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  • Preventing intraperitoneal adhesions with linezolid and hyaluronic acid/carboxymethylcellulose: a comparative study in cecal abrasion model.

Preventing intraperitoneal adhesions with linezolid and hyaluronic acid/carboxymethylcellulose: a comparative study in cecal abrasion model.

American journal of surgery (2014-05-13)
Kasim Caglayan, Bulent Gungor, Hamza Cinar, Nilsen Y Erdogan, Bulent Koca
ZUSAMMENFASSUNG

We aimed to compare the effectiveness of linezolid in preventing intraperitoneal adhesions with hyaluronic acid + carboxymethylcellulose (Seprafilm). Thirty rats were divided randomly into 3 groups: Group I (control), untreated; Group II (Seprafilm); and Group III (linezolid). All rats were sacrificed on the 14th day after surgery. Macroscopic adhesion, inflammation, and fibrosis were evaluated. The multiple comparisons between groups showed a statistically significant difference for adhesion. There were statistically significant differences between Group I and II and I and III, but no statistically significant difference between Group II and III. The multiple comparisons between the groups showed a statistically significant difference for inflammation and fibrosis. For inflammation and fibrosis, there was a statistically significant difference between Group I and II and I and III, but no statistically significant difference between Group II and III. The efficiency of linezolid in reducing the formation of intraperitoneal adhesions was statistically significant compared with the control group.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., bacterial glycosaminoglycan polysaccharide
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Carboxymethylcellulose Natriumsalz, Medium viscosity
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Carboxymethylcellulose Natriumsalz, low viscosity
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Natriumcarboxymethylcellulose Natriumsalz, viscosity 50-200 cP , c=4% H2O at 25­°C
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Carboxymethylcellulose Natriumsalz, High viscosity
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Natriumcarboxymethylcellulose Natriumsalz, viscosity 2500-6000 cP 
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Natriumcarboxymethylcellulose Natriumsalz, average Mw ~250,000, degree of substitution 0.9
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Hyaluronsäure Natriumsalz aus rooster comb, avian glycosaminoglycan polysaccharide
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Natriumcarboxymethylcellulose Natriumsalz, average Mw ~250,000, degree of substitution 1.2
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Natriumcarboxymethylcellulose Natriumsalz, average Mw ~250,000, degree of substitution 0.7
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Carboxymethylcellulose Natriumsalz, medium viscosity
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Hyaluronsäure Natriumsalz aus Rinderaugen-Glaskörper
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 8,000-15,000
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 750,000-1,000,000
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Carboxymethylcellulose Natriumsalz, meets USP testing specifications, Medium viscosity
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Xylazin, ≥99%
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 1,500,000-1,750,000
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 30,000-50,000
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 150,000-300,000
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 2,000,000-2,400,000
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 300,000-500,000
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Hyaluronsäure Natriumsalz aus Streptococcus equi sp., mol wt 50,000-90,000