1.Advances in non-invasive treatment of aortic diseases
Xiaochen MA ; Jiaxuan FENG ; Zaiping JING
Chinese Journal of Surgery 2024;62(6):532-536
With the further development and long-term follow-up of endovascular treatment for aortic diseases, increasing evidence shows that in many cases, there are difficulties in the diagnosis of causes, decision-making of treatment timing, and lack of effective evaluation of treatment prognosis in endovascular treatments. Therefore, it is necessary to conduct in-depth research on non-invasive treatment including prevention, diagnosis, treatment, and prediction of aortic diseases. The non-invasive treatment of aortic disease is mainly applied to high-risk populations with aortic dissection, regulating key targets and mechanisms, and adopting drug intervention in advance to achieve the goal of controlling aortic dilation and preventing the occurrence of dissection. It also conducts precise multi omics analysis to determine the optimal intervention timing and treatment strategy, and aims at complications related to aortic disease or endovascular treatment for patients with a positive family history of aortic dilation and those who have developed aortic dissection. Precise regulation can control the progression of aortic aneurysm and aortic dissection, delay or achieve long-term stable coexistence with aortic disease, and even reverse disease progression and achieve benign aortic remodeling through new intervention vectors. Ultimately achieving the ideal state of complete thrombosis and mechanized healing of the aortic aneurysm or aortic dissection false lumen.
2.Advances in non-invasive treatment of aortic diseases
Xiaochen MA ; Jiaxuan FENG ; Zaiping JING
Chinese Journal of Surgery 2024;62(6):532-536
With the further development and long-term follow-up of endovascular treatment for aortic diseases, increasing evidence shows that in many cases, there are difficulties in the diagnosis of causes, decision-making of treatment timing, and lack of effective evaluation of treatment prognosis in endovascular treatments. Therefore, it is necessary to conduct in-depth research on non-invasive treatment including prevention, diagnosis, treatment, and prediction of aortic diseases. The non-invasive treatment of aortic disease is mainly applied to high-risk populations with aortic dissection, regulating key targets and mechanisms, and adopting drug intervention in advance to achieve the goal of controlling aortic dilation and preventing the occurrence of dissection. It also conducts precise multi omics analysis to determine the optimal intervention timing and treatment strategy, and aims at complications related to aortic disease or endovascular treatment for patients with a positive family history of aortic dilation and those who have developed aortic dissection. Precise regulation can control the progression of aortic aneurysm and aortic dissection, delay or achieve long-term stable coexistence with aortic disease, and even reverse disease progression and achieve benign aortic remodeling through new intervention vectors. Ultimately achieving the ideal state of complete thrombosis and mechanized healing of the aortic aneurysm or aortic dissection false lumen.
3.Application of active learning mode based on mind mapping in the teaching of major disaster rescue and medical service support
Yudong SUN ; Dihao WEN ; Jiang ZHU ; Tonglei HAN ; Shiying WANG ; Zaiping JING ; Zhiqing ZHAO ; Xiaolong WEI
Chinese Journal of Medical Education Research 2023;22(1):53-56
Objective:To explore the effect and value of the active learning mode based on mind mapping in the teaching of medical service support for major disasters.Methods:A total of 90 undergraduate students of 2016 Clinical Medicine of Naval Medical University were randomly selected as research objects, and they were randomly divided into observation group and control group. The 45 students in the control group used the traditional teaching mode, and the 45 students in the observation group used the mind mapping-based active learning mode for major disaster rescue and medical survice. The teaching time of the two groups was 12 h. The theoretical examination of knowledge and practical skills of the two groups of students were compared after teaching, and the students' satisfaction with the application of mind mapping-based teaching model in the teaching of medical service support for major disaster rescue was investigated. EmpowerStats and R softwares were used for t test and Chi-square test. Results:There were 24 males and 21 females in the observation group, with an average age of (21.40±0.69) years old. There were 22 males and 23 females, with an average age of (21.71±0.55) years old. The theoretical performance of the observation group (91.38±4.37) was significantly higher than that of the control group (84.91±3.98) ( P<0.001), and the practical skill performance of the observation group (92.98±3.24) was significantly higher than that of the control group (87.38±3.80) ( P<0.001). At the same time, the students' satisfaction with teaching effect in the observation group was 82.2% (37/45), which was significantly higher than that in the control group (37.8%, 17/45). Conclusion:The active learning mode based on mind mapping focuses on cultivating students' independent learning, interactive exploration and clinical thinking ability, and has a broad application prospect in the teaching of medical service support for major disasters.
4.Research progress of macrophage polarization in the treatment of aortic dissection
Kaiwen ZHAO ; Lei ZHANG ; Jian ZHOU ; Zaiping JING
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2023;30(07):1055-1060
Aortic dissection is one of the most devastating cardiovascular diseases. One of the most important pathological features of aortic dissection is local inflammatory response, including the infiltration of inflammatory cells, extracellular matrix degradation, and smooth muscle cell phenotype switch. Macrophages which are the core of the inflammatory response play an extremely pivotal role in the progression of inflammation and tissue remodeling. Macrophages can be artificially divided into M1 and M2 types, of which the M1-type promotes inflammation while the M2-type is associated with the regression of inflammation and tissue healing. Mastering the switch of phenotypic transformation of macrophages may be of great help in inhibiting the inflammation of aortic tissue and facilitating tissue healing, as well as the treatment of aortic dissection. In this paper, we focus on the polarization of macrophages and discuss the role of macrophages in aortic dissection, the polarization pathway and the effect of related polarizing agents on the treatment of aortic dissection.
5.The efficacy of thin struct bare stents for the treatment of spontaneous isolated dissection of the superior mesenteric artery
Jianqi NI ; Xinxin FAN ; Changsheng HE ; Liu XU ; Lan SHEN ; Qin JIN ; Guoliang WANG ; Zaiping JING ; Yudong SUN
Chinese Journal of Surgery 2023;61(11):1001-1004
Objective:To examine the effectiveness of thin struct bare stents for the treatment of spontaneous isolated dissection of the superior mesenteric artery (SIDSMA).Methods:The data of 32 patients admitted to First Hospital of Jiaxing (20 cases) and Jinling Hospital (12 cases) with SIDSMA from January 2016 to January 2021 were retrospectively analyzed. There were 27 males and 5 females, aging (54.8±9.4) years (range: 36 to 75 years). All patients were treated with thin struct bare stents. Controllable spring coils were used to fulfill the false lumen in 2 cases. Symptoms, vascular remodeling pattern at the SIDSMA lesion, and patency of the stents were observed during follow-up.Results:The surgical success rate was 100%. According to the length of the lesions and stents, the number of stents implanted was 1 in 17 cases, 2 in 11 cases and 3 in 4 cases. The angiography showed that blood flow in the stent was smooth. The numerical rating scale for abdominal pain decreased from 6.1±1.5 (range: 4 to 10) preoperatively to 1.0 (1.0) (range: 0 to 3) 1 hour postoperatively ( W=528, P<0.01). The compression rate of the true lumen of the superior mesenteric artery decreased from (92.3±6.7)% (range: 25% to 94%) preoperatively to 0.8 (1.2)% (range: 0 to 3.2%) 1 month postoperatively ( W=528, P<0.01). The primary patency rate of CT angiography at 1 month postoperatively was 100%. The vascular remodeling rate was (92.3±6.7)% (range: 80% to 100%). All patients were followed for (46.3±17.0) months (range: 24 to 76 months). The cumulative patency rates in 1, 2 and 5 years were all 100%. Conclusion:The use of thin struct bare stents for SIDSMA could obtained the expected safety and efficacy.
6.The efficacy of thin struct bare stents for the treatment of spontaneous isolated dissection of the superior mesenteric artery
Jianqi NI ; Xinxin FAN ; Changsheng HE ; Liu XU ; Lan SHEN ; Qin JIN ; Guoliang WANG ; Zaiping JING ; Yudong SUN
Chinese Journal of Surgery 2023;61(11):1001-1004
Objective:To examine the effectiveness of thin struct bare stents for the treatment of spontaneous isolated dissection of the superior mesenteric artery (SIDSMA).Methods:The data of 32 patients admitted to First Hospital of Jiaxing (20 cases) and Jinling Hospital (12 cases) with SIDSMA from January 2016 to January 2021 were retrospectively analyzed. There were 27 males and 5 females, aging (54.8±9.4) years (range: 36 to 75 years). All patients were treated with thin struct bare stents. Controllable spring coils were used to fulfill the false lumen in 2 cases. Symptoms, vascular remodeling pattern at the SIDSMA lesion, and patency of the stents were observed during follow-up.Results:The surgical success rate was 100%. According to the length of the lesions and stents, the number of stents implanted was 1 in 17 cases, 2 in 11 cases and 3 in 4 cases. The angiography showed that blood flow in the stent was smooth. The numerical rating scale for abdominal pain decreased from 6.1±1.5 (range: 4 to 10) preoperatively to 1.0 (1.0) (range: 0 to 3) 1 hour postoperatively ( W=528, P<0.01). The compression rate of the true lumen of the superior mesenteric artery decreased from (92.3±6.7)% (range: 25% to 94%) preoperatively to 0.8 (1.2)% (range: 0 to 3.2%) 1 month postoperatively ( W=528, P<0.01). The primary patency rate of CT angiography at 1 month postoperatively was 100%. The vascular remodeling rate was (92.3±6.7)% (range: 80% to 100%). All patients were followed for (46.3±17.0) months (range: 24 to 76 months). The cumulative patency rates in 1, 2 and 5 years were all 100%. Conclusion:The use of thin struct bare stents for SIDSMA could obtained the expected safety and efficacy.
7.Mechanism of Talibin-1 regulating vascular remodeling of aortic dissection in mice
Yudong SUN ; Shiying WANG ; Jiang ZHU ; Tonglei HAN ; Dihao WEN ; Jing YANG ; Zaiping JING ; Jian ZHOU ; Zhiqing ZHAO ; Xiaolong WEI
Chinese Journal of General Surgery 2021;36(1):25-29
Objective:To explore the role and mechanism of Talin-1 in mouse aortic dissection.Methods:Sixty male FVB mice were evenly divided into groups of blank, model, Talin-1 up-regulation, Talin-1 up-regulation control, Talin-1 down-regulation, and Talin-1 down-regulation control. Except mice in the blank group, mice were treated with β-aminopropionitrile (BAPN) combined with angiotensin to construct a mouse aortic dissection model. Hematoxylin-eosin and vascular elastic fiber staining (EVG) were used to observe the aorta and elastic fiber morphology and structure. Western blot was used to detect the phosphorylation levels of FAK and ERK1 / 2 in mouse aortic tissue.Results:The success rate of aortic dissection in model mice was 70%, and there was no aortic dissection appeared in the blank group.No mice died during the experiment. The incidence of aortic dissection in the Talin-1 down-regulated group was 100%, which was significantly higher than that in the Talin-1 down-regulated control group( P<0.05). The incidence of aortic dissection in the Talin-1 up-regulated group was 20%, significantly lower than that in the Talin-1 up-regulated control group. The wall thickness of the aorta of mice in the Talin-1 down-regulated group was accompanied by hematoma or pseudocavity formation. The median elastic fiber content was higher than that in the Talin-1 downregulation control group( P<0.05). The content of elastic fibers in the blood vessel wall of mice in the Talin-1 up-regulation group was significantly higher than that in the Talin-1 up-regulation control group.The down-regulation of Talin-1 significantly inhibited FAK phosphorylation, and instead promoted ERK1/2 phosphorylation( P<0.05). Conclusions:Down-regulation of Talin-1 may reduce the elastic fiber content in the aorta of mice by activating the ERK1/2 signaling pathway, leading to vascular remodeling of the aortic wall and promoting the occurrence of aortic dissection.
8. Advances in the effects on false lumen thrombosis after the endovascular treatment of aortic dissection and its intervention strategies
Yiming LI ; Lei ZHANG ; Jian ZHOU ; Zaiping JING
Chinese Journal of Surgery 2019;57(6):471-475
Aortic dissection is a urgent and dangerous disease, and the endovascular treatments can cure it in an effective and efficient way. As an important indicator of aorta remodeling, false lumen thrombosis is related to the prognosis of aortic dissection after endovascular treatment. The relationships among false lumen thrombosis after endovascular treatment and prognosis of aortic dissection, and the clinical techniques that can promote the false lumen thrombosis are reviewed in this paper. The aim is to promote a comprehensive evaluation of aorta remodeling.
9.Application of different molecular imaging techniques in predicting the progress of abdominal aortic aneurysm
ZHU Guanglang ; ZHANG Lei ; SUN Huiying ; ZHOU Jian ; JING Zaiping
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2018;25(6):522-525
Abdominal aortic aneurysm (AAA) is a common lethal aortic disease in clinical practice. At present, the imaging diagnostic methods used for AAA mainly include Doppler ultrasound, computed tomography and magnetic resonance imaging (MRI), but these methods can only observe the morphological changes of the aorta. These techniques used for the risk assessment of aneurysms, such as aneurysm rupture have some certain limitations. With the continuous development of molecular imaging technology and the further understanding of the pathogenesis of AAA, positron emission tomography (PET), molecular MRI and single photon emission computed tomography (SPECT) techniques can be used to observe the pathological changes of the AAA and assess the risk of rupture from cell and molecular level. In this paper, the latest application of PET, molecular MRI, SPECT in the risk assessment was discussed.
10.Long-term efficacy of fibrin sealant treating proximal type Ⅰ endoleak after endovascular aneurysm repair in abdominal aortic aneurysm
Guangqin LIU ; Qingsheng LU ; Lei ZHANG ; Binben LI ; Jian DONG ; Zaiping JING
Chinese Journal of General Surgery 2018;33(3):218-222
Objective To observe the long-term efficacy of human fibrin sealant (FS) in the treatment of proximal type Ⅰ endoleak after endovascular aneurysm repair (EVAR) in abdominal aortic aneurysm (AAA).Methods The clinical data of 104 AAA patients with proximal type Ⅰ endoleak receiving EVAR + FS in Changhai Hospital from 2003 to 2012 was retrospectively analyzed,among those 77 cases were with less than 15 mm proximal neck,21 cases with greater than 60 degrees proximal neck angulation,37 cases with severe calcification or thrombosis in proximal neck.After failure of conventional endoleak therapy FS was injected through AAA catheter and long-term efficacy was evaluated by CTA during the follow-up.Results Intra-sac pressure decreased significantly after FS injection.Three patients (2.9%)died perioperatively.Postoperative 1'-,3' and 5 year survival rate was 91.8%,80.6% and 60.2%respectively.Maximum diameter of AAA decreased from (58.78 ± 13.41) mm to (52.6-± 12.2) mm.There was no FS injection related complications.Conclusion Intra-sac injection of FS is an effective,economical and safe method for treating post-EVAR endoleak,especially for AAA with relatively short and twisted aneurysm neck.

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