1.MENTORSHIP AND GROWTH: REFLECTIONS FROM THE ASIAN MEDICAL STUDENTS’ ASSOCIATION COMPETITION IN JAPAN
Hasliza Abu Hassan ; Jin Xiang Leong ; Ri Hong Ting ; Wei Quan Heng
Malaysian Family Physician 2024;19(1):1-2
MENTORSHIP AND GROWTH: REFLECTIONS FROM THE ASIAN MEDICAL STUDENTS’ ASSOCIATION COMPETITION IN JAPAN
Participating as a supervisor in the Asian Medical Students’ Association (AMSA) Competition
in Japan was both enlightening and enriching. This prestigious event, which aimed to enhance
medical students’ academic knowledge, cultural understanding and interpersonal skills, provided
me with the opportunity to mentor aspiring professionals and reflect on my development as
an educator. The AMSA Conference and Competition, held from 21 to 27 July 2024 at the
International University of Health and Welfare’s Narita and Tokyo campuses, focused on the
theme of ‘Disaster Medicine’. AMSC 2024 offered medical students a platform to explore
disaster medicine, fostered international collaboration and idea exchange and highlighted the
need for disaster preparedness and global health cooperation among future healthcare leaders.
Students, Medical
2.Serum proteomics analysis of feline mammary carcinoma based on label-free and PRM techniques
Jia-San ZHENG ; Ren-Yue WEI ; Zheng WANG ; Ting-Ting ZHU ; Hong-Ri RUAN ; Xue WEI ; Kai-Wen HOU ; Rui WU
Journal of Veterinary Science 2020;21(3):e45-
Background:
Feline mammary carcinoma is the third most common cancer that affects female cats.
Objectives:
The purpose of this study was to screen differential serum proteins in feline and clarify the relationship between them and the occurrence of feline mammary carcinoma.
Methods:
Chinese pastoral cats were used as experimental animals. Six serum samples from cats with mammary carcinoma (group T) and six serum samples from healthy cats (group C) were selected. Differential protein analysis was performed using a Label-free technique, while parallel reaction monitoring (PRM) was performed to verify the screened differential proteins.
Results:
A total of 82 differential proteins were detected between group T and group C, of which 55 proteins were down regulated and 27 proteins were up regulated. Apolipoprotein A-I, Apolipoprotein A-II (ApoA-II), Apolipoprotein B (ApoB), Apolipoprotein C-III (ApoC-III), coagulation factor V, coagulation factor X, C1q, albumen (ALB) were all associated with the occurrence of feline mammary carcinoma. Differential proteins were involved in a total of 40 signaling pathways, among which the metabolic pathways associated with feline mammary carcinoma were the complement and coagulation cascade and cholesterol metabolism. According to the Label-free results, ApoB, ApoC-III, ApoA-II, FN1, an uncharacterized protein, and ALB were selected for PRM target verification. The results were consistent with the trend of the label-free.
Conclusions
This experimen is the first to confirm ApoA-II and ApoB maybe new feline mammary carcinoma biomarkers and to analyze their mechanisms in the development of such carcinoma in feline.
3.Modeling of acute respiratory distress syndrome in canine after inhalation of perfluoroisobutylene and preliminary study on mechanisms of injury.
Hai-long LIANG ; Chao-guang JIANG ; Xian-cheng ZHANG ; Ri-gao DING ; Chun-qian HUANG ; Xiao-hong SUN ; Ting-kui HOU
Chinese Journal of Industrial Hygiene and Occupational Diseases 2004;22(2):125-127
OBJECTIVETo establish of acute respiratory distress syndrome (ARDS) model in canine after inhalation of perfluoroisobutylene (PFIB), and to observe the progressing of lung injury, and to study the mechanisms of injury.
METHODSA device of inhalation of PFIB for canine was made. The concentration of PFIB was 0.30 - 0.32 mg/L. Serum IL-6 and IL-8 were dynamically measured. Clinical manifestations, pathology of organs in canine were observed.
RESULTS(1) During inhalation, the concentration of PFIB remained stable; (2) After inhalation, blood arterial oxygen partial pressure fell gradually, and eventually met the criteria for diagnosing ARDS; (3) The level of IL-8 in serum rises significantly after inhalation (P < 0.05), whereas that of IL-6 was not obviously altered (P > 0.05); (4) Within 6 hours after inhalation, no abnormality in canine was observed, but afterwards symptoms gradually appeared, and typical breath of ARDS, such as high frequency and lower level could be seen in later phase; (5) Pathological examination showed severe congestion, edema and atelectasis in most part of both lungs, and signs of anoxia in other organs.
CONCLUSIONS(1) The device designed is capable of ensuring control of inhalation of PFIB; (2) Exposure to PFIB for 30 mins, canines all met the criteria for diagnosing ARDS 22 hours after inhalation, therefore the modeling is successful; (3) PFIB specifically damages the lung by causing excessive inflammation.
Administration, Inhalation ; Animals ; Disease Models, Animal ; Dogs ; Female ; Fluorocarbons ; toxicity ; Interleukin-6 ; blood ; Interleukin-8 ; blood ; Lung ; drug effects ; pathology ; Male ; Random Allocation ; Respiratory Distress Syndrome, Adult ; blood ; chemically induced


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