Characteristics of blood plasma proteome changes associated with the hemorrhagic purpura of cosmonauts on the first day after long-term space missions

Author(s):  
LKh Pastushkova ◽  
IN Goncharov ◽  
MI Koloteva ◽  
AG Goncharova ◽  
DN Kashirina ◽  
...  
2020 ◽  
Vol 40 ◽  
pp. S218-S219
Author(s):  
Y. Fedorova ◽  
N. Zakharova ◽  
M. Indeykina ◽  
A. Bugrova ◽  
A. Brzhozovskiy ◽  
...  

2020 ◽  
Vol 91 (6) ◽  
pp. 532-534
Author(s):  
Nicola Mammarella

INTRODUCTION: In recent decades, there has been investigation into the effects of microgravity and microgravity-like environments on cognition and emotion separately. Here we highlight the need of focusing on emotion-cognition interactions as a framework for explaining cognitive performance in space. In particular, by referring to the affective cognition hypothesis, the significant interplay between emotional variables and cognitive processing in space is briefly analyzed. Altogether, this approach shows an interesting pattern of data pointing to a dynamic relation that may be sensitive to microgravity. The importance of examining interactions between emotion and cognition for space performance remains fundamental (e.g., stress-related disorders) and deserves further attention. This approach is ultimately interesting considering the potential effects that microgravity may play on human performance during long-term space missions and on return to Earth.Mammarella N. Towards the affective cognition approach to human performance in space. Aerosp Med Hum Perform. 2020; 91(6):532–534.


2020 ◽  
Vol 54 (5) ◽  
pp. 5-14
Author(s):  
L.Kh. Pastushkova ◽  
◽  
K.S. Kireev ◽  
I.M. Larina ◽  
◽  
...  

The integrated response of the human proteome to re-entry g-loads following long-term space missions was studied in 13 male cosmonauts at the age of 44 ± 6 years. Examination at the landing site discovered local petechial hemorrhages into soft tissues of the back and lower legs. The paper presents a new approach to evaluation of petechia and soft tissue hemorrhages in cosmonauts on return to Earth. Proteomic analysis was performed with the use of LC-MS. Bioinformation analysis was made using Perseus, PubMed, Uniprot and ANDSystem software. Nine out of 19 significantly different (p < 0.05) proteins were related to vascular injuries directly. We described proteins with a primarily protecting effect against endothelial cells apoptosis and augmentation of vascular permeability, proteins that are responsible for blood rheology and proteins antagonistic to the main triggers of ischeamia-reperfusion injuries of the lungs, liver and other parenchymal organs.


2018 ◽  
Vol 16 (1) ◽  
pp. 74-81 ◽  
Author(s):  
Olga I. Kiseleva ◽  
Elena A. Ponomarenko ◽  
Yulia A. Romashova ◽  
Ekaterina V. Poverennaya ◽  
Andrey V. Lisitsa

Background: Liquid chromatography coupled with targeted mass spectrometry underwent rapid technical evolution during last years and has become widely used technology in clinical laboratories. It offers confident specificity and sensitivity superior to those of traditional immunoassays. However, due to controversial reports on reproducibility of SRM measurements, the prospects of clinical appliance of the method are worth discussing. </P><P> Objective: The study was aimed at assessment of capabilities of SRM to achieve a thorough assembly of the human plasma proteome. </P><P> Method: We examined set of 19 human blood plasma samples to measure 100 proteins, including FDA-approved biomarkers, via SRM-assay. </P><P> Results: Out of 100 target proteins 43 proteins were confidently detected in at least two blood plasma sample runs, 36 and 21 proteins were either not detected in any run or inconsistently detected, respectively. Empiric dependences on protein detectability were derived to predict the number of biological samples required to detect with certainty a diagnostically relevant quantum of the human plasma proteome. </P><P> Conclusion: The number of samples exponentially increases with an increase in the number of protein targets, while proportionally decreasing to the logarithm of the limit of detection. Analytical sensitivity and enormous proteome heterogeneity are major bottlenecks of the human proteome exploration.


2020 ◽  
Vol 46 (5) ◽  
pp. 531-539
Author(s):  
I. M. Larina ◽  
A. G. Brzhzovsky ◽  
A. M. Nosovsky ◽  
A. S. Kononikhin ◽  
O. I. Orlov

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Jochen Hinkelbein ◽  
Anton Ahlbäck ◽  
Christine Antwerber ◽  
Lisa Dauth ◽  
James DuCanto ◽  
...  

AbstractIn the next few years, the number of long-term space missions will significantly increase. Providing safe concepts for emergencies including airway management will be a highly challenging task. The aim of the present trial is to compare different airway management devices in simulated microgravity using a free-floating underwater scenario. Five different devices for airway management [laryngeal mask (LM), laryngeal tube (LT), I-GEL, direct laryngoscopy (DL), and video laryngoscopy (VL)] were compared by n = 20 paramedics holding a diving certificate in a randomized cross-over setting both under free-floating conditions in a submerged setting (pool, microgravity) and on ground (normogravity). The primary endpoint was the successful placement of the airway device. The secondary endpoints were the number of attempts and the time to ventilation. A total of 20 paramedics (3 female, 17 male) participated in this study. Success rate was highest for LM and LT and was 100% both during simulated microgravity and normogravity followed by the I-GEL (90% during microgravity and 95% during normogravity). However, the success rate was less for both DL (60% vs. 95%) and VL (20% vs. 60%). Fastest ventilation was performed with the LT both in normogravity (13.7 ± 5.3 s; n = 20) and microgravity (19.5 ± 6.1 s; n = 20). For the comparison of normogravity and microgravity, time to ventilation was shorter for all devices on the ground (normogravity) as compared underwater (microgravity). In the present study, airway management with supraglottic airways and laryngoscopy was shown to be feasible. Concerning the success rate and time to ventilation, the optimum were supraglottic airways (LT, LM, I-GEL) as their placement was faster and associated with a higher success rate. For future space missions, the use of supraglottic airways for airway management seems to be more promising as compared to tracheal intubation by DL or VL.


1989 ◽  
Vol 19 (6-7) ◽  
pp. 473-481
Author(s):  
W. Schwarzott ◽  
G. Reich ◽  
W.-J. Denner
Keyword(s):  

2020 ◽  
pp. 56-57
Author(s):  
V.L. Novak ◽  
B.O. Kondratsky ◽  
S.V. Primak ◽  
O.O. Tarasyuk ◽  
O.M. Tushnitsky ◽  
...  

Objective. Analysis of issues related to the safety and quality of donated blood and its components. Materials and methods. Many years of experience of hematologists, immunologists, isoserologists, morphologists, biochemists in studying the composition, morpho-functional properties of cells and blood plasma, the use of donor blood and its components in clinical practice have made it possible to reconsider method of chemotherapy “multilateral action”. Results and discussion. One of the main axioms of modern transfusion medicine: chemotherapy should be performed strictly according to the indications and those blood components that are needed to ensure the viability of the body. The development of transfusiology has proved, with few exceptions, the inexpediency and even harmfulness of the use of whole donor blood. When using blood and its components, it is necessary to clearly consider extremely important point: the use will be in a planned manner, or in special circumstances. Blood components and blood plasma preparations have unique medicinal properties and there is currently no alternative to them. Each country is recommended to switch to self-sufficiency of blood components and their derivatives, to organize their own production structures that would meet the country’s domestic needs in blood components and preparations. The main components of the ideology of component chemotherapy are: recovery of blood component deficiency is not achieved on a “drop by drop” basis; no need to completely replace the existing deficiency of a cellular or protein component. Transfusions of blood components should be treated as a responsible invasive medical procedure – an operation that can have both immediate and long-term complications and consequences. Unreasonable transfusions of whole canned blood, especially after long periods of storage, are not only ineffective, but often pose a danger. In canned blood, during storage, complex biochemical metabolic processes take place both in cells and in plasma, which ultimately reduce the quality of both the blood itself and the morpho-functional properties of its individual components. Thus, 8-day storage of erythrocytes is the threshold after which erythrocytes begin to adversely affect the patient. Morpho-functional properties of blood components are directly dependent on the shelf life and distance of transportation. During the storage of blood and erythrocyte mass, the level of ATP decreases, on which the elasticity of the erythrocyte membrane depends. The magnitude of the negative electrical charge of the surface membrane of blood cells decreases. The number of prehemolytic forms of erythrocytes and cells that are not capable of reverse transformation increases. Within 1-4 days, leukocytes die, bacteria are released, so after this period, the greatest number of complications and reactions. Leukocytes and platelets form microaggregates at an early stage of storage, which can cause microembolism and distress syndrome. Microclots are formed, which include lysed blood cells and fibrin. The number of microclots increases every day, reaching on day 21 to 100 thousand/ml, so when transfusing it is advisable to use antiplatelet filters, rather than leukocyte. The use of bed leukofilters after a long period of storage of erythromass is not advisable, because there are no leukocytes. In addition, up to 2 % of erythrocytes are lost. The pH decreases, the content of 2,3-DFG, which is responsible for oxygen transport function (decreases by 50 % on the third day), hemolysis increases (up to 200 mg% of free hemoglobin). The concentration of potassium and ammonium ions increases. The recommended threshold for erythrocyte concentrate transfusions is a hemoglobin level of less than 70 g/l in adults and most children. It is important to use fresh-frozen plasma, erythrocyte concentrate and platelets obtained from one donor. Modern blood separators technically provide such an opportunity. Conditionally acceptable number of platelets in patients with injuries is more than 50×109/l cells, and in patients with combined brain injury is 100×109/l. Platelet concentrate obtained by the manual method from 4-5 donors leads to the development of refractoriness. With increasing shelf life of platelets, the functional properties of cells deteriorate significantly. All attempts to create the so-called artificial blood in the 19th century ended at the level of scientific developments. Synthetic and bioengineered cellular components of blood, hematopoietic factors, as well as hematopoietic stem cells are considered promising in the future. One of the possible ways to solve the problem of long-term storage of blood components, especially liquid groups, is cryopreservation of individual cells (erythrocytes) at moderately low (-20; -40; -80 ºС) and ultra-low (-165-196 ºС) temperatures, followed by deglycerization (washing), the use of special solutions for resuspension. With the development of low-temperature electric refrigeration equipment in Ukraine, this has become a reality. Conclusions. Practice has shown that both the blood itself and its components can neither be produced nor extracted as minerals, it can only be shared. All of the above indicates that blood donation is and will remain the main source of cellular components of the blood for at least the next decades.


2016 ◽  
Vol 62 (5) ◽  
pp. 599-602 ◽  
Author(s):  
Y.S. Kisrieva ◽  
N.A. Petushkova ◽  
N.F. Samenkova ◽  
G.P. Kuznetsova ◽  
O.V. Larina ◽  
...  

In the present study, we explored the technology of liquid chromatography-mass spectrometry (HPLC-MS/MS) for the proteome analysis of blood plasma of patients with early chronic cerebral ischemia. Analysis of mass-spectrometer data carried out in automatic mode using the software Progenesis LS-MS. As a result of this study identified 43 proteins. The differences identified in the study group compared with the control in 7 proteins. It was found that in the early stages of chronic cerebral ischemia proteome changes in blood plasma affect proteins related to the immune system, the system for the maintenance of hemostasis and lipid metabolism.


2018 ◽  
Vol 38 (9) ◽  
pp. 1182-1189 ◽  
Author(s):  
Maciej Suski ◽  
Renata Bokiniec ◽  
Monika Szwarc-Duma ◽  
Józef Madej ◽  
Beata Bujak-Giżycka ◽  
...  

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