CellEnrichmentRunChecker

Cell Enrichment Run

Liquid Biopsy жидкостная биопсия cfDNA ctDNA CTC exosomes NGS qPCR
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Utility description: Cell Enrichment Run

Cell Enrichment Run Checker — Cell Enrichment Quality Control

ℹ️  Utility performs comprehensive assessment of cell separation process efficiency according to GMP for ATMP and ISCT guidelines:
     • Recovery Rate: Calculation of target cell recovery percentage (not total mass).
     • Purity: Control of target population fraction in final product.
     • Viability: Assessment of sorting procedure impact on cell viability.
     • Fold Enrichment: Calculation of target cell concentration increase factor.

⚠️  IMPORTANT: 
     • High purity with low yield may make manufacturing impossible due to material shortage.
     • Viability drop below threshold requires optimization of separation parameters.

Usage:
  CellEnrichmentRunChecker.exe                            → demo mode (console output)
  CellEnrichmentRunChecker.exe input.csv output.json      → evaluate your data

Input format:
RunID,CellType,Method,Input_TotalCells_Million,Input_Viability_Percent,Input_TargetPercent,Output_TotalCells_Million,Output_Viability_Percent,Output_TargetPercent,Min_Output_Viability_Percent,Min_Output_Purity_Percent,Min_Recovery_Rate_Percent

Example:
  ENR-001,CD3+,MACS,1000,95,45,420,92,96,70,85,60

📍 Scope of Application (Usage Where):
     • CAR-T/TIL Manufacturing: T-lymphocyte isolation before transduction.
     • CTC Diagnostics: Enrichment of rare circulating tumor cells.
     • Stem Cells: CD34+ cell isolation for transplantation.
     • R&D: Optimization of magnetic and flow sorting protocols.

— WHY IS THIS NEEDED?
Enrichment efficiency directly determines downstream process success.
Insufficient target cell count leads to cell product batch failure.
Low purity may cause immune reactions or reduce therapy efficacy.
Automated calculation eliminates manual recovery rate counting errors.

⚠️  CRITICAL:
• Recovery Calculation: Must be based on absolute target cell count, not total yield.
• Viability Drop: >10-15% decrease relative to input requires investigation.
• Purity vs Yield: Balance must be defined in protocol.
• Method Specificity: Limits depend on method (MACS typically higher yield, FACS higher purity).

Key features:
• Automatic target population Recovery Rate calculation
• Three-parameter assessment (Purity/Viability/Recovery)
• Support for various separation methods
• Batch record report generation
• Compliance with GMP requirements for cell products

Critical parameters:
• Recovery Rate: ≥ Min Limit (target cells)
• Output Purity: ≥ Min Limit
• Output Viability: ≥ Min Limit
• Fold Enrichment: > 1

💡 Usage tips:
1. Cell Counting: Use automated counters with viability dye.
2. Input Control: Accurate Input Target % determination is critical for recovery calculation.
3. Temperature: Strictly maintain temperature regime (+4°C for MACS) to preserve viability.
4. Validation: Establish limits based on validation runs for each cell type.
5. Trends: Monitor efficiency drift for timely reagent/column replacement.

⚠️ Note: This utility is a separation process control tool. It does not replace functional activation or sterility tests but guarantees sufficiency and quality of material for them.

input.csv

RunID,CellType,Method,Input_TotalCells_Million,Input_Viability_Percent,Input_TargetPercent,Output_TotalCells_Million,Output_Viability_Percent,Output_TargetPercent,Min_Output_Viability_Percent,Min_Output_Purity_Percent,Min_Recovery_Rate_Percent
ENR-2026-CAR-001,CD3+ T-cells,CliniMACS Prodigy,1000,95,45,420,92,96,70,85,60
ENR-2026-NK-002,NK Cells,MACS Column,500,88,12,35,65,75,70,80,40
ENR-2026-CTC-003,Circulating Tumor Cells,Parsortix,100,90,0.01,0.5,85,60,70,50,30

URS & FS — User Requirements and Functional Specification

This document describes the controlled interface and behaviour of CellEnrichmentRunChecker for Cell Enrichment Run Checker.

Domain limits and critical parameters

Key fragments from the source description are shown below. Before production use, limits must be verified against the approved specification, registration dossier and local SOPs.
  • Cell Enrichment Run Checker — Cell Enrichment Quality Control
  • ℹ️ Utility performs comprehensive assessment of cell separation process efficiency according to GMP for ATMP and ISCT guidelines:
  • • Purity: Control of target population fraction in final product.
  • • Fold Enrichment: Calculation of target cell concentration increase factor.
  • • High purity with low yield may make manufacturing impossible due to material shortage.
  • CellEnrichmentRunChecker.exe → demo mode (console output)
  • CellEnrichmentRunChecker.exe input.csv output.json → evaluate your data
  • RunID,CellType,Method,Input_TotalCells_Million,Input_Viability_Percent,Input_TargetPercent,Output_TotalCells_Million,Output_Viability_Percent,Output_TargetPercent,Min_Output_Viability_Percent,Min_Output_Purity_Percent,Min_Recovery_Rate_Percent
  • • CAR-T/TIL Manufacturing: T-lymphocyte isolation before transduction.
  • • CTC Diagnostics: Enrichment of rare circulating tumor cells.
  • • Stem Cells: CD34+ cell isolation for transplantation.
  • Enrichment efficiency directly determines downstream process success.
  • Low purity may cause immune reactions or reduce therapy efficacy.
  • ⚠️ CRITICAL:
  • • Recovery Calculation: Must be based on absolute target cell count, not total yield.
  • • Viability Drop: >10-15% decrease relative to input requires investigation.
  • • Purity vs Yield: Balance must be defined in protocol.
  • • Method Specificity: Limits depend on method (MACS typically higher yield, FACS higher purity).

URS — User Requirements Specification

IDRequirementCriticalityAcceptance criterion
URS-001The utility shall accept an input.csv file for Cell Enrichment Run Checker with headers defined in the data contract.HighThe file is processed without manual header editing.
URS-002The utility shall perform deterministic QC evaluation without machine learning and without probabilistic conformance decisions.HighIdentical input data, rule version and configuration produce reproducible results.
URS-003The utility shall validate mandatory fields, data types, ranges, units and domain plausibility.HighSchema, conversion and range errors are explicitly reported.
URS-004The utility shall apply domain limits and rules from the description, approved specification, registration dossier and local SOPs.HighEach check has PASS/WARNING/FAIL and a clear message.
URS-005The utility shall generate output.json with machine-readable results, source values, warnings, failures and critical findings.HighJSON is suitable for LIMS/ELN/MES integration and QA/QC review.
URS-006The utility shall preserve traceability between batch/sample, input file, applied rules and final status.HighOutput contains identifiers, checked parameters and audit metadata.
URS-007The documentation shall support IQ/OQ/PQ, CSV/CSA and review by internal QA or inspectors.MediumURS, FS, input/output contract and test scenarios are supplied with the utility.
URS-008The utility shall be used as a QC decision-support tool and not as a substitute for approved specifications and QA/QP release decision.MediumDocumentation states change control and limit-verification expectations.

input.csv contract

#FieldTypeSamplePurpose
1RunIDstring / controlled vocabularyENR-2026-CAR-001Controlled input parameter for deterministic QC rules.
2CellTypestring / controlled vocabularyCD3+ T-cellsControlled input parameter for deterministic QC rules.
3Methodstring / controlled vocabularyCliniMACS ProdigyMethod or process approach; controlled reference value.
4Input_TotalCells_Millioninteger / decimal1000Controlled input parameter for deterministic QC rules.
5Input_Viability_Percentdecimal95Controlled input parameter for deterministic QC rules.
6Input_TargetPercentdecimal45Controlled input parameter for deterministic QC rules.
7Output_TotalCells_Millioninteger / decimal420Controlled input parameter for deterministic QC rules.
8Output_Viability_Percentdecimal92Controlled input parameter for deterministic QC rules.
9Output_TargetPercentdecimal96Controlled input parameter for deterministic QC rules.
10Min_Output_Viability_Percentdecimal70Controlled input parameter for deterministic QC rules.
11Min_Output_Purity_Percentdecimal85Purity or impurity profile; key QC parameter.
12Min_Recovery_Rate_Percentdecimal60Recovery; indicator of analytical validity.
RunID,CellType,Method,Input_TotalCells_Million,Input_Viability_Percent,Input_TargetPercent,Output_TotalCells_Million,Output_Viability_Percent,Output_TargetPercent,Min_Output_Viability_Percent,Min_Output_Purity_Percent,Min_Recovery_Rate_Percent
ENR-2026-CAR-001,CD3+ T-cells,CliniMACS Prodigy,1000,95,45,420,92,96,70,85,60
ENR-2026-NK-002,NK Cells,MACS Column,500,88,12,35,65,75,70,80,40
ENR-2026-CTC-003,Circulating Tumor Cells,Parsortix,100,90,0.01,0.5,85,60,70,50,30

Input validation rules

IDFieldRuleCriticality
VR-001RunIDThe field shall match an approved dictionary or accepted string representation.High
VR-002CellTypeThe field shall match an approved dictionary or accepted string representation.High
VR-003MethodThe field shall match an approved dictionary or accepted string representation.High
VR-004Input_TotalCells_MillionThe field shall match an approved dictionary or accepted string representation.Medium
VR-005Input_Viability_PercentThe field shall match an approved dictionary or accepted string representation.Medium
VR-006Input_TargetPercentThe field shall match an approved dictionary or accepted string representation.Medium
VR-007Output_TotalCells_MillionThe field shall match an approved dictionary or accepted string representation.Medium
VR-008Output_Viability_PercentThe field shall match an approved dictionary or accepted string representation.Medium
VR-009Output_TargetPercentThe field shall match an approved dictionary or accepted string representation.Medium
VR-010Min_Output_Viability_PercentThe field shall match an approved dictionary or accepted string representation.Medium
VR-011Min_Output_Purity_PercentThe field shall match an approved dictionary or accepted string representation.Medium
VR-012Min_Recovery_Rate_PercentThe field shall match an approved dictionary or accepted string representation.Medium

FS — Functional Specification

IDFunctionImplementation
FS-001CLI executionSupport execution modes: demo mode without arguments and production mode input.csv output.json.
FS-002CSV importRead input.csv in UTF-8/CSV-compatible format and validate header and expected columns.
FS-003Schema validationCheck mandatory fields, column count, unknown key fields and empty mandatory values.
FS-004Type conversionConvert numeric, flag and text values; invalid format is recorded as a row-level error.
FS-005Domain rule engineApply rules for Cell Enrichment Run Checker, including critical limits from the description and approved specification.
FS-006Status aggregationProduce final status: FAIL for critical failure, WARNING for non-critical deviation, PASS for conformance.
FS-007JSON exportWrite output.json with detailed checks, source values, warnings, failures and critical findings.
FS-008Audit supportKeep result structure suitable for review, deviation investigation and calculation reproduction.
FS-009Integration contractSupport the scenario LIMS/ELN/MES → input.csv → utility → output.json → portal/admin review.
FS-010Error handlingReturn explicit messages for missing file, empty CSV, invalid schema, output write failure and invalid format.

Example output.json

{
  "utilityId": "cellenrichmentrunchecker",
  "utilityFolder": "CellEnrichmentRunChecker",
  "package": "LiquidBiopsy",
  "overallStatus": "PASS|WARNING|FAIL",
  "sourceFile": "input.csv",
  "processedAtUtc": "2026-06-10T00:00:00Z",
  "checks": [
    {
      "parameter": "RunID",
      "value": "ENR-2026-CAR-001",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-001"
    },
    {
      "parameter": "CellType",
      "value": "CD3+ T-cells",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-002"
    },
    {
      "parameter": "Method",
      "value": "CliniMACS Prodigy",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-003"
    },
    {
      "parameter": "Input_TotalCells_Million",
      "value": "1000",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-004"
    },
    {
      "parameter": "Input_Viability_Percent",
      "value": "95",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-005"
    },
    {
      "parameter": "Input_TargetPercent",
      "value": "45",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-006"
    },
    {
      "parameter": "Output_TotalCells_Million",
      "value": "420",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-007"
    },
    {
      "parameter": "Output_Viability_Percent",
      "value": "92",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-008"
    },
    {
      "parameter": "Output_TargetPercent",
      "value": "96",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-009"
    },
    {
      "parameter": "Min_Output_Viability_Percent",
      "value": "70",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-010"
    },
    {
      "parameter": "Min_Output_Purity_Percent",
      "value": "85",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-011"
    },
    {
      "parameter": "Min_Recovery_Rate_Percent",
      "value": "60",
      "status": "PASS|WARNING|FAIL",
      "message": "Deterministic rule-based check result",
      "ruleReference": "FS-RULE-012"
    }
  ],
  "criticalFindings": [],
  "warnings": [],
  "audit": {
    "inputHash": "sha256:<calculated at runtime>",
    "rulesVersion": "<utility executable version>",
    "documentation": "CellEnrichmentRunChecker.documentation.html"
  }
}

Traceability matrix

URSFSTestEvidence
URS-001FS-001, FS-002OQ-001Verify execution and import of valid input.csv.
URS-002FS-005, FS-006OQ-004Repeat the same dataset and compare output.json.
URS-003FS-003, FS-004, FS-010OQ-002, OQ-003Verify missing columns and invalid types.
URS-004FS-005, FS-006OQ-004, PQ-001Verify critical deviations on real/boundary data.
URS-005FS-007, FS-009OQ-005Verify JSON schema and downstream-system suitability.
URS-006FS-008OQ-006Verify identifiers and audit metadata.
URS-007FS-008, FS-010IQ-001, OQ-007Verify documentation completeness and control evidence.
URS-008FS-005, FS-008PQ-002Verify review workflow and no replacement of QA decision.

IQ/OQ/PQ test scenarios

IDScenarioExpected result
IQ-001Verify executable, input.csv, documentation and checksum availability.Delivery set is complete; version is recorded.
OQ-001Valid sample row from input.csv.PASS or acceptable WARNING according to rules.
OQ-002Remove a mandatory CSV column.Schema error or FAIL with missing-column reference.
OQ-003Place a non-numeric value into a numeric field.Type-conversion error with row/field reference.
OQ-004Set a critical parameter outside the limit.FAIL and critical finding.
OQ-005Verify output.json structure.All mandatory sections are present and JSON is valid.
OQ-006Verify batch/sample traceability.Input and result identifiers match.
PQ-001Verify 3–5 real user batches/samples.Result is confirmed by QC/QA review.
PQ-002Verify deviation workflow and manual QA decision.Utility supports review but does not replace approved decision.

QA/QC and change control

  • Do not rename columns without updating validator, documentation and test set.
  • Retain input.csv, output.json, executable version and checksum.
  • Before production use, perform IQ/OQ/PQ or equivalent CSV/CSA verification.
  • Critical limits shall be verified against the approved specification, registration dossier and local SOPs.
  • The utility provides structured QC decision support; final release decision remains with QA/QP and approved procedures.

Included in packages

Liquid Biopsy QC Suite

QC and pre-analytical control package for liquid biopsy workflows: cfDNA/ctDNA, CTC, EV/exosomes, methylation, NGS/qPCR/ddPCR, sample quality, contamination, sensitivity and reporting checks.

Open