66 results match your criteria: "Raghavendra Institute of Pharmaceutical Education and Research (RIPER)[Affiliation]"

Decoding tumor microenvironment: EMT modulation in breast cancer metastasis and therapeutic resistance, and implications of novel immune checkpoint blockers.

Biomed Pharmacother

December 2024

Department of Breast, Thyroid and Vascular Surgery, Hubei Provincial Clinical Research Center for Umbilical Cord Blood Hematopoietic Stem Cells, Taihe Hospital, Hubei University of Medicine, Shiyan, Hubei 442000, China. Electronic address:

Tumor microenvironment (TME) and epithelial-mesenchymal transition (EMT) play crucial roles in the initiation and progression of tumors. TME is composed of various cell types, such as immune cells, fibroblasts, and endothelial cells, as well as non-cellular components like extracellular matrix (ECM) proteins and soluble factors. These elements interact with tumor cells through a complex network of signaling pathways involving cytokines, growth factors, metabolites, and non-coding RNA-carrying exosomes.

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  • Many countries have increased focus on physical education and sports, yet there's been a notable rise in injuries, particularly Achilles tendon ruptures, which make up 47% of such cases.
  • The review aims to identify risk factors for Achilles tendon ruptures and propose personalized prevention strategies based on extensive database research.
  • It highlights non-modifiable factors like genetics and age as well as modifiable factors such as nutrition and exercise habits, emphasizing the importance of early treatment and the latest advancements in injury management.
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Incidence of liver cancer as one of the most common cancers worldwide and become the significant contributor for the mortality among cancer patients. The disease burden, risk factors, and trends in incidence and mortality of liver cancer globally was described subsequently estimated the projections of liver cancer incidence or mortality by 2040. Data regarding age-standardized incidence and mortality rates for liver cancer was obtained from multiple databases, including GLOBOCAN 2020, CI5 volumes I-XI, WHO mortality database, and Global Burden of Disease (GBD)-2019.

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This study focuses on developing novel antimicrobials to combat drug-resistant pathogens, addressing compounds failing clinical trials due to inadequate physicochemical properties. Sixteen imidazolidine-4-one derivatives were synthesized by extensive evaluation using molecular docking, absorption, distribution, metabolism, excretion (ADME) predictions, and antimicrobial testing. Molecular docking studies conducted with Schrödinger's Glide revealed that compounds S4 and G8 exhibited superior docking scores of -7.

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Background: Hematopoiesis within the bone marrow (BM) is a complex and tightly regulated process predominantly influenced by immune factors. Aging, diabetes, and obesity are significant contributors to BM niche damage, which can alter hematopoiesis and lead to the development of clonal hematopoiesis of intermediate potential (CHIP). Genetic/epigenetic alterations during aging could influence BM niche reorganization for hematopoiesis or clonal hematopoiesis.

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Several chemotherapeutics against breast cancer are constrained by their adverse effects and chemoresistance. The development of novel chemotherapeutics to target metastatic breast cancer can bring effective clinical outcomes. Many breast cancer patients present with tumors that are positive for estrogen receptors (ERs), highlighting the importance of targeting the ER pathway in this particular subtype.

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  • The study analyzes global disparities in the incidence and mortality rates of gynecological cancers (GCs) using data from GLOBOCAN 2022, highlighting a significant impact on women’s health and healthcare systems worldwide.
  • In 2022, there were approximately 1.47 million new cases and 680,000 deaths from GCs globally, with the highest incidence and mortality rates in Eastern Africa, linked to factors like HIV and HPV.
  • Projections for 2050 indicate that if current trends continue, the burden of GCs will worsen, especially in regions with lower Human Development Index (HDI) ratings, underscoring the need for targeted health interventions.
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Occupational pulmonary diseases (OPDs) pose a significant global health challenge, contributing to high mortality rates. This review delves into the pathophysiology of hypoxia and the safety of intermittent hypoxic conditioning (IHC) in OPD patients. By examining sources such as PubMed, Relemed, NLM, Scopus, and Google Scholar, the review evaluates the efficacy of IHC in clinical outcomes for OPD patients.

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Background: Tracheal, Bronchus, and Lung (TBL) cancer continues to represent the majority of cancer-related incidence and mortality in United States (U.S.).

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Ferroptosis induces significant changes in mitochondrial morphology, including membrane condensation, volume reduction, cristae alteration, and outer membrane rupture, affecting mitochondrial function and cellular fate. Recent reports have described the intrinsic cellular iron metabolism and its intricate connection to ferroptosis, a significant kind of cell death characterized by iron dependence and oxidative stress regulation. Furthermore, updated molecular insights have elucidated the significance of mitochondria in ferroptosis and its implications in various cancers.

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  • This study explored the potential link between radiotherapy (RT) given for esophageal cancer (EC) and the risk of developing secondary head and neck cancer (SHNC).
  • Using data from the SEER database, researchers found that EC patients who received RT had a higher incidence of SHNC compared to those who did not receive radiation, with significantly lower overall survival rates for RT patients who developed SHNC.
  • The findings suggest that radiation oncologists should consider strategies to reduce the long-term risk of SHNC in EC patients treated with RT.
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Role of Neurotransmitters in Steady State Hematopoiesis, Aging, and Leukemia.

Stem Cell Rev Rep

July 2024

Department of Pulmonary Medicine, JSS Medical College, JSS Academy of Higher Education & Research (JSS AHER), Mysuru, Karnataka, India.

Haematopoiesis within the bone marrow (BM) represents a complex and dynamic process intricately regulated by neural signaling pathways. This delicate orchestration is susceptible to disruption by factors such as aging, diabetes, and obesity, which can impair the BM niche and consequently affect haematopoiesis. Genetic mutations in Tet2, Dnmt3a, Asxl1, and Jak2 are known to give rise to clonal haematopoiesis of intermediate potential (CHIP), a condition linked to age-related haematological malignancies.

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The presence of -nitroso compounds, particularly -nitrosamines, in pharmaceutical products has raised global safety concerns due to their significant genotoxic and mutagenic effects. This systematic review investigates their toxicity in active pharmaceutical ingredients (APIs), drug products, and pharmaceutical excipients, along with novel analytical strategies for detection, root cause analysis, reformulation strategies, and regulatory guidelines for nitrosamines. This review emphasizes the molecular toxicity of -nitroso compounds, focusing on genotoxic, mutagenic, carcinogenic, and other physiological effects.

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Background: This study presents preliminary results of robot-assisted nipple-sparing immediate breast reconstruction (R-NSMIBR) with gel implant combined with latissimus dorsi muscle flap without island flap and validation of the safety and utility of this novel surgical modality.

Methods: Records pertinent to R-NSMIBR with gel implants combined with latissimus dorsi muscle flap surgery for breast reconstruction between September 2022 and May 2023 were examined. A total of 13 patients who underwent R-NSMIBR were analyzed, nine of which were performed without skin island.

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Introduction: Metformin, a biguanide on the WHO's list of essential medicines has a long history of 50 years or more in treating hyperglycemia, and its therapeutic saga continues beyond diabetes treatment. Glucoregulatory actions are central to the physiological effects of metformin; surprisingly, the precise mechanism with which metformin regulates glucose metabolism is not thoroughly understood yet.

Method: The main aim of this review is to explore the recent implications of metformin in hepatic gluconeogenesis, AMPKs, and SHIP2 and subsequently to elucidate the metformin action across intestine and gut microbiota.

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Previous studies described that asthma patients who received corticosteroid therapy have been constrained by the corticosteroid resistance subsequently fostered to severe refractory asthma. In this review, we discussed the implications of TSLP, RXR, the role of STAT5-activating cytokines, and IL-33/NH-cell signaling pathways, and recent clinical evidence on TSLP blockers in steroid-resistant asthma. We have searched several public databases such as Pubmed, Scopus, and Relemed and obtained information pertinent to the TSLP, RXR, TSLP blockers, the STAT5-activating cytokines, and IL-33.

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Background: Glyphosate-based herbicide (GBH) formulations are organophosphorus pesticides implicated for agricultural use. Several epidemiological reports have reported that the occupational exposure of farmers to glyphosate can cause age-related neurodegeneration.

Objective: the objective of this study is to examine the neurotoxic effects of glyphosate and its intricate role in triggering several neurodegenerative diseases like dementia, nootropic defects, Parkinson's disease, and neurological teratogenic effects due to its negative effects on the nervous system.

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Background: Post-mastectomy lymphedema is a chronic progressive disease characterized by a significant reduction in quality of life and a range of complications.

Aim: To this date, no single treatment method provides pathological correction of the mechanisms associated with tissue reorganization observed in later-stage breast cancer-related lymphedema (BCRL).

Methods: To define a personalized approach to the management of patients with iatrogenic lymphedema, we performed a systematic review of literature without a comprehensive meta-analysis to outline existing molecular- genetic patterns, overview current treatment methods and their efficacy, and highlight the specific tissue-associated changes in BCRL conditions and other bio-engineering approaches to develop personalized therapy.

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  • Women living with HIV in rural western Uganda are at a higher risk for cervical cancer, yet the prevalence of cervical cancer screening (CCS) among these women is only 39.1%.
  • The study identified several factors that increase the likelihood of CCS, such as having a post-secondary education, being HIV-positive for four or more years, having multiple children, and attending antenatal and post-natal care.
  • Health belief factors, like perceived risk and worry about developing cervical cancer, significantly influenced adherence to screening practices among the participants.
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  • - Conventional cancer treatments like surgery, chemotherapy, and radiotherapy often face challenges such as drug resistance and harmful side effects, leading to a search for novel therapies.
  • - Emerging therapies such as photodynamic therapy (PDT), photothermal therapy (PTT), and radiodynamic therapy (RDT) show promise due to their high selectivity, minimal resistance, and lower toxicity, with mitocans being key molecules that target mitochondria to enhance cancer treatment.
  • - This review examines how combining mitocans with nanotherapeutics and photo-radiotherapy can improve treatment efficacy against resistant tumors by effectively delivering chemotherapy agents to specific mitochondrial sub-organelles, ultimately optimizing cancer treatment strategies.
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Background: Chemoresistance by stemness in HPV-induced cervical carcinogenesis has significant implications for the overall disease-specific survival of the patients. To date, there are no reports related to the implications of significant aspects of inflammation and microbiome-- mediated epigenetics in cervical cancers.

Objective: The current systematic review delineates the significant aspects of the inflammation-related pathophysiology, cervical cancer diagnosis based on the HPV-indued stemness, and microbiome- mediated epigenetic markers to develop personalized therapies to target the stemness-acquired indefinitely dividing cancer stem cells.

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Introduction: Dose reconstructed based on linear accelerator (linac) log-files is one of the widely used solutions to perform patient-specific quality assurance (QA). However, it has a drawback that the accuracy of log-file is highly dependent on the linac calibration. The objective of the current study is to represent a new practical approach for a patient-specific QA during Volumetric modulated arc therapy (VMAT) using both log-file and calibration errors of linac.

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Fructosamine-3-kinase (FN3K) is involved in the deglycation of Nrf2, a significant regulator of oxidative stress in cancer cells. However, the intricate functional aspects of FN3K and Nrf2 in breast cancers have not been explored vividly. The objectives of this study are to design the human FN3K protein using homology modeling followed by the screening of several anticancer molecules and examining their efficacy to modulate FN3K activity, Nrf2-mediated antioxidant signalling.

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