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Oral inoculation of probiotics Lactobacillus acidophilus NCFM suppresses tumour growth both in segmental orthotopic colon cancer and extra-intestinal tissue

Published online by Cambridge University Press:  30 September 2011

Chien-Chang Chen
Affiliation:
Department of Pediatrics, Chang Gung Memorial Hospital, Chang Gung University College of Medicine, Chang Gung Children's Hospital, 12L, 5 Fu-Hsing Street, Kwei-Shan, Taoyuan 333, Taiwan, ROC
Wei-Chuan Lin
Affiliation:
Department of Pediatrics, Chang Gung Memorial Hospital, Chang Gung University College of Medicine, Chang Gung Children's Hospital, 12L, 5 Fu-Hsing Street, Kwei-Shan, Taoyuan 333, Taiwan, ROC
Man-Shan Kong
Affiliation:
Department of Pediatrics, Chang Gung Memorial Hospital, Chang Gung University College of Medicine, Chang Gung Children's Hospital, 12L, 5 Fu-Hsing Street, Kwei-Shan, Taoyuan 333, Taiwan, ROC
Hai Ning Shi
Affiliation:
Mucosal Immunology Laboratory, Massachusetts General Hospital and Harvard Medical School, Charlestown, MA, USA
W. Allan Walker
Affiliation:
Mucosal Immunology Laboratory, Massachusetts General Hospital and Harvard Medical School, Charlestown, MA, USA
Chun-Yen Lin
Affiliation:
Department of Internal Medicine, Hepatogastroenterology, Chang Gung Memorial Hospital, Chang Gung University College of Medicine,Taoyuan, Taiwan, ROC
Ching-Tai Huang
Affiliation:
Department of Internal Medicine, Infectious Disease, Chang Gung Memorial Hospital, Chang Gung University College of Medicine,Taoyuan, Taiwan, ROC
Yung-Chang Lin
Affiliation:
Department of Hematology/Oncology, Chang Gung Memorial Hospital, Chang Gung University College of Medicine,Taoyuan, Taiwan, ROC
Shih-Ming Jung
Affiliation:
Department of Pathology, Chang Gung Memorial Hospital, Chang Gung University College of Medicine, Taoyuan, Taiwan, ROC
Tzou-Yien Lin*
Affiliation:
Department of Pediatrics, Chang Gung Memorial Hospital, Chang Gung University College of Medicine, Chang Gung Children's Hospital, 12L, 5 Fu-Hsing Street, Kwei-Shan, Taoyuan 333, Taiwan, ROC
*
*Corresponding author: T.-Y. Lin, fax +886 3 3288957, email pedcgl1969@gmail.com, pidlin@adm.cgmh.org.tw
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Abstract

Modulation of the cellular response by the administration of probiotic bacteria may be an effective strategy for preventing or inhibiting tumour growth. We orally pre-inoculated mice with probiotics Lactobacillus acidophilus NCFM (La) for 14 d. Subcutaneous dorsal-flank tumours and segmental orthotopic colon cancers were implanted into mice using CT-26 murine colon adenocarcinoma cells. On day 28 after tumour initiation, the lamina propria of the colon, mesenteric lymph nodes (MLN) and spleen were harvested and purified for flow cytometry and mRNA analyses. We demonstrated that La pre-inoculation reduced tumour volume growth by 50·3 %, compared with untreated mice at 28 d after tumour implants (2465·5 (sem 1290·4) v. 4950·9 (sem 1689·3) mm3, P < 0·001). Inoculation with La reduced the severity of colonic carcinogenesis caused by CT-26 cells, such as level of colonic involvement and structural abnormality of epithelial/crypt damage. Moreover, La enhanced apoptosis of CT-26 cells both in dorsal-flank tumour and segmental orthotopic colon cancer, and the mean counts of apoptotic body were higher in mice pre-inoculated with La (P < 0·05) compared with untreated mice. La pre-inoculation down-regulated the CXCR4 mRNA expressions in the colon, MLN and extra-intestinal tissue, compared with untreated mice (P < 0·05). In addition, La pre-inoculation reduced the mean fluorescence index of MHC class I (H-2Dd, -Kd and -Ld) in flow cytometry analysis. Taken together, these findings suggest that probiotics La may play a role in attenuating tumour growth during CT-26 cell carcinogenesis. The down-regulated expression of CXCR4 mRNA and MHC class I, as well as increasing apoptosis in tumour tissue, indicated that La may be associated with modulating the cellular response triggered by colon carcinogenesis.

Information

Type
Full Papers
Copyright
Copyright © The Authors 2011
Figure 0

Fig. 1 Lactobacillus acidophilus NCFM (La) pre-inoculation decreased subcutaneous CT-26 tumour growth. Tumour size was measured every 3 d using calipers. (a) Tumour volumes were determined for CT-26 (), CT-26+La () and CT-26+Ec () mice. Values are means of data pooled from three independent experiments with a total of ten to fifteen animals per group, with standard errors of the mean represented by vertical bars. Mean values were significantly different from those of CT-26 tumours: *P < 0·05, **P < 0·001. (b) Representative CT-26, CT-26+La and CT-26+Ec tumours are shown. CT-26 alone, mice were implanted with CT-26 cells after 14 d of PBS inoculation; CT-26+La, mice were pre-inoculated with La 1 × 108 colony-forming units (cfu)/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells; CT-26+Ec, mice were pre-inoculated with Escherichia coli K12 1 × 108 cfu/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells.

Figure 1

Fig. 2 Lactobacillus acidophilus NCFM (La) pre-inoculation promotes apoptosis in subcutaneous (s.c.) CT-26 tumours. Histological analysis of dorso-lateral flank tumours using (a–c) haematoxylin and eosin (H&E) and (e–g) terminal deoxynucleotidyl transferase deoxyuridine triphosphate nick end labelling (TUNEL) staining. (a and e) CT-26(s.c.)alone, (b and f) CT-26(s.c.)+La and (c and g) CT-26(s.c.)+Ec tumours were analysed for apoptosis (black arrows in H&E staining) and brown staining (white arrows in TUNEL staining) with magnification 400 × . (d and h) The number of apoptotic bodies was also calculated using at least ten different high-power fields (HPF) per slide. Values are means, with standard errors of the mean represented by vertical bars (n 10). * Mean value was significantly different from that for CT-26-alone (P < 0·05). CT-26 alone, mice were implanted with CT-26 cells after 14 d of PBS inoculation; CT-26+La, mice were pre-inoculated with La 1 × 108 colony-forming units (cfu)/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells; CT-26+Ec, mice were pre-inoculated with Escherichia coli K12 1 × 108 cfu/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells.

Figure 2

Fig. 3 Lactobacillus acidophilus NCFM (La) inhibits tumour growth and promotes apoptosis in segmental orthotopic colon cancers. (a) Abdominal tumour size and (b) number of tumours were measured after mice had been killed on day 28 of tumour development. (c) Two representative images show these intra-abdominal tumours (black arrows) in CT-26 alone and CT-26+La. Histological pathology of the tumour on segmental colonic tissue of female BALB/c mice, haematoxylin and eosin stain with magnification 200 × . The different groups are (d) CT-26 alone, (e) CT-26+La, (f) CT-26+Ec and (g) control. The (h) colonic histology scores of different groups of mice at 28 d after CT-26 cell implantation were assessed by the determination of colonic involvement and tissue damage. ●, CT-26 alone; ▲, CT-26+La; □, CT-26+Ec; ○, control. Values are measurements of individual mice pooled from three independent experiments. The horizontal line represents the mean score of different groups. Data from the colonic histology scores were analysed using one-way ANOVA (non-parametric). The mean score of mice CT-26+La is lower than those of mice CT-26 alone and CT-26+Ec (n 10–15 female BALB/c mice). * Mean values were significantly different from those of the CT-26-alone group (P < 0·05). Segmental colon tumours from (j) CT-26 (intracolon implantation) alone, (k) CT-26 (intracolon implantation)+La, (l) CT-26 (intracolon implantation)+Ec and (m) control-colon mice were analysed for apoptosis (brown staining, white arrow) using terminal deoxynucleotidyl transferase deoxyuridine triphosphate nick end labelling staining, with magnification 200 × . The (i) number of apoptotic bodies was also calculated using at least ten different high-power fields (HPF) per slide. Values are means of data pooled from three independent experiments with a total of ten to fifteen animals per group, with standard errors of the mean represented by vertical bars. * Mean value was significantly different from that for CT-26 alone (P < 0·05). CT-26 alone, mice were implanted with CT-26 cells after 14 d of PBS inoculation; CT-26+La, mice were pre-inoculated with La 1 × 108 colony-forming units (cfu)/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells; CT-26+Ec, mice were pre-inoculated with Escherichia coli K12 1 × 108 cfu/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells.

Figure 3

Fig. 4 Effect of probiotics Lactobacillus acidophilus NCFM (La) on the apoptosis of tumour cells caused by CT-26 cell carcinogenesis in mice. (a) The single-cell suspension was prepared and apoptosis was detected by annexin-V fluorescein isothiocyanate through flow cytometry. Mice CT-26+La showed enhancement of apoptosis. (b and c) The expressions of some proteins associated with cell apoptosis were detected by Western blotting. Protein was extracted and analysed by SDS-PAGE (10 %), followed by Western blot analysis using Bcl-2, caspase-3, caspase-9 antibody or β-actin as a protein loading control. Lane 1, CT-26 alone; lane 2, CT-26+La; lane 3, CT-26+Ec. The expression of CT-26+La is higher in caspase-3 and caspase-9, but lower in Bcl-2 (n 10 female BALB/c mice). CT-26 alone, mice were implanted with CT-26 cells after 14 d of PBS inoculation; CT-26+La, mice were pre-inoculated with La 1 × 108 colony-forming units (cfu)/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells; CT-26+Ec, mice were pre-inoculated with Escherichia coli K12 1 × 108 cfu/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells.

Figure 4

Fig. 5 To determine the expression of the chemokine receptor CXCR4 under a colon carcinoma cell line, we isolated and homogenised the colon, mesenteric lymph nodes (MLN) and extra-intestinal tissue. (a) The above samples were performed with real-time PCR to analyse the expression of CXCR4 mRNA in CT-26 alone (□), CT-26+La (), CT-26+Ec () and control (■) mice. CT-26+La may down-regulate the expression of CXCR4 mRNA in the (a) colon, (b) MLN, (c) spleen and (d) liver, compared with the other groups such as CT-26 alone and CT-26+Ec. Statistical analyses were performed using one-way ANOVA. Values are means, with standard errors of the mean represented by vertical bars (n 10–15 animals). Mean value was significantly different from that for CT-26-alone: *P < 0·05, **P < 0·001. CT-26 alone, mice were implanted with CT-26 cells after 14 d of PBS inoculation; CT-26+Lactobacillus acidophilus NCFM (La), mice were pre-inoculated with La 1 × 108 colony-forming units (cfu)/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells; CT-26+Ec, mice were pre-inoculated with Escherichia coli K12 1 × 108 cfu/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells.

Figure 5

Fig. 6 To determine the expression of the MHC class I molecule under a colon carcinoma cell line, we isolated cells from the mesenteric lymph nodes (MLN), spleen and the lamina propria (LP) of colon tissue. Mean fluorescence indices (MFI) of the MHC class I molecule (H-2Dd, -Kd and -Ld) in flow cytometry analysis shown in CT-26 alone (□), CT-26+La (), CT-26+Ec () and control (■) mice. Under CT-26 cells implanted, pre-inoculation with La may down-regulate the expression of MHC class I (H-2Dd, -Kd and -Ld) in the (a) LP of the colon, (b) MLN and (c) spleen, which compared with the other groups such as CT-26 alone and CT-26+Ec. Statistical analyses were performed using one-way ANOVA. Values are means, with standard errors of the mean represented by vertical bars (n 10–15 animals). * Mean value was significantly different from that for CT-26-alone (P < 0·05). CT-26 alone, mice were implanted with CT-26 cells after 14 d of PBS inoculation; CT-26+Lactobacillus acidophilus NCFM (La), mice were pre-inoculated with La 1 × 108 colony-forming units (cfu)/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells; CT-26+Ec, mice were pre-inoculated with Escherichia coli K12 1 × 108 cfu/mouse per d for 14 consecutive days and were implanted with 5 × 106 CT-26 cells.