Publications by authors named "A K Pathni"

In low- and middle-income countries where the majority of preventable cardiovascular disease deaths occur, less than 10% of eligible patients receive statins for primary cardiovascular disease prevention. Since 2017, the Global Hearts initiative has implemented simple World Health Organization (WHO) HEARTS hypertension and diabetes treatment protocols. In this editorial, we propose an approach of integrating statin treatment into existing HEARTS hypertension and diabetes protocols as a way of expanding statin coverage in low-and middle-income countries.

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Hypertension poses a critical threat to health in India, being the predominant risk factor for mortality and disability. With over 70% of outpatient care being provided by the private sector, our study investigated the practices and incentives of private health providers in screening, diagnosing, treating, monitoring, and counseling hypertension patients in rural and peri-urban India. Conducted from April 2020 to February 2021, the qualitative study involved 46 participants, including various healthcare professionals and patients in three Telangana state districts.

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Introduction: The India Hypertension Control Initiative (IHCI) emphasizes decentralized patient-centric care to boost hypertension control in public healthcare facilities. We documented the decentralization process, enrolment pattern by facility type, and treatment outcomes in nine districts of Punjab and Maharashtra states, India, from 2018-2022.

Methods: We detailed the shift in hypertension care from higher facilities to Health and Wellness Centres (HWCs) using the World Health Organization (WHO) health system pillar framework.

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Hypertension is a global health challenge, especially in low-to-middle-income countries, where awareness and control are suboptimal. Despite available treatments, poor medication adherence hampers blood pressure control, leading to adverse outcomes and increased costs. In response, the GOI has initiated national action plans to address noncommunicable diseases, including hypertension.

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Mechanosensing, or how cells sense and respond to the physical environment, is crucial for many aspects of biological function, ranging from cell movement during development to cancer metastasis, the immune response and gene expression driving cell fate determination. Relevant physical stimuli include the stiffness of the extracellular matrix, contractile forces, shear flows in blood vessels, complex topography of the cellular microenvironment and membrane protein mobility. Although mechanosensing has been more widely studied in non-immune cells, it has become increasingly clear that physical cues profoundly affect the signaling function of cells of the immune system.

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