Publications by authors named "S Quazi"

Research into cancer treatment has been mainly focused on developing therapies to directly target cancer cells. Over the past decade, extensive studies have revealed critical roles of the tumour microenvironment (TME) in cancer initiation, progression, and drug resistance. Notably, cancer-associated fibroblasts (CAFs) have emerged as one of the primary contributors in shaping TME, creating a favourable environment for cancer development.

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The integration of nanotechnology in agriculture offers a transformative approach to improving crop yields, resource efficiency, and ecological sustainability. This review highlights the application of functional NM, such as nano-formulated agrochemicals, nanosensors, and slow-release fertilizers, which enhance the effectiveness of fertilizers and pesticides while minimizing environmental impacts. By leveraging the unique properties of NM, agricultural practices can achieve better nutrient absorption, reduced chemical runoff, and improved water conservation.

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Article Synopsis
  • - The study highlights that an aging population in rural India is increasingly developing frailty, which affects various aspects of health and daily living, contributing to higher healthcare costs and dependence.
  • - Researchers compared two frailty assessments: the FIRE-MADE (focused on mental status, daily activities, depression, and events) and the LASA index, finding that a high percentage of participants were frail according to both methods, but with some differences in results.
  • - The findings suggest that FIRE-MADE is a valid and effective tool for early detection of frailty in this population, with high sensitivity and positive predictive value, indicating it could help improve management and care for the elderly.
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Ion channels play an important role in mediating pain through signal transduction, regulation, and control of responses, particularly in neuropathic pain. Transient receptor potential channel superfamily plays an important role in cation permeability and cellular signaling. Transient receptor potential channel Melastatin 2 (TRPM2) subfamily regulates Ca concentration in response to various chemicals and signals from the surrounding environment.

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