Objective To explore the effect of connective tissue growth factor on the pathogenesis of hypertrophic scar and keloid tissue. Methods The content of hydroxyproline was determined and the expression of connective tissue growth factor gene was detected by the reverse transcription-polymerase chain reaction and image analysis technique in 5 normal skins, 15 hypertrophic scars and 7 keloid tissues. Results The contents of hydroxyproline in the hypertrophic scar(84.10±1.76) and keloid tissue (92.38±2.04) were significantly higher than that of normal skin tissue (26.52 ± 4.10) (P lt; 0.01). The index of connective tissue growth factor mRNA in the hypertrophic scar (0.78 ± 0.63) and keloid tissue (0.84 ± 0.04) were higher than that of normal skin tissue ( 0.09 ± 0.25) (P lt; 0.01). Conclusion Connective tissue growth factor may play an important role in promoting the fibrotic process of hypertrophic scar and keloid tissue.
Objective To investigate the relationship between p53 codon 72 polymorphism and susceptibility to keloid. Methods The p53 genotypes were detected by polymerase chain reactionreverse dot blot(PCRRDB) and DNA direct sequencing among 15 healthy controls and 15 patients with keloid. Results The frequency of the Proallele(P=0.035) and Pro/Pro genotype(P=0.030) in patients was significantly higher than that in the controlls. There was no significant difference in the frequency of Pro/Arg and Arg/Arg genotypes between patients and controls. Conclusion The p53 gene codon 72 polymorphism may play a role in susceptibility to keloid.
Objective To study the curative effects of keloid by operation combined with postoperative β radiation and silicone gel sheeting. Methods From 1996 to 2002, 598 patients with keloid(243 males, 355 females, aging 15-55 years with an average of 28.6 years) were treated by integrated therapy. Their disease courses were from 6 months to 6 years. The keloid area ranged from 1.0 cm×1.5 cm~8.0 cm×15 cm. First, keloid was removed by operation, and then the wounds weresutured directly(group suture) or covered with skin graft(group graft). In groupsuture, the operational sites were managed by β ray radiotherapy 24-48 hours after operation. The total doses of radiation were 12-15 Gy, 5 times 1 week(group suture A) and 10 times 2 weeks (group suture B). Radiotherapy was not taken until stitches were taken out in group graft, and then the same methods were adopted as group suture B. After radiotherapy, silicone gel sheeting was used in 325 cases for 3-6 months. Results All patients were followed up for 12-18 months. (1) The overall efficacy was 91.3% in group suture A(n=196), and 95.8% in group suture B (n=383), respectively. There was significant difference between the two groups(Plt;0.01). (2) Radiotherapy was of no effect in 6 cases of group graft(n=19). (3) Silicone gel sheeting had effectivenessin 185 cases. Silicone gel sheeting had no obvious effect on the overall efficacy, but it could improve the quality of texture and color of skin. Conclusion By use of integrated methods to treat keloid, if the wound can be sutured directly, skin grafting should not be adopted. The results in group suture B are better than those in group suture A; silicone gel sheeting should be used as possible.
Objective To observe the protein expression of c-Jun amino-terminal kinase (JNK) and extracellular signal-regulated kinase (ERK) in normal skin and keloid and to explore their influences on the formation of kloid. Methods Keloid tissues and normal skin tissues were collected from 16 keloid resection patients (experimental group) and 10 voluntary plastic surgery patients (control group). In the experimental group, the keloid formation time ranged from 8 months to 10 years; the keloid tissues were collected from the chest in 6 cases, the ear lobe in 4 cases, the perineum in 2 cases, the shoulder in 3 cases, and the abdomen in 1 case; and all keloid tissues were confirmed by pathological examination. In the control group, normal skin tissues were collected from the abdomen in 4 cases, the thighs in 3 cases, the shoulder in 2 cases, and the back in 1 case. Two-step l ine of Envision immunohistochemical staining was performed to observe the expressions of nonphosphorylated and phosphorylated JNK and ERK; Image Pro Plus 4.5 image analysis system was used to measure the integrated absorbance (IA) and to observe the positive staining strength. Results The immunohistochemical staining showed that no obvious expressions of phosphorylated and non-phosphorylated ERK, JNK were observed in the fibroblasts of the control group, and the expressions of phosphorylated JNK and ERK proteins were significantly higher in the experimental group than in the control group (P lt; 0.05). There was no significant difference in the expressions of non-phosphorylated JNK and ERK proteins between 2 groups (P gt; 0.05). Conclusion Activation of ERK and JNK pathways might be involved in formation of keloid.
Objective To evaluated the role of wt-P53 protein in telomerase regulation in keloid fibroblasts(KFBs). Methods The fibroblasts were derived from humankeloid tissue which was proved by pathological diagnosis. KFBs were divided into 2 groups, the transfection group and the untransfection group. wt-p53 gene was transfected into the fibroblasts by adenovirus vectors in the transfection group. The KFBs untransfected with wt-p53 gene served as control (untransfection group). After 48 hours of transfection, the expression of wt-P53 protein was analyzed by both Western blotting and immunofluorescence method, respectively. The telomerase activity was evaluated by TRAP-ELISA after 1-7 days of transfection. Results All the KFBs from 2 groups expressed wt-P53 protein. But the expression level of wt-P53 protein in the transfection group was significantly higher than that in the untransfection group.At the same time of high expression of wt-P53 protein, the telomeraseactivity of KFBs in transfection group was significantly lower than that in theuntransfection group(P<0.05). Conclusion High level expression of wt-P53 protein can transiently inhibit the telomerase activity of KFBs.
Objective To observe the effect of gene expression of p53 and the polymorphism of p53 gene codon 72 on cl inical phenotype of keloids. Methods The tissue and blood samples were taken from 35 patients with keloids, 19 males and 16 females, and the course of disease was from 4 months to 8 years. Meanwhile, autologous peripheral blood was collected for genotype analysis. According to the observing scope, the tissue samples of the keloids were divided into 2 groups: the central group involving the central part of the keloids (the central area within two-thirds of the radius) and the peripheral group involving the peripheral part of the keloids (the peripheral area within one-third of the radius). According to the largest diameter of the keloids, the two groups were divided into 3 subgroups: the small size group with 5 patients (lt; 1 cm), the medium size group with 21 patients (1-3 cm) and the large size group with 9 patients (gt; 3 cm). DNA of the tissue and blood samples were extracted, and the PCR followed by DNA sequencing was used to detect the polymorphism of p53 gene codon 72. The expression change of P53 was detected by immunohistochemical staining. The fibroblast apoptosis in keloid tissues was detected by TUNEL method. Results The genetic genotype of p53 gene codon 72 in keloids included Arg/Arg in 7 cases, Pro/Arg in 21 cases, Pro/ Pro in 7 cases. The significant correlation was found between genotype and cl inical phenotype (P lt; 0.05). Immunohistochemical staining revealed that P53 was detectable in peripheral and central groups of small-medium size keloids and central groups keloids, and detectable in few cells in peripheral groups of large size keloids. The absorbency value was 3 439.359 8 ± 538.527 5 in Arg/Arg genotype, 3 273.186 2 ± 375.213 9 in Arg/Pro genotype, 1 691.372 9 ± 98.989 3 in Pro/Pro genotype. There weresignificant differences among the three genotypes (P lt; 0.05). The fibroblast apoptosis was detected by TUNEL, and the apoptotic cells were evenly distributed. The apoptosis index was 31.000 0 ± 3.266 0 in peripheral group of large size keloids, 42.300 0 ± 4.354 8 in peripheral group of medium size keloids, 44.600 0 ± 5.253 6 in peripheral group of small size keloids. There were significant differences among the three groups (P lt; 0.05). Conclusion There is close relationshi p between the cl inical phenotype of keloids and the expression of P53. The polymorphism variation of p53 gene codon 2 is beneficial for apoptosis of fibroblasts in keloids.
【Abstract】 Objective To summarize the recent progress in related research on transforming growth factor β1 (TGF-β1)/Smad3 signal transduction pathway and post-traumatic scar formation. Methods Recent related literature at home and abroad on TGF-β1/Smad3 signal transduction pathway and post-traumatic scar formation was reviewed and summarized. Results TGF-β1 is an important influence factor of fibrotic diseases, and it plays biological effects by TGF-β1/Smad3 signal transduction pathway. The pathway is regulated by many factors and has crosstalk with other signal pathways at cellular and molecular levels. The pathway is involved in the early post-traumatic inflammatory response, wound healing, and late pathological scar formation. Intervening the transduction pathway at the molecular level can influence the process of fibrosis and extracellular matrix deposition. Conclusion TGF-β1/Smad3 signal transduction pathway is an important way to affect post-traumatic scar formation and extracellular matrix deposition. The further study on the pathway will provide a theoretical basis for promotion of wound healing, as well as prevention and treatment of pathological scar formation.
【Abstract】 Objective To summarize the effectiveness of surgical removal combined with adjuvant therapy onthe aural region keloid. Methods From January 2000 to December 2005, 42 patients (71 side ears) with keloid at the auralregion were treated. There were 8 males and 34 females, aged 16 to 50 years (mean 26.2 years). The course of diseaseranged from 6 months to 4 years. The causes of disease included earhole piercing (n=32), ear trauma(n=7), and postoperativehyperplasia(n=3); the sizes of keloids ranged from 0.3 cm × 0.3 cm× 0.2 cm to 6.0 cm × 4.0 cm × 1.0 cm with globular, dumb-bell,nodular shapes. According to the different sizes and the range of keloids, different operations to remove the keloids and repairthe defect tissue were chosen. Wounds were exposed to the electron beam at first 24 hours after operation, once a day at 2 Gyeach time for 10 days. An immediate local injection for the keloid with hormones anti-scar drugs, which was a mixture of Betamethasone(Diprospan) and 2% Lidocaine with a proportion of 1 ∶ 3, was given to the patients who had recurrence trend 3 times,every 3 weeks. Results After operation, all the wounds healed by first intention. And 37 cases(64 lateral ears) were followedup for 1 year, and all achieved cl inical cure. Five cases (7 lateral ears) had the trend of recurrence 3-6 months after operation andwere cured after the immediate local injection for the keloid with hormones anti-scar drugs. According to LIU Wenge’s curativecriterion, 37cases were cured and 5 cases responded to treatment. Conclusion Surgical removal combined with local radiationand hormones infiltrated individually as early as possible can effectively treat aural region keloids. And it is an optimal method.
Objective To study the effect of myofibroblast on the development of pathological scar. Methods From 1998 to 2000, 14 cases of keloid(k), 13 cases of hypertrophic scar(HS), and 7 cases of scar were studied through immunohistochemistry and electronical microscope. Results Myofibroblasts were often observed in the hypertrophic HS by electronical microscope, but no myofibroblast was observed in the K and NS. αSMactin was expressed in fibroblast of HS, but was not expressed in K and NS. Conclusion Myofibroblast may play a role in the development of hypertrophic scar. The difference between the absence of myofibroblast in keloid and the invasion of keloid deserves further study.
Objective To study the mutations at 1 573 fragment of TNF receptor II (TNFR-II) gene in patients with keloid. Methods The tissue DNA was extracted from 22 samples of keloids donated by 22 patients (6 males and 16 females, aged 18-53 years), and all keloids were examined and classified by pathologist. The peri pheral blood DNA was extracted from the same patients as the control. PCR was used to ampl ify the 1 573 fragment of TNFR-II gene from the keloid tissue DNA and peripheral blood DNA. The PCR products were sequenced directly and then compared with the GeneBankdata. Results All the concentration of the extracted DNA in trial were higher than 0.50 μg/μL and the purity (A260/A280) ofthe extracted DNA were higher than 1.5. It closed to the magnitude of the design DNA fragment by agarose gel electrophoresis examining, and corresponded with the test requirement. Mutations at 1 573 fragment of TNFR-II gene were detected in 13 out of 22 keloids. The mutation incidence was 59.1%. Among them, 9 had point mutation at codon 1 663, accounting 40.9%. No TNFR-II gene mutation was detected in all peripheral blood samples. There were significant difference between keloids DNA and peripheral blood DNA (P lt;0.01). The mutations involved point mutation, deletion and insertion as well as multisite and multitype. Conclusion There is a correlation between the mutation at 1 573 fragment of TNFR-II gene and keloid.