekhova Natalya Ivanovna
  • Golovina Darya Andreevna
  • Safronova Vera Mikhajlovna
  • Mamedli Zaman Zaur Ogly
  • Meshcheryakov Andrej Albertovich
  • Filippova Margarita Gennadevna
  • Stilidi Ivan Sokratovich
RU2709645C1
METHOD FOR DIAGNOSING VARIANT SOPH c.5741G>A IN NBAS GENE 2024
  • Zhozhikov Leonid Ruslanovich
  • Vasilev Filipp Filippovich
  • Danilova Anastasiia Lukichna
  • Gurev Anatolii Arsenovich
  • Maksimova Anastasiia Anatolevna
  • Sukhomiasova Aitalina Lukichna
  • Maksimova Nadezhda Romanovna
RU2819985C1
METHOD FOR HUMAN GENOTYPE DETERMINATION BY POLYMORPHISM UGT1A1*6/*28 IN PROMOTER REGION OF UGT1A1 GENE 2019
  • Lyubchenko Lyudmila Nikolaevna
  • Semyanikhina Aleksandra Vladimirovna
  • Pospekhova Natalya Ivanovna
  • Golovina Darya Andreevna
  • Safronova Vera Mikhajlovna
  • Mamedli Zaman Zaur Ogly
  • Meshcheryakov Andrej Albertovich
  • Filippova Margarita Gennadevna
  • Stilidi Ivan Sokratovich
RU2703805C1
SET OF SEQUENCES OF OLIGONUCLEOTIDES FOR DIAGNOSTICS OF GERMINAL MUTATIONS IN GENE RET, ASSOCIATED WITH GENETIC PREDISPOSITION TO CANCER OF THYROID 2013
  • Ljubchenko Ljudmila Nikolaevna
  • Nasedkina Tat'Jana Vasil'Evna
  • Amosenko Faina Arkad'Evna
  • Abramov Ivan Sergeevich
  • Filippova Margarita Gennad'Evna
RU2524433C1
METHOD OF DIAGNOSING MUCOPOLYSACCHARIDOSIS-PLUS SYNDROME 2022
  • Vasilev Filipp Filippovich
  • Maksimova Nadezhda Romanovna
  • Sukhomiasova Aitalina Lukichna
  • Novgorodova Saiyna Nikolaevna
  • Gurinova Elizaveta Egorovna
  • Stepanova Svetlana Kimovna
RU2798695C1
METHOD OF DETERMINING POLYMORPHIC MARKERS IN CYP2C19 AND CYP2D6 GENES FOR DETERMINING INDIVIDUAL SENSITIVITY TO ANTIDEPRESSANTS 2018
  • Ikonnikova Anna Yurevna
  • Pozhitnova Viktoriya Olegovna
  • Nasedkina Tatyana Vasilevna
  • Zasedatelev Aleksandr Sergeevich
RU2716589C1
METHOD FOR ANALYSIS OF SOMATIC MUTATIONS IN PI3K GENE USING LNA-BLOCKING MULTIPLEX PCR AND SUBSEQUENT HYBRIDISATION WITH OLIGONUCLEOTIDE BIOLOGICAL MICROCHIP (BIOCHIP) 2013
  • Barskij Viktor Evgen'Evich
  • Nasedkina Tat'Jana Vasil'Evna
  • Emel'Janova Marina Aleksandrovna
  • Abramov Ivan Sergeevich
  • Pan'Kov Sergej Vasil'Evich
RU2549682C1
METHOD FOR IDENTIFYING MUTATION IN THE FIFTH EXON OF THE FAD3A GENE LEADING TO DECREASE IN THE CONTENT OF LINOLENIC ACID IN FLAXSEED OIL 2022
  • Dmitriev Aleksej Aleksandrovich
  • Rozhmina Tatyana Aleksandrovna
  • Povkhova Lyubov Vitalevna
  • Frykin Roman Igorevich
  • Pushkova Elena Nikolaevna
  • Novakovskij Roman Olegovich
  • Dvoryaninova Ekaterina Mikhajlovna
  • Zhuchenko Aleksandr Aleksandrovich
  • Melnikova Nataliya Vladimirovna
RU2806563C1
METHOD FOR IDENTIFYING MUTATION IN THE SECOND EXON OF THE FAD3B GENE LEADING TO DECREASE IN THE CONTENT OF LINOLENIC ACID IN FLAXSEED OIL 2022
  • Dmitriev Aleksej Aleksandrovich
  • Rozhmina Tatyana Aleksandrovna
  • Povkhova Lyubov Vitalevna
  • Frykin Roman Igorevich
  • Pushkova Elena Nikolaevna
  • Novakovskij Roman Olegovich
  • Dvoryaninova Ekaterina Mikhajlovna
  • Zhuchenko Aleksandr Aleksandrovich
  • Melnikova Nataliya Vladimirovna
RU2806561C1

RU 2 709 710 C1

Authors

Lyubchenko Lyudmila Nikolaevna

Stilidi Ivan Sokratovich

Mamedli Zaman Zaur Ogly

Pospekhova Natalya Ivanovna

Semyanikhina Aleksandra Vladimirovna

Filippova Margarita Gennadevna

Chaplygin Evgenij Yurevich

Dates

2019-12-19Published

2019-03-26Filed