EA201201629A1 - The method of activation of stem cell proliferation and enhancement of their resistance to adverse effects - Google Patents

The method of activation of stem cell proliferation and enhancement of their resistance to adverse effects

Info

Publication number
EA201201629A1
EA201201629A1 EA201201629A EA201201629A EA201201629A1 EA 201201629 A1 EA201201629 A1 EA 201201629A1 EA 201201629 A EA201201629 A EA 201201629A EA 201201629 A EA201201629 A EA 201201629A EA 201201629 A1 EA201201629 A1 EA 201201629A1
Authority
EA
Eurasian Patent Office
Prior art keywords
cells
stem cells
human
increase
magnetic field
Prior art date
Application number
EA201201629A
Other languages
Russian (ru)
Other versions
EA019365B1 (en
Inventor
Елена Владимировна ОРЛОВА
Евгений Ильич МАЕВСКИЙ
Владимир Константинович КЛУБКОВ
Original Assignee
Елена Владимировна ОРЛОВА
Евгений Ильич МАЕВСКИЙ
Владимир Константинович КЛУБКОВ
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Елена Владимировна ОРЛОВА, Евгений Ильич МАЕВСКИЙ, Владимир Константинович КЛУБКОВ filed Critical Елена Владимировна ОРЛОВА
Priority to EA201201629A priority Critical patent/EA019365B1/en
Publication of EA201201629A1 publication Critical patent/EA201201629A1/en
Publication of EA019365B1 publication Critical patent/EA019365B1/en

Links

Landscapes

  • Micro-Organisms Or Cultivation Processes Thereof (AREA)
  • Medicines Containing Material From Animals Or Micro-Organisms (AREA)

Abstract

Изобретение относится к области биотехнологии, медицины, фармакологии, клеточной биологии и биоинженерии и к другим отраслям биологии и медицины, в которых используются стволовые и прогениторные клетки разного уровня дифференцировки и зрелые дифференцированные клетки различных тканей, в частности, для ускоренного создания биоимплантов из донорских или аутоиммунных стволовых клеток человека и/или животных. Техническим результатом, на получение которого направлено изобретение, является активация пролиферации стволовых клеток и повышение устойчивости к неблагоприятным воздействиям стволовых клеток человека и животных, не связанное с негативным воздействием высокочастотного электромагнитного поля. Технический результат достигается с помощью обработки культуры клеток слабым магнитным полем низкой частоты, коллинеарным постоянному магнитному полю Земли. При осуществлении способа наблюдается 1) увеличение количества стволовых клеток человека в культуре после их экспозиции в слабом магнитном поле в течение характерного для данной культуры клеток полупериода удвоения, например за 24 ч количество клеток возрастает более чем в 2, 5 раз (при полном периоде удвоения взятых интактных клеток, равном 48 ч); 2) повышение амплитуды собственного магнитного излучения первичной культуры стволовых клеток, измеряемое магнитометром типа СКВИД, свидетельствует об их возросшей активности; 3) повышение в 2 раза устойчивости стволовых клеток человека относительно развития апоптоза и синхронизация клеток преимущественно в фазе G1 клеточного цикла.The invention relates to the field of biotechnology, medicine, pharmacology, cell biology and bioengineering and to other branches of biology and medicine that use stem and progenitor cells of different levels of differentiation and mature differentiated cells of various tissues, in particular, to accelerate the creation of bioimplants from donor or autoimmune human and / or animal stem cells. The technical result, to which the invention is directed, is the activation of stem cell proliferation and increase of resistance to the adverse effects of human and animal stem cells, not associated with the negative effects of high-frequency electromagnetic fields. The technical result is achieved by treating a cell culture with a weak low-frequency magnetic field collinear with the Earth’s constant magnetic field. When implementing the method, there is 1) an increase in the number of human stem cells in culture after they are exposed in a weak magnetic field during a doubling period characteristic of a given cell culture, for example, in 24 hours, the number of cells increases by more than 2.5 times (with a full doubling period intact cells, equal to 48 h); 2) the increase in the amplitude of the intrinsic magnetic radiation of the primary culture of stem cells, measured by a SQUID type magnetometer, indicates their increased activity; 3) a 2-fold increase in the stability of human stem cells with respect to the development of apoptosis and the synchronization of cells primarily in the G1 phase of the cell cycle.

EA201201629A 2012-10-02 2012-10-02 The method of boosting stem cell proliferation and increasing their resistance to the adverse effects EA019365B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EA201201629A EA019365B1 (en) 2012-10-02 2012-10-02 The method of boosting stem cell proliferation and increasing their resistance to the adverse effects

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EA201201629A EA019365B1 (en) 2012-10-02 2012-10-02 The method of boosting stem cell proliferation and increasing their resistance to the adverse effects

Publications (2)

Publication Number Publication Date
EA201201629A1 true EA201201629A1 (en) 2014-02-28
EA019365B1 EA019365B1 (en) 2014-03-31

Family

ID=50185124

Family Applications (1)

Application Number Title Priority Date Filing Date
EA201201629A EA019365B1 (en) 2012-10-02 2012-10-02 The method of boosting stem cell proliferation and increasing their resistance to the adverse effects

Country Status (1)

Country Link
EA (1) EA019365B1 (en)

Also Published As

Publication number Publication date
EA019365B1 (en) 2014-03-31

Similar Documents

Publication Publication Date Title
Song et al. The time-dependent manner of sinusoidal electromagnetic fields on rat bone marrow mesenchymal stem cells proliferation, differentiation, and mineralization
Cagavi et al. Functional cardiomyocytes derived from Isl1 cardiac progenitors via Bmp4 stimulation
MY189592A (en) Method for producing cerebellar progenitor tissue
MX2016005824A (en) Cell culture method.
AU2012391527A1 (en) Method for activating the proliferation of stem cells and increasing the resistance thereof to adverse effects
WO2014072720A3 (en) Cell differentiation
EA201201629A1 (en) The method of activation of stem cell proliferation and enhancement of their resistance to adverse effects
Koziorowska et al. The impact of electromagnetic fields with frequency of 50 Hz on metabolic activity of cells in vitro
CN109385370A (en) A kind of quick endothelialization device and method thereof of intravascular stent
SG11201807509PA (en) Method for detecting or separating/obtaining circulating tumor cell employing cell proliferation method
KR101347134B1 (en) Device of Directional Property Localization and Control of Magnetic Field for Differentiation and/or Proliferation of Stem Cell
Lîsîi et al. The influence of the pulsed electromagnetic fields on the proliferation and morphology of mesenchymal stem cells
Ventura Tuning stem cell fate with physical energies
Yun et al. Improved procedure for the processing of cultured beef
Arvidsson et al. Research Academy for Young Scientists
Horowitz et al. Bone marrow adipogenesis
Salimi et al. Effect of Extremely Low-Frequency (50 Hz) Field on Proliferation Rate of Human Adipose-Derived Mesenchymal Stem Cells.
Khaki et al. Effects of low density electromegnetic on heart tissue of male Rat
Minasbekyan et al. Impact of MM-Waves on the Different Cellular Levels of Wheat Seedlings.
Chen et al. Study the Impact of the SH-SY5Y Cells under the Magnetic Stimulation with Different Frequency and Duration
Razeghi Yadak et al. EVALUATION COMBONED HORMONE AFFECTING THE ESTABLISHMENT OF KELUSSIA ODORATISSIMA MOZAFF. CELL SUSPENSION CULTURE
Narasimhan et al. An assessment of the application of magnetic fields in the study of in vitro plant cell and tissue cultivation
Tsurkan et al. Impact of terahertz radiation on cells
UA83863U (en) Method for production of chromosome preparations of peripheral blood human lymphocytes
Porozhan et al. Indoleamine-2, 3-Dioxygenase Gene Expression in Cryopreserved Fetal Nerve Cells

Legal Events

Date Code Title Description
MM4A Lapse of a eurasian patent due to non-payment of renewal fees within the time limit in the following designated state(s)

Designated state(s): AM AZ KG TJ TM

MM4A Lapse of a eurasian patent due to non-payment of renewal fees within the time limit in the following designated state(s)

Designated state(s): BY KZ RU