BACKGROUND:Age-related decline in oocyte quality is a significant factor in reduced fertility. This study aimed to evaluate the role of human amniotic mesenchymal stem cell-derived extracellular vesicles (hAMSC-EVs) on oocytes in aged mice and to elucidate the underlying molecular mechanisms. METHODS:An appropriate concentration of hAMSC-EVs was added to the in vitro maturation culture medium of mouse GV-stage aged oocytes. To assess nuclear maturation, the rate of first polar body extrusion and spindle morphology of MII-stage oocytes were evaluated. Following in vitro fertilization (IVF), fertilization rates and blastocyst formation rates were measured to assess cytoplasmic maturation. Intracellular oxidative stress levels were determined by measuring reactive oxygen species (ROS) and glutathione (GSH) levels, while mitochondrial function was evaluated by assessing mitochondrial membrane potential and ATP production. RESULTS:Compared with the untreated aged oocytes, treatment with hAMSC-EVs significantly improved the maturation of aged oocytes and promoted oocyte fertilization and early embryonic development after IVF. Mechanistically, hAMSC-EV was taken up by the cumulus-oocyte complex and increased the expression of SOD2, GPX, and HO-1 in oocytes by regulating the Keap1/Nrf2 pathway, which was significantly associated with attenuated ROS and increased GSH levels and improved mitochondrial function in aged oocytes. CONCLUSIONS:These findings offer a novel theoretical and experimental foundation for the clinical management of age-related diminished ovarian reserve.
Calciphylaxis (calcific uremic arteriolopathy, CUA) is a rare, fatal disorder primarily affecting chronic kidney disease patients, characterized by microvascular calcification, thrombosis, and skin necrosis. In a discovery cohort (3 CUA, 10 uremic), plasma proteomics identified Thrombospondin-1 (THBS1) as the top upregulated hub in CUA, significantly reduced after human amnion-derived mesenchymal stem cell (hAMSC) therapy, alongside latent TGF-β binding protein 1, both linked to coagulation and wound healing. In vitro proteomics indicated that THBS1/TGF-β1 blockade impaired CUA serum-induced endothelial adhesion and coagulation. ELISA in combined discovery and validation cohorts (8 CUA, 20 uremic) confirmed this reduction post-treatment (6 patients), independent of systemic inflammation. Multiplex immunofluorescence revealed THBS1 and CD47 co-localized with CD31 and integrin β3 in injured microvessels. A human microvascular chip showed that THBS1 inhibition or hAMSC-conditioned medium alleviates injury. These findings implicate THBS1 as a key factor and potential biomarker in calciphylaxis, suggesting hAMSC therapy as a promising mechanism-based approach. Video Abstract:
BACKGROUND:Calciphylaxis, also termed calcific uremic arteriolopathy (CUA) in patients with end-stage kidney disease (ESKD), is a rare and fatal condition characterized by cutaneous ischemic necrosis. METHODS:Three patients with calciphylaxis and metastatic pulmonary calcification (MPC) were treated with human amnion-derived mesenchymal stem cells (hAMSCs). Effects were evaluated using the Visual Analogue Scale (VAS), modified Bates-Jensen Wound Assessment Tool for CUA (BWAT-CUA), wound quality of life questionnaire (Wound-QoL), and histological analysis. MPC was assessed by high-resolution CT (HRCT) and 99ᵐTc-methylene diphosphonate (99ᵐTc-MDP) bone scans.99ᵐTc-labeled macroaggregated albumin (99ᵐTc-MAA) pulmonary perfusion imaging was conducted for the first time in patients with MPC. RESULTS:Three patients exhibited wound healing and improvement in skin symptoms. Two months before CUA, asymptomatic MPC was detected in Patient 1, who was treated with hAMSCs for 15 months. The condition progressed to chest pain and dyspnea. HRCT and 99ᵐTc-MDP bone scans showed worsening calcification, particularly in the upper and mid-thoracic lobes.99ᵐTc-MAA pulmonary perfusion imaging revealed impaired or absent blood perfusion in the areas of metastatic calcification. Patient 1 died from respiratory failure. Patients 2 and 3 had asymptomatic MPC at calciphylaxis diagnosis. After 2 months of treatment, Patient 2, showed no significant imaging improvement and passed away 6 months after discontinuing hAMSC treatment. Patient 3 has shown no significant progression of pulmonary lesions and continues hAMSC therapy. CONCLUSION:We reported personalized early, noninvasive diagnosis and regenerative treatments for calciphylaxis patients with MPC. Although the current hAMSC treatment regimen is effective for skin lesions, its impact on MPC requires further investigation.
Background: Calciphylaxis, which mostly affects individuals with end stage kidney disease (ESKD), is also known as calcific uremic arteriolopathy (CUA). It is a rare and fatal disease that manifests with calcification and thrombosis of microvessels, ischemia, and necrosis in skin tissues(ORPHA:280062). Histopathological features of extracutaneous tissues of CUA patients undergoing human amnion derived mesenchymal stem cell (hAMSC) treatment remain unknown. Methods: A female CUA patient, treated with hAMSCs for 20 months, passed away due to stroke. Histopathological features of her extracutaneous tissues were compared with those of ESKD patients (n = 7). Raman spectroscopy was applied to identify the composition of calcifications. The distribution of hAMSCs, derived from the amnion of a male fetus, in tissues of the CUA patient was determined by detecting the Y chromosome using reverse-transcription polymerase chain reaction. Results: Microvessel lesions were more prevalent in the extracutaneous tissues of the CUA patient than in those of ESKD patients, although the regenerated skin showed normal histological characteristics. The CUA patient exhibited calcifications of microvessel media, including the microvessels in the lungs, kidneys, spleen, pancreas, and uterus. Her mitral valve and kidney displayed severe calcification, identified as calcium phosphate with some calcium carbonate. hAMSCs were not detected in the tissues of the CUA patient. Conclusion: Under the treatment strategy with hAMSCs, based on the effects of skin regeneration, microvascular lesions in the extracutaneous tissues of the CUA patient were more severe than those in ESKD patients. CUA should be considered a systemic disease when identifying treatment targets. ### Competing Interest Statement The authors have declared no competing interest. ### Clinical Protocols ### Funding Statement The National Natural Science Foundation of China (81270408, 81570666, 81730041, and 81671447), the International Society of Nephrology (ISN) Clinical Research Program (18-01-0247), Construction Program of Jiangsu Provincial Clinical Research Center Support System (BL2014084), Jiangsu Province Key Medical Personnel Project (ZDRCA2016002), CKD Anemia Research Foundation from China International Medical Foundation (Z-2017-24-2037), Outstanding Young and Middle-Aged Talents Support Program of The First Affiliated Hospital of Nanjing Medical University (Jiangsu Province Hospital), the National Key Research and Development Program of China (2017YFC1001303), the Program of Jiangsu Province Clinical Medical Center (YXZXB2016001, BL2012009), the State Key Laboratory of Reproductive Medicine Program (SKLRM-GC201803), and the Program of Jiangsu Commission of Health (H201605), Jiangsu Province Hospital (the First Affiliated Hospital with Nanjing Medical University) Clinical Capacity Enhancement Project (JSPH-MA-2023-7), Jiangsu Provincial Medical Key Discipline(Laboratory) Cultivation Unit(JSDW202206). All authors declared no competing interests. The study was supported by the ISN Mentorship Program and the authors thank Professor Marcello Tonelli (University of Calgary, Canada) for his helpful comments on the draft of the manuscript. We thank LetPub (www.letpub.com) for its linguistic assistance during the preparation of this manuscript. ### Author Declarations I confirm all relevant ethical guidelines have been followed, and any necessary IRB and/or ethics committee approvals have been obtained. Yes The details of the IRB/oversight body that provided approval or exemption for the research described are given below: Ethics Committee of the First Affiliated Hospital with Nanjing Medical University in China gave ethical approval for this work. I confirm that all necessary patient/participant consent has been obtained and the appropriate institutional forms have been archived, and that any patient/participant/sample identifiers included were not known to anyone (e.g., hospital staff, patients or participants themselves) outside the research group so cannot be used to identify individuals. Yes I understand that all clinical trials and any other prospective interventional studies must be registered with an ICMJE-approved registry, such as ClinicalTrials.gov. I confirm that any such study reported in the manuscript has been registered and the trial registration ID is provided (note: if posting a prospective study registered retrospectively, please provide a statement in the trial ID field explaining why the study was not registered in advance). Yes I have followed all appropriate research reporting guidelines, such as any relevant EQUATOR Network research reporting checklist(s) and other pertinent material, if applicable. Yes All data produced in the present work are contained in the manuscript
Recent advances in image data proccesing through deep learning allow for new optimization and performance-enhancement schemes for radiation detectors and imaging hardware. This enables radiation experiments, which includes photon sciences in synchrotron and X-ray free electron lasers as a subclass, through data-endowed artificial intelligence. We give an overview of data generation at photon sources, deep learning-based methods for image processing tasks, and hardware solutions for deep learning acceleration. Most existing deep learning approaches are trained offline, typically using large amounts of computational resources. However, once trained, DNNs can achieve fast inference speeds and can be deployed to edge devices. A new trend is edge computing with less energy consumption (hundreds of watts or less) and real-time analysis potential. While popularly used for edge computing, electronic-based hardware accelerators ranging from general purpose processors such as central processing units (CPUs) to application-specific integrated circuits (ASICs) are constantly reaching performance limits in latency, energy consumption, and other physical constraints. These limits give rise to next-generation analog neuromorhpic hardware platforms, such as optical neural networks (ONNs), for high parallel, low latency, and low energy computing to boost deep learning acceleration (LA-UR-23-32395).
Diabetic foot ulcers are a serious complication of diabetes and require advanced therapies to promote wound healing. Human amnion-derived mesenchymal stem cells(hAMSCs) have gained attention due to their regenerative properties and potential therapeutic applications. This study aims to evaluate the effectiveness of hAMSCs in the treatment of diabetic foot ulcers in a female uremic patient.
Background Mesenchymal stem cells (MSCs) are widely used in a variety of tissue regeneration and clinical trials due to their multiple differentiation potency. However, it remains challenging to maintain their replicative capability during in vitro passaging while preventing their premature cellular senescence. Forkhead Box P1 (FOXP1), a FOX family transcription factor, has been revealed to regulate MSC cell fate commitment and self-renewal capacity in our previous study. Methods Mass spectra analysis was performed to identify acetylation sites in FOXP1 protein. Single and double knockout mice of FOXP1 and HDAC7 were generated and analyzed with bone marrow MSCs properties. Gene engineering in human embryonic stem cell (hESC)-derived MSCs was obtained to evaluate the impact of FOXP1 key modification on MSC self-renewal potency. Results FOXP1 is deacetylated and potentiated by histone deacetylase 7 (HDAC7) in MSCs. FOXP1 and HDAC7 cooperatively sustain bone marrow MSC self-renewal potency while attenuating their cellular senescence. A mutation within human FOXP1 at acetylation site (T176G) homologous to murine FOXP1 T172G profoundly augmented MSC expansion capacity during early passages. Conclusion These findings reveal a heretofore unanticipated mechanism by which deacetylation of FOXP1 potentiates self-renewal of MSC and protects them from cellular senescence. Acetylation of FOXP1 residue T172 as a critical modification underlying MSC proliferative capacity. We suggest that in vivo gene editing of FOXP1 may provide a novel avenue for manipulating MSC capability during large-scale expansion in clinical trials.
Subclinical hypothyroidism (SCH) affects 10% of the global population, which is most prevalent in women and the elderly. However, it remains debatable whether the elderly with subclinical hypothyroidism needs thyroxine supplement. Human amnion-derived mesenchymal stem cells (hAMSCs) could play important roles in autoimmune diseases, suggesting that hAMSC be a candidate to regulate the thyroid function of female age-related subclinical hypothyroidism. Herein, we established the model of SCH in the aged female mice. This study was designed to investigate whether human amnion-derived mesenchymal stem cells (hAMSC) could effect on immune regulation, apoptosis inhibition of thyroid cells, thyroid function, blood lipid levels, and heart function. In addition, qualified hAMSCs were intravenously injected into aged female SCH mice via the tail vein on day 0 and day 10. The levels of thyroid hormone and blood lipids as well as cardiac function, serum immunological indexes, and apoptosis of thyroid cells were then analyzed on day 5, 10, 15, and 20; meanwhile, the quantity of Th1, Th2, Th17, and Treg immune cells in peripheral blood was evaluated before and on day 20 post-injection. Our study demonstrated that after hAMSC transplantation, the thyroid functions, blood lipid levels, and heart function indexes of age-related SCH (AR-SCH) mice were significantly improved. Consistent with this, Th1 and Treg cells increased significantly, while Th2 and Th17 cells decreased in peripheral blood. Apoptosis was also suppressed in the thyroid cells. In summary, hAMSC delivery can potentially be a safe and effective therapy for treating SCH in the elderly, improving related complications by immunomodulatory and apoptosis inhibition.
Abstract Calciphylaxis is a rare cutaneous vascular disease that manifests with intolerable pains, non-healing skin wounds, histologically characterized by calcification, fibrointimal hyperplasia, and microvessel thrombosis. Currently, there are no standardized guidelines for this disease. Recent studies have recognized a high prevalence of thrombophilias and hypercoagulable conditions in calciphylaxis patients. Here, we report a case of uremic calciphylaxis patient whom was refractory to conventional treatments and then received a salvage strategy with intravenous and local hAMSC application. In order to investigate the therapeutic mechanism of hAMSCs from the novel perspective of hypercoagulability, coagulation-related indicators, wound status, quality of life and skin biopsy were followed up. Polymerase chain reaction (PCR) was performed to determine the distribution of hAMSCs in multiple tissues including lung, kidney and muscle after infusion of hAMSCs for 24 h, 1 week and 1 month in mice aiming to investigate whether hAMSCs retain locally active roles after intravenous administration. Improvement of hypercoagulable condition involving correction of platelet, D-dimer and plasminogen levels, skin regeneration and pain alleviation were revealed after hAMSC administration over one-year period. Skin biopsy pathology suggested regenerative tissues after 1 month hAMSC application and full epidermal regeneration after 20 months hAMSC treatment. PCR analysis indicated that hAMSCs were homing in lung, kidney and muscle tissues of mice even until tail vein injection of hAMSCs for 1 month. We propose that hypercoagulability is a promising therapeutic target of calciphylaxis patients, which can be effectively improved by hAMSC treatment.
Calciphylaxis is a rare disease characterized histologically by microvessel calcification and microthrombosis, with high mortality and no proven therapy. We reported a severe uremic calciphylaxis patient with progressive skin ischemia, large areas of painful malodorous ulcers and mummified legs. Because of her rapid progression and refractory to conventional therapy, human amnion-derived mesenchymal stem cells (hAMSCs) treatment was approved. Establishment and release inspection of hAMSCs, efficacy and safety assessment including cytokines secretory ability, immunocompetence, tumorigenicity and genetics analysis in vitro were introduced. We further performed acute and long-term hAMSC toxity evaluations in C57BL/6 mice/rats, abnormal immune response tests in C57BL/6 mice and tumorigenic tests in the neonatal NU nude mice. After pre-clinical research, she was treated by hAMSCs with intravenous and local intramuscular injection and external supernatants application to her ulcers. When followed up to 15 months, her blood-based markers of bone and mineral metabolism were improved, with regeneration of skin soft tissue and a more favorable profile of peripheral blood mononuclear cells. Skin biopsy after 1 month treatment showed vascular regeneration with mature non-calcified vessels within dermis and 20 months later re-epithelialization restored the integrity of damaged site. No infusion or local treatment related adverse events occurred. To the best of our knowledge, this is the first evidence for the clinical use of hAMSCs. These findings suggest hAMSCs warrant further investigation as a potential regenerative treatment for uremic calciphylaxis with effects of inhibiting vascular calcification, stimulating angiogenesis and myogenesis, anti-inflammatory and immune modulation, multi-differentiation, re-epithelialization and restorage of integrity.
Calciphylaxis is a rare disease with severe pain and high-mortality due to cutaneous ischemic necrosis and infection that currently lacks proved effective therapies. The occurrence of calciphylaxis in end stage kidney disease (ESKD) patients is known as calcific uremic arteriolopathy (CUA), which is characterized histologically by dermal microvessel calcification, intimal fibroplasia and microthrombosis. Here we innovatively treated a severe CUA patient with human amnion-derived mesenchymal stem cells (hAMSCs). A 34-year-old uremic woman was presented with progressive, painful malodorous ulcers in buttocks and mummified lower limbs. Skin pathological features supported the diagnosis of calciphylaxis. The patient was refractory to conventional multidisciplinary symptomatic therapies. With the approval of our hospital ethics committee, she was treated with hAMSCs including intravenous and local intramuscular injection, and external application of hAMSC culture supernatant to the wound area. During 15-month follow-up, the patient had regeneration of skin and soft tissues, with improved blood biochemical, inflammatory, mineral and bone metabolic indices and immunoregulation effects. After 15-month hAMSC treatment, the score of pain visual analog scale (VAS) decreased from 10 to 0, Bates-Jensen wound assessment tool (BWAT) score decreased from 65 to 13, and wound-quality of life (Wound-QoL) questionnaire score decreased from 68 to 0. We propose that hAMSC treatment is promising for CUA patients. The therapy is potentially involved in the multiple beneficial effects of inhibiting vascular calcification, stimulating angiogenesis and myogenesis, modulating adverse inflammatory and immunologic responses, promoting re-epithelialization and restoring skin integrity.
For n-type PbTe based compounds with relatively low optimal concentration (10(19) cm(-3)), the accompanied structural defects play pivotal role on the charge transport upon doping with alien valent atoms. Herein, we report that Oxygen has huge influence on the defect evolution and thermoelectric properties in n-type PbTe for the first time. A boosted thermoelectric figure of merit ZT of similar to 1.12 at 673 K and a ZT(ave) of 0.84 in the range of 300-873 K are achieved for vacuum sintered Bi-doped PbTe with the powders ground under the protection of Ar. This is in sharp contrast with the same Bi-doped PbTe material sintered with the powders ground in the air, which reaches a ZT(ave) of 0.52. This distinct thermoelectric properties in Bi-doped PbTe compounds are strongly correlated to Bi dopant, the vacancy defects (V-Pb '' and V-Te(center dot center dot)) induced during the fracturing process, and oxygen in the air. The coexistence of Bi dopant and oxygen lowers the formation energy of Pb vacancies and induces large number of O-Bi related Pb vacancies in the structure, yielding an acceptor-like effect. Such negatively charged Pb vacancies in the structure exert a strong long-range coulombic repulsion force on the electrons, leading to a low doping efficiency, a low carrier mobility (200 cm(2) V-1 s(-1)), and inferior electronic properties. Whereas, the protection provided by Ar effectively avoids the contamination by oxygen and prevents the formation of O-Bi related Pb vacancies, which appears remarkably effective in enhancing the electronic transport. A high carrier mobility of 1300 cm(2) V-1 s(-1) is attained in slightly doped Pb0.9995Bi0.0005Te sample and this contributes to an ultra-high power factor of 40 mu W cm(-1) K-2 for the Pb0.9995Bi0.0005Te sample at room temperature. The high PFave exceeds 25 mu W cm(-1) K-2 in the range of 300-723 K. The work provides a new insight into the formation mechanism of structural defects and a new avenue for suppressing the cation vacancies, resulting in higher performance of n-type PbTe-based compounds.
Calciphylaxis is a rare disease characterized histologically by microvessel calcification and microthrombosis, with high mortality and no proven therapy. Here, we reported multidisciplinary regenerative treatment for rescuing a severe uremic calciphylaxis patient with human amnion-derived mesenchymal stem cells (hAMSCs). A 34-year-old uremic woman presented progressive skin ischaemia, large areas of painful malodorous ulcers and mummified legs. The patient was diagnosed as calciphylaxis based on clinical manifestations, laboratory examinations and skin pathological features. Because of her refractory to conventional therapy, treatment with hAMSCs was approved. HAMSCs were administered intravenously to the patient at a dose of 1.0 × 106 cells per kilogram of body weight, local intramuscular injection along the wound edge (2.0 × 104 cells/cm2) and external application of the cell culture supernatant on wound surfaces. Following up 15 months regularly after hAMSCs treatment, the patient's blood biochemical, inflammatory, mineral and bone metabolic indices improved significantly, with immunoregulation effects, regeneration of skin and soft tissue. Besides, wound healing (Figure 1), pain status and quality of life, evaluated by Pain Visual Analog Scale, Bates-Jensen Wound Assessment and the wound-quality of life questionnaire were also improved significantly (Figure 2). This case represented the new method of hAMSC regeneration therapy for uremic calciphylaxis with safety and effectiveness, which deserved further investigation. Before hAMSC treatment, the patient had irregular ulcers on the buttocks and lower extremities, some of which were crusted on the surface or had purulent fishy discharge. Skin and soft tissue necrosis can be seen at the ulcerated area of the buttocks, localized deep to the fascia, with purulent secretions on the surface and brown pigmentation of the skin at the edge of the ulcer (Figure 1A and B). Because of her worsening symptoms and signs refractory to conventional therapy, the patient was given intravenous and local intramuscular injections of hAMSCs, supplemented by application of hAMSC culture supernatant to the wound. After 4 months of treatment, the sacrococcygeal wound has reduced size and become shallow with less exudate, some new granulation tissue was visible. The infection was controlled with pain significantly reduced (Figure 1C). After 12 months, most of the sacrococcygeal wound had healed with only a few erosions (Figure1D). Fifteen months later, her skin scarring of the wound was healed without pain (Figure 1E). The pain Visual Analogue Scale (Figure 2A) showed that the pain was unbearable before treatment (10 points) and disappeared after 15 months of hAMSC treatment (0 point). BWAT (Figure 2B) showed that all the 13 indexes got 5 points (worst) before hAMSC treatment, with a total score of 65 points. After 15 months of hAMSC treatment, each index got 1 point (best), and the total score was 13 points. The Wound-QoL questionnaire (Figure 2C) showed that the 17 items were quantified as 4 points (very serious) before treatment, with a total score of 68 points. After 15 months of hAMSC treatment, the score was 0 (none at all), and the total score was 0.
Calciphylaxis is a rare disease characterized histologically by microvessel calcification and microthrombosis, with high mortality and no proven therapy. Here, we reported a severe uremic calciphylaxis patient with progressive skin ischemia, large areas of painful malodorous ulcers, and mummified legs. Because of the worsening symptoms and signs refractory to conventional therapies, treatment with human amnion-derived mesenchymal stem cells (hAMSCs) was approved. Preclinical release inspections of hAMSCs, efficacy, and safety assessment, including cytokine secretory ability, immunocompetence, tumorigenicity, and genetics analysis in vitro, were introduced. We further performed acute and long-term hAMSC toxicity evaluations in C57BL/6 mice and rats, abnormal immune response tests in C57BL/6 mice, and tumorigenicity tests in neonatal Balbc-nu nude mice. After the preclinical research, the patient was treated with hAMSCs by intravenous and local intramuscular injection and external supernatant application to the ulcers. When followed up to 15 months, the blood-based markers of bone and mineral metabolism improved, with skin soft tissue regeneration and a more favorable profile of peripheral blood mononuclear cells. Skin biopsy after 1-month treatment showed vascular regeneration with mature noncalcified vessels within the dermis, and 20 months later, the re-epithelialization restored the integrity of the damaged site. No infusion or local treatment-related adverse events occurred. Thus, this novel long-term intravenous combined with local treatment with hAMSCs warrants further investigation as a potential regenerative treatment for uremic calciphylaxis due to effects of inhibiting vascular calcification, stimulating angiogenesis and myogenesis, anti-inflammatory and immune modulation, multidifferentiation, re-epithelialization, and restoration of integrity.
Objective: To analyze the pathogenic bacteria and epidemiological characteristics in children with respiratory tract infection in Tianjin area. Methods: Retrospective case analysis was performed on 2 392 hospitalized children in the wards of respiratory diseases, intensive care unit and special care ward of Tianjin Children's Hospital from June 2018 to May 2019. Thirteen pathogenic bacteria in deep sputum and bronchoalveolar lavage fluid samples were detected by loop-mediated isothermal amplification. The laboratory data and clinical characteristics of the infected children were analyzed, and the comparison between groups was performed by t test or χ2 test. Results: Among 2 392 cases, 1 407 were males and 985 females. There was no significant difference in the detection rate between males and females (72.5% (1 020/1 407) vs.74.2% (731/985), χ2=0.87, P=0.35). A total of 1 751 strains and 12 kinds of positive respiratory pathogens were detected, with a detection rate of 73.2%. Among them, 913 (38.2%) strains were Mycoplasma pneumoniae (MP), 514 (21.5%) were Streptococcus pneumoniae (Sp), 381 (15.9%) were Methicillin-resistant Staphylococcus aureus (MRSA) and 279 (11.7%) were Hemophilus influenzae (Hi). There was significant difference in the detection rate of pathogens among different age groups (χ²=83.67, P<0.01). The positive rate of alveolar lavage fluid group was higher than that of deep sputum fluid group [81.6% (614/752) vs. 69.3% (1 137/1 640), χ2=39.89, P<0.01]. The length of hospital stay of children infected with different pathogens was significantly different (all P<0.01). There was significant difference in duration of fever among children infected with different pathogens (χ²=228.69,103.56, 3.96, 27.38,24.50,41.66, all P<0.05). There were 63 (7.7%) cases of atelectasis, 260 (31.9%) cases of pleurisy and 120 (14.7%) cases of pleural effusion in MP children. Children with Sma were most likely to involve the heart system (2/9), and children with Eco infection had a higher incidence of complications such as those of blood (3/19), urinary (2/19), digestive systems(4/19), systemic inflammatory response syndrome and sepsis (1/19). Conclusions: The main bacterial pathogens of respiratory tract infection in children in Tianjin were MP, Sp, MRSA and Hi. It is suggested that clinicians should not only pay attention to the respiratory symptoms of children, but also pay attention to the complications caused by bacterial pathogen infection, so as to prevent the deterioration of the disease and improve the prognosis.
Calciphylaxis is a rare, devastating disorder causing excruciatingly painful ischemic skin lesions due to microvascular calcification and microthrombosis and endothelial injury, which in turn results in infarction of tissues. Sepsis due to the infection of ulcerated wounds is a common cause of death in calciphylaxis patients. There is presently no approved calciphylaxis therapy because of its rare incidence and poorly understood pathogenesis. In calciphylaxis patients receiving dialysis, 1-year mortality up to 80% has continued to challenge the medical community.
The absence of azoospermia factor c (AZFc) is a common molecular cause of sperm failure. In men with non-obstructive azoospermia or severe oligospermia, the incidence of AZFc is around 10%. The AZFc region is located at the far end of the Yqll chromosome which has three non-overlapping sub-regions with a high frequency of deletion. Now, we generated a human embryonic stem cell line (SKLRMe001-A) that carries a deleted AZFc gene on the Y chromosome. The ESC line maintains a stem cell-like morphology, pluripotency, and has a normal karyotype. The cells can also differentiate into all three germ layers in vivo.
Elemental doping is a universal strategy in controlling the functionalities of materials that strongly correlate with naturally formed atomic defects. Element-resolved chemical mapping for atomic defects has answered numerous problems on the relations between defective structures and properties. However, tracking small amounts of dopants in multicomponent bulks and clarifying their doping behaviors remain challenging. Using advanced X-ray spectroscopy, the excess Cu doping behavior in ternary Bi2Te2.7Se0.3 bulk alloy is visualized with the unprecedented detectability from sub-one atomic percent of concentration. The low content of 0.2 at.% Cu preferentially occupies the Bi site, while Cu atoms are found in three crystallographic sites of Bi2Te3 structure and van der Waals gap at high Cu content of 1.2 at.%. These behaviors explain the nontrivial role of Cu dopants on carrier generation processes and relevant thermoelectric properties of Bi2Te2.7Se0.3. The atomic-level identification should also stimulate the elucidation of diverse properties in doped nanomaterials and quantum phenomena in doped topological insulators. (C) 2021 Elsevier Ltd. All rights reserved.