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Biomedical subjects

A Barbul

Publications and source records attributed to A Barbul.

At least 91 records · Page 5Linked to original sources

Wound healing and thymotropic effects of arginine: a pituitary mechanism of action.

Supplemental dietary arginine HCl (ARG-HCl) minimizes immediate post-wounding weight loss, accelerates wound healing, and is thymotropic for uninjured and wounded rats. The present experiments were to determine if arginine-pituitary interactions underlie these effects because arginine is a growth hormone secretagogue. Effects of 1% dietary ARG-HCl supplements (0.5% added to a regular commercial rat diet containing 1.8% ARG, 0.5% in drinking water) were studied in (a) hypophysectomized (hypox) rats supplemented with ACTH, L-thyroxine, testosterone propionate, (b) such hypox rats additionally supplemented with bovine growth (hypox + bGH) hormone, (c) intact rats (Int), and (d) intact rats supplemented with growth hormone (Int. bGH). Group (a) hypox rats healed their wounds as rapidly as intact rats (dorsal skin incision breaking strength, accumulation of reparative collagen in sc polyvinyl alcohol sponges). Group (b) hypox, bGH rats showed increased wound breaking strength and accumulation of reparative collagen in the sc sponges to levels significantly greater than those of intact controls; bGH given to intact controls did not affect these indices of wound healing. Supplemental ARG-HCl given intact rats significantly minimized immediate postoperative weight loss, increased wound breaking strength and sponge reparative collagen accumulation, and increased thymic weight. None of these effects of supplemental ARG-HCl were observed in group (a) hypox rats or group (b) hypox + bGH rats. We conclude that an intact hypothalamic-pituitary axis is necessary for these beneficial effects of supplemental ARG-HCl given wounded rats.

Animals↗

Metabolic and immune effects of arginine in postinjury hyperalimentation.

Nitrogen balance and thymic immune function studies were carried out in rats subjected to anesthesia, jugular vein catheterization, and bilateral femoral fractures, who were then given for 5 days: A) D5W; B) D20 FreAmine II (total arginine 1.55 gm/L); or C) D20 FreAmine III (4.05 gm of arginine/L). Administration of hypercaloric amino acid mixtures had strong positive effects on nitrogen retention and thymic function when compared to isotonic dextrose infusion. The administration of solution C had the most positive effect on nitrogen balance and on thymic immune function. The data suggest that increased arginine administration may prove beneficial to injured patients.

Amino Acids↗

Arginine stimulates lymphocyte immune response in healthy human beings.

The effect of daily dietary supplements of 30 gm of arginine HCl for 7 days on peripheral blood lymphocyte (PBL) mitogenic reactivity in vitro was measured in 21 healthy human volunteers. Arginine significantly increased stimulation indices of PBL following concanavalin A (Con A) (57.9 +/- 11.4 versus 216.9 +/- 46.6, P less than 0.01) and phytohemagglutinin (PHA) (84.1 +/- 12.8 versus 307.0 +/- 59.4, P less than 0.001) stimulation in a microculture assay utilizing RPMI 1640 medium supplemented with 10% heat-inactivated autologous serum. Similar enhanced blastogenesis was observed using medium supplemented with 10% heat-inactivated pooled AB normal human serum. In six volunteers studied following 3 days of similar arginine supplementation, blastogenic responses of their peripheral blood lymphocytes were already significantly enhanced, although not as greatly as after 7 days. Arginine had no effect on total peripheral blood lymphocyte counts and on T- and B-cell ratios. The effects of supplemental dietary arginine could not be duplicated in vitro by increasing the arginine concentration in the culture medium. Furthermore, dietary arginine supplementation did not increase cell viability in culture. Minimal side effects were noted, such as nausea or diarrhea, which responded to lowering the dose ingested at one time. No deleterious effects were noted on liver function test results. We conclude that supplemental dietary arginine is a safe nutritional stimulator of lymphocyte immune reactivity in healthy human beings.

Administration, Oral↗

White cell involvement in the inflammatory, wound healing, and immune actions of vitamin A.

Stress or injury-induced phenomena, such as impaired wound healing and immune depression, may be related to impaired function of certain leukocyte populations. Since vitamin A prevents some aspects of stress, we studied its effect on various white cell populations in normal and injured rats. Supplemental vitamin A (150,000 IU/kg chow) to normal rats resulted in marked increases in thymic weight and lymphocytes without any effct on adrenal weight. The basal chow contains 13,700 IU vitamin A per kg. In rats subjected to moderately severe injury (dorsal wounding or unilateral femoral fracture), supplemental vitamin A greatly diminished the thymic involution observed in chow-fed controls and delayed or minimized the accompanying adrenal hypertrophy. In uninjured rats, supplemental vitamin A induced in three to four days a temporary circulatory leukocytosis characterized by lymhocytosis, monocytosis, and a relative neutropenia. These changes in the blood picture persisted one day after femoral fracture. On the second and third day postfracture the lymphocyte and neutrophil values returned to normal while the monocytosis persisted. Polyvinyl alcohol sponges implanted next to the fracture site demonstrated that supplemental vitamin A consistently increased the number of white blood cells migrating into the wound area and showed significantly larger numbers of monocytes/macrophages. These data suggest that vitamin A influences the numbers and nature of white cells involved in immune, inflammatory, and wound healing processes. In addition to the known antiglucocorticoid activity of vitamin A, these effects may represent a direct beneficial action of dietary vitamin A supplements for stressed and injured animals.

Adrenal Glands↗

Arginine: an essential amino acid for injured rats.

The influence of arginine supplements on growth and healing of skin incisional wounds was studied in rats fed either a chemically defined diet lacking arginine or a laboratory chow containing 1.8% arginine. Rats fed the arginine-free diet grew more poorly than did arginine-supplemented rats (1.8 vs. 7.0 gm/day) in the preoperative period. After operation arginine-deficient animals grew very poorly (1 gm/day), while arginine-supplemented rats gained 4.3 gm/day. Arginine-deficient animals showed impaired wound healing, as judged by the breaking strengths of their incisions 10 days after wounding (228 vs. 293 gm for the arginine-supplemented rats). Arginine-deficient rats also showed decreased collagen deposition in a specific wound site, as indicated by the decreased content in hydroxyproline in sponge granulomas (2.5 vs. 4.2 mg/100 mg. of sponge for the arginine-supplemented rats). In rats fed commercial chow, 1% arginine decreased the postoperative weight loss associated with injury (0.7 vs. 5.2 gm) in one experiment and improved wound strength in two experiments (312 vs. 188 gm in one experiment and 309 vs. 246 gm in another). Arginine also increased hydroxyproline deposition in a specific wound area (5.5 vs. 4.1 mg in one experiment and 3.1 vs. 1.9 mg. in another). It is concluded that arginine has two roles in wounded animals. It is essential for the synthesis of the increased amounts of reparative collagen required for wound healing, and it decreases some of the negative aspects of the metabolic responses to injury. These are thought to be associated with an arginine-induced growth hormone release.

Animals↗

Effect of matrix metalloproteinase inhibition on colonic anastomotic healing in rats.

Wound strength depends on the balance between collagen synthesis and degradation; however, the role of collagen breakdown in wound healing is still not well understood. We investigated the role of matrix metalloproteinases in wound healing by using BE16627B, a matrix metalloproteinase inhibitor. Identical surgical procedures consisting of a colonic anastomosis (single-layer, inverted) and implantation of an osmotic pump in the back were performed in male Sprague-Dawley rats weighing 270 to 290 grams. The animals were randomly assigned to receive either BE16627B (n = 10) dissolved in dimethylsulfoxide and diluted with ethylene glycol at a dosage of 2.4 mg/rat/day for 3 days or the vehicle solution alone (n = 11). The solutions were administered through the surgically implanted osmotic pumps. The animals were killed 4 days after surgery, and the colonic bursting pressure (mm Hg) and hydroxyproline concentration (microg/mg wet tissue, index of collagen) were measured. The administration of BE16627B enhanced colonic anastomotic healing, as measured by the increase in the colonic bursting pressure (160 +/- 12 vs. 125 +/- 7 mm Hg; P < 0.05) and the increase in the soluble fraction of collagen (0.27 +/- 0.01 vs. 0.21 +/- 0.01 microg/mg wet tissue; P < 0.01) in the anastomosis. Histologic examination of the tissue revealed that the use of BE16627B resulted in the preservation of the multilayered colonic structure and increased the network of collagen between both ends of the colon in the thickening submucosal layer. These findings demonstrate that the inhibition of matrix metalloproteinase activity influences colonic anastomotic healing, indicating a potential mechanism for enhancing anastomotic healing.

Anastomosis, Surgical↗

Effect of nutritional route on colonic anastomotic healing in the rat.

Although early enteral feeding has been shown to benefit cutaneous healing when compared to parenteral feeding, the effect of the route of nutritional support in gastrointestinal anastomotic healing has not been defined. The aim of the present study was to determine whether the route of nutritional support influences colonic anastomotic healing. Twenty male Sprague-Dawley rats weighing 270 to 290 grams underwent identical surgical manipulation consisting of central venous catheterization, gastrostomy insertion, and distal colonic anastomosis (single-layer, inverted). Identical nutrient infusates composed of 4.25% amino acids, 25% dextrose, and vitamins were administered, with half the animals receiving the infusions via the gastrostomy and the other half via the venous catheter. Animals were killed 5 days after surgery. There were no differences in nutritional parameters between the parenterally and enterally fed groups. Colonic anastomotic bursting pressure was significantly higher in the enterally fed group (180 +/- 6 vs. 150 +/- 11 mm Hg; P <0.01). The measured insoluble collagen and total protein content in anastomotic tissue were enhanced in the enterally supported group. The fraction of soluble (newly synthesized) collagen did not differ between the two groups. The data demonstrate that the route of nutrient administration influences colonic anastomotic healing. The preservation of colonic structural collagen in the enteral group may improve the ability of the gut to hold sutures and thus enhance anastomotic healing.

Amino Acids↗

Expression and function of inducible nitric oxide synthase during rat colon anastomotic healing.

Nitric oxide plays a significant but incompletely understood role in fibroblast function and cutaneous wound collagen synthesis; however, the participation of inducible nitric oxide synthase (iNOS) in gastrointestinal anastomotic healing has not been studied. Male Sprague-Dawley rats underwent single-layer left colonic anastomosis. Animals were killed at 24-hour intervals postoperatively and the anastomosis was excised. Parallel uninjured colon tissue samples were also analyzed. Reverse transcriptase-polymerase chain reaction confirmed the absence of iNOS messenger RNA in control colon and expression of the gene in anastomotic tissue on all study days. Northern hybridization demonstrated maximal iNOS messenger RNA transcription on day 1 with decreased levels on days 3 and 5. iNOS enzyme activity, measured biochemically by the conversion of [(3) H-arginine to [(3) H]-citrulline ex vivo, was also maximal on day 1 (7.35 +/- 1.34 pmol/mg protein/min [+/- standard error of the mean], n = 10) and decreased on days 3 (4.37 +/- 2.32 pmol/mg protein/min; n = 6) and 5 (2.80 +/- 0.92 pmol/mg protein/min; n = 6). Immunohistochemical staining demonstrated that (1) iNOS expression is confined to a discrete cell population in the region of the anastomosis containing inflammatory cells; (2) those cells assume a highly conserved position on the luminal edge of the proliferating scar; and (3) the iNOS-expressing cells are present throughout the fibroplastic phase of healing. To functionally assess the role of iNOS in colonic healing, rats were treated with a continuous intravenous infusion of S-methylisothiourea (a selective inhibitor of iNOS) at a dosage of 200 mg/kg/day for 5 days after anastomosis. There was a significantly reduced anastomotic bursting pressure in rats treated with the inhibitor as compared to rats treated with intravenous normal saline solution (108.4 +/- 13.2 mm Hg vs. 148.4 +/- 10.3 mm Hg; P <0.05). These results suggest that iNOS gene expression is induced during colonic anastomotic healing, that it is present through all phases of healing but is maximal through the inflammatory phase, and that iNOS activity is required for optimal anastomotic healing.

Anastomosis, Surgical↗