1.Results of a comparative study on the effects of a mixture of bacterial metabolites and aloe vera (Aloe barbadensis Miller) on burn wound healing
Nyam-Erdene N ; Sevjidmaa B ; Manaljav B ; Munkhtushig O ; Barsbold M ; Otgonsuren B ; Arvinzaya B ; Uugangerel E ; ; Enkhmaa D ; ; Tsevelmaa N ; ; Nandin-Erdene M ; ; Suvdaa B ; Battogtokh Ch ; Khongorzul B ;
Mongolian Journal of Health Sciences 2026;91(1):32-37
Background:
Skin wounds can occur for many reasons, including UV radiation, mechanical burns, trauma, and chronic
inflammation caused by metabolic factors. In Mongolia, as of 2022, household burns were the top 5 causes of injuries, the
leading cause of injuries in children aged 0-5, and accounted for 18.4% of all illnesses in children aged 0-5. Skin burns
and wounds take a long time to heal, which causes emotional, aesthetic, and economic stress for doctors. Developing in
novative, effective, and low-side effects therapeutic products to improve wound healing is of great clinical and economic
importance. The lack of research on the effects of bacterial metabolites and aloe vera (Aloe barbadensis Miller) on burn
wounds was the basis for our research.
Aim:
To determine the effects of a mixture of bacterial metabolites and aloe vera on burn wounds in experimental animals.
Materials and Methods:
Eight-week-old BALB/c mice were divided into three groups: control group, bacterial metabo
lite group, and aloe vera group. The mice were anesthetized, and the dorsal hair was shaved over a 2×2 cm area using an
electric clipper. A second-degree burn wound model was created by exposing the shaved dorsal skin to hot air at 200°C for
10 seconds. A total of 100 μL of a bacterial metabolite suspension mixed with aloe vera at a 1:1 ratio was applied evenly
to the center of the wound. Wound images were captured daily, and wound areas were measured using ImageJ software.
Healing was evaluated on days 7, 14, and 21 of treatment and compared with the control group. The initial wound size was
defined as 100%, and wound closure percentages were calculated accordingly. Burn skin tissues from both experimen
tal and control groups were subjected to immunofluorescence staining for the vascular marker α-SMA (Thermo Fisher
Scientific). Statistical analysis: The differences between the control and experimental groups were analyzed using an
independent t-test using GraphPad Prism 10 software, and the mean, standard deviation, and statistical correlation were
calculated.
Results:
The effect of the mixture of bacterial metabolites and aloe vera (Aloe barbadensis Miller) on the healing of burn
wounds in experimental mice was compared with the control group. The wound size at 7 days was 82.1% in the control
group and 83.7% in the experimental group (p<0.197), at 14 days was 62.6% in the control group and 58.1% in the exper
imental group (p<0.0001), at 21 days was 50.7% in the control group and 32.7% in the experimental group (p<0.0001).
No statistically significant difference in wound healing was observed between the groups at day 7; however, significant
differences were observed at days 14 and 21. Immunofluorescence analysis revealed uniform expression of α-SMA-pos
itive cells in the experimental group at 7, 14, and 21 days of treatment, whereas α-SMA expression was not detected in
the control group.
Conclusion
The combination of bacterial metabolites and aloe vera promotes wound healing in experimental mouse
burn wounds.
2. Establishment and evaluation of a lung metastasis model of colorectal cancer in experimental animals
Anujin D ; Manaljav B ; Barsbold M ; Altanchimeg Ch ; Otgonsuren B ; Khuselt-Od T ; Suvd-Erdene U ; Enkhsaikhan L ; Gansukh Ch ; Juramt B
Mongolian Journal of Health Sciences 2025;88(4):19-23
Background:
Currently, colorectal cancer (CRC) ranks as the third most common cancer and the second leading cause
of cancer-related mortality worldwide. CRC frequently metastasizes to the liver (50%), lungs (10–15%), peritoneum
(4%), bones (10.7%–23.7%), brain (0.3%–6%), and spinal cord. Approximately 35% of CRC cases are diagnosed before
distant metastasis, 36% upon lymph node involvement, and 23% after distant organ metastasis. Although several studies
have established primary tumor models in mice in our country, there are limited studies on experimental lung metastasis
models, prompting the need for this research.
Aim:
To establish and evaluate a lung metastasis model of colorectal cancer in C57BL/6J mice using the MC38 cell line.
Materials and Methods:
This study was conducted at the Institute of Biomedical Sciences, Mongolian National University of Medical Sciences. Approval was obtained from the Ethics Review Board of the Mongolian National University of Medical Sciences (2023/3-09) and all laboratory safety regulations and protocols were strictly followed. Male
C57BL/6J mice bred at the Experimental Animal Center of Mongolian National University of Medical Sciences were
used. MC38 murine colorectal carcinoma cells were cultured and injected intravenously (via the tail vein) at a concentration of 0.25×10⁶ cells per mouse (n=12) to induce lung metastasis. Histological analysis was subsequently performed.
Results:
Histological examination revealed significant alterations in lung tissue architecture, characterized by areas of
dense infiltration by pleomorphic, hyperchromatic cells, disrupting the normal alveolar structure. No histological abnormalities were observed in other organs.
Conclusion
Intravenous injection of MC38 colorectal adenocarcinoma cells into the tail vein of C57BL/6J mice successfully induced lung metastases, characterized by hyperchromatic, pleomorphic cell infiltrates forming glandular structures within the lung parenchyma.
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