Anemia in patients with necrotizing soft tissue infections, pathogenetic and prognostic value
Natalia B. Serebryanaya , Ivan V. Avdoshin , Oleg B. Chernyshev , Mikhail A. Shatil , Natalia A. Bubnova
Medical academic journal ›› 2023, Vol. 23 ›› Issue (1) : 95 -105.
Anemia in patients with necrotizing soft tissue infections, pathogenetic and prognostic value
BACKGROUND: Necrotizing soft tissue infection is one of the most severe life-threatening surgical infections with a very high mortality rate. A characteristic feature of necrotizing soft tissue infection is the rapid development of anemia, the causes and prognostic value of which are not well understood.
AIM: The purpose of this study was to investigate the timing, development, and dynamics of anemia in generalized forms of necrotizing infection to identify clinical and bacteriological factors associated with its development.
MATERIALS AND METHODS: 129 patients with necrotizing soft tissue infection who were treated from 09.2015 to 12.2019 in the department of purulent-septic surgery at Hospital of the Holy Great Martyr George were examined. All patients received surgical treatment, laboratory hematological, biochemical examination, bacteriological examination of blood, and wound discharge. Overall, 22 patients suffered from systemic inflammatory response syndrome, 63 patients with sepsis, and 41 patients with septic shock.
RESULTS: The Counts of hemoglobin and red blood cells in necrotizing soft tissue infection patients with sepsis revealed the anemia already during the first day and then from the 15th day of the disease, the red blood cell values began to rise in the patients who survived. However, continued to decrease in the deceased patients. In the group of deceased sepsis patients from day 3 of hospitalization, correlations between red blood cells count and potassium ion concentration (r = –0.318; p < 0.01), and red blood cells count and total plasma protein (r = 0.30; p < 0.01) became significant. Among patients with hemoglobin <110 g/L on the day of hospitalization, 36 of 67 (53.7%) patients died, and among those with hemoglobin levels >110 g/L, 20 of 62 (32.2%) patients died (p = 0.004). The highest lethality was registered patients who suffered from wound discharge Klebsiella pneumoniae (12 of 18, 66.7%) or anaerobic infection, but marked anemia was noted only in patients with anaerobic infection (Proteus spp., Clostridium spp., Bacteroide spp.) (8 out of 12, 66.7%).
CONCLUSIONS: We attribute the development of anemia in sepsis patients to the destruction of red blood cells. The type of infectious agent influences both the mortality rate and the degree of anemia, which is probably related to the ability of bacteria to destroy red blood cells.
necrotizing infection / sepsis / anemia / red blood cells / hemoglobin / anaerobic infection
| [1] |
Grinev MV, Grinev KM. Nekrotiziruyushchii fastsiit. Saint Petersburg: Gippokrat, 2008. 120 p. (In Russ.) |
| [2] |
Гринев М.В., Гринев К.М. Некротизирующий фасциит. Санкт-Петербург: Гиппократ, 2008. 120 c. |
| [3] |
Stevens DL, Bisno AL, Chambers HF, et al. Practice guidelines for the diagnosis and management of skin and soft tissue infections: 2014 update by the Infectious Diseases Society of America. Clin Infect Dis. 2014;59(2):e10–e52. DOI: 10.1093/cid/ciu444 |
| [4] |
Stevens D.L., Bisno A.L., Chambers H.F. et al. Practice guidelines for the diagnosis and management of skin and soft tissue infections: 2014 update by the Infectious Diseases Society of America // Clin. Infect. Dis. 2014. Vol. 59, No. 2. P. e10–e52. DOI: 10.1093/cid/ciu444 |
| [5] |
Tessier JM, Sanders J, Sartelli M, et al. Necrotizing soft tissue infections: a focused review of pathophysiology, diagnosis, operative management, antimicrobial therapy, and pediatrics. Surg Infect (Larchmt). 2020;21(2):81–93. DOI: 10.1089/sur.2019 |
| [6] |
Tessier J.M., Sanders J., Sartelli M. et al. Necrotizing soft tissue infections: a focused review of pathophysiology, diagnosis, operative management, antimicrobial therapy, and pediatrics // Surg. Infect. (Larchmt). 2020. Vol. 21, No. 2. P. 81–93. DOI: 10.1089/sur.2019 |
| [7] |
Condon MR, Kim JE, Deitch EA, et al. Appearance of an erythrocyte population with decreased deformability and hemoglobin content following sepsis. Аm J Physiol Heart Circ Physiol. 2003;284(6):H2177–H2184. DOI: 10.1152/ajpheart.01069.2002 |
| [8] |
Condon M.R., Kim J.E., Deitch E.A. et al. Appearance of an erythrocyte population with decreased deformability and hemoglobin content following sepsis // Аm. J. Physiol. Heart Circ. Physiol. 2003. Vol. 284, No. 6. P. H2177–H2184. DOI: 10.1152/ajpheart.01069.2002 |
| [9] |
Nguyen BV, Bota DP, Mélot C, Vincent JL. Time course of hemoglobin concentrations in nonbleeding intensive care unit patients. Crit Care Med. 2003;31(2):406–410. DOI: 10.1097/01.CCM.0000048623.00778.3F |
| [10] |
Nguyen B.V., Bota D.P., Mélot C., Vincent J.L. Time course of hemoglobin concentrations in nonbleeding intensive care unit patients // Crit. Care Med. 2003. Vol. 31, No. 2. P. 406–410. DOI: 10.1097/01.CCM.0000048623.00778.3F |
| [11] |
Minasyan H. Mechanisms and pathways for the clearance of bacteria from blood circulation in health and disease. Pathophysiology. 2016;23(2):61–66. DOI: 10.1016/j.pathophys.2016.03.001 |
| [12] |
Minasyan H. Mechanisms and pathways for the clearance of bacteria from blood circulation in health and disease // Pathophysiology. 2016. Vol. 23, No. 2. P. 61–66. DOI: 10.1016/j.pathophys.2016.03.001 |
| [13] |
Lockhart PB, Brennan MT, Sasser HC, et al. Bacteremia associated with toothbrushing and dental extraction. Circulation. 2008;117(24):3118–3125. DOI: 10.1161/CIRCULATIONAHA.107.758524 |
| [14] |
Lockhart P.B., Brennan M.T., Sasser H.C. et al. Bacteremia associated with toothbrushing and dental extraction // Circulation. 2008. Vol. 117, No. 24. P. 3118–3125. DOI: 10.1161/CIRCULATIONAHA.107.758524 |
| [15] |
Shlyapnikov SA, Shchegolev AV. (ed.). Clinical guidelines for the diagnosis and treatment of severe sepsis and septic shock in medical institutions in St. Petersburg. Saint Petersburg: BMN; 2017. 76 p. |
| [16] |
Шляпников С.А., Щеголев А.В. (ред). Клинические рекомендации по диагностике и лечению тяжелого сепсиса и септического шока в лечебно-профилактических организациях Санкт-Петербурга. Санкт-Петербург: ООО «БМН», 2017. 76 с. |
| [17] |
Vensan ZH-L, Abrakham EH, Mur F, et al. Rukovodstvo po kriticheskoi meditsine. Transl. from Engl. E.V. Grigor’eva. In 2 vol. Saint Petersburg: Chelovek; 2019. (In Russ.) |
| [18] |
Венсан Ж.-Л., Абрахам Э., Мур Ф. и др. Руководство по критической медицине / пер. с англ. под науч. ред. Е.В. Григорьева: в 2 т. Санкт-Петербург: Человек, 2019. |
| [19] |
Singer M, Deutschman CS, Seymour CW, et al. The Third International Consensus Definitions for Sepsis and Septic Shock (Sepsis-3). JAMA. 2016;315(8):801–810. DOI: 10.1001/jama.2016.0287 |
| [20] |
Singer M., Deutschman C.S., Seymour C.W. et al. The Third International Consensus Definitions for Sepsis and Septic Shock (Sepsis-3) // JAMA. 2016. Vol. 315, No. 8. P. 801–810. DOI: 10.1001/jama.2016.0287 |
| [21] |
Lebedev KA, Ponyakina ID. Immunnaya nedostatochnost’ (vyyavlenie i lechenie). Moscow; N. Novgorod; 2003. 443 p. (In Russ.) |
| [22] |
Лебедев К.А., Понякина И.Д. Иммунная недостаточность (выявление и лечение). Москва; Н. Новгород, 2003. 443 с. |
| [23] |
Serebryanaya NB, Avdoshin IV, Chernyshev OB, et al. Pathogenetic and prognostic significance of thrombocytopenia in patients with necrotizing soft tissue infections. General Reanimatology. 2021;17(1):34–45. DOI: 10.15360/1813-9779-2021-1-34-45 |
| [24] |
Серебряная Н.Б., Авдошин И.В., Чернышев О.Б. и др. Тромбоцитопения у больных некротизирующими инфекциями мягких тканей: патогенетическое и прогностическое значение // Общая реаниматология. 2021. Т. 17, № 1. С. 34–45. DOI: 10.15360/1813-9779-2021-1-34-45 |
| [25] |
Fursov A, Salmina A, Sokolovich AG, et al. Pathogenesis of a systemic inflammatory reaction: new aspects. General Reanimatology. 2008;4(2):84. (In Russ.) DOI: 10.15360/1813-9779-2008-2-84 |
| [26] |
Фурсов А.А., Салмина А.Б., Соколович А.Г. и др. Новые аспекты патогенеза системной воспалительной реакции // Общая реаниматология. 2008. Т. 4, № 2. С. 84. DOI: 10.15360/1813-9779-2008-2-84 |
| [27] |
Adamzik M, Hamburger T, Petrat F, et al. Free hemoglobin concentration in severe sepsis: methods of measurement and prediction of outcome. Crit Care. 2012;16(4):R125. DOI: 10.1186/cc11425 |
| [28] |
Mendonça R., Silveira A.A.A., Conran N. Red cell DAMPs and inflammation // Inflamm. Res. 2016. Vol. 65, No. 9. P. 665–678. DOI: 10.1007/s00011-016-0955-9 |
| [29] |
Mendonça R, Silveira AAA, Conran N. Red cell DAMPs and inflammation. Inflamm Res. 2016;65(9):665–678. DOI: 10.1007/s00011-016-0955-9 |
| [30] |
Adamzik M., Hamburger T., Petrat F. et al. Free hemoglobin concentration in severe sepsis: methods of measurement and prediction of outcome // Crit. Care. 2012. Vol. 16, No. 4. P. R125. DOI: 10.1186/cc11425 |
| [31] |
Jain SK, Ross JD, Levy GJ, et al. The accumulation of malonyldialdehyde, an end product of membrane lipid peroxidation, can cause potassium leak in normal and sickle red blood cells. Biochem Med Metab Biol. 1989;42:60–65. DOI: 10.1016/0885-4505(89)90041-8 |
| [32] |
Jain S.K., Ross J.D., Levy G.J. et al. The accumulation of malonyldialdehyde, an end product of membrane lipid peroxidation, can cause potassium leak in normal and sickle red blood cells // Biochem. Med. Metab. Biol. 1989. Vol. 42. P. 60–65. DOI: 10.1016/0885-4505(89)90041-8 |
| [33] |
Anderson HL, Brodsky I, Mangalmurti N. The evolving erythrocyte: red blood cells as modulators of innate immunity. J Immunol. 2018;201:1343–1351. DOI: 10.4049/jimmunol.1800565 |
| [34] |
Anderson H.L., Brodsky I., Mangalmurti N. The evolving erythrocyte: red blood cells as modulators of innate immunity // J. Immunol. 2018. Vol. 201. P. 1343–1351. DOI: 10.4049/jimmunol.1800565 |
| [35] |
Golobokov GS, Tsvetkov VV, Tokin II, et al. Diagnostic and prognostic laboratory criteria for the development of sepsis in purulent-inflammatory diseases of soft tissues. Journal Infectology. 2019;11(2):53–62. (In Russ.) DOI: 10.22625/2072-6732-2019-11-2-53-62 |
| [36] |
Голобоков Г.С., Цветков В.В., Токин И.И. и др. Диагностические и прогностические лабораторные критерии развития сепсиса при гнойно-воспалительных заболеваниях мягких тканей // Журнал инфектологии. 2019. Т. 11, № 2. С. 53–63. DOI: 10.22625/2072-6732-2019-11-2-53-62 |
| [37] |
Borovskaya MK, Kuznetsov EE, Gorokhova VG, et al. Structural and functional characteristics of membrane’s erythrocyte and its change at pathologies of various genesis. Acta Biomedica Scientifica. 2010;(3):334–354. (In Russ.) |
| [38] |
Боровская М.К., Кузнецова Э.Э., Горохова В.Г. и др. Структурно-функциональная характеристика мембраны эритроцита и ее изменения при патологиях разного генеза // Acta Biomedica Scientifica. 2010. № 3. С. 334–354. |
| [39] |
Blatun LA, Mitish VA, Paskhalova YuS, et al. Anaerobic non-clostridial infection of soft tissue and musculoskeletal system. Consilium Medicum. Surgery. 2017;(2):13–18. (In Russ.) DOI: 10.26442/2075-1753_19.7.2.13-18 |
| [40] |
Блатун Л.А., Митиш В.А., Пасхалова Ю.С. и др. Анаэробная неклостридиальная инфекция мягких тканей и опорно-двигательного аппарата // Consilium Medicum. Хирургия. 2017. № 2. С. 13–18. DOI: 10.26442/2075-1753_19.7.2.13–18 |
| [41] |
Shchuplova EA. The role of microbial associents in the processes of interactions bacteria with erythrocytes. Vestnik of the Orenburg State University. 2017;(9(209)):111–114. (In Russ.) |
| [42] |
Щуплова Е.А. Роль микробов-ассоциантов в процессах взаимодействий бактерий с эритроцитами // Вестник Оренбургского государственного университета. 2017. № 9(209). С. 111–114. |
| [43] |
Minasyan H. Sepsis: mechanisms of bacterial injury to the patient. Scand J Trauma Resusc Emerg Med. 2019;27(1):19. DOI: 10.1186/s13049-019-0596-4 |
| [44] |
Minasyan H. Sepsis: mechanisms of bacterial injury to the patient // Scand. J. Trauma Resusc. Emerg. Med. 2019. Vol. 27, No. 1. P. 19. DOI: 10.1186/s13049-019-0596-4 |
| [45] |
Shchuplova EA, Fadeev SB. Effect of staphylococci with different levels of pathogenicity factors on red blood cells antioxidant protection enzymes. Byulleten’ Orenburgskogo nauchnogo tsentra URO RAN. 2013;(1):12. (In Russ.) |
| [46] |
Щуплова Е.А., Фадеев С.Б. Влияния стафилококков с разным уровнем факторов патогенности на ферменты антиокислительной защиты эритроцитов // Бюллетень Оренбургского научного центра УрО РАН. 2013. № 1. С. 12. |
| [47] |
Salama R, Girgis G, Zhou J. Erythrophagocytosis by neutrophils associated with Clostridium perfringens-induced hemolytic anemia. Ann Hematol. 2015;94(3):521–522. DOI: 10.1007/s00277-014-2184-z |
| [48] |
Salama R., Girgis G., Zhou J. Erythrophagocytosis by neutrophils associated with Clostridium perfringens-induced hemolytic anemia // Ann. Hematol. 2015. Vol. 94, No. 3. P. 521–522. DOI: 10.1007/s00277-014-2184-z |
| [49] |
Boyd SD, Mobley BC, Regula DP, Arber DA. Features of hemolysis due to Clostridium perfringens infection. Int J Lab Hematol. 2009;31(3):364–367. DOI: 10.1111/j.1751-553X. 2007. 01018.x |
| [50] |
Boyd S.D., Mobley B.C., Regula D.P., Arber D.A. Features of hemolysis due to Clostridium perfringens infection // Int. J. Lab. Hematol. 2009. Vol. 31, No. 3. P. 364–367. DOI: 10.1111/j.1751-553X. 2007. 01018.x |
| [51] |
Bateman RM, Sharpe MD, Singer M, Ellis CG. The effect of sepsis on the erythrocyte. Int J Mol Sci. 2017;18(9):1932. DOI: 10.3390/ijms18091932 |
| [52] |
Bateman R.M., Sharpe M.D., Singer M., Ellis C.G. The effect of sepsis on the erythrocyte // Int. J. Mol. Sci. 2017. Vol. 18, No. 9. P. 1932. DOI: 10.3390/ijms18091932 |
Eco-Vector
/
| 〈 |
|
〉 |