1.Shank3 Overexpression Leads to Cardiac Dysfunction in Mice by Disrupting Calcium Homeostasis in Cardiomyocytes
Tae Hee KO ; Yoonhee KIM ; Chunmei JIN ; Byeongil YU ; Minju LEE ; Phuong Kim LUONG ; Tran Nguyet TRINH ; Yeji YANG ; Hyojin KANG ; Yinhua ZHANG ; Ruiying MA ; Kwangmin YOO ; Jungmin CHOI ; Jin Young KIM ; Sun-Hee WOO ; Kihoon HAN ; Jong-Il CHOI
Korean Circulation Journal 2025;55(2):100-117
Background and Objectives:
SH3 and multiple ankyrin repeat domains 3 (Shank3) proteins play crucial roles as neuronal postsynaptic scaffolds. Alongside neuropsychiatric symptoms, individuals with SHANK3 mutations often exhibit symptoms related to dysfunctions in other organs, including the heart. However, detailed insights into the cardiac functions of Shank3 remain limited. This study aimed to characterize the cardiac phenotypes of Shank3-overexpressing transgenic mice and explore the underlying mechanisms.
Methods:
Cardiac histological analysis, electrocardiogram and echocardiogram recordings were conducted on Shank3-overexpressing transgenic mice. Electrophysiological properties, including action potentials and L-type Ca2+ channel (LTCC) currents, were measured in isolated cardiomyocytes. Ca2+ homeostasis was assessed by analyzing cytosolic Ca2+transients and sarcoplasmic reticulum Ca2+ contents. Depolarization-induced cell shortening was examined in cardiomyocytes. Immunoprecipitation followed by mass spectrometrybased identification was employed to identify proteins in the cardiac Shank3 interactome.Western blot and immunocytochemical analyses were conducted to identify changes in protein expression in Shank3-overexpressing transgenic cardiomyocytes.
Results:
The hearts of Shank3-overexpressing transgenic mice displayed reduced weight and increased fibrosis. In vivo, sudden cardiac death, arrhythmia, and contractility impairments were identified. Shank3-overexpressing transgenic cardiomyocytes showed prolonged action potential duration and increased LTCC current density. Cytosolic Ca2+ transients were increased with prolonged decay time, while sarcoplasmic reticulum Ca2+ contents remained normal. Cell shortening was augmented in Shank3-overexpressing transgenic cardiomyocytes. The cardiac Shank3 interactome comprised 78 proteins with various functions. Troponin I levels were down-regulated in Shank3-overexpressing transgenic cardiomyocytes.
Conclusions
This study revealed cardiac dysfunction in Shank3-overexpressing transgenic mice, potentially attributed to changes in Ca2+ homeostasis and contraction, with a notable reduction in troponin I.
2.Shank3 Overexpression Leads to Cardiac Dysfunction in Mice by Disrupting Calcium Homeostasis in Cardiomyocytes
Tae Hee KO ; Yoonhee KIM ; Chunmei JIN ; Byeongil YU ; Minju LEE ; Phuong Kim LUONG ; Tran Nguyet TRINH ; Yeji YANG ; Hyojin KANG ; Yinhua ZHANG ; Ruiying MA ; Kwangmin YOO ; Jungmin CHOI ; Jin Young KIM ; Sun-Hee WOO ; Kihoon HAN ; Jong-Il CHOI
Korean Circulation Journal 2025;55(2):100-117
Background and Objectives:
SH3 and multiple ankyrin repeat domains 3 (Shank3) proteins play crucial roles as neuronal postsynaptic scaffolds. Alongside neuropsychiatric symptoms, individuals with SHANK3 mutations often exhibit symptoms related to dysfunctions in other organs, including the heart. However, detailed insights into the cardiac functions of Shank3 remain limited. This study aimed to characterize the cardiac phenotypes of Shank3-overexpressing transgenic mice and explore the underlying mechanisms.
Methods:
Cardiac histological analysis, electrocardiogram and echocardiogram recordings were conducted on Shank3-overexpressing transgenic mice. Electrophysiological properties, including action potentials and L-type Ca2+ channel (LTCC) currents, were measured in isolated cardiomyocytes. Ca2+ homeostasis was assessed by analyzing cytosolic Ca2+transients and sarcoplasmic reticulum Ca2+ contents. Depolarization-induced cell shortening was examined in cardiomyocytes. Immunoprecipitation followed by mass spectrometrybased identification was employed to identify proteins in the cardiac Shank3 interactome.Western blot and immunocytochemical analyses were conducted to identify changes in protein expression in Shank3-overexpressing transgenic cardiomyocytes.
Results:
The hearts of Shank3-overexpressing transgenic mice displayed reduced weight and increased fibrosis. In vivo, sudden cardiac death, arrhythmia, and contractility impairments were identified. Shank3-overexpressing transgenic cardiomyocytes showed prolonged action potential duration and increased LTCC current density. Cytosolic Ca2+ transients were increased with prolonged decay time, while sarcoplasmic reticulum Ca2+ contents remained normal. Cell shortening was augmented in Shank3-overexpressing transgenic cardiomyocytes. The cardiac Shank3 interactome comprised 78 proteins with various functions. Troponin I levels were down-regulated in Shank3-overexpressing transgenic cardiomyocytes.
Conclusions
This study revealed cardiac dysfunction in Shank3-overexpressing transgenic mice, potentially attributed to changes in Ca2+ homeostasis and contraction, with a notable reduction in troponin I.
3.Shank3 Overexpression Leads to Cardiac Dysfunction in Mice by Disrupting Calcium Homeostasis in Cardiomyocytes
Tae Hee KO ; Yoonhee KIM ; Chunmei JIN ; Byeongil YU ; Minju LEE ; Phuong Kim LUONG ; Tran Nguyet TRINH ; Yeji YANG ; Hyojin KANG ; Yinhua ZHANG ; Ruiying MA ; Kwangmin YOO ; Jungmin CHOI ; Jin Young KIM ; Sun-Hee WOO ; Kihoon HAN ; Jong-Il CHOI
Korean Circulation Journal 2025;55(2):100-117
Background and Objectives:
SH3 and multiple ankyrin repeat domains 3 (Shank3) proteins play crucial roles as neuronal postsynaptic scaffolds. Alongside neuropsychiatric symptoms, individuals with SHANK3 mutations often exhibit symptoms related to dysfunctions in other organs, including the heart. However, detailed insights into the cardiac functions of Shank3 remain limited. This study aimed to characterize the cardiac phenotypes of Shank3-overexpressing transgenic mice and explore the underlying mechanisms.
Methods:
Cardiac histological analysis, electrocardiogram and echocardiogram recordings were conducted on Shank3-overexpressing transgenic mice. Electrophysiological properties, including action potentials and L-type Ca2+ channel (LTCC) currents, were measured in isolated cardiomyocytes. Ca2+ homeostasis was assessed by analyzing cytosolic Ca2+transients and sarcoplasmic reticulum Ca2+ contents. Depolarization-induced cell shortening was examined in cardiomyocytes. Immunoprecipitation followed by mass spectrometrybased identification was employed to identify proteins in the cardiac Shank3 interactome.Western blot and immunocytochemical analyses were conducted to identify changes in protein expression in Shank3-overexpressing transgenic cardiomyocytes.
Results:
The hearts of Shank3-overexpressing transgenic mice displayed reduced weight and increased fibrosis. In vivo, sudden cardiac death, arrhythmia, and contractility impairments were identified. Shank3-overexpressing transgenic cardiomyocytes showed prolonged action potential duration and increased LTCC current density. Cytosolic Ca2+ transients were increased with prolonged decay time, while sarcoplasmic reticulum Ca2+ contents remained normal. Cell shortening was augmented in Shank3-overexpressing transgenic cardiomyocytes. The cardiac Shank3 interactome comprised 78 proteins with various functions. Troponin I levels were down-regulated in Shank3-overexpressing transgenic cardiomyocytes.
Conclusions
This study revealed cardiac dysfunction in Shank3-overexpressing transgenic mice, potentially attributed to changes in Ca2+ homeostasis and contraction, with a notable reduction in troponin I.
4.Shank3 Overexpression Leads to Cardiac Dysfunction in Mice by Disrupting Calcium Homeostasis in Cardiomyocytes
Tae Hee KO ; Yoonhee KIM ; Chunmei JIN ; Byeongil YU ; Minju LEE ; Phuong Kim LUONG ; Tran Nguyet TRINH ; Yeji YANG ; Hyojin KANG ; Yinhua ZHANG ; Ruiying MA ; Kwangmin YOO ; Jungmin CHOI ; Jin Young KIM ; Sun-Hee WOO ; Kihoon HAN ; Jong-Il CHOI
Korean Circulation Journal 2025;55(2):100-117
Background and Objectives:
SH3 and multiple ankyrin repeat domains 3 (Shank3) proteins play crucial roles as neuronal postsynaptic scaffolds. Alongside neuropsychiatric symptoms, individuals with SHANK3 mutations often exhibit symptoms related to dysfunctions in other organs, including the heart. However, detailed insights into the cardiac functions of Shank3 remain limited. This study aimed to characterize the cardiac phenotypes of Shank3-overexpressing transgenic mice and explore the underlying mechanisms.
Methods:
Cardiac histological analysis, electrocardiogram and echocardiogram recordings were conducted on Shank3-overexpressing transgenic mice. Electrophysiological properties, including action potentials and L-type Ca2+ channel (LTCC) currents, were measured in isolated cardiomyocytes. Ca2+ homeostasis was assessed by analyzing cytosolic Ca2+transients and sarcoplasmic reticulum Ca2+ contents. Depolarization-induced cell shortening was examined in cardiomyocytes. Immunoprecipitation followed by mass spectrometrybased identification was employed to identify proteins in the cardiac Shank3 interactome.Western blot and immunocytochemical analyses were conducted to identify changes in protein expression in Shank3-overexpressing transgenic cardiomyocytes.
Results:
The hearts of Shank3-overexpressing transgenic mice displayed reduced weight and increased fibrosis. In vivo, sudden cardiac death, arrhythmia, and contractility impairments were identified. Shank3-overexpressing transgenic cardiomyocytes showed prolonged action potential duration and increased LTCC current density. Cytosolic Ca2+ transients were increased with prolonged decay time, while sarcoplasmic reticulum Ca2+ contents remained normal. Cell shortening was augmented in Shank3-overexpressing transgenic cardiomyocytes. The cardiac Shank3 interactome comprised 78 proteins with various functions. Troponin I levels were down-regulated in Shank3-overexpressing transgenic cardiomyocytes.
Conclusions
This study revealed cardiac dysfunction in Shank3-overexpressing transgenic mice, potentially attributed to changes in Ca2+ homeostasis and contraction, with a notable reduction in troponin I.
5.Research on the clinical medical humanities teaching system from the perspective of medical-literature integration
Yinhua ZHOU ; Yu CHENG ; Changjie CUI ; Xiaohui TIAN ; Longwen FU ; Chan FANG ; Xiaoxing LIAO ; Qikun CHEN
Chinese Medical Ethics 2024;37(7):860-866
Aiming at the current situation of insufficient integration of medical humanities teaching and clinical practice,as well as the need for further research and improvement in the teaching system,guided by the concept of medicine and humanistic literacy integration advocated by the new medical science,this paper deeply discussed the construction of clinical medical humanities teaching system from four aspects,including the selection of clinical medical humanities teachers and team building;the teaching path that combines theoretical education,narrative medicine,and clinical skill training infused with medical humanities content;curriculum ideological and political construction with the goal of establishing the core concept and value orientation of"patient-centered";the teaching assessment and evaluation method characterized by formative evaluation.The clinical medical humanities teaching system emphasizes the practicality,experiential,and emotional aspects of medical humanities teaching,deeply integrating medical humanities with clinical practice teaching content throughout the clinical internship period of medical education,with a view to enhancing the humanistic practice ability and literacy of medical students.
6.Progress on the relationship between environmental risk factors during maternal pregnancy and childhood allergic diseases
International Journal of Pediatrics 2024;51(8):537-542
Allergic diseases are one of the most common chronic non-infectious diseases in childhood,primarily resulting from genetic and environmental interactions.Evidence suggests that maternal exposure to risk factors during pregnancy can impact the fetus through the placenta,leading to immune dysregulation,disruptions in gut microbiota composition,and ultimately contributing to the development of allergic diseases in children.Therefore,maternal pregnancy represents a critical period for preventing allergic diseases in children.This article provides an overview of research advancements regarding the influence of environmental risk factors during pregnancy on allergic diseases in children,focusing on aspects such as maternal diet,medication usage,maternal illnesses during pregnancy,and allergen exposure,so as to provide new strategies for preventing childhood allergic diseases.
7.Application value of a Nomogram model established on clinical and ultrasound features in modifying classification results of the Chinese Thyroid Imaging Reporting and Data System by ultrasound physicians
Yinhua ZHAO ; Yu LIANG ; Yunhan WANG ; Li YANG ; Tong XU ; Erxi FAN ; Xuan LI
Journal of Clinical Medicine in Practice 2024;28(11):18-22
Objective To analyze the application value of a Nomogram model established on clinical and ultrasound features of thyroid in modifying classification results of the Chinese Thyroid Imaging Reporting and Data System (C-TI-RADS) by ultrasound physicians. Methods The clinicopathological ultrasound materials of patients with surgical resection for thyroid nodules in Sichuan Provincial People's Hospital (training set,
8.Meta synthesis of qualitative research on cognitive experience of physical restraint among nursing assistants in nursing homes
Haixu PU ; Liangchu LUO ; Yiwen SUN ; Qian YU ; Yinhua ZHANG
Chinese Journal of Modern Nursing 2022;28(25):3412-3417
Objective:To systematically evaluate the attitudes and experiences of nursing assistants in nursing homes on physical restraint, so as provide a reference for regulating and reducing the physical restraint.Methods:Cochrane Library, PubMed, Embase, EBSCO, Web of Science, China Biology Medicine (CBM) , China National Knowledge Infrastructure, WanFang Data, VIP and other domestic and foreign databases were searched by computer. The retrieval time limit was from the establishment of the database to June 2021. The quality of the article was evaluated using the quality evaluation criteria for qualitative research of the Joanna Briggs Institute Evidence-Based Health Care Center in Australia, and the Meta synthesis was used to summarize and interpret the results.Results:A total of 7 articles were included, and 58 results, 11 categories and four synthesis results were extracted. That was, the factors that affected the implementation of physical restraint (the elderly's own factors, the factors of nursing assistants, the influence of other personnel, the factors of elderly care institutions) , the attitude towards physical restraint (support attitude, opposition attitude and neutral attitude) , emotional experience and release methods (emotional experience and ways of release) , existing deficiencies and suggestions for restraint use (existing deficiencies, related suggestions) .Conclusions:The use of physical restraint in elderly care institutions is the result of many factors. Nursing assistants have positive, negative and neutral attitudes and emotional experiences in the implementation of physical restraint, and based on their rich clinical experience, they can find existing problems in restraint use and make relevant suggestions. Relevant departments need to fully consider the interests of all parties when formulating physical restraint norms and restraint reduction strategies, and effectively solve the problem of physical restraint abuse from the root cause.
9. Analysis of influence factors of voriconazole trough concentration in patients with hematopoietic stem cell transplantation
Min PENG ; Yinhua DENG ; Wen LIU ; Panhao HUANG ; Zhen YU ; Qing XIA ; Yueliang XIE ; Wei LI
Chinese Journal of Clinical Pharmacology and Therapeutics 2021;26(6):640-646
AIM: To study the distribution characteristics of steady-state trough concentration (C
10.The Breast Cancer Cohort Study in Chinese Women: research design and preliminary results of clinical multi-center cohort
Yuge BAI ; Ling XU ; Xuening DUAN ; Yinhua LIU ; Jingming YE ; Qian LIU ; Yuanjia CHENG ; Ling XIN ; Linhong WANG ; Heling BAO ; Zhigang YU ; Liyuan LIU ; Rui WANG ; Zhiguo SHI
Chinese Journal of Epidemiology 2020;41(12):2046-2052
Objective:The incidence of breast cancer in Chinese women continues to rise. The large breast cancer cohort studies in China are relatively scarce. There are many bottlenecks in the construction of large clinical cohort for breast cancer diagnosis, treatment, and prognoses, such as inconsistent standards, high rates of lost follow-up, repeated construction, and inability to share. To better solving the difficulties and problems faced by large-scale clinical cohort research in China, this project will cooperate with several tertiary A hospitals to establish a breast cancer cohort in Chinese women. It also provides a data platform and technical support for breast cancer multi-center clinical cohort research.Methods:Based on the evidence-based medicine and expert opinion and consensus, we established a breast cancer cohort standardized indicator set-recording baseline information, diagnosis and treatment-related information of the enrolled patients, and collecting biological specimens. According to the technical specification of long-term follow-up for the endpoint, data management, and data security and in the large population-based cohort study, a standardized follow-up system for the diagnosis, treatment, and prognosis of breast cancer prospective cohorts is formed.Results:Based on standardized data sets and the computer discipline’s advantage from the University of Science and Technology Beijing, we integrate the new information technology methods, including dynamic information collection terminals and social networks. Thus, the quality of control programs on compliance and intelligence data was improved, and a Chinese women breast cancer cohort database was developed. By February 2020, 12 147 patients were included in the clinical cohort database. Biological specimens’resources in cohort construction were collected and cooperated with Shandong University to research the multi-center quality control system and shared evaluation system of biobanks. Building an open and shared biobank network and forming a full chain of breast cancer research platform.Conclusion:With the implementation of the "13 th Five-Year Plan" precision medicine research, this study provides a research foundation for precision diagnosis and treatment of breast cancer and provides data support for the country to formulate relevant medical policies.


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