| Literature DB >> 29426350 |
Alexander Ziebart1, Christian Möllmann2, Andreas Garcia-Bardon2, Jens Kamuf2, Moritz Schäfer2, Rainer Thomas2, Erik K Hartmann2.
Abstract
BACKGROUND: During early treatment of haemorrhagic shock maintenance of cerebral and end-organ oxygen supply by fluid resuscitation is mandatory. Gelatin-polysuccinat (GP) recently regained attention despite a still unclear risk profile and widely unknown effects on cerebral and peripheral microcirculation. This study investigates the effects of GP versus balanced electrolyte solution (BEL) with focus on cerebral regional oxygen saturation and peripheral microcirculation in a porcine haemorrhagic shock model.Entities:
Keywords: cerebral oxygen saturation; fluid resuscitation; gelatin-polysuccinat; haemorrhagic shock; pig model
Mesh:
Substances:
Year: 2018 PMID: 29426350 PMCID: PMC5807741 DOI: 10.1186/s13049-018-0477-2
Source DB: PubMed Journal: Scand J Trauma Resusc Emerg Med ISSN: 1757-7241 Impact factor: 2.953
Extended haemodynamic and blood gas parameters
| Parameter | BLH | Shock | 0 h | 1 h | 2 h | |
|---|---|---|---|---|---|---|
| number of animals | GP | 9 | 9 | 9 | 9 | 9 |
| BEL | 9 | 9 | 9 | 9 | 9 | |
| Control | 9 | 3 | 3 | 3 | 3 | |
| [mmHg] | GP | 73 (12) | 34 (18)* | 86 (12)*#2 | 78 (15)#2 | 74 (15) |
| BEL | 72 (9) | 27 (3)* | 84 (10)*#3 | 68 (10) | 65 (8)2 | |
| Control | 66 (12) | 31 (3)* | 48 (6)*#2,3 | 58 (12)#1 | 61 (11) | |
| HR | GP | 70 (16) | 101 (37)* | 108 (29)*#2 | 103 (41)*#2 | 97 (39)*#2 |
| BEL | 77 (28) | 143 (60)* | 102 (34)*#3 | 109 (46)*#3 | 120 (51)* | |
| Control | 80 (8) | 151 (36)* | 170 (38)*#2,3 | 172 (60)*#2,3 | 172 (68)*#2 | |
| CO | GP | 100 | 60 (20)* | 178 (34)*#1,2 | 155 (19)*#1,2 | 136 (22)*#1,2 |
| BEL | 100 | 57 (13)* | 130 (22)*#1,3 | 105 (16)#1 | 105 (14)#1 | |
| Control | 100 | 59 (21)* | 81 (24)#2,3 | 84 (31)#2 | 90 (25)#2 | |
| EVLWI | GP | 100 | 97 (18) | 100 (21) | 101 (17) | 95 (12) |
| BEL | 100 | 103 (11) | 98 (9) | 97 (16) | 98 (18) | |
| Control | 100 | 108 (34) | 90 (10) | 81 (9) | 84 (14) | |
| GEDI | GP | 100 | 64 (7)* | 114 (10)*#1,2 | 96 (38)*#2 | 102 (15)#1,2 |
| BEL | 100 | 67 (11)* | 84 (32)#1 | 83 (16) | 84 (13)#1 | |
| Control | 100 | 62 (7)* | 67 (4)#2 | 65 (14)#2 | 68 (16)#2 | |
| CVP | GP | 8 (3) | 4 (3)* | 11 (2)*#1,2 | 8 (2) | 7 (1) |
| BEL | 8 (2) | 4 (1)* | 8 (2)#1 | 6 (1)* | 6 (2)* | |
| Control | 8 (2) | 5 (1) | 9 (2)#2 | 5 (2) | 5 (3) | |
| SpO2 | GP | 100 (1) | 97 (4) | 98 (2) | 99 (2) | 99 (1) |
| BEL | 100 (0) | 100 (0) | 100 (0) | 100 (0) | 100 (0) | |
| Control | 100 (0) | 100 (0) | 100 (0) | 100 (0) | 100 (0) | |
| SvO2 | GP | 77 (8) | 43 (21)*#1,2 | 75 (11)#1,2 | 68 (10)#1,2 | 62 (11)*#2 |
| BEL | 72 (14) | 31 (14)*#1 | 60 (10)*#1,3 | 52 (14)*#1,3 | 54 (9)*#3 | |
| Control | 72 (8) | 18 (8)*#2 | 27 (8)*#2,3 | 34 (4)*#2,3 | 38 (7)*#2,3 | |
| pH | GP | 7.46 (0,04) | 7.39 (0,09) | 7.39 (0,04) | 7.47 (0,08) | 7.45 (0,08) |
| BEL | 7.49 (0,05) | 7.45 (0,05) | 7.41 (0,06) | 7.47 (0,06) | 7.49 (0,05) | |
| Control | 7.57 (0) | 7.54 (0,04) | 7.47 (0,06) | 7.47 (0,06) | 7.49 (0,06) | |
| BE | GP | 6 (4) | 1 (4) | 2 (3) | 7 (2) | 5 (3) |
| BEL | 6 (3) | 2 (3) | 3 (3) | 6 (3) | 7 (3) | |
| Control | 9 (0) | 7 (1) | 5 (3) | 5 (6) | 7 (5) | |
| PaCO2 | GP | 42 (5) | 44 (10) | 45 (8) | 44 (8) | 46 (10) |
| BEL | 38 (3) | 38 (2) | 44 (3)* | 41 (3) | 40 (3) | |
| Control | 36 (2) | 37 (4) | 42 (4) | 41 (2) | 40 (1) | |
| avCO2 diff | GP | 6 (2) | 10 (4)* | 9 (3)#2 | 6 (3)#2 | 10 (10) |
| BEL | 6 (3) | 12 (3)* | 9 (2)#3 | 8 (3)#3 | 8 (3) | |
| Control | 6 (4) | 15 (3)* | 18 (3)*#2,3 | 18 (3)*#2,3 | 13 (3)* | |
| avO2 diff | GP | 142 (17) | 134 (57) | 130 (14) | 139 (14) | 123 (32) |
| BEL | 143 (17) | 142 (39) | 146 (15) | 154 (17) | 146 (21) | |
| Control | 143 (8) | 131 (25) | 130 (29) | 153 (11) | 155 (18) | |
| lactate | GP | 1,2 (0,5) | 2,8 (1,5)* | 2,9 (1,1)* | 1,5 (0,6) | 0,9 (0,3) |
| BEL | 1,3 (0,5) | 3,2 (1,2)* | 2,8 (0,9)* | 1,4 (0,4) | 1,1 (0,3) | |
| Control | 1 (0,1) | 3,2 (0,7)* | 3,3 (0,)* | 2,1 (0,6) | 1,8 (0,5) | |
| PaO2 | GP | 191 (16) | 185 (28) | 180 (28) | 181 (11) | 166 (25)* |
| BEL | 190 (16) | 166 (40)* | 187 (18) | 190 (20) | 182 (20) | |
| Control | 166 (23) | 151 (34) | 178 (7) | 177 (12) | 184 (15) | |
| PaO2/FiO2 | GP | 472 (42) | 417 (140) | 455 (67) | 414 (115) | 411 (69) |
| BEL | 474 (40) | 415 (99) | 468 (45) | 475 (50) | 454 (51) | |
| Control | 465 (7) | 380 (70) | 395 (67) | 460 (28) | 459 (38) | |
| Ppeak | GP | 17 (3) | 17 (2) | 18 (3)#2 | 19 (3)#2 | 19 (2)#2 |
| BEL | 17 (2) | 19 (2) | 17 (1)#3 | 17 (1)#3 | 18 (2)#3 | |
| Control | 18 (0) | 19 (1) | 23 (8)*#2,3 | 24 (7)*#2,3 | 24 (7)*#2,3 | |
| Pmean | GP | 8 (1) | 8 (1) | 8 (1) | 8 (1) | 8 (1) |
| BEL | 9 (1) | 9 (1) | 9 (1) | 9 (1) | 9 (0) | |
| Control | 9 (0) | 10 (1) | 9 (1) | 9 (1) | 9 (1) | |
| PEEP | GP | 4 (1) | 4 (1) | 4 (1) | 4 (1) | 4 (1) |
| BEL | 4 (0) | 4 (0) | 4 (0) | 4 (0) | 4 (0) | |
| Control | 4 (0) | 4 (0) | 4 (0) | 4 (0) | 4 (0) | |
| AaDO2 | GP | 48 (18) | 70 (51) | 57 (18) | 72 (50) | 69 (29) |
| BEL | 51 (14) | 75 (40) | 47 (17) | 47 (20) | 56 (20) | |
| Control | 57 (2) | 90 (24) | 78 (31) | 54 (14) | 54 (16) | |
| MV | GP | 5.2 (1.2)#1,2 | 5.1 (1.1)#1,2 | 5.5 (1.6)#1 | 5.7 (0.8) | 5.6 (1)#1,2 |
| BEL | 7.0 (1.0)#1 | 6.9 (0.8)#1 | 6.9 (0.8)#1 | 6.9 (0.8) | 6.9 (0.8)#1 | |
| Control | 7.0 (0.2)#2 | 6.8 (0.5)#2 | 6.8 (0.5) | 7.2 (0.8) | 7.2 (0.8)#2 |
MAP mean arterial pressure, HR heart rate, CO cardiac output, EVLWI extravascular lung water index, GEDI global endiastolic volume index, CVP central venous pressure, SpO peripheral oxygen saturation, SvO central venous saturation, BE base excess, PaCO arterial partial pressure of carbon dioxide, avCOdiff arteriovenous carbon dioxide difference, avOdiff ateriovenous oxygen difference, PaO arterial partial pressure of oxygen, PaO/FiO Horovitz index, P peak inspiratory pressure, P mean airway pressure, PEEP positive end-expiratory pressure, AaDO alveolar-arterial oxygen difference, MV respiratory minute volume
*indicates p < 0.05 vs. Baseline value. # indicates p < 0.05 in intergroup comparison (1 = colloid vs. BEL; 2 = colloid vs. sham; 3 = BEL vs. sham)
Cerebral saturation and peripheral microcirculatory assessment (% of baseline)
| Parameter | BLH | Shock | 0 h | 1 h | 2 h | |
|---|---|---|---|---|---|---|
| number of animals | GP | 9 | 9 | 9 | 9 | 9 |
| BEL | 9 | 9 | 9 | 9 | 9 | |
| Control | 9 | 3 | 3 | 3 | 3 | |
| crSO2 [%] | GP | 100 (0) | 74 (15)* | 82 (12)*#1 | 89 (10)*#1 | 85 (7)*#1,2 |
| BEL | 100 (0) | 75 (10) | 99 (13)#1 | 102 (14) | 101 (13)#1 | |
| Control | 100 (0) | 80 (11) | 92 (11) | 103 (20) | 108 (21)#2 | |
| SO2S [%] | GP | 100 (0) | 27 (25)*#1 | 80 (24) | 96 (24) | 93 (25) |
| BEL | 100 (0) | 63 (17)*#1 | 98 (17) | 105 (21) | 107 (28) | |
| Control | 100 (0) | 65 (37) | 82 (29) | 112 (3) | 151 (44) | |
| SO2D [%] | GP | 100 (0) | 102 (17) | 93 (21) | 108 (19) | 107 (26) |
| BEL | 100 (0) | 96 (3) | 101 (3) | 101 (4) | 99 (5) | |
| Control | 100 (0) | 106 (8) | 106 (8) | 106 (10) | 113 (11) | |
| FlowS [%] | GP | 100 (0) | 29 (28)* | 109 (52) | 116 (53) | 110 (50) |
| BEL | 100 (0) | 50 (25)* | 139 (74) | 157 (91) | 183 (131) | |
| Control | 100 (0) | 84 (58) | 120 (73) | 155 (95) | 189 (104) | |
| FlowD [%] | GP | 100 (0) | 52 (50)* | 189 (119) | 201 (126) | 190 (114) |
| BEL | 100 (0) | 56 (22)* | 121 (46) | 126 (48) | 131 (45) | |
| Control | 100 (0) | 68 (5)* | 90 (4) | 106 (19) | 120 (16) | |
| HbS [%] | GP | 100 (0) | 70 (15)* | 78 (13)* | 77 (14)* | 79 (17)* |
| BEL | 100 (0) | 85 (7)* | 82 (16)* | 89 (23)* | 90 (27)* | |
| Control | 100 (0) | 76 (26)* | 79 (26)* | 89 (28)* | 81 (15)* | |
| HbD [%] | GP | 100 (0) | 84 (15)* | 83 (12) | 94 (15) | 92 (14) |
| BEL | 100 (0) | 98 (11) | 90 (10) | 91 (11) | 88 (17) | |
| Control | 100 (0) | 105 (34) | 174 (84) | 146 (59) | 152 (62) | |
| VS [%] | GP | 100 (0) | 71 (22)* | 99 (18) | 101 (18) | 103 (22) |
| BEL | 100 (0) | 74 (16)* | 114 (27) | 118 (29) | 120 (40) | |
| Control | 100 (0) | 84 (20) | 85 (22) | 84 (25) | 77 (20) | |
| VD [%] | GP | 100 (0) | 111 (122) | 120 (17) | 125 (15) | 128 (20) |
| BEL | 100 (0) | 74 (16) | 114 (27) | 118 (29) | 120 (40) | |
| Control | 100 (0) | 105 (34) | 174 (84) | 146 (59) | 152 (62) |
crSO cerebral regional oxygen saturation, SOS superficial oxygen saturation, SOD deep oxygen saturation, FlowS superficial bloodflow, FlowD deep bloodflow, HbS superficial haemoglobin content, HbD deep haemoglobin content, VS superficial velocity, VD deep velocity
*indicates p < 0.05 vs. Baseline value. # indicates p < 0.05 in intergroup comparison (1 = colloid vs. crystalloid; 2 = colloid vs sham; 3 = crystalloid vs sham)
Fig. 1Experimental flow chart. GP: gelatin-polysuccinat; BEL: balanced electrolyte solution
Fig. 2Key haemodynamic parameters. Group effects over time are analysed by two-way ANOVA and post-hoc Student-Newman-Keuls method; n.s. non-significant; GP: gelatin-polysuccinat; BEL: balanced electrolyte solution
Fig. 3Cerebral oxygen saturation and haemoglobin content. Group effects over time are analysed by two-way ANOVA and post-hoc Student-Newman-Keuls method. GP: gelatin-polysuccinat; BEL: balanced electrolyte solution
Fig. 4Haematological parameters. Group effects over time are analysed by two- way-ANOVA and post-hoc Student Newman-Keuls method. * = p < 0.05; n.s. non-significant; GP: gelatin-polysuccinat; BEL: balanced electrolyte solution