Construction of Animal Models Based on Exploring Pathological Features and Mechanisms of Different Locations in the Progression of DVT-APTE-CTEPD/CTEPH
Huang, L. Q.; Feng, W. W.; Yun, C. X.; Xiang, L. J.; Nan, S.; Xia, W. Q.; Yue, L. X.; He, C. M.; Min, C.; Jing, W. Y.; Wen, W. D.; Li, L. H.; Ran, Y. P.; Xia, Z. Y.; Zhu, Z.; Guo, Z. Z.; Sheng, D. C.
Show abstract
BackgroundChronic thromboembolic pulmonary disease (CTEPD) and chronic thromboembolic pulmonary hypertension (CTEPH) are sequelae of acute pulmonary embolism (APE) and severely affect patients health and quality of life. The treatment of these conditions is challenging, and their underlying mechanisms remain unclear. The main reason for this is the lack of an animal model that can fully simulate the entire chain of DVT-APTE-CTEPD/CTEPH progression. The objective of this study is to construct an ideal animal model that simulates the major pathological changes of DVT-APTE-CTEPD/CTEPH and can be used for mechanistic exploration. We aim to compare the advantages and disadvantages of different modeling approaches and provide an experimental basis for investigating the mechanisms of pulmonary embolism chronicization at different stages of evolution. Methods and MaterialsWe first evaluated the pathological changes in the pulmonary arterial intima stripping tissue of CTEPH patients. Animal models were established by multiple injections of thrombus columns through the internal jugular vein to simulate distal remodeling of the pulmonary artery. To simulate significant remodeling and fibrosis in the middle and distal segments of the pulmonary artery, thrombus columns were injected along with splenectomy. A CTEPD model with intimal fibrosis remodeling was successfully established by selectively injecting large thromboemboli into the pulmonary artery sites in large animals (dogs). A rat model with pathological manifestations of intimal fibrosis remodeling in the proximal end of the pulmonary artery was constructed using large thrombi combined with nitric oxide synthase inhibitors. An animal model of DVT was established using the inferior vena cava ligation method. ResultsAccording to the different pathological features and mechanisms observed in the progression of human DVT-APTE-CTEPD/CTEPH, we constructed animal models that conform to these pathological manifestations and mechanisms, each with its own advantages. Furthermore, the different methods used to construct animal models can be integrated and applied together. ConclusionAnimal models constructed using different modeling methods can effectively simulate the pathological and physiological manifestations of the corresponding stages of chronic pulmonary embolism. Researchers can select the aforementioned models according to their specific research purposes, directions, and requirements.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Preventive training interferes with mRNA-encoding myosin 7 and collagen I expression during pulmonary arterial hypertension 96%
- In vivo recellularization of xenogeneic vascular grafts decellularized with high hydrostatic pressure method in a porcine carotid arterial interpose model 96%
- Loss of family with sequence similarity 13, member A exacerbates pulmonary hypertension through accelerating endothelial-to-mesenchymal transition 95%
Similar papers in this journal
- iCPET calculator: a web-based application to standardize the calculation of alpha distensibility in patients with pulmonary arterial hypertension 95%
- Disordered balance of T cell subsets in arterial tertiary lymphoid organs in immunoglobulin G4-related vascular disease 94%
- Predictors of survival in patients with ischemic stroke and active cancer: A prospective, multicenter, observational study 94%
Similar papers in this journal
- Derivation and Internal Validation of Prediction Models for Pulmonary Hypertension Risk Assessment in a Cohort Inhabiting Tibet, China 94%
- TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats 94%
- Transplantation of exogenous mitochondria mitigates myocardial dysfunction after cardiac arrest 94%
Similar papers in this journal
- The P387 Thrombospondin-4 Variant Promotes Accumulation of Macrophages in Atherosclerotic Lesions 93%
- Maternal RND3/RhoE deficiency impairs placental mitochondrial function in preeclampsia by modulating PPARγ-UCP2 cascade 93%
- Quantitative proteomics of hamster lung tissues infected with SARS-CoV-2 reveal host-factors having implication in the disease pathogenesis and severity 91%
Similar papers in this journal
- The inhibition of Macrophage Migration Inhibitory Factor by ISO-1 attenuates trauma-induced multi organ dysfunction in rats 94%
- Expression of ACE2 receptor, soluble ACE2, Angiotensin I, Angiotensin II and Angiotensin (1-7), is modulated in COVID-19 patients 93%
- Circulatory Cytokines and Chemokines Profile in Human Coronaviruses: A systematic review and meta-analysis 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.