| Literature DB >> 32832214 |
Alexandre Xavier da Costa1, Maria Cecilia Zorat Yu1, Denise de Freitas1, Priscila Cardoso Cristovam1, Lauren C LaMonica2, Vagner Rogerio Dos Santos1, José Alvaro Pereira Gomes1.
Abstract
Purpose: To evaluate the impact of instillation angle and nozzle tip geometry on cross-contamination risk of multidose ocular solution bottles.Entities:
Keywords: cross-contamination; drop instillation; eye drop standardization; eyedrops; ophthalmic solutions
Mesh:
Substances:
Year: 2020 PMID: 32832214 PMCID: PMC7414607 DOI: 10.1167/tvst.9.7.7
Source DB: PubMed Journal: Transl Vis Sci Technol ISSN: 2164-2591 Impact factor: 3.283
Figure 1.Detail of the formation of drops according to two types of eye drops bottles when inverted to 90° (A and B) and 45° (C and D). In a higher magnification, the geometry of the nozzle allows the eyedrop to contact a wider area of the outer face (E) or a narrow one (F).
Bacterial Growth upon Drop Bottle Inversion of 90° and 45°, Before and After Contamination of the Nozzles
| Bottle Position | |||||
|---|---|---|---|---|---|
| Before Contamination (Control) | After Contamination (Experimental Group) | ||||
| Brand Of Eye Drops | Group No. | 90° | 45° | 90° | 45° |
| 1.1 | − | − | + | − | |
| 1.2 | − | − | − | − | |
| 1.3 | − | − | + | + | |
| 1.4 | 1 | − | − | − | + |
| 1.5 | − | − | + | + | |
| 1.6 | − | − | − | − | |
| 2.1 | − | − | − | + | |
| 2.2 | − | − | + | + | |
| 2.3 | 1 | − | − | + | + |
| 2.4 | − | − | − | + | |
| 2.5 | − | − | + | + | |
| 2.6 | − | − | − | + | |
| 3.1 | − | − | − | − | |
| 3.2 | 1 | − | − | + | + |
| 3.3 | − | − | − | − | |
| 3.4 | − | − | + | + | |
| 3.5 | − | − | − | + | |
| 3.6 | − | − | + | + | |
| 4.1 | − | − | + | + | |
| 4.2 | − | − | − | + | |
| 4.3 | 1 | − | − | + | + |
| 4.4 | − | − | + | + | |
| 4.5 | − | − | + | + | |
| 4.6 | − | − | − | − | |
| 5.1 | − | − | + | + | |
| 5.2 | − | − | + | + | |
| 5.3 | 1 | − | − | + | + |
| 5.4 | − | − | + | + | |
| 5.5 | − | − | + | + | |
| 5.6 | − | − | + | + | |
| 6.1 | − | − | + | + | |
| 6.2 | − | − | + | + | |
| 6.3 | − | − | + | + | |
| 6.4 | 1 | − | − | + | + |
| 6.5 | − | − | + | + | |
| 6.6 | − | − | + | + | |
| 7.1 | − | − | + | + | |
| 7.2 | − | − | − | + | |
| 7.3 | 2 | − | − | + | + |
| 7.4 | − | − | − | − | |
| 7.5 | − | − | − | + | |
| 7.6 | − | − | − | − | |
| 8.1 | − | − | − | − | |
| 8.2 | − | − | − | − | |
| 8.3 | 2 | − | − | − | − |
| 8.4 | − | − | − | − | |
| 8.5 | − | − | − | − | |
| 8.6 | − | − | − | + | |
| 9.1 | − | − | + | − | |
| 9.2 | − | − | − | − | |
| 9.3 | 2 | − | − | − | − |
| 9.4 | − | − | − | + | |
| 9.5 | − | − | − | + | |
| 9.6 | − | − | + | + | |
Brand of eyedrop used: (1) Lacrifilm (carmellose sodium), (2) Optive (carboxymethylce-glycern-poly80), (3) Lacribell (dextran 70 0.1%; hypromellose 0.3%), (4) Adaptis (carboxymethylcellulose), (5) Lacrilax (carmellose sodium), (6) Mirugell (polyethylene glycol 400; propylene glycol), (7) Hyabak (0.15% sodium hyaluronate), (8) Systane (0.3% propylene glycol), (9) Hylo Comod (0.1% sodium hyaluronate).
Preservative-containing: (1) Lacrifilm (carmellose sodium), (2) Optive (carboxymethylce-glycern-poly80), (3) Lacribell (dextran 70 0.1%; hypromellose 0.3%), (4) Adaptis (carboxymethylcellulose), (5) Lacrilax (carmellose sodium), (6) Mirugell (polyethylene glycol 400; propylene glycol), (8) Systane (0.3% propylene glycol); Preservative-free: (7) Hyabak (0.15% sodium hyaluronate), (9) Hylo Comod (0.1% sodium hyaluronate).
Bacterial Growth After Contamination by Instillation Angle
| 45° | |||
|---|---|---|---|
| Instillation Angle | Positive | Negative | |
| 90° | Positive | 27 | 2 |
| Negative | 11 | 14 | |
P = 0.01 statistical significance at a threshold of P < 0.05 for McNemar's test.
Bacterial Growth After Contamination by Instillation Angle and Bottle Geometry
| Instillation Angle | Positive | Negative | Total | % Contaminated |
|
|---|---|---|---|---|---|
| 90° [Total] | 29 | 25 | 54 | 53.7% | |
| 90° [Group 1 | Group 2] | 25 | 4 | 11 | 14 | 36 | 18 | 69.4% | 22.4% |
|
| 45° [Total] | 38 | 16 | 54 | 70.4% | |
| 45° [Group 1 | Group 2] | 30 | 8 | 6 | 10 | 36 |18 | 83.3% | 44.4% |
|
Indicates the two-tailed statistical significance at a threshold of P < 0.05 for a Fisher's exact test.
Figure 2.Systane eyedrop formation at 90° and 45°.