PubMed Health⌕ Search

Biomedical subjects

H L Wasserkrug

Publications and source records attributed to H L Wasserkrug.

At least 19 recordsLinked to original sources

Stimulation of fibroblast proliferation and matrix contraction by wound fluid.

Fibroblast proliferation and fibroblast-mediated matrix contraction are critical to wound healing. Different cytokines have been shown to modulate fibroblast functions but little is known about the physiological role of these soluble factors during wound repair. In these experiments we characterized a fibroblast stimulating factor in wound fluid. Wound fluid was obtained from subcutaneously implanted polyvinyl alcohol sponges harvested 10 days post-wounding (pool of 100 Lewis rats). Normal dermal fibroblasts were obtained from Lewis rats by an explant technique, while wound fibroblasts were isolated from sponges harvested 10 days post-wounding. Proliferation in response to 0.5% and 10% fetal bovine serum was assessed by [3H]-thymidine incorporation. A fibroblast-populated collagen lattice was used for assaying contractile properties. Wound fibroblasts demonstrated markedly diminished proliferative and enhanced contractile properties compared to normal dermal fibroblasts. 10% wound fluid (v/v) stimulated proliferation of normal dermal fibroblasts (119%, p < 0.001) and wound fibroblasts (103%, p < 0.001). Wound fluid also stimulated collagen gel contraction by normal dermal fibroblasts (24% at 24 hr and 16% at 72 hr, p < 0.01), but not by wound fibroblasts. Separation by Sephadex G-100 gel filtration identified the active factor in wound fluid to have a molecular weight of about 100 kDa. Characterization of the soluble factor showed it to be a protein (ammonium sulfate precipitation), sensitive to trypsin digestion, heat resistant (56 degrees C, 30 min), and neuraminidase resistant. The isoelectric point appeared to be 7.0, as determined by ion exchange chromatography. Mitogenic proliferation of thymic lymphocytes was not affected by the active factor, suggesting cell target specificity. These data demonstrate that the wound environment contains high molecular weight protein(s) that promote fibroblast functions, essential for the healing process.

Animals↗

Acute protein-calorie malnutrition impairs wound healing: a possible role of decreased wound nitric oxide synthesis.

BACKGROUND: Nitric oxide is synthesized in wounds. Systemic inhibition of wound nitric oxide synthesis decreases wound collagen accumulation and wound mechanical strength. The role of nitric oxide during impaired healing is not known. In a model of impaired wound healing induced by acute protein-calorie malnutrition, we correlated wound healing parameters with wound nitric oxide synthesis. STUDY DESIGN: One group of Sprague-Dawley rats was rendered acutely malnourished by restricting its food intake to 50 percent of the food intake of an ad libitum-fed control group. Wound collagen accumulation and types I and III collagen gene expression were measured 10 days postwounding in subcutaneously implanted polyvinyl alcohol sponges. Nitric oxide synthesis was determined in wound fluid and in supernatants of wound cell cultures. RESULTS: Animals with acute protein-calorie malnutrition lost 10.4 +/- 0.8 percent, while controls gained 17.5 +/- 1.2 percent of their original body weight. Protein-calorie malnutrition reduced sponge hydroxyproline contents (995 +/- 84 compared with 1,580 +/- 109 micrograms/100 mg sponge, p < .001), indicating diminished wound collagen accumulation. Gene expression of type III, but not type I, collagen was decreased in wounds of protein-calorie malnutrition animals. Nitrite/nitrate and citrulline concentrations in wound fluid (p < .01) and in wound cell supernatants (p < .001) were also lower in protein-calorie malnutrition animals, indicating a net decrease in nitric oxide production. CONCLUSIONS: Impaired wound collagen accumulation caused by protein-calorie malnutrition may be a reflection of reduced nitric oxide synthesis within the wound.

Acute Disease↗

Arginine stimulates wound healing and immune function in elderly human beings.

BACKGROUND: Experimentally, arginine enhances immune function and promotes wound healing. In this randomized double-blind study we investigated the effect of oral arginine supplementation on wound healing and T-cell function in elderly human beings (more than 65 years of age). METHODS: Thirty elderly, healthy, human volunteers (15 men and 15 women) received daily supplements of 30 gm arginine aspartate (17 gm free arginine). Fifteen volunteers (nine men and six women) received a placebo syrup. Fibroplastic wound responses were assessed by inserting a polytetrafluoroethylene catheter subcutaneously into the right deltoid region. Epithelialization was examined by creating a 2 x 2 cm split thickness wound on the lateral aspect of the upper thigh. Mitogenic response of peripheral blood lymphocytes to concanavalin A, phytohemagglutinin, pokeweed mitogen, and allogeneic stimuli was assayed at the beginning and end of supplementation. Polytetrafluoroethylene catheters were analyzed for alpha-amino nitrogen (assessment of total protein accumulation), hydroxyproline (index of reparative collagen synthesis), and DNA accumulation (index of cellular infiltration). RESULTS: Arginine supplementation for 2 weeks significantly enhanced wound catheter hydroxyproline accumulation (26.49 +/- 2.39 nmol/cm vs 17.41 +/- 2.04 nmol/cm) and total protein content (43.47 +/- 3.85 micrograms/cm vs 21.95 +/- 2.5 micrograms/cm). Arginine did not influence the DNA content of the catheters or the rate of epithelialization of the skin defect. Peripheral blood lymphocyte responses to mitogenic and allogenic stimulation were greater in the arginine supplemented group. Serum insulin-like growth factor-1 levels were significantly elevated in the arginine group. CONCLUSIONS: The data suggest that arginine supplementation may improve wound healing and immune responses in the elderly.

Aged↗

Tumor necrosis factor-alpha inhibits in vivo collagen synthesis.

In this study we sought to determine the in vivo role of tumor necrosis factor-alpha (TNF-alpha) at the wound-healing site. In vivo abrogation of endogenous TNF-alpha activity in experimental wounds by administration of anti-murine TNF-alpha rabbit serum resulted in a significant 77.5% increase in wound collagen deposition, as assessed by wound sponge granuloma hydroxyproline content. Administration of pharmacologic doses of recombinant murine TNF-alpha into subcutaneously inserted polyvinyl alcohol sponges resulted in an increase in collagen deposition (1594 +/- 117 vs 1014 +/- 49 and 1588 +/- 135 vs 1014 +/- 49 micrograms/100 mg sponge, for TNF-alpha in situ administration at a dose of 0.05 and 0.5 micrograms, respectively). This effect could be abolished by the simultaneous systemic treatment of the animals with the antiinflammatory drug indomethacin. The data suggest that the enhanced collagen deposition after TNF-alpha administration is a consequence of a nonspecific inflammatory activity that indirectly promotes collagen synthesis. The data also support the hypothesis that endogenous wound TNF-alpha down-regulates collagen synthesis during normal wound healing.

Animals↗

The wound environment as a regulator of fibroblast phenotype.

Fibroblasts are fundamental to successful wound healing. We hypothesized that the induction and regulation of various fibroblast functions (proliferation, collagen synthesis, and remodeling) are determined by the wound environment. We examined the effect of wound fluid (WF), as a reflection of the wound environment, on the phenotypic expression of normal dermal (NF) and wound-harvested fibroblasts (WHF). WF and WHF were obtained from implanted polyvinyl alcohol sponges in 10-day-old wounds. NF and WHF were used between one and three passages. Proliferative function was assayed in a microculture system using serum stimulation (n = 12). The proliferative response of both NF and WHF to serum was significantly reduced by the addition of 20% WF (17,261 +/- 1231 cpm vs 2704 +/- 1215 cpm for NF, P less than 0.05; and 15,391 +/- 3735 cpm vs 1701 +/- 816 cpm for WHF, P less than 0.05 in serum and WF, respectively). Total protein synthesis (measured by [3H]proline incorporation) was equal in both fibroblast types; however, the relative collagen synthesis (collagenase-digestible fraction) was markedly different (2.2 +/- 0.9% for NF vs 11.4 +/- 2% for WHF, P less than 0.05). Addition of WF markedly enhanced NF collagen synthesis to 9.4 +/- 2%, but had no effect on WHF. Mechanical and remodeling functions were assayed using fibroblast-populated collagen lattices. In serum, WHF contracted the lattices faster than NF (499 +/- 14 mm2 vs 770 +/- 30 mm2 at 24 hr, P less than 0.05, and 301 +/- 18 mm2 vs 540 +/- 21 mm2 at 72 hr, P less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Nitric oxide generation from L-arginine is required for optimal human peripheral blood lymphocyte DNA synthesis.

We examined whether L-arginine is a substrate for nitric oxide (NO) production by peripheral blood mononuclear cells (MNC) in vitro. Minimal extracellular arginine (0.04 mmol/L) is required for maximal lymphocyte proliferation after phytohemagglutinin stimulation. In the absence of arginine, proliferation was 41% of normal without loss of viability. In contrast, MNC total protein synthesis (as assessed by tritiated leucine incorporation) or lymphokine synthesis (interleukin-2, as assessed by cytotoxic lymphoid line (CTLL) proliferation) were not affected by the absence or presence of arginine in the medium. Exogenous nitric oxide provided as sodium nitroprusside could replace L-arginine for maximal blastogenic proliferation. The addition of NG-monomethyl-L-arginine (NMMA; 0.1 mmol/L), a specific inhibitor of the NO synthetic pathway, significantly reduced DNA synthesis both at 0 and 0.1 mmol/L arginine concentrations; this effect was reversed to 91% of normal by excess arginine (1.0 mmol/L). Homoarginine (0.1 mmol/L; a known substrate for NO production) partially substituted for arginine, and this effect was also abrogated by NMMA. Nitrite levels (an end product of NO metabolism) were reduced when L-arginine was absent or NMMA was added to L-arginine-containing media. Cytosol from phytohemagglutinin-stimulated MNC-enhanced cyclic guanosine monophosphate production in the presence of L-arginine as substrate. The data suggest that the inductive effects of L-arginine on MNC DNA synthesis are not related to its nutrient requirement for protein synthesis, but rather caused by its role as a substrate for NO production. MNC actively synthesize NO during mitogenic proliferation. NO appears to be a promoter of MNC DNA synthesis, probably by its well-known effect as an activator of guanylate cyclase, which increases cyclic guanosine monophosphate levels.

Arginine↗

Wound healing and T-lymphocytes.

T-cell depletion leads to impaired wound healing. We studied the effect of combined T-helper and T-suppressor lymphocyte depletion on wound healing and compared it with the effect of all T-cell depletion. Groups of 10 male balb/c mice, 8 weeks old, underwent a 2.5-cm skin incision and subcutaneous implantation of polyvinyl alcohol sponges. Twenty-four hours prior to wounding one group was treated with 3OH12, a rat anti-mouse monoclonal antibody against the Thy-1.2 antigen present on all T-cells (1 mg); another group received 1 mg each of GK1.5 (anti-L3T4, CD4; anti-helper/effector subset) and 2.43 (anti-Lyt 2.1, CD8; anti-suppressor/cytotoxic subset). All monoclonal antibodies are cytotoxic in vivo. Controls received 1 mg of nonspecific rat IgG. Treatments were repeated weekly. Animals were sacrificed at 2 and 4 weeks postwounding. Equal depletion of all T- and Th- and Ts-subsets in peripheral blood and spleens was noted in the two experimental groups at sacrifice. Depleting Thy-1.2 cells (all T-cells) impaired wound healing as assessed by wound breaking strength and collagen synthesis. Combined anti-T-helper/effector and T-suppressor/cytotoxic depletion resulted in improved wound-healing parameters. This suggests that there is a Thy-1.2+, L3T4-, Lyt2- subpopulation of T lymphocytes which normally stimulates wound healing.

Animals↗

Arginine enhances wound healing and lymphocyte immune responses in humans.

Arginine has been shown to enhance wound healing and T-cell-mediated immune function in rodents. In this study the effect of oral arginine supplementation on human collagen synthesis and T-cell function was studied in 36 healthy, nonsmoking human volunteers. While volunteers were under local anesthesia, a 5 cm segment of expanded polytetrafluoroethylene tubing (1 mm outer diameter, 90 mu pore size) was inserted subcutaneously into the right deltoid region. The volunteers were then randomized into three groups that were given the following substances: (1) daily supplements of 30 gm arginine hydrochloride (24.8 gm free arginine); (2) 30 gm arginine aspartate (17 gm free arginine) daily; or (3) placebo. The supplements were given orally for 2 weeks; dietary intake was not controlled. Mitogenic responses of peripheral blood lymphocytes to phytohemagglutinin and concanavalin A were assayed at the start of study and at 1 and 2 weeks after supplementation. At 2 weeks the catheters were removed, and the amount of hydroxyproline was determined as an index of new collagen synthesis and deposition. Arginine supplementation significantly enhanced the amount of collagen deposited into a standardized wound as assessed by the amount of hydroxyproline present (10.1 +/- 2.32 nmol/cm graft in controls vs 17.57 +/- 2.16 nmol/cm in the arginine aspartate group, [p = 0.028] and vs 23.85 +/- 2.16 nmol/cm in the arginine hydrochloride group [p less than 0.001]). In parallel, arginine supplementation at both doses increased lymphocyte mitogenesis in response to phytohemagglutinin and concanavalin A. The data suggest that arginine may be of clinical benefit in improving wound healing and immune responses.

Adult↗

The wound is a possible source of posttraumatic immunosuppression.

Wound fluid from 10-day-old healing wounds in rats inhibits lymphocyte immune responses. Since severe injury is frequently complicated by immunosuppression as manifested by sepsis, we hypothesized that the wound may be a source of factors that impair host immune responses. Therefore, we studied the effect of systemic wound fluid administration on the survival of rats subjected to an acute peritonitis model. Male Sprague-Dawley rats, fitted with internal jugular catheters 48 hours previously, underwent cecal ligation and puncture with a 23-gauge needle. Immediately after the operation, rats were treated intravenously every 12 hours with either wound fluid obtained from 10-day-old healing wounds and adjusted to 10 mg of protein per milliliter or rat serum. In vitro testing of the wound fluid showed it to be highly inhibitory of thymic lymphocyte mitogenesis. Rats treated with wound fluid had significantly higher mortality after peritonitis than did control rats. The data show that the wound contains factors that can impair host immune responses to sepsis. This suggests that the wound may be the source of posttraumatic host immunosuppression.

Animals↗

The effect of in vivo T helper and T suppressor lymphocyte depletion on wound healing.

The role of T lymphocytes in wound healing is still not well-defined. Because it had been previously shown that in vivo depletion of T cells leads to impaired wound healing, the effect of depleting T cell subsets on subsequent fibroplasia was studied. T helper/effector cells were depleted by the use of the monoclonal antibody GK1.5, reactive against the L3T4 antigen (CD4). T suppressor/cytotoxic lymphocytes were depleted by using the 2.43 monoclonal antibody reactive against the Lyt 2 antigen (CD8). In the first experiment, Balb/c mice were treated with the antibodies starting at 24 hours before wounding was performed, and weekly thereafter. Depletion of the T helper/effector cells had no effect on wound-breaking strength or hydroxyproline deposition in sponge granulomas, whereas depletion of T suppressor/cytotoxic cells significantly enhanced both of these healing parameters. In a second experiment, T cell subset depletion was started on Days 0, 3, 7, 10, and 14 postwounding, and treatments were continued weekly thereafter. Once again, depletion of T helper/effector cells had no effect on wound healing, whereas depletion of T suppressor/cytotoxic cells markedly increased both wound-breaking strength and collagen synthesis. In conclusion, the data show that T suppressor/cytotoxic cells have a counter-regulatory role in wound healing, whereas the T cell subset responsible for up-regulating wound healing remains to be identified.

Animals↗

Wound healing in nude mice: a study on the regulatory role of lymphocytes in fibroplasia.

In order to understand the role of T cells in postinjury fibroplasia, we have studied wound healing in congenitally athymic nude mice that lack a normally developed T cell system. Healing of incisional wounds, as assessed by wound breaking strength, was significantly stronger in nude mice compared with normal thymus-bearing animals. This was accompanied by a marked increase in the amount of reparative collagen synthesized at the wound site, as assessed by the hydroxyproline content of subcutaneously implanted sponges. Because nude mice have some extrathymic T cell maturation, we used an anti-Thy-1.2 (30H12) monoclonal antibody to selectively deplete T cells in vivo. Although such treatments impaired wound healing in normal mice, they had no effect on any wound healing parameter in nude mice. In a separate experiment, T cell reconstitution of nude mice, sufficient to significantly enhance in vivo delayed hypersensitivity responses, led to a decrease in both wound breaking strength and hydroxyproline deposition in subcutaneously implanted polyvinyl sponges. The data suggest that T cells play a dual role in wound healing: an early stimulatory role on macrophages, endothelial cells, and fibroblasts, and a late counterregulatory role, which may be responsible for the orderly completion of wound repair.

Animals↗

Inhibition of wound repair by thymic hormones.

To further define the role of the thymus in wound healing, we studied the effects of two thymic hormones on fibroplasia in normal euthymic and in nude athymic mice. Groups of 10 mice underwent a 2.5 cm dorsal skin incision with subcutaneous placement of polyvinyl alcohol sponges. Starting on the day of wounding, the following daily injections were given: (1) thymopentin (TP5), an active synthetic pentapeptide of thymopoietin, a naturally occurring thymic hormone (1 microgram/day/IM); (2) thymulin or facteur thymique serique (FTS), a naturally occurring circulating thymic hormone (0.2 microgram/day/IM); (3) control saline solution (0.1 ml/day/IM). All mice were killed 4 weeks after wounding, and wound breaking strength and hydroxyproline content of the sponge granulomas were measured. The results show that both thymic hormones impaired wound breaking strength and reparative collagen synthesis in normal and athymic mice. The magnitude of the wound healing impairment induced by the two hormones was equal in the thymus-bearing and in the nude mice. The data support previous findings, which suggested that the thymus has an inhibitory effect on wound healing.

Animals↗

Generation of an anti-interleukin 2 factor in healing wounds.

Previously we have noted that fluid obtained from ten-day-old healing wounds noncytotoxically inhibits the blastogenesis of lymphocytes in response to mitogens or antigens. Since these lymphocytic responses are interleukin 2 (IL-2)-mediated, we looked for a specific IL-2 inhibitor in wound fluid. We have found that wound fluid blocks the response of thymic lymphocytes and of two cloned T-helper cell lines (D10 and HT2) to exogenous human recombinant IL-2. The wound fluid enhances fibroblast proliferation, thus demonstrating that its proliferative inhibitory activity is specific for lymphocytes. The findings suggest that wound fluid contains a factor that impairs lymphocyte response to IL-2, probably at the receptor or postreceptor level.

Animals↗

Stimulation of T cell immunity by arginine enhances survival in peritonitis.

T cell-mediated immunity may play a role in host responses to infection. Arginine is a known thymic and T cell stimulator which enhances host allogenic, mitogenic, and anti-tumor responses. We, therefore, examined the effect of arginine on the survival of rats with severe and lethal peritonitis induced by cecal ligation and double-needle puncture (CLP). In Experiment 1, arginine HCl (100 mg) was given bid by gavage starting immediately after CLP. In Experiment 2, the same dose of arginine was given by gavage bid for 3 days pre-CLP and continued thereafter. In Experiment 3, arginine was administered iv post-CLP (100 mg tid). Arginine had no effect on overall survival in Experiment 1. In Experiments 2 and 3, arginine therapy significantly increased survival at all times. A separate experiment was carried out to determine the reason for the differential response to arginine administered via gavage or iv post-CLP (Experiments 1 and 3). Nonseptic rats showed a 400% increase in plasma arginine 30 min after gavage with 100 mg arginine (P less than 0.001). No rise in plasma arginine was noted when arginine was administered by gavage post-CLP. The impaired intestinal absorption or markedly increased utilization of arginine in this septic model may explain why no improved survival was seen in Experiment 1. The mechanism for the improved survival with arginine therapy seen in Experiments 2 and 3 may be related to its known thymic and T cell immunostimulatory effects.

Animals↗

Suppressor cell generation during normal wound healing.

We have previously shown that 10 day healing wounds in rats contain wound mononuclear cells (WMNC) which inhibit normal lymphocyte mitogenic and allogeneic responses. In the present study we sought to further characterize the WMNC and define their mechanism of action. Polyvinyl alcohol sponges implanted in wounds were harvested and processed 10 days postwounding. The resultant WMNC suspension contained less than 15% macrophages. By FACS analysis, 69.5 +/- 11.4% (mean +/- SD of eight separate experiments) of the cells expressed the all T cell marker (W3/13), while 47.7 +/- 11.9% stained with the T helper/effector marker (W3/25) and 49.5 +/- 18.8% expressed the T suppressor/cytotoxic phenotype (OX8) (Th/Ts ratio = 0.96 +/- 0.13). When various numbers of WMNC were cocultured with 5 X 10(5) PHA-stimulated rat thymic lymphocytes, as few as 500 WMNC inhibit normal blastogenesis. Long-term (72 or 144 hr) culture of WMNC revealed that they maintain their suppressive activity. Furthermore, the conditioned media of long-term cultures also significantly suppressed thymic lymphocyte PHA blastogenesis, suggesting that the WMNC secrete suppressive cytokines. Large doses of human recombinant IL-2 or indomethacin did not abrogate the inhibitory effect of WMNC. We conclude that the healing wound is normally infiltrated by suppressor lymphocytes which generate immune inhibitory cytokines.

Animals↗

Lymphocyte participation in wound healing. Morphologic assessment using monoclonal antibodies.

To investigate lymphocyte participation in wound healing, the migration of T lymphocyte subsets into healing wounds and subcutaneously implanted polyvinyl alcohol sponges was studied. Frozen sections of 5-, 7-, and 10-day-old incisional wounds and sponges from Lewis rats were stained with mouse anti-rat monoclonal antibodies. Cellular staining to OX1 (all leucocyte), W3/25 (helper/effector T lymphocytes), and OX8 (suppressor/cytotoxic T lymphocytes) was quantitated in two arbitrarily defined areas based on maximal cellular infiltration: the superficial wound, down to and including the papillary dermis, and the deep wound, the reticular dermis. Five-day wounds were significantly more cellular than 10-day wounds in the deep portion (p less than 0.05) and somewhat more cellular in the superficial section (p less than 0.10). Approximately 2:1 W3/25 to OX8 ratios were noted for wound strips on all days. At 5 and 10 days there are twice as many W3/25 and OX8 labeled cells in the deep wound as in the superficial portion. At 7 days there is a peak in surface W3/25 and OX8 lymphocytes, whereas the deep population remains constant. Seven- and 10-day sponge granulomas demonstrate ratios similar to the wound strips (5-day sponge lymphocytic infiltration was insufficient to count). The data demonstrate that lymphocyte subpopulation participation in wound healing is a dynamic and distinctive process.

Animals↗

Significance of T-lymphocytes in wound healing.

To determine the importance of T-lymphocytes in wound healing, we examined the effect of T-lymphocyte depletion on the healing of surgical wounds. Thirty Balb/c mice were injected intraperitoneally with 1 mg of rat anti-mouse (IgG2b) cytotoxic monoclonal antibody (30H12) against the Thy1.2 (all T) determinant. Twenty-four hours later animals showed a greater than 95% depletion of Thy1.2 cells in peripheral blood and spleen. Thirty control mice received nonspecific rat immunoglobulin (1 mg). Twenty-four hours after treatment mice underwent a 2.5 cm dorsal skin incision with subcutaneous placement of polyvinyl alcohol sponges. Injections were repeated at weekly intervals. Wound healing was assessed at 2, 3, and 4 weeks by the breaking strength of wound strips and by the hydroxyproline content of sponge granulomas (an index of wound reparative collagen deposition). Thy1.2 depletion at death was 95% to 57% in peripheral blood and 86% to 68% in the spleen. Both groups gained weight equally. We found that T cell depletion significantly impairs wound breaking strength and wound collagen deposition at all times studied. The data strongly suggest that T-lymphocytes modulate fibroblast activity during normal wound healing.

Animals↗

Interleukin 2 enhances wound healing in rats.

Antigen-stimulated lymphocytes secrete lymphokines which have been shown to enhance in vitro fibroblast migration, proliferation, and protein synthesis. In the present experiments, the effect of human recombinant interleukin 2 (RIL-2) on wound healing was assessed in vivo. Groups of male Lewis rats, 225-250 g, underwent intraperitoneal insertion of osmotic pumps and a 7-cm dorsal skin incision with subcutaneous placement of polyvinyl alcohol sponges under anesthesia. The dorsal wounds were closed with stainless-steel sutures. The dose of RIL-2 administered was 60,000 u/rat/day for 7 days in experiment I, and 140,000 u/rat/day for 7 days in experiment II. Controls received equal volumes of excipient. Animals were sacrificed 10 days post wounding and wound healing was assessed by fresh breaking strength, fixed breaking strength (following 72 hr of Formalin fixation which maximally crosslinks the collagen present), and sponge hydroxyproline content (an index of reparative collagen accumulation). In vivo RIL-2 administration significantly augmented wound fresh and fixed breaking strength and wound collagen synthesis. Higher doses of RIL-2 (experiment II) did not result in further increases in the parameters studied. The data suggest that lymphocytes participate directly in the process of wound healing.

Animals↗