Publications by authors named "Tanveer A Khan"

This study provides a comprehensive exploration of the working conditions and associated health challenges faced by carpet weavers in Kashmir. The detailed examination of various factors contributes significantly to understanding the intricacies of their daily lives and provides valuable insights into an often-overlooked aspect of occupational health. The data was collected through 22 individual interviews and 5 Focus Group Discussions (FGDs).

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In the current investigation, the combination of selenium (Se) and epibrassinolide (EBL) exhibited a promising alleviative response against the concurrent stress of heat and drought in wheat plants. The compromised growth and photosynthetic performance of wheat plants under the combined stress of heat and drought were substantially improved with the treatment involving Se and EBL. This improvement was facilitated through the expression of Q9FIE3 and O04939 proteins, along with enhanced antioxidant activities.

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Article Synopsis
  • The study investigates the effectiveness of two methods for reconstructing the ocular surface in patients suffering from severe eye damage due to Stevens Johnson Syndrome and chemical injuries, by transplanting epithelial cell constructs onto human amniotic membrane.
  • This is a prospective, randomized clinical trial involving 50 patients, comparing the outcomes of Cultivated Oral Mucosal Epithelial Transplantation (COMET) and Conjunctival Cultivated Epithelial Transplantation (CCET).
  • Results were assessed over six months, focusing on patient comfort, visual acuity, and ocular surface health to determine which technique provided better outcomes for restoring vision and eye health.
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Salinity stress is one of the most detrimental factors affecting crop production worldwide. Genetic engineering offers a promising approach for improving agronomic traits and enhancing stress tolerance. In a previous work, several potential candidate genes were identified in potato using large-scale functional yeast screening.

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A new Ru(II) arene chlorido organometallic complex [(η--cymene)(L)RuCl]PF (named as pCYRuL) using 2-bis(quinolin-2-ylmethylene) hydrazine (L) was developed that exhibits potent anticancer activity against castration-resistant prostate cancer (CRPC) (IC = 0.71 μM), and it is 45 times more effective than the standard drug cisplatin (IC = 31.3 μM) in a castration-resistant human prostatic adenocarcinoma cell line (PC-3) but non-toxic in normal human kidney cells (HK2) as well as normal breast cells (MCF10A) and found that pCYRuL exerted anticancer activity apoptosis induction and cell cycle arrest in the G2/M phase of PC-3 cells.

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Salinity stress has detrimental effects on various aspects of plant development. However, our understanding of strategies to mitigate these effects in crop plants remains limited. Recent research has shed light on the potential of sodium acetate as a mitigating component against salinity stress in several plant species.

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With the growing global population, abiotic factors have emerged as a formidable threat to agricultural food production. If left unaddressed, these stress factors might reduce food yields by up to 25% by 2050. Plants utilize natural mechanisms, such as reactive oxygen species scavenging, to mitigate the adverse impacts of abiotic stressors.

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This study aimed to assess the effects of low-temperature stress on two tomato cultivars (S-22 and PKM-1) treated with 24-epibrassinolide (EBL) and selenium (Se) by determining the changes in the proteomics profiles, growth biomarkers, biochemical parameters, and physiological functions. The growth parameters, photosynthetic traits, and activity of nitrate reductase in the S-22 and PKM-1 plants were markedly reduced by exposure to low temperatures. However, the combined application of EBL and Se under different modes significantly enhanced the aforementioned parameters under stress and non-stress conditions.

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Inhospitable conditions that hinder plant growth and development encompass a range of abiotic stresses, such as drought, extreme temperatures (both low and high), salinity, exposure to heavy metals, and irradiation. The cumulative impact of these stresses leads to a considerable reduction in agricultural productivity worldwide. The generation of reactive oxygen species (ROS) is a shared mechanism of toxicity induced by all these abiotic stimuli in plants, resulting in oxidative damage and membrane instability.

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An adult male in his 50s presented with complaints of glare and gradual, painless, progressive diminution of vision in the right eye (RE). Visual acuity in RE was noted to be 2/60, and slit lamp biomicroscopy revealed a pearly grey-white elevated corneal opacity measuring 4 mm × 3 mm, obscuring the visual axis. There was no history of ocular trauma or infection.

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Adverse environmental constraints such as drought, heat, cold, salinity, and heavy metal toxicity are the primary concerns of the agricultural industry across the globe, as these stresses negatively affect yield and quality of crop production and therefore can be a major threat to world food security. Recently, it has been demonstrated that hydrogen sulfide (HS), which is well-known as a gasotransmitter in animals, also plays a potent role in various growth and developmental processes in plants. HS, as a potent signaling molecule, is involved in several plant processes such as in the regulation of stomatal pore movements, seed germination, photosynthesis and plant adaptation to environmental stress through gene regulation, post-translation modification of proteins and redox homeostasis.

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This study examined the changing character of the last honours of those who died of COVID-19 in Kashmir and the life experiences of the families of the deceased. A semi-structured interview schedule was used to collect information from 21 participants. Using qualitative data analysis approaches, five key themes were identified vis-à-vis the impact of COVID-19 on burial rituals and customs; effects on bereaved families, shades of grief, bereavement care, community response, and coping with loss.

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Environmental pollutants and climate change are the major cause of abiotic stresses. Hexachlorobenzene (HCB) is an airborne and aero-disseminated persistent organic pollutants (POP) molecule causing severe health issues in humans, and temperature extremes and HCB in combination severely affect the growth and yield of crop plants around the globe. The higher HCB uptake and accumulation by edible plants ultimately damage human health through the contaminated food chain.

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Salinity stress is one of the major abiotic constraints that limit plant growth and yield, which thereby is a serious concern to world food security. It adversely affects crop production by inducing hyperosmotic stress and ionic toxicity as well as secondary stresses such as oxidative stress, all of which disturb optimum physiology and metabolism. Nonetheless, various strategies have been employed to improve salt tolerance in crop plants, among which the application of Melatonin (Mel) could also be used as it has demonstrated promising results.

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Infectious keratitis is a medical emergency resulting in significant visual morbidity. Indiscriminate use of antimicrobials leading to the emergence of resistant or refractory microorganisms has further worsened the prognosis. Coexisting ocular surface diseases, delay in diagnosis due to inadequate microbiological sample, a slow-growing/virulent organism, or systemic immunosuppressive state all contribute to the refractory response of the ulcer.

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Article Synopsis
  • The study reports a rare case of bilateral corneal melting and necrosis in a 48-year-old man occurring 5 weeks post ChAdOx1 nCoV-19 vaccination (Covishield).
  • The patient experienced systemic symptoms like fever and diarrhea initially, but ocular issues arose later with no microbial or viral infections found on testing.
  • This case suggests a possible immune-mediated reaction related to the vaccine, marking it as the first documented ocular adverse event after a single dose of a SARS-CoV-2 vaccine.
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Diabetes mellitus rates continue to rise, which coupled with increasing costs of associated complications has appreciably increased global expenditure in recent years. The risk of complications are enhanced by poor glycaemic control including hypoglycaemia. Long-acting insulin analogues were developed to reduce hypoglycaemia and improve adherence.

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Article Synopsis
  • The prevalence of diabetes is rising, leading to increased healthcare costs and complications associated with poor glycaemic control, particularly hypoglycaemia.
  • Long-acting insulin analogues, while improving adherence and reducing hypoglycaemia, are expensive, making their use challenging in low and middle-income countries, despite the potential of biosimilars to lower costs.
  • A study across six Asian countries found increased use of long-acting insulin analogues, especially biosimilars in Bangladesh, India, and Malaysia, but limited usage in Pakistan due to affordability issues.
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We conducted this study to examine the nature of treatment-seeking behavior among carpet weavers in Kashmir. We used a grounded theory approach to gain an in-depth understanding of the phenomenon. Data were collected through face-to-face interviews with 35 research participants recruited through purposive and theoretical sampling techniques.

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The study investigated the important epidemiological parameters and farm-level economic costs of FMD incidence in cattle and buffaloes during 2013-14 to 2015-16 in various states of India. Multistage random sampling procedure was adopted for the primary survey and data was collected through face-to-face personal interview from 18,609 cattle and buffalo rearing farm households from 123 districts across twelve states and one Union Territory. Besides epidemiological parameters, different farm-level direct and indirect loss associated with FMD was assessed at disaggregated level (states) by employing deterministic mathematical models.

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Melatonin (MEL) is the potential biostimulator molecule, governing multiple range of growth and developmental processes in plants, particularly under different environmental constrains. Mainly, its role is considered as an antioxidant molecule that copes with oxidative stress through scavenging of reactive oxygen species and modulation of stress related genes. It also enhances the antioxidant enzyme activities and thus helps in regulating the redox hemostasis in plants.

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Using a phenomenological approach, this study aimed to gain an in-depth understanding of the lived experiences of Kashmiri women suffering from breast cancer within the context of their day-to-day lives. Snowball sampling and theoretical sampling techniques were employed for recruiting participants. Data collection was primarily based on the principles of data saturation.

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Brassinosteroids and hydrogen peroxide (HO) are extensively used to combat several environmental factors, including heavy metal stress in plants, but their cumulative impact on the maintenance of copper (Cu) homeostasis in plants could not be dissected at elevated level. This study was executed to explore the roles of 24-epibrassinolide (EBL; foliar) and HO (root dipping) in resilience of tomato (Solanum lycopersicum L.) plants to Cu stress.

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A fused-deposition modeling (FDM) 3D-printed polyethylene terephthalate glycol (PETG)-sepiolite composite showed effective synergetic mechanical reinforcement in tensile testing compared to an injection-molded composite. The results showed that the addition of 3 phr sepiolite improved the tensile strength of 3D-printed PETG samples by 35.4%, while the tensile strength of injection-molded PETG samples was improved by 7.

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