Twelve ponies were used to evaluate the reliability of an abdominal adhesion model and the efficacy of intraperitoneal infusion of sodium carboxymethylcellulose in preventing abdominal adhesions. A celiotomy was performed on each of the 12 ponies and the serosa of the distal portion of the jejunum was abraded with a dry gauze sponge at 5 locations. In addition to the serosal damage, a single 2-0 chromic gut suture was placed through the seromuscular layer of the jejunum in the center of the abraded area. After closure of the celiotomy, a 1% solution of sodium carboxymethylcellulose (7 ml/kg of body weight) was infused into the peritoneal cavity of 6 ponies. The other ponies served as untreated controls. All ponies were euthanatized 14 days after surgery. All ponies in the control group had abdominal adhesions at the time of necropsy. Four of the 6 ponies in the treatment group were free of adhesions. There was a significant (P less than 0.0001) difference in the total number of adhesions between the 2 groups.
sodium carboxymethylcellulose adhesion prevention abdominal surgery, intraperitoneal adhesion barrier equine model experimental, abdominal adhesion prevention animal model celiotomy, carboxymethylcellulose peritoneal adhesion barrier efficacy, post-surgical adhesion prevention intraperitoneal solution, Moll carboxymethylcellulose adhesion prevention ponies, serosal injury adhesion model jejunum surgery, adhesion barrier agent surgical peritoneal infusion, abdominal adhesion experimental model chromic gut suture, post-operative adhesion prevention veterinary surgical model
Cite this article
Moll, H. D., Schumacher, J., Wright, J. C., & Spano, J. S. (1991). Evaluation of sodium carboxymethylcellulose for prevention of experimentally induced abdominal adhesions in ponies. American journal of veterinary research, 52(1), 88-91.
Moll HD, Schumacher J, Wright JC, Spano JS. Evaluation of sodium carboxymethylcellulose for prevention of experimentally induced abdominal adhesions in ponies. Am J Vet Res. 1991;52(1):88-91.
Moll, H. D., et al. "Evaluation of sodium carboxymethylcellulose for prevention of experimentally induced abdominal adhesions in ponies." American journal of veterinary research, vol. 52, no. 1, 1991, pp. 88-91.
Efficacy of a 1% solution of sodium carboxymethylcellulose (CMC) infused into the peritoneal cavity of ewes was evaluated for prevention of intraperitoneal adhesions resulting from surgery of the reproductive tract. Six ewes were assigned to each of 4 groups. Group-1 ewes were controls that underwent ventral midline celiotomy and exploration of the abdominal viscera. Group-2 ewes were treated similarly to group-1 ewes, except that a 1% solution of CMC (14 ml/kg of body weight) was infused into the peritoneal cavity. This group was studied to determine whether CMC would cause changes in the peritoneal cavity. Group-3 comprised ewes representing a uterine trauma model. Ewes underwent abdominal exploration, but in addition had a standard embryo collection technique performed on 1 uterine horn and hysterotomy performed on the opposite uterine horn. Group-4 ewes were treated like group-3 ewes, except that, similar to treatment of group-2 ewes, CMC was infused into the peritoneal cavity. All ewes were euthanatized and necropsied 12 to 14 days after surgery. Abdominal adhesions were evaluated, and an adhesion severity score was assigned to each ewe on the basis of number and severity of the adhesions. Ewes of all groups had abdominal adhesions. Significantly (P less than 0.05) lower adhesion score was observed in ewes given CMC (groups 2 and 4) than in the adhesion model (group 3). Significant difference was not observed in adhesion score when groups 1, 2, or 4 were compared. Though not statistically significant, fewer adhesions were observed in ewes of groups 2 and 4 than in group-1 ewes.
Pelvic adhesions can be the result of inflamation, endometriosis or surgical trauma. Prevention of postoperative adhesions (either new or reoccurance) has been postulated by using barriers to prevent two surfaces being in contact. When pelvic surgery is being undertaken strategies to reduce pelvic adhesions occurring may be undertaken and these include barrier agents which are placed between the pelvic structures. Two synthetic barriers with differential characteristics oxidised regenerated cellulose (Interceed) and polytetrafluoroethylene (PTFC) (GoreTex). The objective of this review was to assess the effect of mechanical barriers (materials interposed between pelvic structures to prevent adherence of serosal surfaces) used during pelvic surgery in women of reproductive age on pregnancy rates, pelvic pain, or postoperative adhesion reformation.
The Cochrane Menstrual Disorders and Subfertility Group specialised register of controlled clinical trials was undertaken. In addition, companies were contacted for unpublished trials.
Randomised controlled trials or controlled clinical trials of barriers versus no treatment or other barriers in women undergoing fertility preserving pelvic surgery. Reviewers assessed eligibility and trial quality. 15 randomised controlled trials were included. Five trials randomised patients while the remainder randomised pelvic organs. Laparoscopy was the primary surgical technique in six trials while the remaining trials were laparotomy. Indications for surgery included myomectomy (five trials), ovarian surgery (four trials), pelvic adhesions (six trials), endometriosis (two trials) and mixed (one trial). Thirteen trials assessed Interceed versus no treatment, two assessed Interceed versus Gore-Tex, one trial assessed Gore-Tex versus no treatment, and one trial assessed Seprafilm versus no treatment. No study reported pregnancy or reduction in pain as an outcome. The use of Interceed in women was associated with reduced incidence of pelvic adhesion formation, both new formation and re-formation following laparoscopic surgery and after laparotomy. Gore-Tex was more effective than no barrier or Interceed in preventing adhesion formation. There was limited evidence that Seprafilm was effective in preventing adhesion formation in women following myomectomy. REVIEWER'S The absorbable adhesion barrier Interceed reduces the incidence of adhesion formation, both new formation and re-formation, at laparoscopy and laparotomy, but there are insufficient data to support its use to improve pregnancy rates. Gore-Tex may be superior to Interceed in preventing adhesion formation but its usefulness is limited by the need for suturing and later removal. There was no evidence of effectiveness of Seprafilm in preventing adhesion formation.
With the use of a rabbit surgical model, the ability of 1%, 2%, and 3% solutions of sodium carboxymethylcellulose to reduce postoperative uterine adhesions was determined. At all concentrations sodium carboxymethylcellulose was more effective than either 32% dextran 70 or heparinized lactated Ringer's solution. Neither the dextran nor Ringer's solution had a significant (p less than or equal to 0.05) effect. The beneficial effects of sodium carboxymethylcellulose were closely dose-dependent (correlation coefficient 0.97). Sodium carboxymethylcellulose is highly effective in reducing postoperative adhesions in laboratory animals, and additional studies are warranted to further define its efficacy and safety.
Solutions of sodium carboxymethylcellulose (SCMC) were studied in rats to determine their longevity within the peritoneal cavity and their potential for prevention of postoperative intraperitoneal adhesions. In 18 rats, test solutions of SCMC and 10% dextran 40 were instilled at laparotomy. At 48 hours copious amounts of SCMC remained, whereas no 10% dextran 40 could be detected. In addition, standardized surgical injury was produced on the ceca of 100 rats at laparotomy. All control animals had significant adhesions at 2 weeks. Eighty-two percent of the 10% dextran 40 group had significant adhesions, while only 16% of the 0.9 wt% SCMC and 17% of the 1.0 wt% SCMC groups had significant adhesions. Solutions of SCMC were significantly more effective than 10% dextran 40 in the prevention of adhesions (P less than 0.001). Properties of SCMC and a possible mechanism for its striking effectiveness in adhesion prevention in this study are discussed.