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Local arginine supplementation results in sustained wound nitric oxide production and reductions in vascular endothelial growth factor expression and granulation tissue formation.

OBJECTIVE: The goal of this work was to test the functional role of L-arginine in promotion of nitric oxide (NO) production and the vigorous granulation tissue formation characteristic of this wound model. BACKGROUND: Therapeutic use of supplemental arginine has been proposed as a safe and efficacious method to produce NO from nitric oxide synthase (NOS) and to produce proline and polyamines from arginase to improve wound healing. Although NO appears to be necessary to promote wound healing, the preferential metabolism of arginine to NO via NOS 2 may be detrimental if maintained beyond the initial days of healing. METHODS: A ventral hernia, surgically created in the abdominal wall of 12 swine, was repaired with silicone sheeting and skin closure. Osmotic infusion pumps, inserted in remote subcutaneous pockets, continuously delivered saline (n = 6) or L-arginine (n = 6) into the wound environment. Granulation tissue thickness was determined by ultrasonography. Fluid was aspirated serially from the wound compartment for measurements of nitrite/nitrate (NOx), vascular endothelial growth factor (VEGF), transforming growth factor-beta1 (TGF-beta1), and amino acid concentrations. On day 14, the animals were sacrificed and the abdominal wall was harvested for immunohistochemical and molecular analysis. RESULTS: In animals receiving saline, a nearly linear four-fold increase in granulation tissue thickness was measured during the 14-day interval. In contrast, quantitative ultrasound analysis detected significant reductions in L-arginine infused granulation tissue thickness compared with controls between days 4 and 14 (P < 0.05). Wound vessel count and luminal vascular surface area estimates derived from image analysis of histological sections were two- to three-fold lower in the L-arginine animals compared with controls (P < 0.05). Significant and sustained increases in wound fluid NOx levels were noted in L-arginine animals compared to saline controls (230 microM versus 75 microM at day 14, P < 0.05). Conversely, late VEGF levels (days 11 to 14) were reduced in the L-arginine animals compared to controls (7500 pg/ml versus 10,000 pg/ml at day 11, P < 0.05; 7250 pg/ml versus 11,101 pg/ml at day 14, P < 0.05). Arginine concentrations remained two- to four-fold greater in L-arginine treated animals compared with controls over the entire time course (P < 0.05). There were no significant differences in concentrations of ornithine, citrulline, or proline noted between groups over the 14-day period. Finally, TGF-beta1 levels were unaffected by L-arginine treatment. CONCLUSION: Although NO appears to be necessary for granulation tissue formation, early supplemental arginine may disturb the reciprocal regulation of NOS 2 and arginase, leading to the preferential metabolism of arginine to excess NO rather than ornithine, with consequent reductions in angiogenesis and granulation tissue formation.

Abdominal Wall↗

Role of granulation tissue and fibroblasts in gingival testosterone metabolism in the rat in vitro.

The metabolism of testosterone by experimental granulation tissue, fibroblasts and the oral mucosa of rats of both sexes was studied. The experimental granulation tissue was produced by implanting viscose-cellulose sponges beneath the dorsal skin of female and male rats for 21 days. The granuloma capsules, fibroblasts in the sponges and the oral mucosae were homogenated. Mitochondrial, microsomal and soluble fractions were incubated with [4-14C]testosterone and NADPH for 30 min at pH 7.4 and 37 degrees C. The metabolites were identified with column and TLC and radioautography and quantified with liquid scintillation counting. The experimental granulation tissue and fibroblasts of both sexes showed less activity in metabolizing testosterone than the gingival tissue. The tissues were shown to contain 3 alpha-, 3 beta- and 17 beta-hydroxysteroid dehydrogenase and 5 alpha- and 5 beta-steroid hydrogenase activities. The activities of the enzymes in the oral mucosae were higher than in the experimental granulation tissue and fibroblasts.

Animals↗

[Various mechanisms of reducing the vascular system of granulation tissue in the process of its maturation].

Rat granulation tissues were histologically and electron radioautographically examined at Days 7, 20, 30, 40, 53, and 60 after making a 3 X 4-cm2 wound in the back. During the entire period of cicatrization, alterations were shown to occur in the capillaries, as manifested by destructive changes in endotheliocytes, break in their contacts, thinning of the capillary wall with occasional lacerations, disintegrity of the basal membrane and, finally, vessel-composing cell dissociation and departure, as well as unusual arrangement among other cells and fibrous structures. On the basis of the findings it is proposed that the known diminished numbers of vessels during granulation tissue maturation involves not only disappeared vessels due to their progressive dystrophic changes, but the described unusual capillary alterations whereby the vascular wall cells are gradually converted to the cellular elements freely located in the interstitial tissue.

Animals↗

Effects of topical application of antimicrobials and bandaging on healing and granulation tissue formation in wounds of the distal aspect of the limbs in horses.

OBJECTIVE: To determine whether povidone iodine ointment or 2 forms of silver sulfadiazine applied topically to wounds of the distal aspect of the limbs in horses affect the rate of second intention healing and to evaluate the additional influence of bandaging with these antimicrobials on granulation tissue formation. ANIMALS: 6 healthy adult horses. PROCEDURE: Six standardized 2.5-cm2 skin wounds/horse were distributed between the dorsomedial surfaces of the metacarpi and metatarsi. One of the following 6 treatments was applied to each wound: 1% silver sulfadiazine cream with bandage, 1% silver sulfadiazine slow-release matrix with bandage, 1% silver sulfadiazine slow-release matrix without bandage, povidone-iodine ointment with bandage, untreated control with bandage, and untreated control without bandage. Wound area, granulation tissue area, and perimeter were measured by use of planimetry software applied to digital images. Exuberant granulation tissue was excised when present. Days until healing, rate of healing parameter, rate of contraction, and epithelialization were compared among wound treatment groups. RESULTS: Healing parameters and mean days to healing did not differ significantly among any of the wound treatment groups. Percentage wound contraction and rate of epithelialization were similar among wound treatments. All bandaged wounds produced exuberant granulation tissue, which was surgically excised; none of the unbandaged wounds produced exuberant granulation tissue. CONCLUSIONS AND CLINICAL RELEVANCE: When exuberant granulation tissue is removed, rates of epithelialization and wound contraction were not different among wound treatment groups, whether bandaged or unbandaged. Topical application of 1% silver sulfadiazine slow-release matrix on unbandaged wounds induced the same result as medications applied beneath bandages, but without exuberant granulation tissue formation.

Administration, Topical↗

Enhanced angiogenesis and granulation tissue formation by basic fibroblast growth factor in healing-impaired animals.

The effect of basic fibroblast growth factor (bFGF) on angiogenesis and granulation tissue formation in normal and healing-impaired animals was studied. bFGF showed a dose-dependent enhancement of granulation tissue formation in the subcutaneous implantation of a paper disk in normal rats. Application of bFGF restored the formation in healing-impaired rat models treated with steroid, chemotherapy and X-ray irradiation. The angiogenic activity of bFGF was also demonstrated in the micro-pocket assay using the cornea of rabbits. Repeated applications of bFGF accelerated closure of full-thickness excisional wounds in diabetic mice, but the high doses showed rather diminished response. In contrast histological and gross evaluation of wound tissues revealed enhanced angiogenesis and granulation tissue formation in a dose-dependent manner. The findings suggested that the topical application of excess amounts of bFGF might reduce its ability to promote wound closure because of the prolonged responses in both neovascular and granulation tissue formation.

Animals↗

Proteoglycans, DNA, and RNA in rat granulation tissue, skin, and aorta. Biochemical and histological studies.

Proteoglycans in skin and aorta and nucleic acids in skin were studied in rats with subcutaneous sponge implants and in unoperated rats and compared with the sponge induced granulation tissue during a 42 day period. In rat aorta there was a predominance of the sulphated glycosaminoglycans, in particular heparan sulphate, while in skin there was a predominance of hyaluronic acid and dermatan sulphate. The subcutaneous sponge implantation caused a decrease in the dry weights of skin and aorta but did not influence the concentrations of the measured variables. In aorta the concentrations of chondroitin sulphate and dermatan sulphate decreased with age while in skin there was a slight fall in the concentrations of hyaluronic acid and heparan sulphate with age. The rate of biosynthesis of proteoglycans as estimated from the 35S-sulphate uptake was higher in skin than in aorta. A sequential development was noticed in granulation tissue with an initial high content of hyaluronic acid followed by increasing amounts of chondroitin sulphate and dermatan sulphate in older granulation tissue. The RNA/DNA ratio reached a maximum in 14 day old granulation tissue, but was unchanged in skin throughout the 42 day period. It is concluded that the distribution of proteoglycans and nucleic acids differs from tissue to tissue. This may be of relevance for tissue differences in susceptibility to diseases and to the effects - and side-effects - of drugs. The morphological and biochemical development of sponge induced granulation tissue from rats was similar to other types of granulation tissue during the first 4 weeks.

Age Factors↗

Differential expression of platelet-derived growth factor receptors in porcine fibroblasts cultured from skin and granulation tissue.

This study investigated the biological response of fibroblasts cultured from uninjured skin and granulation tissue from different stages of healing wounds to the three isoforms of platelet-derived growth factor. Fibroblasts were derived by explant culture from the skin or the granulation tissue that formed within open mesh nylon Schilling-Hunt chambers (postoperative days 10, 20, 30, and 50) which had been implanted subcutaneously in the backs of domestic pigs. Cells were cultured under identical conditions in Dulbecco's modified Eagle's medium containing 10% fetal calf serum. Mitogenic activity was measured with (3)H-thymidine incorporation into DNA. Fibroblasts from normal skin responded equally well to all of the platelet-derived growth factor isoforms in the mitogenic assays. All of the wound fibroblasts exhibited a decreased response to platelet-derived growth factor compared with those from skin. Granulation tissue fibroblasts responded to platelet-derived growth factor BB, less to platelet-derived growth factor AB, and poorly to platelet-derived growth factor AA. These results correlated with a significantly decreased growth rate of fibroblasts in culture from both 30- and 50-day postsurgical wound tissue compared with normal skin. Western blot studies of cell membrane extracts showed that wound fibroblasts contained less than 20% as many platelet-derived growth factor-alpha receptors as found in fibroblasts cultured from normal skin. No significant difference in the amount of platelet-derived growth factor-beta receptor was detected. The decreases in platelet-derived growth factor-alpha receptors are sufficient to account for the diminished response of the wound fibroblasts to all platelet-derived growth factor isoforms and the differential loss of responsiveness to platelet-derived growth factor AA. These results show that fibroblasts derived from granulation tissue of pig skin wounds exhibit a decreased growth response to platelet-derived growth factor and a decreased growth rate in culture media as compared with fibroblasts derived from uninjured skin. How these differences may relate to the physiologic characteristics of normal and healing-impaired wounds is considered.

Journal Article↗

[Transformation of effusion and formation of granulation tissue in the pathologic process of otitis media with effusion].

OBJECTIVE: To explore the transformation of stagnant effusion (SE) and the pathologic behavior leading to granulation tissue (GT) formation in the pathologic process of otitis media with effusion (OME). METHOD: The temporoal bone slides from 306 ears with OME at the Otopathology Laboratory of the University of Minnesota USA were studied histopathologically under light microscopy. RESULT: The observations revealed a pathologic process in which the type and the condition of stagnant effusion in the middle ear cleft was variable in the dynamics of OME progression from an early pathologic stage to an advanced pathologic stage. The granulation tissue was primarily formed by two types of fibroblast proliferation in subepithelial space. The absorption and the orgnization of SE and the formation of granulation tissue maybe occur simultaneously in same areas and a same pathologic process. CONCLUSION: The granulation tissue can only form in the areas where effusion has stagnated and has been absorpted. It is very important that effusion of the otitis media should be removed completly before the formation of granulation tissue.

Granulation Tissue↗

Characteristics of granulation tissue which promote hypertrophic scarring.

Hypertrophic scars and keloids are characterized by nodules of collagen that originate in granulation tissue arising from full thickness or deep 2 degrees injuries to the skin. Fifty-six granulation tissues of varying ages post-injury were examined morphologically for evidences of how the nodules and, thus, the scar form. New microvessels grow in ascension towards the free surface in a milieu of inflammatory cells and fibroblasts. Collagen deposition increases with time from the base of the wound to the free surface and begins to concentrate between lateral branching of the new microvessels. Computer derived serial reconstructions of hypertrophic scar nodules indicate they are of varying shape and size probably due to fusion of adjacent microvascular collagen masses between lateral branches. This is accomplished by the gradual but persistent degeneration of microvascular endothelia and pericytes. Fifty-six pieces of granulation tissue taken from 5 cases of varying age post-injury were implanted into nude mice. Several proceeded to develop scar and some of those developed nodules. The latter developed only when the zero-time implant contained lateral microvascular branches. Hypertrophic scars and keloids are a product of granulation tissue elements, the most important of which are primed active fibroblasts and excessive microvascular regeneration, including lateral branching, which subsequently degenerates, in part, promoting nodule formation and remodeling.

Animals↗

[Activity of phosphodiesterases in granulation tissue treated with electron irradiation -- experimental study on rats].

The present study evaluated the effect of low doses of electron radiation on the activity of phosphodiesterases in granulation tissue. In order to induce growth of granulation tissue, a PVC sponge disk was introduced under the dorsal skin of 84 Wistar rats. The rats were divided in two groups, control and irradiated. The enzymatic activity was evaluated according to the evolution of the granulation tissue after 5, 7, 10, 14, 17, 20 and 24 days. Irradiation was carried out 3 days after the implantation of the sponge, by means of a linear accelerator, with energy of 6 MeV, and dose of 1.0 Gy. The results of this study showed that 5'-nucleotidase and ATPase had their activity directly affected by irradiation only in the beginning of the tissue repairing process. Alkaline phosphatase did not suffer any direct effect of irradiation. It is possible that the main factor has been the damage of the cellular components responsible for the growth of granulation tissue, which determine the production of enzymes according to the necessity.

Animals↗

Excision of intralaryngeal granulation tissue in 25 horses using a neodymium:YAG laser (1986 to 1991).

Granulation tissue masses arising from the axial surface of the arytenoid cartilage in 25 horses were excised using a contact neodymium:yttrium aluminum garnet laser. A technique that eliminated the need for general anesthesia or laryngotomy was developed for transen-doscopic removal of the masses in standing horses. Nineteen racehorses made abnormal upper respiratory tract noises or their performance was decreased, whereas six horses not used for racing had a history of stertor (five horses) or epistaxis after nasogastric intubation (one horse). Thoroughbreds were significantly (p = .0126) overrepresented compared with the hospital population. The granulation tissue masses were successfully excised and the defect healed in all 25 horses, although a second excision of granulation tissue regrowth was necessary in four horses. In 21 horses, the underlying chondrosis did not progress appreciably. In four horses with preexisting moderate arytenoid cartilage thickening and concurrent laryngeal abnormalities, the surgery site healed but the underlying chondrosis progressed substantially. Twelve of 19 (63%) racehorses returned to race at least three times after the surgery. Of the 19 racehorses, five had only slight arytenoid cartilage involvement whereas 14 had moderate cartilage thickening or concurrent laryngeal pathology. All five horses with slight apparent arytenoid cartilage involvement and no concurrent laryngeal pathology returned to racing. Seven of the 14 horses (50%) with moderate underlying cartilage thickening or concurrent laryngeal pathology returned to racing. The six horses not used for racing returned to their previous activity without further respiratory problems.

Animals↗

Inhibition of inducible nitric oxide synthase results in reductions in wound vascular endothelial growth factor expression, granulation tissue formation, and local perfusion.

BACKGROUND: Wound repair results from a series of highly orchestrated cellular and biochemical events, including increased synthesis of the bioregulatory molecule nitric oxide (NO). The goal of this work was to test the functional role of NO in promotion of vascular endothelial growth factor (VEGF) production and the vigorous granulation tissue formation characteristic of this wound model. METHODS: A ventral hernia, surgically created in the abdominal walls of 12 swine, was repaired with silicone sheeting and skin closure. An osmotic infusion pump, inserted in a remote subcutaneous pocket, delivered saline solution (n = 6) or the selective inducible NO synthase inhibitor N(6) (iminoethyl)-L-lysine (L-NIL; n = 6) into the wound environment. Granulation tissue thickness was determined with ultrasonography, and local wound perfusion was measured with laser Doppler analysis for 2 weeks. Fluid was aspirated serially from the wound compartment for measurement of nitrite/nitrate, VEGF, and transforming growth factor-beta(1)concentrations. On day 14, the animals were killed and the abdominal wall was harvested for immunohistochemical and molecular analysis. RESULTS: In animals that received saline solution, a nearly linear 4-fold increase in granulation tissue thickness was measured during the 14-day interval. In contrast, in animals that received L-NIL, day 14 granulation tissue thickness was essentially unchanged from the day 2 values of saline solution-treated animals. Moreover, in the L-NIL animals, ultrasonography was unable to resolve the angiogenic zone typical of controls, and correspondingly, wound vessel count and vascular surface area estimates derived from image analysis of histologic sections were 2-fold to 3-fold lower in the L-NIL animals compared with controls. Reductions in basal (2-fold) and heat-provoked (2.5-fold) wound perfusion were noted in L-NIL animals. Wound fluid nitrite/nitrate and VEGF levels were strikingly (4-fold and 5-fold, respectively) reduced in L-NIL animals on days 9 to 14. Immunochemistry results showed reduced VEGF protein content in granulation tissue and keratinocytes within the hyperproliferative epithelium at wound edge. Finally, transforming growth factor-beta(1)levels were unaffected by L-NIL treatment. CONCLUSION: VEGF production in granulation tissue is dependent on the presence of functionally active inducible NO synthase and hence, the production of NO. NO and VEGF are therefore defined as key regulators of granulation tissue formation.

Animals↗

Effect of epidermal growth factor (EGF) on blood flow and albumin extravasation in experimental granulation tissue.

This work was prompted by an earlier observation according to which daily local administration of epidermal growth factor (EGF) enhances granulation tissue formation. Effects of EGF on blood flow and albumin extravasation in developing granulation tissue and various skin regions were studied in the rat. Cylindrical hollow cellulose sponge implants were used as an inductive matrix for the growth of granulation tissue. In the test group the implants were injected daily with a solution containing 5 micrograms of EGF in 0.1% albumin while the implants of the control group were treated correspondingly with the carrier solution only. Analyses of local blood flow and albumin extravasation were made 7 days after implantation. In EGF-treated rats granulation tissue blood flow was significantly higher than that in control rats. In both groups blood flow values of the incision scar region were significantly higher than those of the lumbar skin, but no inter-group differences were detected. In implants injected with EGF the albumin extravasation clearly exceeded that of control implants. Albumin extravasation in the incision scar region was higher than that in the lumbar skin in both groups. Elevated local blood flow and increased albumin extravasation as a possible sign of enhanced neovascularization and augmented inflammatory response may partly explain the accelerated repair observed in EGF-treated wounds.

Albumins↗

Posttracheotomy granulation tissue managed by carbon dioxide laser excision.

The problem of accumulation of granulation tissue and scar at the superior edge of the tracheostoma is a frequent problem in the management of chronic tracheotomy patients. This traditionally has been managed by cup forceps excision or by eversion through the tracheostoma with a skin hook and blind resection. These methods often lead to hemorrhage, and incomplete removal in a bloody field. We have used the carbon dioxide laser via a bronchoscope for ablation of the granulation tissue and/or scar at the stomal edge and at the tracheotomy tube proximal tip without morbidity in 13 pediatric cases. With experience, removal with the laser often proceeds more quickly than conventional methods. The scar and granulation tissue are excised under direct vision with minimal hemorrhage. We believe this to be a reasonable alternative in the management of this recurring problem.

Adolescent↗

Topical ciprofloxacin/dexamethasone otic suspension is superior to ofloxacin otic solution in the treatment of granulation tissue in children with acute otitis media with otorrhea through tympanostomy tubes.

OBJECTIVE: Comparison of topical ciprofloxacin/dexamethasone otic suspension (CIP/DEX) to ofloxacin otic solution (OFL) for treatment of granulation tissue in children with AOMT. STUDY DESIGN: 599 children aged >/=6 months to 12 years with AOMT of up to 3 weeks' duration were enrolled. Patients received either CIP/DEX 4 drops twice daily for 7 days or OFL 5 drops twice daily for 10 days. Granulation tissue severity was graded at clinic visits on days 1, 3, 11, and 18. RESULTS: Granulation tissue was present in 90 of 599 AOMT patients (15.0%) at baseline. CIP/DEX treatment was superior to OFL for reduction of granulation tissue at the day 11 visit (81.3% compared with 56.1%, P = 0.0067) and the day 18 visit (91.7% compared with 73.2%, P = 0.0223). Both topical otic preparations are safe and well tolerated in pediatric patients. CONCLUSION: CIP/DEX was superior to OFL in the treatment of granulation tissue in children with AOMT.

Administration, Topical↗

Differential effects of hexoses and sucrose, and platelet-derived growth factor isoforms on cyclooxygenase-1 and -2 mRNA expression in keloid, hypertrophic scar and granulation tissue fibroblasts.

Cyclooxygenase (COX) is the key enzyme in the formation of prostaglandins in inflammation. In the present study the effects of biomedically relevant hexose sugars (glucose, fructose, galactose, mannose) and sucrose disaccharide on the expression of COX-1 and COX-2 genes were evaluated in granulation tissue fibroblasts, hypertrophic scar fibroblasts and keloid fibroblasts. The effects of three isoforms (AA, AB and BB) of PDGF on COX gene expression in granulation tissue fibroblasts were also examined. All cell lines expressed COX-1 mRNA, whilst fibroblasts derived from abnormal scars did not express COX-2 mRNA. COX-1 mRNA expression was decreased by sugars in granulation tissue fibroblasts and increased in hypertrophic scar fibroblasts. No major changes were seen in keloid fibroblasts. On the other hand, COX-2 mRNA expression in granulation tissue fibroblasts was decreased dramatically in the presence of fructose, mannose and sucrose and moderately in the presence of galactose. All isoforms of PDGF increased COX-1 and COX-2 mRNA expression in granulation tissue fibroblasts, the most marked increases being elicited by PDGF-BB. All fibroblast cell lines studied expressed the COX-1 gene while the COX-2 gene was not expressed by abnormal scar-derived fibroblasts. Further, granulation tissue fibroblasts seemed to behave differently under the influence of sugars compared to hypertrophic scar fibroblasts whilst keloid fibroblasts seemed to be relatively unaffected by sugars. In addition, the PDGF-BB isoform is a potent inducer of COX-2 gene expression in wound fibroblasts. These findings may be relevant to the development of abnormal scars and indicate the need for further studies.

Cells, Cultured↗

Ultrastructural investigation of granulation tissues on the osteoarthritic femoral head. A scanning electron microscopic and transmission electron microscopic study.

From the femoral heads of nine cases of advanced osteoarthritis of hip joint, three categories of granulation tissues with different colors (bright red, dark-red and white granulation tissues) and texture were obtained. After processing, the specimens were observed under scanning electron microscope and transmission electron microscope. With transformation of the granulation tissues from bright red to white, the collagen fibers therein contained gradually changed from fine to thick ones. Nevertheless, the cellular components in these three types of granulation tissues always possessed the characteristics of both fibroblasts and chondrocytes, i.e., fibroblastic configuration with pericellular Type I collagen fibrils bearing 64 nm periodicity; and chondrocytic scallop-shaped cytoplasmic membrane with intracytoplasmic fat droplets and glycogen granules and pericellular Type II collagen fibrils. All these indicated that in osteoarthritis of hip joints, the granulation tissues of the femoral heads transformed eventually into fibrocartilage, irrespective of their color and texture.

Femur Head↗

Serum aminoterminal type III procollagen peptide. Relation to biosynthesis of collagen type III in experimentally induced granulation tissue in rats.

Serum aminoterminal type III procollagen peptide was measured in rats during the development of granulation tissue induced by subcutaneous implantation of viscose cellulose sponges. Active collagen type III synthesis in granulation tissue during the first three weeks was accompanied by an increase in serum propeptide level. A positive correlation was observed between the increase in serum propeptide level on the one hand and the increase in granulation tissue collagen type III content and the in vitro formation of tissue 3H-hydroxyproline on the other hand. In some animals the serum propeptide level remained low, despite biochemical signs of collagen synthesis, indicating variations in the release into serum and/or the metabolism of circulating propeptide. The increase in propeptide antigen concentration was mainly due to an elevated content of material with molecular weight equal to or twice that of the propeptide. A minor fraction of the propeptide remained attached to the interstitial collagen fibres in the granulation tissue. The correlation between the serum propeptide level and the biosynthesis of collagen at the site of the focal fibroproliferative process suggests that the serum propeptide level may be a valuable indicator of fibrogenesis and thereby of disease activity in fibrotic conditions.

Animals↗