| Literature DB >> 27083158 |
Cheong-Huat Tan1,2, Pei-Sze Jeslyn Wong3, Mei-Zhi Irene Li3, Hui-Ting Yang3, Chee-Seng Chong3, Linda K Lee4, Shi Yuan3, Yee-Sin Leo4, Lee-Ching Ng3,5, David C Lye4.
Abstract
BACKGROUND: Understanding the interaction between Aedes vectors and dengue viruses (DENV) has significant implications in determining the transmission dynamics of dengue. The absence of an animal model and ethical concerns regarding direct feeding of mosquitoes on patients has resulted in most infection studies using blood meals spiked with laboratory-cultured DENV. Data obtained from such studies may not reflect the natural human-mosquito transmission scenario. This study explored the potential of using membrane feeding of dengue patient's blood as a substitute for direct skin feeding.Entities:
Keywords: Aedes aegypti; Dengue; Direct Skin Feeding Assay (DFSA); EDTA blood; Membrane Feeding Assay (MFA)
Mesh:
Year: 2016 PMID: 27083158 PMCID: PMC4833953 DOI: 10.1186/s13071-016-1469-6
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
Patient dengue virus (DENV) viraemia, serotype and midgut/salivary gland infection rates and virus titre in Aedes aegypti exposed using either direct skin feeding assay (DSFA) on patients or membrane feeding assay using EDTA-treated patient blood (MFA)
| Patient | Serotype | Serum virus titre (log10 RNAcopy/ml) | Mode of infection | Feeding rate fed/ |
| Midgut | Salivary Glands | ||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| Infected/ | Number of RNA copies |
| infected/ | DENV SG Titer (Log10TCID50/ml) |
| ||||||
| 5 | 1 | 9.49 | DSFA | 30/30 (100) | <0.0001* | 100 (12) | 9.07 ± 0.26 | 0.95 | 12/12 (100) | 4.98 ± 1.03 | 0.16 |
| MFA | 37/56 (66) | 100 (12) | 9.11 ± 0.13 | 12/12 (100) | 5.52 ± 0.66 | ||||||
| 8 | 1 | 9.21 | DSFA | 30/30 (100) | <0.0001* | 9/9 (100) | 9.16 ± 0.09 | 0.02* | 9/9(100) | 4.67 ± 0.94 | 0.02* |
| MFA | 27/56 (48.2) | 12/12 (100) | 8.45 ± 0.54 | 12/12(100) | 5.24 ± 0.28 | ||||||
| 9 | 1 | 5.65 | DSFA | 27/30 (90) | 0.03* | 12/12 (100) | 3.62 ± 1.93 | 0.88 | 0/12 | 0 | ND |
| MFA | 38/56 (67.8) | 8/12 (66.7) | 4.57 ± 3.10 | 0/12 | 0 | ||||||
| 10 | 1 | 4.76 | DSFA | 30/30 (100) | 0.007* | 2/12 (16.7) | 3.52 | ND | 0/12 | 0 | ND |
| MFA | 45/56 (80.4) | 2/12 (16.7) | 3.08 | 0/12 | 0 | ||||||
| 11 | 1 | 7.51 | DSFA | 29/30 (96.7) | 0.25 | 12/12 (100) | 6.22 ± 2.96 | 0.52 | 6/12 (50) | 3.95 ± 0.7 | 0.09 |
| MFA | 49/56 (87.5) | 12/12 (100) | 6.38 ± 3.3 | 5/12 (42) | 4.95 ± 0.76 | ||||||
| 12 | 1 | 9.18 | DSFA | 28/30 (93.3) | 1 | 12/12 (100) | 9.8 ± 0.48 | 0.52 | 12/12 (100) | 5.18 ± 0.49 | 0.003 |
| MFA | 51/56 (91.1) | 12/12 (100) | 9.66 ± 0.31 | 8/12 (67) | 4.74 ± 1.66 | ||||||
| 13 | 1 | 8.44 | DSFA | 17/17 (100) | 0.57 | 12/12 (100) | 9.69 ± 0.37 | 0.06 | 11/12 (92) | 3.52 ± 1.19 | 0.82 |
| MFA | 43/47 (91.5) | 12/12 (100) | 9.73 ± 1.51 | 12/12 (100) | 4.89 ± -.66 | ||||||
| 14 | 1 | 5.71 | DSFA | 17/17 (100) | 0.001* | 7/12 (58.3) | 3.25 ± 1.12 | 1 | 0/12 | 0 | ND |
| MFA | 27/46 (58.7) | 8/12 (66.7) | 2.83 ± 0.2 | 0/12 | 0 | ||||||
| 15 | 1 | 5.64 | DSFA | 16/17 (94.1) | 0.66 | 11/11 (100) | 5.21 ± 3.00 | 0.14 | 3/12 (27) | 4.19 ± 0.57 | ND |
| MFA | 37/42 (88.1) | 9/12 (75) | 3.87 ± 2.01 | 1/11 (9) | 3.95 | ||||||
| 16 | 1 | 8.85 | DSFA | 17/17 (100) | 1 | 12/12 (100) | 9.50 ± 0.11 | 0.02* | 12/12 (100) | 4.64 ± 0.49 | 0.8 |
| MFA | 46/46 (100) | 12/12 (100) | 9.66 ± 0.17 | 12/12 (100) | 4.34 ± 0.67 | ||||||
| 17 | 1 | 4.75 | DSFA | 17/17 (100) | 0.02* | 8/12 (66.7) | 2.62 ± 0.01 | 0.16 | 0/12 | 0 | ND |
| MFA | 40/56 (71.4) | 7/12 (58.3) | 3.48 ± 0.82 | 0/12 | 0 | ||||||
| 18 | 1 | 7.55 | DSFA | 17/17 (100) | 0.03* | 12/12 (100) | 7.6 ± 3.68 | 0.06 | 1/12 (8) | 4.95 | ND |
| MFA | 42/56 (75) | 12/12 (100) | 5.44 ± 3.29 | 6/12 (50) | 3.73 ± 0.30 | ||||||
| 19 | 1 | 7.31 | DSFA | 17/17 (100) | 0.02* | 10/12 (83.3) | 5.9 ± 3.26 | 0.45 | 5/12 (45) | 4.69 ± 0.74 | 0.76 |
| MFA | 39/54 (72.2) | 10/11 (90.9) | 6.89 ± 3.17 | 3/12 (25) | 4.52 ± 1.00 | ||||||
| 20 | 1 | 8.2 | DSFA | 17/17 (100) | 0.32 | 12/12 (100) | 9.66 ± 0.24 | 0.15 | 12/12 (100) | 4.25 ± 0.49 | 0.54 |
| MFA | 50/56 (89.3) | 12/12 (100) | 9.51 ± 0.18 | 12/12 (100) | 4.36 ± 0.52 | ||||||
| 21 | 1 | 8.79 | DSFA | 17/17 (100) | 0.19 | 12/12 (100) | 8.86 ± 0.72 | 0.4529 | 12/12 (100) | 4.22 ± 0.41 | 0.63 |
| MFA | 49/56 (87.5) | 12/12 (100) | 9.12 ± 0.22 | 12/12 (100) | 4.26 ± 0.59 | ||||||
| 22 | 1 | 8.84 | DSFA | 17/17 (100) | 0.02* | 12/12 (100) | 9.17 ± 0.12 | 0.05 | 12/12 (100) | 5.02 ± 0.34 | 0.033 |
| MFA | 40/56 (71.4) | 12/12 (100) | 9.37 ± 0.27 | 12/12 (100) | 4.52 ± 0.65 | ||||||
| 23 | 1 | 9.39 | DSFA | 17/17 (100) | 0.58 | 12/12 (100) | 9.05 ± 0.21 | 0.1489 | 12/12 (100) | 3.58 ± 0.71 | 0.42 |
| MFA | 51/56 (91.1) | 12/12 (100) | 9.14 ± 0.41 | 12/12 (100) | 3.9 ± 0.44 | ||||||
| 24 | 1 | 6.31 | DSFA | 17/17 (100) | 0.17 | 12/12 (100) | 5.58 ± 2.83 | 0.8399 | 3/12 (17) | 3.84 ± 1.33 | ND |
| MFA | 42/56 (75) | 12/12 (100) | 6.1 ± 2.85 | 6/12 (50) | 4.40 ± 0.39 | ||||||
| 25 | 1 | 8.12 | DSFA | 17/17 (100) | 1 | 12/12 (100) | 9.26 ± 0.46 | 0.5637 | 12/12 (100) | 4.75 ± 0.58 | 0.29 |
| MFA | 55/58 (94.8) | 12/12 (100) | 9.34 ± 0.26 | 12/12 (100) | 4.48 ± 0.46 | ||||||
| 26 | 1 | 8.03 | DSFA | 17/17 (100) | 1 | 12/12 (100) | 9.03 ± 0.34 | 0.3865 | 12/12 (100) | 4.99 ± 0.50 | 0.4 |
| MFA | 55/56 (98.2) | 12/12 (100) | 8.16 ± 2.26 | 10/12 (83) | 5.15 ± 0.41 | ||||||
| 4 | 2 | 5.6 | DSFA | 29/30 (96.7) | 1 | 7/12 (58.3) | 3.46 ± 2.34 | 1 | 1/12(8.3) | 4.52 | ND |
| MFA | 55/56 (98) | 7/12 (58.3) | 3.52 ± 2.12 | 1/12(8.3) | 2.52 | ||||||
| 7 | 2 | 3.73 | DSFA | 29/29 (100) | 0.09 | 11/12 (91.7) | 3.04 ± 0.52 | 0.21 | 0/12 | 0 | ND |
| MFA | 51/58 (87.9) | 9/12 (75) | 3.42 ± 0.65 | 0/12 | 0 | ||||||
| 1 | 3 | 3.69 | DSFA | 30/30 (100) | 0.15 | 1/12 (8.3) | 2.47 | ND | 0/12 | 0 | ND |
| MFA | 47/56 (83.9) | 2/12 (16.7) | 3.11 | 0/12 | 0 | ||||||
| 2 | 3 | 3.94 | DSFA | 30/30 (100) | <0.0001* | 3/12 (25) | 1.68 ± 0.38 | ND | 0/12 | 0 | ND |
| MFA | 39/59 (69.6) | 2/12 (16.7) | 1.41 | 0/12 | 0 | ||||||
| 3 | 3 | 8.69 | DSFA | 30/30 (100) | 0.0001* | 12/12 (100) | 9.23 ± 0.18 | 0.15 | 12/12 (100) | 5.22 ± 1.26 | 0.16 |
| MFA | 40/60 (66.7) | 12/12 (100) | 9.34 ± 0.18 | 12/12 (100) | 4.54 ± 1.14 | ||||||
aFisher's Exact Test (P- value < 0.05 are highlighted*), bPairwise comparison of midgut and salivary glands infection rate from each patient showed no significant differences by Fisher's Exact Test, ND Not done
Fig. 1Association between patient serum DENV viremia and percentage of Ae. aegypti becoming infected (midgut infection rates) and those that having disseminated infection (salivary gland infection rates) after directly feeding on 25 patients (a, c) or patient’s EDTA blood fed by membrane feeding assay (MFA) (b, d). MG – midgut, SG – salivary glands
Fig. 2a Midgut DENV titre in Ae. aegypti fed directly on patients (blue circles) and those fed patient’s EDTA blood via membrane feeding assay (MFA) (red squares). Midgut DENV titre were expressed as Log10 copies/midgut. *denotes significant difference, P < 0.05. Each point represents an individual midgut. Note: Due to small sample size, Mann–Whitney U-tests were not conducted for underlined patients’ numbers (1, 2 and 10). b DENV salivary gland titre in Ae. aegypti fed directly on patients (blue circles) and those fed patient’s EDTA blood (red squares). DENV titres were expressed as Log10 TCID50/ml. *denotes significant difference, P < 0.05. Each point represents an individual salivary gland. Note: Due to absence of disseminated infection (patient no 1, 2, 7, 9, 10, 14 and 17) or small sample size (4, 15, 18, 19 and 24), Mann–Whitney U-tests were not conducted for these feeding events (underlined patients’ numbers)
Advantages and disadvantages between Direct Skin Feeding Assay (DSFA) and Membrane Feeding Assay (MFA)
| DSFA | MFA | |
|---|---|---|
| Advantages | • Closely resembles natural feeding | • Most diagnostic assay require venous blood |
| Disadvantages | • Patient less likely to provide consent | • Delay between sampling and mosquito feeding |