1.Musculoskeletal discomfort during COVID-19 pandemic lockdown among the faculty members in selected schools in Mega Manila and Metro Cebu: A cross-sectional study
Consuelo Gonzalez-Suarez ; Ivan Neil Gomez ; Ken Erbvin Sosa ; Maria Lourdes Corazon Tapang ; Cristina CastroCabral ; John Christopher Mesana ; Elda Grace Anota ; Cherie-lee Apiag ; Jacqueline Calaycay
Philippine Journal of Allied Health Sciences 2025;8(2):13-22
BACKGROUND
The COVID-19 pandemic brought insurmountable changes, leading to work demands and resource limitations that placed additional physical and occupational stress.
OBJECTIVESThis study aimed to determine the change in the occurrence and intensity of musculoskeletal discomfort among selected university faculty members. It also determined the association of sociodemographic and anthropometric factors, workplace conditions, and involvement in physical activity with musculoskeletal pain.
METHODSThis is an analytical cross-sectional study conducted from June 2022 to May 2023 that surveyed university faculty members from Metro Manila and Metro Cebu. Outcome measures include sociodemographic data, anthropometric measures of weight, height, body mass index, workplace conditions, exercise participation, and musculoskeletal discomfort using the Cornell Musculoskeletal Discomfort Questionnaire.
RESULTSData from 120 participants, mostly female, with an average BMI of 27.78 ± 12.09 kg/m2 and 11.82 ± 10.39 years of teaching experience revealed increased computer usage and reduced teaching hours during the Pandemic lockdown. There was also prevalent musculoskeletal discomfort (MSD), particularly in the neck, shoulder, and upper back. Factors associated with increased MSD were female gender, longer computer use, and pre pandemic MSD history.
CONCLUSIONThis study underscores the significance of addressing ergonomic factors and work conditions to mitigate MSD risks among educators during challenging situations.
Human ; Musculoskeletal Pain ; Covid-19 ; Pandemics ; Occupational Stress
2.Relationship of work stress and dysglycemia among healthcare workers doing shift work in a level 1 government hospital in Antipolo City.
Health Sciences Journal 2025;14(1):18-23
INTRODUCTION
This cross-sectional study investigated the relationship between work stress and dysglycemia among healthcare workers engaged in shift work at a level 1 government hospital in Antipolo City, Philippines.
METHODSWork stress was assessed using the Effort-Reward Imbalance (ERI) Questionnaire, and dysglycemia was measured through a 75g oral glucose tolerance test (OGTT).
RESULTSA total of 126 healthcare workers aged 20–55 years participated Results showed that 65.1% of participants experienced work stress, with nurses reporting the highest prevalence (43.9%). Dysglycemia was present in 33.3% of participants, predominantly in the form of impaired glucose tolerance. Despite the high prevalence of both work stress and obesity (61.9%), no statistically significant associations were found between work stress and dysglycemia (p = .51), gender and work stress (p = .59), occupation and work stress (p = .059), or obesity and dysglycemia (p = .70).
CONCLUSIONThe findings suggest that while work stress is common among healthcare workers, especially nurses, it may not directly predict dysglycemia in relatively young and active populations. However, the long-term metabolic risks associated with chronic occupational stress should not be overlooked. Future longitudinal studies with larger samples are recommended to better assess causality and guide workplace wellness programs.
Human ; Work Stress ; Occupational Stress ; Healthcareworkers ; Health Personnel ; Occupational Health
3.Impairment of Autophagic Flux After Hypobaric Hypoxia Potentiates Oxidative Stress and Cognitive Function Disturbances in Mice.
Shuhui DAI ; Yuan FENG ; Chuanhao LU ; Hongchen ZHANG ; Wenke MA ; Wenyu XIE ; Xiuquan WU ; Peng LUO ; Lei ZHANG ; Fei FEI ; Zhou FEI ; Xia LI
Neuroscience Bulletin 2024;40(1):35-49
Acute hypobaric hypoxic brain damage is a potentially fatal high-altitude sickness. Autophagy plays a critical role in ischemic brain injury, but its role in hypobaric hypoxia (HH) remains unknown. Here we used an HH chamber to demonstrate that acute HH exposure impairs autophagic activity in both the early and late stages of the mouse brain, and is partially responsible for HH-induced oxidative stress, neuronal loss, and brain damage. The autophagic agonist rapamycin only promotes the initiation of autophagy. By proteome analysis, a screen showed that protein dynamin2 (DNM2) potentially regulates autophagic flux. Overexpression of DNM2 significantly increased the formation of autolysosomes, thus maintaining autophagic flux in combination with rapamycin. Furthermore, the enhancement of autophagic activity attenuated oxidative stress and neurological deficits after HH exposure. These results contribute to evidence supporting the conclusion that DNM2-mediated autophagic flux represents a new therapeutic target in HH-induced brain damage.
Mice
;
Animals
;
Hypoxia
;
Oxidative Stress
;
Autophagy
;
Cognition
;
Sirolimus/therapeutic use*
4.Functional mechanisms of WRKY transcription factors in regulating plant response to abiotic stresses.
Shuye WANG ; Guoqiang WU ; Ming WEI
Chinese Journal of Biotechnology 2024;40(1):35-52
WRKYs is a unique family of transcription factors (TFs) in plants, and belongs to the typical multifunctional regulator. It is involved in the regulation of multiple signaling pathways. This type of transcription factor is characterized to contain about 60 highly conservative amino acids as the WRKY domain, and usually also has the Cys2His2 or Cys2His-Cys zinc finger structure. WRKYs can directly bind to the W-box sequence ((T)(T) TGAC (C/T)) in the promoter region of the downstream target gene, and activate or inhibit the transcription of the target genes by interacting with the target protein. They may up-regulate the expression of stress-related genes through integrating signal pathways mediated by abscisic acid (ABA) and reactive oxygen species (ROS), thus playing a vital role in regulating plant response to abiotic stresses. This review summarizes the advances in research on the structure and classification, regulatory approach of WRKYs, and the molecular mechanisms of WRKYs involved in response to drought and salt stresses, and prospects future research directions, with the aim to provide a theoretical support for the genetic improvement of crop in response to abiotic stresses.
Transcription Factors/genetics*
;
Abscisic Acid
;
Amino Acids
;
Droughts
;
Stress, Physiological/genetics*
5.Role of post-translational modification of basic leucine zipper transcription factors in response to abiotic stresses in plants.
Ying LI ; Weidi ZHAO ; Jinghua YANG ; Jiaqi LI ; Songyang HAN ; Yuekun REN ; Changhong GUO
Chinese Journal of Biotechnology 2024;40(1):53-62
Abiotic stresses substantially affect the growth and development of plants. Plants have evolved multiple strategies to cope with the environmental stresses, among which transcription factors play an important role in regulating the tolerance to abiotic stresses. Basic leucine zipper transcription factors (bZIP) are one of the largest gene families. The stability and activity of bZIP transcription factors could be regulated by different post-translational modifications (PTMs) in response to various intracellular or extracellular stresses. This paper introduces the structural feature and classification of bZIP transcription factors, followed by summarizing the PTMs of bZIP transcription factors, such as phosphorylation, ubiquitination and small ubiquitin-like modifier (SUMO) modification, in response to abiotic stresses. In addition, future perspectives were prospected, which may facilitate cultivating excellent stress-resistant crop varieties by regulating the PTMs of bZIP transcription factors.
Basic-Leucine Zipper Transcription Factors/genetics*
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Protein Processing, Post-Translational
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Phosphorylation
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Transcription Factors/genetics*
;
Stress, Physiological/genetics*
6.Identification of banana ADA1 gene family members and their expression profiles under biotic and abiotic stresses.
Qiqi ZHAO ; Wenhui REN ; Huifei ZHU ; Qiuzhen WU ; Chunyu ZHANG ; Xiaoqiong XU ; Binbin LUO ; Yuji HUANG ; Yukun CHEN ; Yuling LIN ; Zhongxiong LAI
Chinese Journal of Biotechnology 2024;40(1):190-210
The Spt-Ada-Gcn5-acetyltransferase (SAGA) is an ancillary transcription initiation complex which is highly conserved. The ADA1 (alteration/deficiency in activation 1, also called histone H2A functional interactor 1, HFI1) is a subunit in the core module of the SAGA protein complex. ADA1 plays an important role in plant growth and development as well as stress resistance. In this paper, we performed genome-wide identification of banana ADA1 gene family members based on banana genomic data, and analyzed the basic physicochemical properties, evolutionary relationships, selection pressure, promoter cis-acting elements, and its expression profiles under biotic and abiotic stresses. The results showed that there were 10, 6, and 7 family members in Musa acuminata, Musa balbisiana and Musa itinerans. The members were all unstable and hydrophilic proteins, and only contained the conservative SAGA-Tad1 domain. Both MaADA1 and MbADA1 have interactive relationship with Sgf11 (SAGA-associated factor 11) of core module in SAGA. Phylogenetic analysis revealed that banana ADA1 gene family members could be divided into 3 classes. The evolution of ADA1 gene family members was mostly influenced by purifying selection. There were large differences among the gene structure of banana ADA1 gene family members. ADA1 gene family members contained plenty of hormonal elements. MaADA1-1 may play a prominent role in the resistance of banana to cold stress, while MaADA1 may respond to the Panama disease of banana. In conclusion, this study suggested ADA1 gene family members are highly conserved in banana, and may respond to biotic and abiotic stress.
Musa/genetics*
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Phylogeny
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Fungal Proteins
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Cell Nucleus
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Histones
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Stress, Physiological/genetics*
7.Asperuloside Promotes Apoptosis of Cervical Cancer Cells through Endoplasmic Reticulum Stress-Mitochondrial Pathway.
Zhi-Min QI ; Xia WANG ; Xia LIU ; Juan ZHAO
Chinese journal of integrative medicine 2024;30(1):34-41
OBJECTIVE:
To investigate the effects of asperuloside on cervical cancer based on endoplasmic reticulum (ER) stress and mitochondrial pathway.
METHODS:
Different doses (12.5-800 µg/mL) of asperuloside were used to treat cervical cancer cell lines Hela and CaSki to calculate the half maximal inhibitory concentration (IC50) of asperuloside. The cell proliferation was analyzed by clone formation assay. Cell apoptosis, intracellular reactive oxygen species (ROS) and mitochondrial membrane potential were determined by flow cytometry. The protein expressions of cleaved-caspase-3, Bcl-2, Bax, Cyt-c, cleaved-caspase-4 and glucose-regulated protein 78 (GRP78) were analyzed by Western blot. And the inhibitor of ER stress, 4-phenyl butyric acid (4-PBA) was used to treat cervical cancer cells to further verify the role of ER stress in the apoptosis of cervical cancer cells induced by asperuloside.
RESULTS:
Asperuloside of 325, 650, and 1300 µg/mL significantly inhibited the proliferation and promoted apoptosis of Hela and CaSki cells (P<0.01). All doses of asperuloside significantly increased intracellular ROS levels, reduced mitochondrial membrane potential, significantly reduced Bcl-2 protein expression level, and increased Bax, Cyt-c, GRP78 and cleaved-caspase-4 expressions (P<0.01). In addition, 10 mmol/L 4-PBA treatment significantly promoted cell proliferation and reduced apoptosis (P<0.05), and 650 µg/mL asperuloside could reverse 4-PBA-induced increased cell proliferation, decreased apoptosis and cleaved-caspase-3, -4 and GRP78 protein expressions (P<0.05).
CONCLUSION
Our study revealed the role of asperuloside in cervical cancer, suggesting that asperuloside promotes apoptosis of cervical cancer cells through ER stress-mitochondrial pathway.
Female
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Humans
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Uterine Cervical Neoplasms/metabolism*
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Caspase 3/metabolism*
;
bcl-2-Associated X Protein/metabolism*
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Reactive Oxygen Species/metabolism*
;
Endoplasmic Reticulum Chaperone BiP
;
HeLa Cells
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Proto-Oncogene Proteins c-bcl-2/metabolism*
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Apoptosis
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Endoplasmic Reticulum Stress
;
Cell Line, Tumor
8.Work-related stress factors and psychological health of Filipino nurses during the COVID-19 pandemic.
Janelle Castro ; Jocelyn Molo ; Jed Patrick Montero Catalan ; Norielee S. Magsingit ; Erlinda Palaganas ; Reynaldo R. Rivera ; Allison A. Norful
Philippine Journal of Nursing 2024;94(1):21-30
BACKGROUND
The COVID-19 pandemic has significantly challenged global healthcare systems, particularly impacting the psychological health of nurses. This study examines the psychosocial impact and work-related stressors faced by Filipino nurses during the COVID-19 crisis.
METHODSAdescriptive cross-sectional survey was used to gather data from May 2021 to May 2022. Participants included registered nurses recruited from across the Philippines, focusing on their exposure to work related stressors, burnout, job satisfaction, and coping activities. The survey included validated items that measured work related variables (e.g., job responsibilities, workload) and personal stress management strategies. Descriptive statistics (means, standard deviations, frequencies, and percentages) were calculated to interpret the continuous and categorical variables.
RESULTSA total of 2,229 nurses participated in the survey. Findings indicate that 78.9% of nurses experienced increased workloads, and 36% were assigned to units outside their expertise. Despite the high stress and burnout rates (30.4% reported symptoms), 56.4% of nurses intended to stay in their positions. The most common coping strategies were use of social media (53.7%) and connecting with friends and family (51.5%).
CONCLUSIONFilipino nurses displayed considerable resilience despite facing severe work-related stressors and psychological strains during the pandemic. The study highlights significant stressors such as increased workload, role shifts, and the lack of clear workplace goals, contributing to burnout and reduced job satisfaction. This study underscores the need for enhanced support systems and policies to safeguard nurses' well-being, recommending more robust mental health services, adequate staffing, and the provision of necessary resources and training to prepare nurses for future health crises better.
Covid-19 ; Stress, Psychological ; Burnout, Psychological ; Job Satisfaction
9.Lactobacillus brevis BIOTECH 1766 attenuates oxidative stress and histopathological changes following aluminum poisoning in ICR mice
Gerwin Louis T. Dela Torre ; Richelle Ann M. Manalo ; Szarina Krisha K. Ko ; Erna C. Arollado ; Arlene A. Samaniego
Acta Medica Philippina 2024;58(19):56-63
OBJECTIVE
The aim of this study was to investigate the protective effects of Lactobacillus brevis BIOTECH 1766 against oxidative damage in the brain, liver, and kidneys induced by aluminum (Al) poisoning in ICR mice.
METHODSTwenty mice were divided into four groups (n = 5): (I) control, (II) Al, (III) citric acid (CA), and (IV) L. brevis BIOTECH 1766 group. A 14-day treatment period was implemented, wherein groups I and II received sterile water, while groups III and IV received 10 mg/kg bw of CA and 1 x 109 cfu/kg bw of L. brevis BIOTECH 1766, respectively. On day 15, all except the control group received a single oral dose of 1438 mg/kg bw of AlCl3. 6H2O. After 24 h, mice were euthanized to collect the brain, liver, and kidneys for the oxidative stress marker analyses and histopathological examination.
RESULTSAcute intoxication of Al led to a significant increase in tissue malondialdehyde (MDA) and a significant decrease in the tissue's reduced glutathione (GSH), catalase (CAT), and superoxide dismutase (SOD). Mice pretreated with CA or L. brevis BIOTECH 1766 have markedly reduced CAT activity in the liver, and SOD in all three organs. Extensive organ injuries were also prevented by CA and L. brevis BIOTECH 1766 pretreatment, with the latter providing better protection against liver damage.
CONCLUSIONThe findings showed that L. brevis BIOTECH 1766 provides a protective effect against acute Al poisoning in mice by ameliorating oxidative damage in the brain, liver, and kidneys.
Animals ; Catalase ; Lactobacillus Brevis ; Oxidative Stress ; Superoxide Dismutase
10.Identification of heat shock protein hsp70 family genes from Rana amurensis and its expression profiles upon infection.
Tingting LIU ; Jingjing GUO ; Zhaodong CHEN ; Yufen LIU ; Legang JING ; Peng LIU ; Wenge ZHAO
Chinese Journal of Biotechnology 2023;39(4):1710-1730
Heat shock proteins (HSPs) widely exist in all organisms, the structures of which are usually extraordinarily conservative. They are also well-known stress proteins that are involved in response to physical, chemical and biological stresses. HSP70 is an important member of the HSPs family. In order to study the roles of amphibians HSP70 during infection, the cDNA sequence of Rana amurensis hsp70 family genes were cloned by homologous cloning method. The sequence characteristics, three-dimensional structure and genetic relationship of Ra-hsp70s were analyzed by bioinformatics methods. The expression profiles under bacterial infection were also analyzed by real-time quantitative PCR (qRT-PCR). Expression and localization of HSP70 protein were tested by immunohistochemical techniques. The results showed that three conservative tag sequences of HSP70 family, HSPA5, HSPA8 and HSPA13, were found in HSP70. Phylogenetic tree analysis indicated four members are distributed in four different branches, and members with the same subcellular localization motif are distributed in the same branch. The relative expression levels of the mRNA of four members were all significantly upregulated (P < 0.01) upon infection, but the time for up-regulating the expression levels were diverse in different tissues. The immunohistochemical analysis showed that HSP70 was expressed to different degrees in the cytoplasm of liver, kidney, skin and stomach tissue. The four members of Ra-hsp70 family have ability to respond bacterial infection to varying degrees. Therefore, it was proposed that they are involved in biological processes against pathogen and play different biological functions. The study provides a theoretical basis for functional studies of HSP70 gene in amphibians.
Heat-Shock Proteins/genetics*
;
Phylogeny
;
Amino Acid Sequence
;
HSP70 Heat-Shock Proteins/metabolism*
;
Stress, Physiological


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