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Dive into the research topics where Winston N. Wicomb is active.

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Featured researches published by Winston N. Wicomb.


Transplantation | 1990

Optimal Cardioplegia And 24-hour Heart Storage With Simplified Uw Solution Containing Polyethylene Glycol

Winston N. Wicomb; J. D. Hill; J. Avery; Collins Gm

Recent work has shown that UW may be better than standard cardioplegic solutions for short-term heart preservation. In this study we have used a rabbit heart model to evaluate a simplified UW solution in which penicillin, dexamethasone, insulin, allopurinol, and adenosine were omitted and 5% polyethylene glycol (PEG20M) was substituted for hydroxyethyl starch. The test systems consisted of 4-hr cardioplegic storage at 15 degrees C with repeated flushing every 30 min for 2 hr and 24-hr hypoxic low-flow microperfusion (3 ml/g/24 hr) at 0 degrees C. Control groups were arrested with a 15-25 ml flush in iced saline and immediately tested. Cardiac output (CO)* after preservation was measured in a working heart model using an acellular perfusate at 37 degrees C at an aortic pressure of 100 cm H2O. The CO (ml/g heart wt/min) were as follows--Controls: St. Thomas II 20.5 +/- 8.3 (5), UW 34.7 +/- 11.7 (16), PEG20M 41.8 +/- 4.4 (14); 4-hr cardioplegia: St. Thomas II 17.4 +/- 0.9 (4), Bretschneider HTK 14.9 +/- 7.0 (4), UW 25.2 +/- 11.5 (9), PEG20M 41.1 +/- 7.8 (8); 24-hr microperfusion: UW 25.4 +/- 11.1 (18), PEG20M 37.1 +/- 8.2 (18). Following cardioplegic or microperfusion preservation, PEG20M hearts functioned at control levels (P greater than 0.05) and were significantly superior to all other solutions, with approximately double the CO (P less than 0.05, all other groups). We conclude that for heart preservation, 5 components can be eliminated from UW and substitution of PEG20M for HES appears to have improved its performance.


Transplantation | 1994

Modification of rejection by polyethylene glycol in small bowel transplantation.

Itasaka H; Washington Burns; Winston N. Wicomb; Hiroto Egawa; Geoffrey M. Collins; Carlos O. Esquivel

The use of polyethylene glycol (PEG) in preservation solutions has been associated with a decreased incidence of rejection in clinical and experimental organ transplantation. In this study, we examined the effect of PEG with different molecular configurations on rejection of small bowel allografts in the rat. Male ACI and LEW rats were used as donors and recipients, respectively. Orthotopic small bowel transplantation was performed using the following preservation solutions: lactated Ringers solution (n = 7), University of Wisconsin solution (n = 7), University of Wisconsin solution without hydroxyethyl starch (sUW; n = 7), sUW with PEG20M (n = 9), sUW with PEG8000 (n = 6), and sUW with PEG20L (n = 7). No immunosuppression was given. In orthotopic small bowel transplantation, only groups with a high molecular weight PEG, PEG20M and PEG20L, demonstrated longer survival (P < 0.01 and P < 0.001, respectively) and delayed onset of unkempt appearance (P < 0.05 and P < 0.001, respectively). In heterotopic small bowel transplantation, sUW was compared with sUW with PEG20L. Rejection occurred later and its progression was slower in the sUW with PEG20L than in the sUW alone. Our observations suggest that the onset and progression of rejection after small bowel transplantation were influenced by the molecular weight and configuration of the PEG molecule. The mechanism is unclear, but high molecular weight PEG appears to reduce or change the immunogenicity of the small bowel allograft.


Transplantation | 1992

Calcium antagonists in sodium lactobionate sucrose solution for rat liver preservation

Yukihiko Tokunaga; Geoffrey M. Collins; Carlos O. Esquivel; Winston N. Wicomb

The effects of the calcium antagonists, chlorpromazine (CPZ), nisoldipine (NIS), trifluoperazine (TFP), and nicardipine (NIC) were compared in rat livers following either 20- or 30-hr ice storage in sodium lactobionate sucrose solution (SLS). Survivals beyond 7 days after orthotopic liver transplantation following 20-hr cold storage were 1/14 in the University of Wisconsin solution, 4/14 in SLS, 4/8 in UW+CPZ, 7/8 in SLS+CPZ. Survivals beyond 7 days after OLT following 30-hr cold storage were 3/8 in SLS+CPZ, 3/8 in SLS+NIS, 2/8 in SLS+TFP, 0/8 in SLS+NIC, and 0/8 in SLS alone. Survival rates were significantly (P less than 0.05) better in both SLS+CPZ and SLS+NIS than in UW and SLS alone. The effluent lactate dehydrogenase (LDH) levels and pH changes were measured at the time of OLT. After 20 hr, LDH levels were 525 +/- 78 IU/L (mean +/- SEM) in UW, 492 +/- 44 in SLS, 322 +/- 35 in UW+CPZ, and 290 +/- 39 in SLS+CPZ. After 30 hr, LDH values were 416 +/- 40 in SLS+CPZ, 450 +/- 25 in SLS+NIS, 448 +/- 21 in SLS+TFP, 573 +/- 18 in SLS+NIC, and 614 +/- 68 in SLS. The LDH levels for SLS+CPZ and SLS+NIS were significantly lower than those of SLS and UW (P less than 0.01). The pH changes in the effluent were significantly less in both the CPZ and NIS groups (P less than 0.01). This study demonstrated improved liver preservation by the use of a simplified colloid-free lactobionate solution containing sodium as the principal cation. The addition of CPZ or NIS to the solution demonstrated the same potency for significant improvement in efficacy of this solution, while NIC was ineffective.


Transplantation | 1993

Significance of terminal rinse for rat liver preservation.

Hiroto Egawa; Carlos O. Esquivel; Winston N. Wicomb; Richard Garcia Kennedy; Geoffrey M. Collins

A terminal rinse (TR) is standard practice in liver preservation with University of Wisconsin solution (UW) to avoid a potassium load. The fact that sodium lactobionate sucrose solution (SLS) is an effective organ preservation solution with a low potassium provided an opportunity to evaluate rat liver preservation without the TR step. Its importance was investigated in 122 rat liver preservation experiments. In study 1, UW and a hydroxyethyl starch-free, modified UW (UWm) were used for 20-hr liver preservation followed by either no TR or Ringers lactate TR. The 1-week survival was: UW-TR, 2/14; UW-no TR, 1/6; UWm-TR, 0/6; UWm-no TR, 5/5 (P < 0.01). In study 2, livers were stored for 30 hr in SLS, UW, UWm, and UWm + chlorpromazine 5 mg/L, all without a TR. Nine of 11 rats survived 7 days after SLS, but there were no survivors in the other groups (P < 0.05). Study 3 compared no TR with TR with SLS, Ringers lactate (RL), or a modified Carolina rinse (CRm) after 30-hr SLS preservation. Survival, serum aspartate aminotransferase and alanine aminotransferase, and histology were assessed. One-week survival of 9/11 rats in no TR was significantly better than in the other groups (3/14 in TR-SLS, 0/8 in TR-RL, and 0/14 in TR-CRm, P < 0.01). The values of aspartate aminotransferase (mean +/- SE) 3 hr after transplantation were 1862 +/- 439 U/L, 3334 +/- 817 U/L, 6591 +/- 1944 U/L, and 7028 +/- 1704 U/L, respectively, in no TR, TR-SLS, TR-RL, and TR-CRm. There were significant differences both in aspartate aminotransferase and alanine aminotransferase between no-TR and each of TR-RL and TR-CRm (P < 0.05). Liver specimens from rats killed 3 hr after OLT showed only mild injury in the no TR group and severe injury in the remaining groups. We conclude that a terminal rinse is harmful in rat liver preservation.


Archive | 1989

Organ preservation solution containing pokyethylene gycol and method of performing cardioplegia

Geoffrey M. Collins; Winston N. Wicomb


Transplantation | 1992

The immunosuppressive effect of polyethylene glycol in a flush solution for rat liver transplantation

Yukihiko Tokunaga; Winston N. Wicomb; Richard Garcia-Kennedy; Esquivel Co; Geoffrey M. Collins


Transplantation | 1991

Choice of cation in solutions for hypothermic storage of liver and heart. High-sodium versus high-potassium.

Winston N. Wicomb; A. B. Collins; Yukihiko Tokunaga; Esquivel Co


Transplantation | 1992

The role of reduced glutathione in heart preservation using a polyethylene glycol solution, Cardiosol.

Winston N. Wicomb; R. Perey; V. Portnoy; G. M. Collins


Archive | 1998

Organ preservation solution

Winston N. Wicomb; Geoffrey M. Collins; Ian C. Bathurst; Matthew W. Foehr


Archive | 1998

System for storing polyethylene glycol solutions

Winston N. Wicomb; Geoffrey M. Collins; Ian C. Bathurst; Matthew W. Foehr

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Esquivel Co

University of California

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Richard Garcia-Kennedy

California Pacific Medical Center

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Washington Burns

California Pacific Medical Center

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