Annex 1:
Evidence-to-Decision Tables
1. Screening and Early Management
1.1 Performance Improvement Programs
|
Criterion |
Details |
|
Problem |
High sepsis mortality in Egypt; delayed recognition in many hospitals. |
|
Benefit |
Early detection, standardized treatment, improved survival. |
|
Risk/Harm |
Minimal; requires training and resources. |
|
Certainty of Evidence |
High. |
|
Values & Preferences |
Patients value rapid diagnosis and treatment. |
|
Resource Use |
Moderate; requires staff training and monitoring systems. |
|
Equity |
Improves care across diverse hospitals. |
|
Acceptability |
High among clinicians and administrators. |
|
Feasibility |
Feasible with phased implementation. |
|
Recommendation |
Strong: Implement sepsis performance improvement programs, including screening and SOPs. |
2. Infection Management
2.1 Antimicrobial Therapy Timing
|
Criterion |
Details |
|
Problem |
Delayed antibiotics linked to higher mortality. |
|
Benefit |
Early antibiotics reduce mortality in septic shock. |
|
Risk/Harm |
Overuse may drive resistance. |
|
Certainty of Evidence |
High for septic shock; moderate for sepsis without shock. |
|
Values & Preferences |
Patients prioritize survival over resistance concerns. |
|
Resource Use |
Moderate; requires rapid access to antimicrobials. |
|
Equity |
Critical in rural/low-resource hospitals. |
|
Acceptability |
High among clinicians. |
|
Feasibility |
Feasible with stock management and protocols. |
|
Recommendation |
Strong: Administer antimicrobials within 1 hour for septic shock; within 3 hours for possible sepsis without shock. |
2.2 Source Control
|
Criterion |
Details |
|
Problem |
Delayed source control worsens outcomes. |
|
Benefit |
Early intervention reduces mortality. |
|
Risk/Harm |
Procedural risks (surgery, drainage). |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value rapid relief of the infection source. |
|
Resource Use |
High; requires surgical/IR availability. |
|
Equity |
Limited in rural hospitals. |
|
Acceptability |
High among clinicians. |
|
Feasibility |
Feasible in tertiary centers; challenging in district hospitals. |
|
Recommendation |
Conditional: Early source control within 6 hours. |
2.3 De-escalation
|
Criterion |
Details |
|
Problem |
Overuse of broad-spectrum antimicrobials. |
|
Benefit |
Reduces resistance, improves stewardship. |
|
Risk/Harm |
Risk of undertreatment if misapplied. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value safety and survival. |
|
Resource Use |
Low; requires culture facilities. |
|
Equity |
Limited in hospitals without microbiology labs. |
|
Acceptability |
High among stewardship advocates. |
|
Feasibility |
Feasible with daily review. |
|
Recommendation |
Strong: De-escalate antimicrobials when culture results available. |
3. Hemodynamic Management
3.1 Initial Fluid Resuscitation
|
Criterion |
Details |
|
Problem |
Hypoperfusion and shock are common in Egyptian ICUs. |
|
Benefit |
30 ml/kg crystalloid improves perfusion. |
|
Risk/Harm |
Risk of fluid overload, especially in elderly/CHF patients. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value survival; clinicians cautious about overload. |
|
Resource Use |
Low; crystalloids widely available. |
|
Equity |
Accessible in most hospitals. |
|
Acceptability |
High. |
|
Feasibility |
Feasible with monitoring. |
|
Recommendation |
Conditional: Administer 30 ml/kg crystalloid within 3 hours, with reassessment. |
3.2 Vasopressor Use
|
Criterion |
Details |
|
Problem |
Persistent hypotension after fluids. |
|
Benefit |
Restores MAP, reduces mortality. |
|
Risk/Harm |
Peripheral administration risks extravasation. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value stabilization. |
|
Resource Use |
Moderate; requires vasopressor availability. |
|
Equity |
Limited in rural hospitals. |
|
Acceptability |
High. |
|
Feasibility |
Feasible with training. |
|
Recommendation |
Conditional: Start vasopressors peripherally if central access delayed; target MAP 65 mmHg. |
3.3. Balanced Crystalloids vs. Saline
|
Criterion |
Details |
|
Problem |
Choice of resuscitation fluid impacts renal outcomes and mortality. |
|
Benefit |
Balanced crystalloids reduce risk of hyperchloremic acidosis and renal injury. |
|
Risk/Harm |
Saline may worsen acidosis; balanced solutions may be contraindicated in TBI. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value survival and renal protection. |
|
Resource Use |
Balanced crystalloids slightly more costly but widely available. |
|
Equity |
Accessible in tertiary hospitals; limited in rural centers. |
|
Acceptability |
High among intensivists. |
|
Feasibility |
Feasible with procurement planning. |
|
Recommendation |
Conditional: Use balanced crystalloids over saline, except in TBI |
3.4. Albumin Supplementation
|
Criterion |
Details |
|
Problem |
Fluid overload risk after large crystalloid volumes. |
|
Benefit |
Albumin may improve oncotic pressure in cirrhosis or hypoalbuminemia. |
|
Risk/Harm |
Expensive; avoid in TBI. |
|
Certainty of Evidence |
Low. |
|
Values & Preferences |
Patients value reduced edema and improved perfusion. |
|
Resource Use |
High cost; limited availability in Egypt. |
|
Equity |
May widen gap between tertiary and district hospitals. |
|
Acceptability |
Moderate among clinicians. |
|
Feasibility |
Limited in resource-constrained settings. |
|
Recommendation |
Conditional: Consider albumin in selected patients after large crystalloid volumes or cirrhosis. |
3.5. Dynamic Measures for Fluid Responsiveness
|
Criterion |
Details |
|
Problem |
Static measures (CVP) unreliable for guiding fluids. |
|
Benefit |
Dynamic measures improve the precision of resuscitation. |
|
Risk/Harm |
Requires monitoring equipment and training. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value tailored resuscitation. |
|
Resource Use |
Moderate; requires monitors. |
|
Equity |
Limited in rural hospitals. |
|
Acceptability |
High among critical care teams. |
|
Feasibility |
Feasible in ICUs with monitoring capacity. |
|
Recommendation |
Conditional: Use dynamic measures (passive leg raise, SVV, PPV) over static measures. |
4. Respiratory Support
4.1. Oxygen Therapy
|
Criterion |
Details |
|
Problem |
Hypoxemia common in sepsis. |
|
Benefit |
Supplemental oxygen improves tissue oxygenation. |
|
Risk/Harm |
Hyperoxia may increase oxidative stress. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value relief of dyspnea and survival. |
|
Resource Use |
Low; oxygen widely available. |
|
Equity |
Accessible in most Egyptian hospitals. |
|
Acceptability |
High. |
|
Feasibility |
Feasible with standard oxygen delivery systems. |
|
Recommendation |
Strong: Provide supplemental oxygen to maintain SPO2 ≥ 90%. |
4.2. High-Flow Nasal Oxygen (HFNO) vs. Standard Oxygen
|
Criterion |
Details |
|
Problem |
Patients with hypoxemic respiratory failure may deteriorate. |
|
Benefit |
HFNO reduces the need for intubation in selected patients. |
|
Risk/Harm |
Requires equipment; may delay intubation if misused. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value comfort and avoidance of intubation. |
|
Resource Use |
Higher cost; limited availability in Egypt. |
|
Equity |
Available in tertiary centers; limited in district hospitals. |
|
Acceptability |
High among intensivists. |
|
Feasibility |
Feasible in ICUs with HFNO devices. |
|
Recommendation |
Conditional: Use HFNO in hypoxemic respiratory failure when available. |
4.3. Non-Invasive Ventilation (NIV)
|
Criterion |
Details |
|
Problem |
NIV may prevent intubation in selected patients. |
|
Benefit |
Reduces complications of invasive ventilation. |
|
Risk/Harm |
Risk of delayed intubation and aspiration. |
|
Certainty of Evidence |
Low. |
|
Values & Preferences |
Patients value the avoidance of intubation. |
|
Resource Use |
Moderate; requires trained staff. |
|
Equity |
Limited in rural hospitals. |
|
Acceptability |
Moderate among clinicians. |
|
Feasibility |
Feasible in ICUs with NIV capability. |
|
Recommendation |
Conditional: Consider NIV in selected patients with sepsis-related respiratory failure, with close monitoring. |
4.4. Invasive Mechanical Ventilation
|
Criterion |
Details |
|
Problem |
Severe sepsis often requires intubation. |
|
Benefit |
Ensures oxygenation and ventilation. |
|
Risk/Harm |
Ventilator-associated complications. |
|
Certainty of Evidence |
High. |
|
Values & Preferences |
Patients value survival despite risks. |
|
Resource Use |
High; requires ICU infrastructure. |
|
Equity |
Limited in district hospitals. |
|
Acceptability |
High among intensivists. |
|
Feasibility |
Feasible in tertiary ICUs. |
|
Recommendation |
Strong: Provide invasive mechanical ventilation when indicated, with lung-protective strategies. |
4.5. VV-ECMO
|
Criterion |
Details |
|
Problem |
Refractory hypoxemia despite optimal mechanical ventilation. |
|
Benefit |
Provides extracorporeal oxygenation and CO2 removal, bridging patients through severe ARDS or septic respiratory failure. |
|
Risk/Harm |
High risk of bleeding, thrombosis, infection; requires specialized expertise. |
|
Certainty of Evidence |
Low (benefit in selected patients). |
|
Values & Preferences |
Patients and families value survival in otherwise fatal scenarios. |
|
Resource Use |
Very high; requires ECMO circuits, perfusionists, and specialized ICU teams. |
|
Equity |
Limited to tertiary centers in Egypt; not feasible in most hospitals. |
|
Acceptability |
High among ECMO-capable centers. |
|
Feasibility |
Feasible only in specialized ICUs with ECMO programs. |
|
Recommendation |
Conditional: Consider VV-ECMO in refractory hypoxemia unresponsive to optimal mechanical ventilation, in centers with expertise. |
5. Additional Supportive Therapies
5.1 Corticosteroids (for refractory septic shock)
|
Criterion |
Details |
|
Problem |
Persistent hypotension despite fluids and vasopressors. |
|
Benefit |
Shortens duration of shock, may reduce vasopressor requirement. |
|
Benefit Direction |
Positive – stabilizes circulation, improves shock resolution. |
|
Risk/Harm |
Hyperglycemia, secondary infections, and muscle weakness. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value stabilization and survival. |
|
Resource Use |
Low; widely available. |
|
Equity |
Accessible in most Egyptian hospitals. |
|
Acceptability |
High among intensivists. |
|
Feasibility |
Feasible with monitoring. |
|
Recommendation |
Conditional: Consider IV corticosteroids in refractory septic shock. |
5.2. IV Vitamin C
|
Criterion |
Details |
|
Problem |
Oxidative stress and endothelial dysfunction in sepsis. |
|
Benefit |
Proposed antioxidant and vasopressor-sparing effects. |
|
Benefit Direction |
Neutral/uncertain – evidence inconsistent, no proven survival benefit. |
|
Risk/Harm |
Risk of oxalate nephropathy at high doses. |
|
Certainty of Evidence |
Low. |
|
Values & Preferences |
Patients value innovative therapies. |
|
Resource Use |
Moderate cost. |
|
Equity |
Limited availability. |
|
Acceptability |
Moderate. |
|
Feasibility |
Feasible in tertiary centers. |
|
Recommendation |
Conditional: No routine use; consider only in research settings. |
5.3. Stress Ulcer Prophylaxis
|
Criterion |
Details |
|
Problem |
Critically ill patients at risk of GI bleeding. |
|
Benefit |
Reduces the incidence of stress-related mucosal bleeding. |
|
Benefit Direction |
Positive – prevents GI bleeding in high-risk patients. |
|
Risk/Harm |
Increased risk of pneumonia, C. difficile. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value the prevention of bleeding. |
|
Resource Use |
Low. |
|
Equity |
Widely available. |
|
Acceptability |
High. |
|
Feasibility |
Feasible with standard ICU protocols. |
|
Recommendation |
Conditional: Use prophylaxis in patients with risk factors (mechanical ventilation >48h, coagulopathy). |
5.4. Active Fluid Removal (Diuretics/Ultrafiltration)
|
Criterion |
Details |
|
Problem |
Fluid overload after resuscitation. |
|
Benefit |
Improves oxygenation, reduces edema. |
|
Benefit Direction |
Positive – improves organ function by reducing overload. |
|
Risk/Harm |
Risk of hypoperfusion, electrolyte imbalance. |
|
Certainty of Evidence |
Low. |
|
Values & Preferences |
Patients value comfort and reduced edema. |
|
Resource Use |
Moderate. |
|
Equity |
Limited in rural hospitals. |
|
Acceptability |
Moderate. |
|
Feasibility |
Feasible in tertiary ICUs. |
|
Recommendation |
Conditional: Consider active fluid removal in fluid-overloaded patients. |
5.5. Enteral Nutrition
|
Criterion |
Details |
|
Problem |
Malnutrition worsens outcomes in sepsis. |
|
Benefit |
Maintains gut integrity, reduces infection risk. |
|
Benefit Direction |
Positive – improves recovery and reduces complications. |
|
Risk/Harm |
Aspiration risk if not monitored. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value nutrition and recovery. |
|
Resource Use |
Moderate. |
|
Equity |
Widely available in Egyptian ICUs. |
|
Acceptability |
High. |
|
Feasibility |
Feasible with trained staff. |
|
Recommendation |
Strong: Initiate early enteral nutrition when feasible. |
5.6. Insulin Therapy
|
Criterion |
Details |
|
Problem |
Hyperglycemia common in sepsis. |
|
Benefit |
Tight glucose control reduces complications. |
|
Benefit Direction |
Positive – reduces morbidity when glucose maintained <180 mg/dL. |
|
Risk/Harm |
Hypoglycemia risk with tight control. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value safety. |
|
Resource Use |
Low. |
|
Equity |
Widely available. |
|
Acceptability |
High. |
|
Feasibility |
Feasible with monitoring. |
|
Recommendation |
Strong: Maintain glucose <180 mg/dL; avoid tight control <110 mg/dL. |
5.7. Renal Replacement Therapy (RRT)
|
Criterion |
Details |
|
Problem |
Acute kidney injury common in septic shock. |
|
Benefit |
Supports renal function, removes toxins. |
|
Benefit Direction |
Positive – improves metabolic control and survival in severe AKI. |
|
Risk/Harm |
Hypotension, resource-intensive. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value survival. |
|
Resource Use |
High. |
|
Equity |
Limited in rural hospitals. |
|
Acceptability |
High in tertiary centers. |
|
Feasibility |
Feasible in specialized ICUs. |
|
Recommendation |
Conditional: Initiate RRT for severe AKI or metabolic derangements. |
5.8. Sodium Bicarbonate
|
Criterion |
Details |
|
Problem |
Severe metabolic acidosis in sepsis. |
|
Benefit |
May improve pH and hemodynamics. |
|
Benefit Direction |
Neutral/uncertain – benefit limited to severe acidosis (pH <7.2). |
|
Risk/Harm |
Sodium overload, paradoxical intracellular acidosis. |
|
Certainty of Evidence |
Low. |
|
Values & Preferences |
Patients value stabilization. |
|
Resource Use |
Low. |
|
Equity |
Widely available. |
|
Acceptability |
Moderate. |
|
Feasibility |
Feasible with monitoring. |
|
Recommendation |
Conditional: Consider in severe acidosis (pH <7.2). |
5.9. RBC Transfusion
|
Criterion |
Details |
|
Problem |
Anemia common in sepsis. |
|
Benefit |
Improves oxygen delivery. |
|
Benefit Direction |
Positive – improves oxygenation when Hb <7 g/dL. |
|
Risk/Harm |
Transfusion reactions, infection risk. |
|
Certainty of Evidence |
Moderate. |
|
Values & Preferences |
Patients value survival. |
|
Resource Use |
High; requires blood bank. |
|
Equity |
Limited in rural hospitals. |
|
Acceptability |
High. |
|
Feasibility |
Feasible in tertiary centers. |
|
Recommendation |
Strong: Transfuse when Hb <7 g/dL; avoid liberal transfusion. |
5.10. VTE Prophylaxis
|
Criterion |
Details |
|
Problem |
Sepsis patients at high risk of venous thromboembolism. |
|
Benefit |
Reduces the incidence of DVT/PE. |
|
Benefit Direction |
Positive – prevents VTE, improves survival. |
|
Risk/Harm |
Bleeding risk. |
|
Certainty of Evidence |
High. |
|
Values & Preferences |
Patients value the prevention of complications. |
|
Resource Use |
Low. |
|
Equity |
Widely available. |
|
Acceptability |
High. |
|
Feasibility |
Feasible with standard ICU protocols. |
|
Recommendation |
Strong: Provide pharmacologic VTE prophylaxis unless contraindicated. |
Annex 2:
Table 1: Sepsis Terminology in This Guideline.
|
Definite sepsis |
Sepsis is confirmed based on history, clinical examination, and diagnostic testing. An alternative diagnosis is very unlikely. |
|
Probable sepsis |
High suspicion for sepsis. Sepsis is the most likely diagnosis based on history, clinical examination, and diagnostic testing. An alternative diagnosis is less likely. |
|
Possible sepsis |
Moderate suspicion for sepsis. Sepsis is a possible diagnosis; however, an alternative diagnosis is also likely based on history, clinical examination, and diagnostic testing. |
|
Unlikely sepsis |
Low suspicion for sepsis. Clinical assessment is not consistent with sepsis, or an alternate diagnosis is more likely based on history, clinical examination, and diagnostic testing. |
Annex 3:
Table 2: 30 mL/kg in Liters, by Weight and Height
|
Height (m) (feet, inches) |
|||
|
Weigh (kg) (lb.) |
1.5 m (4′11′′) |
1.7 m (5′7′′) |
1.9 m (6′3′′) |
|
50 (110) |
1.5 |
1.5 |
1.5 |
|
60 (132) |
1.8 |
1.8 |
1.8 |
|
70 (154) |
2.1 |
2.1 |
2.1 |
|
80 (176) |
1.9 |
2.4 |
2.4 |
|
90 (200) |
2.0 |
2.4 |
2.7 |
|
100 (220) |
2.1 |
2.5 |
3.0 |
|
110 (242) |
2.2 |
2.6 |
3.3 |
|
120 (264) |
2.3 |
2.7 |
3.0 |
|
130 (287) |
2.5 |
2.8 |
3.1 |
|
140 (309) |
2.6 |
3.0 |
3.2 |
|
150 (331) |
2.7 |
3.1 |
3.3 |
|
160 (353) |
2.8 |
3.2 |
3.4 |