keyword
https://read.qxmd.com/read/38469058/engineered-extracellular-vesicles-in-chronic-kidney-diseases-a-comprehensive-review
#21
REVIEW
Kaming Xue, Bobin Mi
Chronic kidney diseases (CKD) present a formidable global health challenge, characterized by a deficiency of effective treatment options. Extracellular vesicles (EVs), recognized as multifunctional drug delivery systems in biomedicine, have gained accumulative interest. Specifically, engineered EVs have emerged as a promising therapeutic approach for targeted drug delivery, potentially addressing the complexities of CKD management. In this review, we systematically dissect EVs, elucidating their classification, biogenesis, composition, and cargo molecules...
2024: International Journal of Nanomedicine
https://read.qxmd.com/read/38396842/protective-effect-of-betulin-on-streptozotocin-nicotinamide-induced-diabetes-in-female-rats
#22
JOURNAL ARTICLE
Feyisayo O Adepoju, Ksenia V Sokolova, Irina F Gette, Irina G Danilova, Mikhail V Tsurkan, Alicia C Mondragon, Elena G Kovaleva, Jose Manuel Miranda
Type 2 diabetes is characterized by hyperglycemia and a relative loss of β-cell function. Our research investigated the antidiabetic potential of betulin, a pentacyclic triterpenoid found primarily in birch bark and, intriguingly, in a few marine organisms. Betulin has been shown to possess diverse biological activities, including antioxidant and antidiabetic activities; however, no studies have fully explored the effects of betulin on the pancreas and pancreatic islets. In this study, we investigated the effect of betulin on streptozotocin-nicotinamide (STZ)-induced diabetes in female Wistar rats...
February 10, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38393594/renal-organoids-from-whole-kidney-cells
#23
JOURNAL ARTICLE
Liang Chen
Organoid technology, as a three-dimensional (3D) culture method, provides a feasible tool to self-organize multiple types of organ-specific cells, construct inherent anatomic structures, and display functional biological activities. For the purpose of renal regeneration, renal organoids are considered as predictive options to form functional kidney substitutions in vitro. Here, we describe an accessible and convenient way to generate renal organoids without differentiation procedures using whole kidney cells...
2024: Methods in Molecular Biology
https://read.qxmd.com/read/38373978/transcriptomics-analysis-revealed-that-taz-regulates-the-proliferation-of-kirc-cells-through-mitophagy
#24
JOURNAL ARTICLE
Zhen He, Jianxi Shi, Bing Zhu, Zhentao Tian, Zhihong Zhang
Transcriptional Co-Activator with PDZ-Binding Motif (TAZ, also known as WWTR1) is a downstream effector of the Hippo pathway, involved in the regulation of organ regeneration and cell differentiation in processes such as development and regeneration. TAZ has been shown to play a tumor-promoting role in various cancers. Currently, many studies focus on the role of TAZ in the process of mitophagy. However, the molecular mechanism and biological function of TAZ in renal clear cell carcinoma (KIRC) are still unclear...
February 19, 2024: BMC Cancer
https://read.qxmd.com/read/38362098/the-inhibitory-effect-of-geraniol-on-ccl4-induced-hepatorenal-toxicity-in-pregnant-mice-through-the-pi3k-akt-signaling-pathway
#25
JOURNAL ARTICLE
Sabah Ali Alzahrani, Gamal M Bekhet, Rebai Ben Ammar, Basem M Abdallah, Enas Mohamed Ali, Saeed Y Al-Ramadan, Duaa Althumairy, Peramaiyan Rajendran
BACKGROUND: Hepatotoxicity caused by CCL4 is well known. Geraniol (GNL) has high antioxidant effect that can induces liver regeneration. However, the protective effect of GNL effect on CCL4 -induced hepatorenal toxicity in pregnant mice has not yet been studied. OBJECTIVE: To investigate whether GNL could protect against oxidative stress induced by CCL4 via the nuclear factor erythroid 2-related factor 2 (Nrf2) pathway, which is regulated by phosphatidylinositol 3 kinase/protein kinase B (PI3K/AKT), and has been found to have protective effects on renal and hepatic tissues...
2024: Saudi Journal of Medicine & Medical Sciences
https://read.qxmd.com/read/38344009/multipotent-bone-marrow-cell-seeded-polymeric-composites-drive-long-term-definitive-urinary-bladder-tissue-regeneration
#26
JOURNAL ARTICLE
Matthew I Bury, Natalie J Fuller, Xinlong Wang, Yvonne Y Chan, Renea M Sturm, Sang Su Oh, Laurel A Sofer, Hans C Arora, Tiffany T Sharma, Bonnie G Nolan, Wei Feng, Rebecca R Rabizadeh, Milica Barac, Sonia S Edassery, Madeleine M Goedegebuure, Larry W Wang, Balaji Ganesh, Lisa C Halliday, Mark E Seniw, Seby L Edassery, Nadim B Mahmud, Matthias D Hofer, Kevin E McKenna, Earl Y Cheng, Guillermo A Ameer, Arun K Sharma
To date, there are no efficacious translational solutions for end-stage urinary bladder dysfunction. Current surgical strategies, including urinary diversion and bladder augmentation enterocystoplasty (BAE), utilize autologous intestinal segments (e.g. ileum) to increase bladder capacity to protect renal function. Considered the standard of care, BAE is fraught with numerous short- and long-term clinical complications. Previous clinical trials employing tissue engineering approaches for bladder tissue regeneration have also been unable to translate bench-top findings into clinical practice...
February 2024: PNAS Nexus
https://read.qxmd.com/read/38316761/cellular-senescence-of-renal-tubular-epithelial-cells-in-acute-kidney-injury
#27
REVIEW
Juan Chen, Huhai Zhang, Xiangling Yi, Qian Dou, Xin Yang, Yani He, Jia Chen, Kehong Chen
Cellular senescence represents an irreversible state of cell-cycle arrest during which cells secrete senescence-associated secretory phenotypes, including inflammatory factors and chemokines. Additionally, these cells exhibit an apoptotic resistance phenotype. Cellular senescence serves a pivotal role not only in embryonic development, tissue regeneration, and tumor suppression but also in the pathogenesis of age-related degenerative diseases, malignancies, metabolic diseases, and kidney diseases. The senescence of renal tubular epithelial cells (RTEC) constitutes a critical cellular event in the progression of acute kidney injury (AKI)...
February 5, 2024: Cell Death Discovery
https://read.qxmd.com/read/38314680/kidney-injury-focus-on-molecular-signaling-pathways
#28
JOURNAL ARTICLE
Wei Liu, MengDi Hu, Le Wang, Hamed Mirzaei
Acute kidney injury (AKI) is a syndrome in which kidney function reduces suddenly. This syndrome which includes both structural changes and loss of function may lead to chronic kidney disease (CKD). Kidney regeneration capacity depends on the cell type and severity of the injury. However, novel studies indicated that regeneration mostly relies on endogenous tubular cells that survive after AKI. Regenerative pharmacology requires a great knowledge of fundamental processes involved in the development and endogenous regeneration, leading to a necessity for investigating related signaling molecules in this process...
January 17, 2024: Current Medicinal Chemistry
https://read.qxmd.com/read/38314444/sglt2-inhibition-promotes-glomerular-repopulation-by-cells-of-renin-lineage-in-experimental-kidney-disease
#29
JOURNAL ARTICLE
Loïs A K van der Pluijm, Angela Koudijs, Wendy Stam, Joris J T H Roelofs, A H Jan Danser, Joris I Rotmans, Kenneth W Gross, Michael P Pieper, Anton Jan van Zonneveld, Roel Bijkerk
AIM: Sodium glucose co-transporter-2 (SGLT2) inhibitors stimulate renal excretion of sodium and glucose and exert renal protective effects in patients with (non-)diabetic chronic kidney disease (CKD) and may as well protect against acute kidney injury (AKI). The mechanism behind this kidney protective effect remains unclear. Juxtaglomerular cells of renin lineage (CoRL) have been demonstrated to function as progenitors for multiple adult glomerular cell types in kidney disease. This study assesses the impact of SGLT2 inhibition on the repopulation of glomerular cells by CoRL and examines their phenotypic commitment...
February 5, 2024: Acta Physiologica
https://read.qxmd.com/read/38296190/il-13-alleviates-acute-kidney-injury-and-promotes-regeneration-via-activating-the-jak-stat-signaling-pathway-in-a-rat-kidney-transplantation-model
#30
JOURNAL ARTICLE
Chengjun Yu, Jie Zhang, Jun Pei, Jin Luo, Yifan Hong, Xiaomao Tian, Zhiyuan Liu, Chumeng Zhu, Chunlan Long, Lianju Shen, Xingyue He, Sheng Wen, Xing Liu, Shengde Wu, Yi Hua, Guanghui Wei
AIMS: To identify whether and how a younger systemic internal milieu alleviates acute kidney injury (AKI) in grafts after kidney transplantation. MATERIALS AND METHODS: We conducted an allogenic heterotopic rat kidney transplantation model with young and adult recipients receiving similar donor kidneys. We evaluated the renal function, histological damage, apoptosis, dedifferentiation, proliferation, hub regulating cytokines, and signaling pathways involved in young and adult recipients based on transcriptomics, proteomics, and experimental validation...
January 29, 2024: Life Sciences
https://read.qxmd.com/read/38286222/microvascular-changes-following-exposure-to-iodinated-contrast-media-in-vitro-a-qualitative-comparison-to-serum-creatinine-concentrations-in-post-cardiac-catheterization-patients
#31
JOURNAL ARTICLE
Magnusson Marine, Gerk Ulrich, Schüpbach Gertraud, Rieger Juliane, Plendl Johanna, Marin Ilka, Drews Barbara, Kaessmeyer Sabine
INTRODUCTION: Contrast-associated acute kidney injury (CA-AKI) is characterized as a loss of renal function following radiological contrast media administration. While all contrast media induce variable changes in microvascular endothelial cells in vitro, only few studies report clinical significance of their findings. A comprehensive assessment of the effect of iodinated contrast media on the renal function in vitro and in vivo is essential. The aim of our study was to morphometrically quantify the effect of two different contrast media (Iobitridol and Iodixanol) on vascular endothelial capillaries in vitro and to analyze their effect on the renal function of patients who underwent cardiac catheterization including the intra-arterial administration of contrast media, by measuring serum creatinine concentration (SCr), a byproduct of muscle metabolism, primarily excreted by the kidneys...
January 27, 2024: Microvascular Research
https://read.qxmd.com/read/38282162/recombinant-antithrombin-attenuates-acute-kidney-injury-associated-with-rhabdomyolysis-an-in-vivo-animal-study
#32
JOURNAL ARTICLE
Tomotaka Miura, Tomoki Okuda, Kodai Suzuki, Hideshi Okada, Hiroyuki Tomita, Chihiro Takada, Kosuke Mori, Hirotaka Asano, Soichiro Kano, Yugo Wakayama, Yohei Fukuda, Hirotsugu Fukuda, Ayane Nishio, Yuki Kawasaki, Ayumi Kuroda, Keiko Suzuki, Ryo Kamidani, Haruka Okamoto, Tetsuya Fukuta, Yuichiro Kitagawa, Takahito Miyake, Keita Nakane, Akio Suzuki, Takahiro Yoshida, Nobuyuki Tetsuka, Shozo Yoshida, Takuya Koie, Shinji Ogura
BACKGROUND: Rhabdomyolysis is characterized by the destruction and necrosis of skeletal muscle tissue, resulting in acute kidney injury (AKI). Recombinant antithrombin (rAT) has DNA repair and vascular endothelial-protection properties. Herein, we investigated whether rAT therapy has beneficial effects against rhabdomyolysis-induced AKI. Ten-week-old male B6 mice were injected with 5 mL/kg of 50% glycerol intramuscularly in the left thigh after 24 h of fasting to create a rhabdomyolysis mouse model...
January 29, 2024: Intensive Care Medicine Experimental
https://read.qxmd.com/read/38256324/muscle-derived-stem-progenitor-cells-ameliorate-acute-kidney-injury-in-rats-through-the-anti-apoptotic-pathway-and-demonstrate-comparable-effects-to-bone-marrow-mesenchymal-stem-cells
#33
JOURNAL ARTICLE
Egle Pavyde, Arvydas Usas, Alius Pockevicius, Romaldas Maciulaitis
Background and Objectives : To date, the therapeutic potential of skeletal muscle-derived stem/progenitor cells (MDSPCs) for acute kidney injury (AKI) has only been evaluated by our research group. We aimed to compare MDSPCs with bone marrow mesenchymal stem cells (BM-MSCs) and evaluate their feasibility for the treatment of AKI. Materials and Methods : Rats were randomly assigned to four study groups: control, GM (gentamicin) group, GM+MDSPCs, and GM+BM-MSCs. AKI was induced by gentamicin (80 mg/kg/day; i...
December 28, 2023: Medicina
https://read.qxmd.com/read/38237600/selective-induction-of-human-renal-interstitial-progenitor-like-cell-lineages-from-ipscs-reveals-development-of-mesangial-and-epo-producing-cells
#34
JOURNAL ARTICLE
Hiraku Tsujimoto, Azusa Hoshina, Shin-Ichi Mae, Toshikazu Araoka, Wang Changting, Yoshihiro Ijiri, May Nakajima-Koyama, Satoko Sakurai, Kazusa Okita, Ken Mizuta, Akira Niwa, Megumu K Saito, Mitinori Saitou, Takuya Yamamoto, Cecilia Graneli, Kevin J Woollard, Kenji Osafune
Recent regenerative studies using human pluripotent stem cells (hPSCs) have developed multiple kidney-lineage cells and organoids. However, to further form functional segments of the kidney, interactions of epithelial and interstitial cells are required. Here we describe a selective differentiation of renal interstitial progenitor-like cells (IPLCs) from human induced pluripotent stem cells (hiPSCs) by modifying our previous induction method for nephron progenitor cells (NPCs) and analyzing mouse embryonic interstitial progenitor cell (IPC) development...
December 22, 2023: Cell Reports
https://read.qxmd.com/read/38227531/the-action-mechanism-by-which-c1q-tumor-necrosis-factor-related-protein-6-alleviates-cerebral-ischemia-reperfusion-injury-in-diabetic-mice
#35
JOURNAL ARTICLE
Bo Zhao, Mei Li, Bingyu Li, Yanan Li, Qianni Shen, Jiabao Hou, Yang Wu, Lijuan Gu, Wenwei Gao
JOURNAL/nrgr/04.03/01300535-202409000-00034/figure1/v/2024-01-16T170235Z/r/image-tiff Studies have shown that C1q/tumor necrosis factor-related protein-6 (CTRP6) can alleviate renal ischemia/reperfusion injury in mice. However, its role in the brain remains poorly understood. To investigate the role of CTRP6 in cerebral ischemia/reperfusion injury associated with diabetes mellitus, a diabetes mellitus mouse model of cerebral ischemia/reperfusion injury was established by occlusion of the middle cerebral artery...
September 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38218925/engineered-extracellular-vesicle-encapsulated-chip-as-novel-nanotherapeutics-for-treatment-of-renal-fibrosis
#36
JOURNAL ARTICLE
Cheng Ji, Jiahui Zhang, Linru Shi, Hui Shi, Wenrong Xu, Jianhua Jin, Hui Qian
Renal interstitial fibrosis (RIF) is a fundamental pathological feature of chronic kidney disease (CKD). However, toxicity and poor renal enrichment of fibrosis inhibitors limit their further applications. In this study, a platform for CKD therapy is developed using superparamagnetic iron oxide nanoparticles (SPION) decorated mesenchymal stem cells derived extracellular vesicles with carboxyl terminus of Hsc70-interacting protein (CHIP) high expression (SPION-EVs) to achieve higher renal-targeting antifibrotic therapeutic effect...
January 13, 2024: NPJ Regenerative Medicine
https://read.qxmd.com/read/38206410/renal-regenerative-capacity-related-to-stem-cell-reserve-in-nephrectomized-rats
#37
JOURNAL ARTICLE
Songul Arabul, Mustafa Melikoglu, Esma Kirimlioglu, Bezmi Cem Boneval, Gungor Karaguzel
PURPOSE: On the new era of stem cell therapy, the present experimental study was conducted to investigate renal regenerative capacity related to kidney stem cell reserve in different nephrectomy (Nx) models. METHODS: Three- and eight-week-old rats (n = 168) were randomly divided into four groups to include control and three Nx subgroups (1/6 Nx, 1/2 Nx, and 5/6 Nx) (Fig. 1). On post-Nx days 15, 30 and 60, kidney specimens were obtained to determine renal regenerative capacity...
January 11, 2024: World Journal of Urology
https://read.qxmd.com/read/38203251/sensitivity-of-human-induced-pluripotent-stem-cells-and-thereof-differentiated-kidney-proximal-tubular-cells-towards-selected-nephrotoxins
#38
JOURNAL ARTICLE
Isaac Musong Mboni-Johnston, Nazih Mohamed Zakari Kouidrat, Cornelia Hirsch, Andreas Georg Weber, Alexander Meißner, James Adjaye, Nicole Schupp
Proximal tubular epithelial cells (PTEC) are constantly exposed to potentially toxic metabolites and xenobiotics. The regenerative potential of the kidney enables the replacement of damaged cells either via the differentiation of stem cells or the re-acquisition of proliferative properties of the PTEC. Nevertheless, it is known that renal function declines, suggesting that the deteriorated cells are not replaced by fully functional cells. To understand the possible causes of this loss of kidney cell function, it is crucial to understand the role of toxins during the regeneration process...
December 20, 2023: International Journal of Molecular Sciences
https://read.qxmd.com/read/38196265/single-cell-rna-seq-of-in-vitro-expanded-cells-from-cranial-neural-crest-reveals-a-rare-odontogenic-sub-population
#39
JOURNAL ARTICLE
Yifan Zhao, Shubin Chen, Xiaobo Liu, Xiaoming Chen, Dandan Yang, Jiashu Zhang, Di Wu, Yanmei Zhang, Si Xie, Xiaomei Li, Zhiyuan Wang, Bo Feng, Dajiang Qin, Duanqing Pei, Yaofeng Wang, Jinglei Cai
Ecto-mesenchymal cells of mammalian tooth germ develops from cranial neural crest cells. These cells are recognised as a promising source for tooth development and regeneration. Despite the high heterogeneity of the neural crest, the cellular landscape of in vitro cultured cranial neural crest cells (CNCCs) for odontogenesis remains unclear. In this study, we used large-scale single-cell RNA sequencing to analyse the cellular landscape of in vitro cultured mouse CNCCs for odontogenesis. We revealed distinct cell trajectories from primary cells to passage 5 and identified a rare Alx3+/Barx1+ sub-population in primary CNCCs that differentiated into two odontogenic clusters characterised by the up-regulation of Pax9/Bmp3 and Lhx6/Dmp1...
January 9, 2024: Cell Proliferation
https://read.qxmd.com/read/38186896/early-growth-response-1-as-a-podocyte-injury-marker-in-human-glomerular-diseases
#40
JOURNAL ARTICLE
Masahiro Okabe, Kentaro Koike, Izumi Yamamoto, Nobuo Tsuboi, Taiji Matsusaka, Takashi Yokoo
BACKGROUND: In human glomerular diseases, visualizing podocyte injury is desirable since podocytes do not regenerate and podocyte injury leads to podocyte loss. Herein, we investigated the utility of immunostaining for early growth response 1 (EGR1), which is expressed in injured podocytes from the early stages of injury in animal experiments, as a podocyte injury marker in human glomerular diseases. METHODS: This study included 102 patients with biopsy-proven glomerular diseases between 2018 and 2021...
January 2024: Clinical Kidney Journal
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