Objective Alkaline comet assay was used to evaluate DNA repair (nucleotide excision repair, NER) capacity of human fresh lymphocytes from 12 young healthy non-smokers (6 males and 6 females). Methods Lymphocytes were ...Objective Alkaline comet assay was used to evaluate DNA repair (nucleotide excision repair, NER) capacity of human fresh lymphocytes from 12 young healthy non-smokers (6 males and 6 females). Methods Lymphocytes were exposed to UV-C (254 nm) at the dose rate of 1.5 J/m2/sec. Novobiocin (NOV) and aphidicolin (APC), DNA repair inhibitors, were utilized to imitate the deficiency of DNA repair capacity at the incision and ligation steps of NER. Lymphocytes from each donor were divided into three grougs: UVC group, UVC plus NOV group, and UVC plus APC group. DNA single strand breaks were detected in UVC irradiated cells incubated for 0, 30, 60, 90, 120, 180, and 240 min after UVC irradiation. DNA repair rate (DRR) served as an indicator of DNA repair capacity. Results The results indicated that the maximum DNA damage (i.e. maximum tail length) in the UVC group mainly appeared at 90 min. The ranges of DRRs in the UVC group were 62.84%-98.71%. Average DRR value was 81.84%. The DRR difference between males and females was not significant (P<0.05). However, the average DRR value in the UVC plus NOV group and the UVC plus APC group was 52.98% and 39.57% respectively, which were significantly lower than that in the UVC group (P<0.01). Conclusion The comet assay is a rapid, simple and sensitive screening test to assess individual DNA repair (NER) capacity. It is suggested that the time to detect DNA single strand breaks in comet assay should include 0 (before UV irradiation), 90 and 240 min after exposure to 1.5 J·m-2 UVC at least. The DRR, as an indicator, can represent the individual DNA repair capacity in comet assay.展开更多
The effects of selected DNA repair inhibitors on the frequency of human cytomegalovirus (HCMV)-induced chromosome aberrations in human peripheral blood lymphocytes (PBLs) were evaluated. Trealment of HCMV-infected PBL...The effects of selected DNA repair inhibitors on the frequency of human cytomegalovirus (HCMV)-induced chromosome aberrations in human peripheral blood lymphocytes (PBLs) were evaluated. Trealment of HCMV-infected PBLs with camptothecin (0.05 to 0.3μg/ml), an inhibitor of topoisomerase I, for 30 hr resulted in a significant (P<0.01) synergistic enhancement of the frequency of HCMV-induced chromosome damage, on the other hand, a significant increase in the frequency of chromosome damage was not noted for infected PBLs treated with either 3-aminobenzamide (3-AB) (3 to 30μg/ml), an inhibitor of poly (ADP-ribose) poiymerase, ur novobiocin 3 to 30 |ig/ml) an inhibitor of topoiso-merase I or excision repair processes for 30 hr. chromatid-type breaks including chromosome exchanges were the predominant type of chromosome aberrations observed in the HCMV-infected cells treated with camptothecin suggesting that HCMV infection is associated with the induction of single-strand DNA breaks. Furthermore, these findings suggest that HCMV infection does rol inflict dircc: DNA damage which is repaired through 3-AB- or novobiocinsensitive pathways.Human cytomegalovirus (HCMV) is a common pathogen which irferfs about 80% of the world's population causing, for the most part, persistent subcliniclil infeclions (Wellcr, 1971). A relatively small percentage of otherwise healthy immunologically competent people experience clinical HCMV disease (Cohen et al., 1985). Generalized HCMV infection, however, is the bane of individuals whose immune system is compromised (Schooley, 1990) Rubin, 1990). Molecular epidemiological studies strongly suggest that HCMV is one of the most frequent cause of congenital infections and that these infections result in a high incidence of birth defects and developmental abnormalities (Alford et al., 1990). Several studies (Nachtigal et al., 1978; Luleci et al., 1980; AbuBakar et al., 1988) have shown that HCMV infectior can result in an increase in the frequency of chromosome aberrations. Since the ability to cause chromosome damage may be significant in the induction of birth defects and possibly in HCMV-induced malignancy, we undertook the present investigation to evaluate the mechanisms by which HCMV may cause chromosome damage. In ths study, the effects of selected DNA repair inhibitors on the frequency of HCMV-induced chromosome aberrations were evaluated. The results indicae that the presence of camptothecin, but nut 3-aminobenzamidc (3-AB) ro novobiocin, results in a concentration-dependent increase in the frequent) of chromosome aberrations in HCMV-infected peripheral blood lymphocytes (PBLs). Accordingly, it is proposed that HCMV-induced chromosome damage in PBLs does not substantially involve DNA repair activities sensitive to inhibition of poly ADP-ribosylation or excision repair processes, but is related to camp of thccin-sersitive DNA repair, conceivably involving the activity of topoisomrrasc I .展开更多
文摘Objective Alkaline comet assay was used to evaluate DNA repair (nucleotide excision repair, NER) capacity of human fresh lymphocytes from 12 young healthy non-smokers (6 males and 6 females). Methods Lymphocytes were exposed to UV-C (254 nm) at the dose rate of 1.5 J/m2/sec. Novobiocin (NOV) and aphidicolin (APC), DNA repair inhibitors, were utilized to imitate the deficiency of DNA repair capacity at the incision and ligation steps of NER. Lymphocytes from each donor were divided into three grougs: UVC group, UVC plus NOV group, and UVC plus APC group. DNA single strand breaks were detected in UVC irradiated cells incubated for 0, 30, 60, 90, 120, 180, and 240 min after UVC irradiation. DNA repair rate (DRR) served as an indicator of DNA repair capacity. Results The results indicated that the maximum DNA damage (i.e. maximum tail length) in the UVC group mainly appeared at 90 min. The ranges of DRRs in the UVC group were 62.84%-98.71%. Average DRR value was 81.84%. The DRR difference between males and females was not significant (P<0.05). However, the average DRR value in the UVC plus NOV group and the UVC plus APC group was 52.98% and 39.57% respectively, which were significantly lower than that in the UVC group (P<0.01). Conclusion The comet assay is a rapid, simple and sensitive screening test to assess individual DNA repair (NER) capacity. It is suggested that the time to detect DNA single strand breaks in comet assay should include 0 (before UV irradiation), 90 and 240 min after exposure to 1.5 J·m-2 UVC at least. The DRR, as an indicator, can represent the individual DNA repair capacity in comet assay.
文摘The effects of selected DNA repair inhibitors on the frequency of human cytomegalovirus (HCMV)-induced chromosome aberrations in human peripheral blood lymphocytes (PBLs) were evaluated. Trealment of HCMV-infected PBLs with camptothecin (0.05 to 0.3μg/ml), an inhibitor of topoisomerase I, for 30 hr resulted in a significant (P<0.01) synergistic enhancement of the frequency of HCMV-induced chromosome damage, on the other hand, a significant increase in the frequency of chromosome damage was not noted for infected PBLs treated with either 3-aminobenzamide (3-AB) (3 to 30μg/ml), an inhibitor of poly (ADP-ribose) poiymerase, ur novobiocin 3 to 30 |ig/ml) an inhibitor of topoiso-merase I or excision repair processes for 30 hr. chromatid-type breaks including chromosome exchanges were the predominant type of chromosome aberrations observed in the HCMV-infected cells treated with camptothecin suggesting that HCMV infection is associated with the induction of single-strand DNA breaks. Furthermore, these findings suggest that HCMV infection does rol inflict dircc: DNA damage which is repaired through 3-AB- or novobiocinsensitive pathways.Human cytomegalovirus (HCMV) is a common pathogen which irferfs about 80% of the world's population causing, for the most part, persistent subcliniclil infeclions (Wellcr, 1971). A relatively small percentage of otherwise healthy immunologically competent people experience clinical HCMV disease (Cohen et al., 1985). Generalized HCMV infection, however, is the bane of individuals whose immune system is compromised (Schooley, 1990) Rubin, 1990). Molecular epidemiological studies strongly suggest that HCMV is one of the most frequent cause of congenital infections and that these infections result in a high incidence of birth defects and developmental abnormalities (Alford et al., 1990). Several studies (Nachtigal et al., 1978; Luleci et al., 1980; AbuBakar et al., 1988) have shown that HCMV infectior can result in an increase in the frequency of chromosome aberrations. Since the ability to cause chromosome damage may be significant in the induction of birth defects and possibly in HCMV-induced malignancy, we undertook the present investigation to evaluate the mechanisms by which HCMV may cause chromosome damage. In ths study, the effects of selected DNA repair inhibitors on the frequency of HCMV-induced chromosome aberrations were evaluated. The results indicae that the presence of camptothecin, but nut 3-aminobenzamidc (3-AB) ro novobiocin, results in a concentration-dependent increase in the frequent) of chromosome aberrations in HCMV-infected peripheral blood lymphocytes (PBLs). Accordingly, it is proposed that HCMV-induced chromosome damage in PBLs does not substantially involve DNA repair activities sensitive to inhibition of poly ADP-ribosylation or excision repair processes, but is related to camp of thccin-sersitive DNA repair, conceivably involving the activity of topoisomrrasc I .