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This article studies the effect of pulmonary ultrasound in the diagnosis and treatment of neonatal pneumonia. In this experiment, 33 children with pneumonia diagnosed and treated in the hospital were selected as the research objects, and all were performed by X-ray examination and lung ultrasound. After the test was completed, the diagnostic accuracy of the two examination methods was analyzed, the performance of the chest X-rays of the children were observed, and the lung ultrasound examination was recorded at the same time. The results showed that the diagnostic accuracy of lung ultrasound examination was 93.00%, which was higher than 75.00% of X-ray examination, and the difference was statistically significant (P less then 0.05). In the experiment, the paired chi-square test was performed on the results of LUS and bedside CXR diagnosis of IPN, and the value was 0.687. The two have a good consistency in the diagnosis of IPN in NICU. The Pearson correlation test results of LUS score and neonatal pneumonia clarify the treatment effect of children. LUS and bedside CXR have a good agreement for the diagnosis of IPN. The LUS score can effectively assess the severity of IPN. The greater the severity of the disease in children with IPN, the higher the LUS score.Hemangiomas, also called infantile hemangiomas (IH), are the most common congenital benign vascular tumors in infants and young children. At present, there are many treatment methods for proliferative hemangiomas, which have different effects and lack predictability. Propranolol has gradually replaced glucocorticoids as the first-line treatment for infants and young children with hemangiomas. However, premature discontinuation is prone to relapse, and the efficacy and safety of medication need to be further studied and determined. The exact pathogenesis of hemangiomas is still unclear. Therefore, in this study, poly(lactic-co-glycolic acid) (PLGA) nanoparticles were used as drug delivery carriers, propranolol was encapsulated, and PLGA-propranolol (PLGA-PP) nanodelivery preparations were prepared and targeted. Anisotropy and pharmacokinetics were preliminary studied. At the same time, after the treatment of HemECs cells with PLGA-PP in gradient concentration in vitro, CCK-8 method was used to detect the cell proliferation, and Anyixin-V/PI double staining method was used to detect the apoptosis rate of cells. The effect of PLGA-PP nano-delivery vector on hemangioma was studied by western blot method to detect the expression level of Id-1 protein in HemECs. The results showed that after PLGA-PP treated HemECs for 24 h, PLGA-PP significantly inhibited HeECs proliferation and promoted their apoptosis, and the intracellular Id-1 protein expression was also reduced. Therefore, this study believes that the mechanism of PLGA-PP nano-targeted delivery preparations in the treatment of hemangiomas is achieved by down-regulating the Id-1 gene, thereby inhibiting the colonization of HemECs and promoting its apoptosis effect.Nanoscience is a highly comprehensive, interdisciplinary discipline based on many advanced science and technology, and has developed very rapidly in the past few decades. Nanoscience and technology has been widely used in many fields such as biomedicine, materials science, chemistry, physics, and electronic information engineering. Nanomaterials are widely used due to their many excellent properties such as quantum size effects, small size effects, surface effects, and tunneling effects, and have become hot research areas. It is very suitable as a carrier for antitumor drug molecules, which is conducive to improving drug efficacy and reducing drugs side effects. After selective functionalization, it is highly possible to achieve the loading and release of multiple drug molecules. Based on the magnetic mesoporous Fe₃O₄-MSNs composite nanoparticles, we have modified a series of organosilane coupling agents on its surface. The most commonly used antitumor drug (adriamycin) in clinical was selected as a model to evaluate the loading and release behavior of modified composite nanoparticles Fe₃O₄-MSNs on this drug. The results indicate that Fe₃O₄ is selectively modified after appropriate modification of the silane coupling agent. MSNs carrier can effectively regulate the adsorption and release rate of hydrophilic DOX and hydrophobic PTX, and shows a good drug control ability.The incidence of diabetes has been increasing year by year. Long-term growth in blood sugar causes complications such as diabetic foot ulcer and infections, which will increase the difficulty of ulcer treatment. The diabetes brings great pain and heavy economic burden to patients and their families. Smad inhibitor In view of the above problems, a nano-silver antibacterial dressing is synthesized in this paper to control bacterial infection on the ulcer surface and promote wound healing. This paper describes the preparation process and morphological characterization of nano-silver antibacterial dressings. 100 patients were selected, which divided into two groups for comparative experiments. The conventional group used conventional vaseline dressing, and the control group was nano-silver antibacterial dressing. The ulcer surface healing time, the number of dressing changes, and the control of infection were analyzed separately, and statistical analysis was performed with SPSS19.0. The experimental results are as follows. The use of nano-silver antibacterial dressing can significantly reduce the incidence of infection in diabetic foot patients, which is helpful to reduce the number of dressing changes, shorten the healing time of ulcer, and accelerate the turnover rate. It helps to shorten the course of diabetic foot, and it is recommended to promote its clinical application.Ovarian cancer is a common gynecological malignant tumor, second only to cervical cancer and uterine body cancer. In China, ovarian cancer has the highest mortality rate in gynecological tumors. Due to the rapid spread of cancer cells, the prognosis is relatively poor. Because the ovarian epithelial cancer is relatively insidious, there are no obvious clinical manifestations in the early stage. At present, apatinib chemotherapy is widely used, which can reduce the disease of patients by inhibiting the migration and proliferation of vascular endothelial cells. Fluorescence imaging is widely used in biomedical imaging. Organic fluorescent dyes are stable in nature and can be linked to a variety of molecules. They are often used in targeted imaging and therapeutic research. A cyanine dye is an organic molecule formed by two nitrogen-containing aromatic heterocycles connected by a polymethine bridge. Because neither MR contrast agents nor fluorescent dyes are targeted, specific biomolecules and contrast agents are often used in the research to diagnose and treat tumors.

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