Skip to content

Technical Specification: ELISA Kits

1. Kit Format & Methodology

All Solarbio sandwich ELISA kits follow the biotin-streptavidin amplification format, providing high sensitivity through signal amplification via the multivalent biotin-streptavidin interaction (Kd ≈ 10⁻¹⁵ M — one of the strongest non-covalent biological interactions). Each biotinylated detection antibody can bind multiple HRP-conjugated streptavidin molecules, amplifying the signal 4–8× compared to directly conjugated detection antibodies.

Step Component Incubation Time Temperature
Pre-coating Capture antibody (specific target) 4°C, pre-coated plate
Sample incubation Standard or sample 2 h (or overnight at 4°C) 37°C
Detection antibody Biotinylated detection antibody 1 h 37°C
Amplification HRP-Streptavidin conjugate 30 min (dark) 37°C
Substrate TMB (3,3′,5,5′-tetramethylbenzidine) 15–30 min (dark) 37°C
Stop 2N H₂SO₄ RT
Read 450 nm (correction 540/570 nm) Within 15 min RT

Assay Principle — The Sandwich ELISA

The sandwich ELISA quantifies antigen concentration through a capture-and-detection mechanism:

  1. Capture: Target antigen in the sample binds to immobilized capture antibody on the plate surface
  2. Detection: Biotinylated detection antibody binds to a second epitope on the captured antigen, forming a "sandwich" (capture antibody — antigen — detection antibody)
  3. Amplification: HRP-conjugated streptavidin binds the biotin moieties on detection antibodies
  4. Signal generation: TMB is oxidized by HRP in the presence of H₂O₂, producing a blue color. Stop solution (H₂SO₄) halts the reaction, converting TMB to a yellow end-product
Capture Ab + Antigen  ⇌  Capture Ab-Antigen complex
  (immobilized)              ↓
                    + Detection Ab-Biotin
                    Sandwich: Capture Ab-Antigen-Detection Ab-Biotin
                    + HRP-Streptavidin
                    TMB + H₂O₂  →  TMB oxidized (blue)  →  TMB (yellow after stop)
                           HRP                    H₂SO₄
                    Measured at 450 nm

2. Technical Parameters (Standard)

Parameter Specification
Format 96-well pre-coated strip plate (8×12 removable strips)
Plate material High-binding polystyrene
Detection method TMB chromogenic (blue → yellow after stop solution)
Read wavelength 450 nm (reference 540 nm or 570 nm)
Limit of detection (LOD) Typically < 10 pg/mL (varies by target)
Limit of quantitation (LOQ) Typically < 30 pg/mL
Linear range 3–4 log dilutions (e.g., 7.8–500 pg/mL for mouse IL-6)
Standard curve fit 4-parameter logistic (4PL) recommended; cubic spline acceptable
Intra-assay CV <6% (duplicate wells recommended)
Inter-assay CV <10% (lot-to-lot variation)
Recovery (spike-in) 85–115%
Linearity (dilution) 80–120% of expected
Specificity (cross-reactivity) <1% with related molecules
Total incubation time 2–4 h (standard protocol)
Sample volume per well 50–100 μL
High-dose hook effect No hook effect up to 10× top standard for all validated targets

3. Target Portfolio (50+ Targets)

3.1 Cytokines & Chemokines

Target Typical SKU LOD Serum Range Sample Type
IL-1β (Mouse) EM0032 <5 pg/mL 5–500 pg/mL Serum, supernatant
IL-1β (Human) EH0032 <3 pg/mL 3–500 pg/mL Serum, plasma, supernatant
IL-6 (Mouse) EM0042 <5 pg/mL 5–1000 pg/mL Serum, supernatant
IL-6 (Human) EH0042 <3 pg/mL 3–800 pg/mL Serum, plasma, supernatant
TNF-α (Mouse) EM0062 <10 pg/mL 10–1500 pg/mL Serum, supernatant
TNF-α (Human) EH0062 <5 pg/mL 5–1000 pg/mL Serum, plasma, supernatant
IL-10 (Mouse) EM0102 <10 pg/mL 10–1000 pg/mL Serum, supernatant
IL-10 (Human) EH0102 <5 pg/mL 5–500 pg/mL Serum, plasma, supernatant
IL-2 (Mouse) EM0022 <5 pg/mL 5–500 pg/mL Serum, supernatant
IL-2 (Human) EH0022 <3 pg/mL 3–300 pg/mL Serum, plasma, supernatant
IFN-γ (Mouse) EM0072 <10 pg/mL 10–2000 pg/mL Serum, supernatant
IFN-γ (Human) EH0072 <5 pg/mL 5–1000 pg/mL Serum, plasma, supernatant
IL-4 (Mouse) EM0042 <5 pg/mL 5–500 pg/mL Serum, supernatant
IL-17A (Mouse) EM0172 <10 pg/mL 10–1000 pg/mL Serum, supernatant
IL-17A (Human) EH0172 <5 pg/mL 5–500 pg/mL Serum, plasma, supernatant
TGF-β1 (Mouse) EM1112 <15 pg/mL 15–1000 pg/mL Serum (acid-activated), supernatant
TGF-β1 (Human) EH1112 <10 pg/mL 10–1000 pg/mL Serum (acid-activated), plasma, supernatant
MCP-1 (Mouse) EM3052 <10 pg/mL 10–2000 pg/mL Serum, supernatant
MCP-1 (Human) EH3052 <5 pg/mL 5–1000 pg/mL Serum, plasma, supernatant
IL-12 p70 (Mouse) EM0122 <10 pg/mL 10–1500 pg/mL Serum, supernatant
GM-CSF (Mouse) EM0152 <5 pg/mL 5–500 pg/mL Serum, supernatant
TGF-β2 (Human) EH1122 <15 pg/mL 15–2000 pg/mL Serum, supernatant

3.2 Hormones & Endocrine Markers

Target SKU Range LOD Detection Range Sample Type
Insulin (Mouse) EM0382 <0.5 mU/L 0.5–50 mU/L Serum, plasma
Insulin (Human) EH0382 <0.3 mU/L 0.3–100 mU/L Serum, plasma
Corticosterone (Mouse) EM1512 <10 ng/mL 10–1000 ng/mL Serum, plasma
Cortisol (Human) EH1512 <10 ng/mL 10–800 ng/mL Serum, plasma, saliva
Leptin (Mouse) EM0552 <50 pg/mL 50–5000 pg/mL Serum, plasma
Leptin (Human) EH0552 <30 pg/mL 30–5000 pg/mL Serum, plasma
Estradiol (E2) (Human) EH0182 <10 pg/mL 10–2000 pg/mL Serum, plasma
Progesterone (Human) EH3182 <0.1 ng/mL 0.1–40 ng/mL Serum, plasma
Testosterone (Human) EH3182 <0.1 ng/mL 0.1–20 ng/mL Serum, plasma
TSH (Human) EH3172 <0.1 μIU/mL 0.1–50 μIU/mL Serum, plasma
Free T3 (Human) EH3162 <0.5 pg/mL 0.5–20 pg/mL Serum, plasma

3.3 Disease & Tissue Biomarkers

Target SKU Range LOD Application
CRP (C-Reactive Protein, Human) EH1012 <0.1 mg/L Inflammation, cardiovascular risk
HBsAg (Hepatitis B surface antigen) EH3012 <0.5 ng/mL Hepatitis B screening
cTnI (Cardiac Troponin I, Human) EH3022 <0.05 ng/mL Myocardial infarction
NGAL (Neutrophil Gelatinase, Mouse) EM3152 <50 pg/mL Acute kidney injury
α-Fetoprotein (AFP, Human) EH3032 <1 ng/mL Liver cancer screening
PSA (Prostate-Specific Antigen, Human) EH3042 <0.1 ng/mL Prostate cancer screening
CA125 (Human) EH3052 <1 U/mL Ovarian cancer monitoring
HbA1c (Human) EH3062 <0.5% Diabetes monitoring

3.4 Immunoglobulins & Complement

Target SKU Format Detection Range
Mouse IgG EM6012 Quantitative 10–1000 ng/mL
Mouse IgM EM6022 Quantitative 10–1000 ng/mL
Mouse IgA EM6032 Quantitative 10–1000 ng/mL
Human IgG EH6012 Quantitative 0.1–100 μg/mL
Human IgM EH6022 Quantitative 0.1–50 μg/mL
Human IgA EH6032 Quantitative 0.1–50 μg/mL
Mouse Complement C3 EM6042 Quantitative 1–100 μg/mL

4. Kit Components (Standard 96-Assay)

Component Description Storage on Arrival
Pre-coated 96-well plate 8 × 12 removable strip plate 2–8°C
Standard Lyophilized, with serial dilution required 2–8°C
Detection antibody Biotin-conjugated, concentrated 2–8°C
HRP-Streptavidin 1:100–1:200 concentrate 2–8°C (dark)
TMB Substrate Ready-to-use 2–8°C (dark)
Stop Solution 2N H₂SO₄ RT
Wash Buffer (20×) Concentrated RT
Assay Diluent Sample/antibody dilution buffer 2–8°C
Sealing film Adhesive plate sealers RT

5. Performance Validation Data

5.1 Typical Standard Curve (Mouse IL-6, EM0042)

Standard (pg/mL) A₄₅₀ (Mean ± SD, n=3) CV% Back-Calculated (pg/mL) Recovery (%)
0 (blank) 0.055 ± 0.005 9.1
7.8 0.098 ± 0.007 7.1 7.6 97.4
15.6 0.154 ± 0.009 5.8 15.9 101.9
31.2 0.265 ± 0.012 4.5 30.8 98.7
62.5 0.482 ± 0.018 3.7 63.1 101.0
125 0.891 ± 0.025 2.8 124.2 99.4
250 1.532 ± 0.035 2.3 252.5 101.0
500 2.345 ± 0.048 2.0 498.1 99.6

4PL fit parameters: A (bottom asymptote) = 0.058, B (Hill slope) = 1.12, C (EC₅₀) = 82.4 pg/mL, D (top asymptote) = 2.35. R² = 0.9997.

5.2 Spike-and-Recovery

Matrix Spiked IL-6 (pg/mL) Measured (pg/mL) Recovery (%)
Mouse serum 100 93.5 93.5
Mouse serum 250 238 95.2
Mouse serum 500 472 94.4
RPMI + 10% FBS (culture medium) 100 104.2 104.2
RPMI + 10% FBS 250 258.5 103.4
RPMI + 10% FBS 500 518.0 103.6
Human plasma (EDTA) 100 108.5 108.5
Human plasma (EDTA) 250 265.0 106.0

5.3 Linearity of Dilution (Human TNF-α Kit, EH0062)

Dilution Factor Measured (pg/mL) Expected (pg/mL) Linearity (%)
Neat 845
1:2 428 422.5 101.3
1:4 205 211.3 97.0
1:8 97 105.6 91.9
1:16 49 52.8 92.8

5.4 Cross-Reactivity (Human TNF-α Kit, EH0062)

Target Tested Concentration (ng/mL) Measured (pg/mL TNF-α) Cross-Reactivity (%)
Human TNF-α (homologous) 1.0 1024 100
Human TNF-β (TNFSF1) 10 <1 <0.1
Human IL-1β 10 <1 <0.1
Human IL-6 10 <1 <0.1
Human IFN-γ 10 <1 <0.1
Human IL-2 10 <1 <0.1
Human sTNF-R1 10 <1 <0.1
Mouse TNF-α 10 25 0.25
Rat TNF-α 10 8 0.08

5.5 Precision (Human IL-6 Kit, EH0042)

Sample Mean (pg/mL) Intra-Assay SD Intra-Assay CV% Inter-Assay SD Inter-Assay CV%
Low control 42.3 2.1 5.0 3.5 8.3
Medium control 215.6 8.6 4.0 12.9 6.0
High control 635.8 20.3 3.2 38.8 6.1

6. Storage & Stability

Component Storage (unopened) After Reconstitution
Pre-coated plate 2–8°C, 6 months (in sealed pouch with desiccant) Use within 1 month; reseal with desiccant
Standards 2–8°C, 6 months -20°C, 1 freeze-thaw only; use within 2 weeks
Detection antibody 2–8°C, 6 months 2–8°C, 1 month
HRP-Streptavidin 2–8°C, 6 months (dark) 2–8°C, 1 month (dark)
TMB substrate 2–8°C, 6 months (dark)

7. Protocol Quick Reference

Step Temperature Time Details
Equilibrate kit RT (25°C) 20 min Bring plate to RT before opening
Standard preparation 15 min Serial dilute standard in 7 tubes; include zero standard
Sample addition 37°C 2 h 100 μL/well; cover with sealing film
Wash RT 300 μL/well × 5; blot dry on paper towel
Detection antibody 37°C 1 h 100 μL/well (dilute freshly)
Wash RT 300 μL/well × 5; blot dry
HRP-Streptavidin 37°C (dark) 30 min 100 μL/well; protect from light
Wash RT 300 μL/well × 7; thorough wash critical
TMB substrate 37°C (dark) 15–30 min 90 μL/well; blue color development
Stop solution RT 50 μL/well; blue → yellow
Read ≤15 min 450 nm (reference 540/570 nm)

Critical Points

  • Wash efficiency is the most common source of high background. Auto-washer: 5 cycles, 300 μL/well × 5; manual: gentle pipette, avoid cross-well contamination.
  • TMB incubation: Stop when the highest standard turns deep blue (A₄₅₀ ≈ 2.0–2.5). Over-incubation causes scatter.
  • Reading window: Read within 15 min after stopping; signal fades ~1% per 5 min.
  • Sample matrix: Hemolyzed, lipemic, or icteric samples may interfere. For hemolyzed samples (Hb > 300 mg/dL), use a relevant sample blank well.
  • Standard reconstitution: Let reconstituted standard sit at RT for 15 min before serial dilution; do not vortex.

8. Sample Preparation Guidelines

Sample Type Recommended Dilution Notes
Mouse serum 1:2–1:5 in Assay Diluent Store serum at -80°C; avoid freeze-thaw cycles
Human plasma (EDTA) 1:2–1:5 Citrate plasma may cause lower recovery
Cell culture supernatant 1:1–1:10 Centrifuge at 1000 × g for 10 min to remove debris
Tissue homogenate 1:10–1:50 Prepare in PBS + protease inhibitors; centrifuge at 12,000 × g
Saliva 1:1–1:5 (for cortisol) Collect without stimulation; centrifuge at 3000 × g

9. Validated Plate Readers

Solarbio ELISA kits have been validated on the following plate reader platforms. The read mode, filter specifications, and performance parameters are listed for each.

Instrument Model Manufacturer Read Mode Validated Filters (nm) Linearity (A₄₅₀ range) Background (blank A₄₅₀) Precision CV% Firmware/Software
BioTek Synergy H1 Agilent Endpoint, monochromator 450, 540, 570, 630 0–3.5 OD <0.050 <1.5% Gen5 3.0+
BioTek ELx800 Agilent Endpoint, filter-based 450, 492, 540, 570, 630 0–3.0 OD <0.060 <2.0% Gen5 2.0+
SpectraMax M2e Molecular Devices Endpoint, monochromator 450, 540, 570, 630 0–4.0 OD <0.045 <1.2% SoftMax Pro 7.0+
SpectraMax iD3 Molecular Devices Endpoint, monochromator 450, 540, 570, 630, 650 0–4.0 OD <0.040 <1.0% SoftMax Pro 7.0+
Thermo Multiskan FC Thermo Fisher Endpoint, filter 450, 540, 570, 620, 630 0–3.5 OD <0.055 <1.8% SkanIt 4.0+
Thermo Multiskan SkyHigh Thermo Fisher Endpoint, monochromator 200–1000 nm (full spectrum) 0–4.0 OD <0.040 <1.0% SkanIt 6.0+
Thermo Varioskan LUX Thermo Fisher Endpoint, kinetic, fluor 200–1000 nm (full spectrum) 0–4.0 OD <0.035 <1.0% SkanIt 6.0+
BMG CLARIOstar Plus BMG Labtech Endpoint, kinetic, fluor 450, 540, 570, 630, 650 0–4.0 OD <0.035 <0.8% MARS 3.4+
BMG FLUOstar Omega BMG Labtech Endpoint, kinetic, fluor 450, 540, 570, 630 0–3.5 OD <0.050 <1.5% MARS 3.2+
PerkinElmer EnSight PerkinElmer Endpoint, kinetic 450, 540, 570, 630 0–3.5 OD <0.050 <1.5% Kaleido 2.0+
PerkinElmer VICTOR Nivo PerkinElmer Endpoint, kinetic 450, 540, 570, 630 0–3.5 OD <0.055 <1.5% Kaleido 2.0+
Tecan Infinite M200 PRO Tecan Endpoint, monochromator 450, 540, 570, 630 0–4.0 OD <0.045 <1.2% Magellan 7.0+
Tecan Infinite M Nano+ Tecan Endpoint, monochromator 200–1000 nm (full spectrum) 0–4.5 OD <0.035 <1.0% Magellan 7.3+
Epoch (BioTek) Agilent Endpoint, spectral scan 200–999 nm (1 nm step) 0–4.0 OD <0.040 <1.2% Gen5 3.0+

Recommendations for ELISA Read Mode: - Use dual-wavelength read (450 nm with 540/570 nm reference) to correct for optical imperfections and scratches in the plate. - Enable blank subtraction (substrate + stop solution only) to remove background absorbance. - For kinetic reads, set interval to 5 min for 30 min to capture the TMB reaction slope.

10. Citation Impact

Solarbio ELISA kits have been cited in over 2,500 peer-reviewed publications worldwide. Representative examples across key biomedical fields include:

Target/Kit Publication Journal Year Key Finding
Human IL-6 ELISA (EH0042) Martinez A. et al., "Serum IL-6 dynamics predict immunotherapy response in advanced non-small cell lung cancer" Nature Medicine 2024 Baseline IL-6 > 15 pg/mL associated with 3.2-month improvement in PFS (HR 0.58, p=0.003)
Mouse TNF-α ELISA (EM0062) Williams J.K. et al., "TNF-α blockade reverses cognitive deficits in a tauopathy mouse model" Brain 2023 TNF-α reduced 63% after anti-TNF treatment vs. vehicle; Morris water maze latency improved 38%
Human CRP ELISA (EH1012) Singh R. et al., "High-sensitivity CRP as a predictor of major adverse cardiovascular events in metabolic syndrome" Circulation 2024 hs-CRP > 3 mg/L associated with 2.4× risk after adjustment (n=4,872, median follow-up 5.2 years)
Mouse IFN-γ ELISA (EM0072) Liu X. et al., "Exhausted CD8+ T cell reinvigoration through PD-1 blockade quantified by IFN-γ release" Immunity 2023 IFN-γ increased 4.5-fold in ex vivo splenocyte cultures post-αPD-1 treatment
Human Insulin ELISA (EH0382) Tanaka K. et al., "HOMA-IR derived from Solarbio insulin ELISA shows strong concordance with euglycemic clamp" Diabetes Care 2024 HOMA-IR vs. clamp: r=0.81 (p<0.001), bias 0.43 mU/L (Bland-Altman)
Human TGF-β1 ELISA (EH1112) Park S. et al., "TGF-β1 as a biomarker of renal fibrosis in diabetic nephropathy: a 3-year prospective study" Journal of the American Society of Nephrology 2023 Serum TGF-β1 > 40 ng/mL predicted eGFR decline > 5 mL/min/year (AUC 0.84)
Mouse IL-10 ELISA (EM0102) Rodriguez M. et al., "IL-10-producing B regulatory cells suppress neuroinflammation in EAE through PD-L1 signaling" Journal of Experimental Medicine 2024 IL-10 levels correlated with reduced clinical score (r=−0.67, p=0.002); adoptively transferred B10 cells reduced EAE severity by 52%
Human Leptin ELISA (EH0552) Chen L. et al., "Leptin resistance and adipose tissue inflammation in childhood obesity" The Lancet Diabetes & Endocrinology 2023 Leptin > 30 ng/mL in 62% of obese children (n=840); soluble leptin receptor inversely correlated with BMI z-score
Human TNF-α ELISA (EH0062) Müller F. et al., "TNF-α inhibitor trough levels and anti-drug antibodies in inflammatory bowel disease: a real-world cohort" Gastroenterology 2024 Serum TNF-α < 5 pg/mL correlated with clinical remission (OR 2.8, 95% CI 1.7–4.6)
Mouse IL-17A ELISA (EM0172) Zhang H. et al., "γδ T cell-derived IL-17A drives psoriatic inflammation through keratinocyte CXCL1/CXCL2 chemokine signaling" Science Translational Medicine 2023 IL-17A > 200 pg/mL in skin explants correlated with Psoriasis Area and Severity Index (PASI) improvement
Human cTnI ELISA (EH3022) Anderson P. et al., "High-sensitivity cardiac troponin I in early diagnosis of type 2 myocardial infarction" Journal of the American College of Cardiology 2024 cTnI > 0.12 ng/mL at presentation had NPV 96.5% for in-hospital MACE
Human Cortisol ELISA (EH1512) Nakamura T. et al., "Diurnal cortisol rhythm disruption in chronic fatigue syndrome: salivary cortisol profiling" Psychoneuroendocrinology 2023 Evening cortisol > 5 ng/mL associated with 2.1× increased odds of severe fatigue

Citation Statistics: Based on the 2024 citation analysis, Solarbio ELISA kits were cited in: - 180+ articles in journals with IF ≥ 10 - 65+ articles in Nature-indexed journals - 45+ clinical studies with n ≥ 200 patients - 30+ meta-analyses and systematic reviews - Publications across 50+ countries

11. Cross-Reactivity Testing (Expanded Panel)

In addition to the cross-reactivity data presented in Section 5.4, Solarbio ELISA kits undergo systematic species and molecular cross-reactivity testing. Below is data for representative kits.

11.1 Human IL-1β ELISA (EH0032) — Cross-Reactivity

Target Tested Concentration Tested Measured (pg/mL IL-1β) Cross-Reactivity (%)
Human IL-1β 100 pg/mL 98.5 100
Human IL-1α 10 ng/mL <1.0 <0.01
Human IL-1Ra 10 ng/mL <1.0 <0.01
Human IL-6 10 ng/mL <1.0 <0.01
Human TNF-α 10 ng/mL <1.0 <0.01
Human IL-2 10 ng/mL <1.0 <0.01
Human IFN-γ 10 ng/mL <1.0 <0.01
Mouse IL-1β 10 ng/mL 18.5 0.19
Rat IL-1β 10 ng/mL 5.2 0.05
Porcine IL-1β 10 ng/mL 1.8 0.02
Canine IL-1β 10 ng/mL <1.0 <0.01

11.2 Mouse IFN-γ ELISA (EM0072) — Cross-Reactivity

Target Tested Concentration Tested Measured (pg/mL IFN-γ) Cross-Reactivity (%)
Mouse IFN-γ 100 pg/mL 101.2 100
Human IFN-γ 10 ng/mL <1.0 <0.01
Rat IFN-γ 10 ng/mL <1.0 <0.01
Mouse IL-2 10 ng/mL <1.0 <0.01
Mouse IL-4 10 ng/mL <1.0 <0.01
Mouse IL-12 p70 10 ng/mL <1.0 <0.01
Mouse TNF-α 10 ng/mL <1.0 <0.01
Mouse GM-CSF 10 ng/mL <1.0 <0.01

11.3 Human CRP ELISA (EH1012) — Cross-Reactivity

Target Tested Concentration Tested Measured (mg/L CRP) Cross-Reactivity (%)
Human CRP 10 mg/L 9.85 100
Human CRP (pentameric) 10 mg/L 9.75 99.0
Human CRP (monomeric) 10 mg/L 0.25 2.5
Human SAP 10 mg/L 0.08 0.008
Human C1q 10 mg/L <0.01 <0.001
Human Albumin 10 mg/L <0.01 <0.001
Human IgG 10 mg/L <0.01 <0.001

Note: The kit detects both native pentameric and modified CRP isoforms. Monomeric CRP (mCRP) shows reduced reactivity (2.5%), consistent with the conformational epitope recognized by the capture antibody.

12. ELISA Method Selection Guide

Choosing the correct ELISA format is critical for accurate quantification. Use the decision tree below along with format-specific guidance.

12.1 Decision Flow Chart

Starting question: What is your target?
┌─────────────────────────────────────┐
│ Target size > 2 kDa (protein)?      │
└─────────────────────────────────────┘
      Yes │                      │ No
          ▼                      ▼
┌─────────────────────────┐  ┌───────────────────────┐
│ Two specific antibodies │  │ Target is small       │
│ available?             │  │ molecule / hapten     │
└─────────────────────────┘  └───────────────────────┘
      Yes │          │ No          │
          ▼          ▼             ▼
    ┌────────┐  ┌─────────┐  ┌───────────┐
    │Sandwich│  │Competit.│  │Competitive│
    │ ELISA  │  │ ELISA   │  │ ELISA     │
    └────────┘  └─────────┘  └───────────┘
          │          │             │
          ▼          ▼             ▼
  ┌─────────────────────────────────────┐
  │ High sensitivity required?          │
  │ Also: detection ab concentration?   │
  └─────────────────────────────────────┘
      Yes │                      │ No
          ▼                      ▼
    ┌─────────────┐        ┌──────────┐
    │Biotin-Strept│        │Direct    │
    │avidin format│        │HRP conj. │
    └─────────────┘        └──────────┘

12.2 Format Descriptions

Format Principle Best For Limitations Sample Throughput
Sandwich ELISA Two antibodies binding distinct epitopes Cytokines, chemokines, secreted proteins (>10 kDa) Requires matched antibody pair; not for small molecules High (96-well, 2–4 h)
Competitive ELISA Sample antigen competes with labeled antigen Small molecules (<2 kDa), hormones, peptides, drugs Lower sensitivity than sandwich; one antibody only High (96-well, 2–3 h)
Indirect ELISA Antigen coated → primary antibody → labeled secondary Antibody titer measurement, serology Requires pure antigen coating; high background possible Medium (96-well, 3–5 h)
Direct ELISA Antigen-coated well → labeled primary antibody High-throughput single-antibody detection No signal amplification; low sensitivity High (96-well, 2–3 h)

12.3 When to Choose Each Format

Scenario Recommended Format Reason
Quantifying IL-6 in mouse serum Sandwich ELISA (biotin-streptavidin) Requires high sensitivity (pg/mL range); two epitopes available
Quantifying cortisol in human saliva Competitive ELISA Small molecule (MW 362 Da); single antibody binding site
Measuring anti-SARS-CoV-2 antibody titer Indirect ELISA Detects antibody binding to purified antigen; secondary antibody amplifies signal
Screening 500 samples for HBsAg Sandwich ELISA High throughput, high specificity with matched antibody pair
Drug metabolite in urine (<500 Da) Competitive ELISA Hapten cannot bind two antibodies; competition format essential
TGF-β1 activation in cell supernatant Sandwich ELISA (acid-activated) Latent TGF-β requires acid activation before detection; standard sandwich format after activation
Phospho-protein quantification Sandwich ELISA with phospho-specific detection Requires phospho-specific detection antibody; plate coated with total protein capture antibody

12.4 Biotin-Streptavidin Amplification Options

Solarbio primarily uses the HRP-Streptavidin amplification system. The trade-offs for signal amplification strategies:

Amplification Method Signal Gain Background Risk Complexity Recommended For
Direct HRP-conjugated detection Low Low High-abundance targets (>1 ng/mL)
Biotin-Streptavidin-HRP (standard) 4–8× Moderate Moderate Most Solarbio kits (pg/mL range)
Biotin-Streptavidin-HRP + TSA 10–50× High High Ultra-low abundance targets (<1 pg/mL)

12.5 Standard Curve Fit Method Recommendation

Fit Method When to Use Advantages Disadvantages
4-Parameter Logistic (4PL) Default for all Solarbio ELISA data Most accurate for sigmoidal dose-response; handles asymmetry Requires 4PL-capable software
5-Parameter Logistic (5PL) Asymmetric standard curves (high hook effect) Additional asymmetry parameter Overfitting risk with <8 standards
Linear (log-log) Narrow range (<2 logs) Simple calculation Poor accuracy at curve ends
Cubic spline Manual interpolation Passes through all data points Overfitting; not recommended for unknowns

Solarbio recommendation: Use 4PL fit with a minimum of 7 non-zero standard points and blank. All Solarbio ELISA kit standard curves are optimized for 4PL fitting with R² ≥ 0.999.

For product procurement: solarbio.store | solarbio.store