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Browsing by Author "Harun-Or-Rashid, Md."

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    An Overview of Antimicrobial Stewardship Optimization
    (Daffodil International University, 2022-05-20) Rahman, Md. Mominur; Tumpa, Mst. Afroza Alam; Zehravi, Mehrukh; Sarker, Md. Taslim; Yamin, Md.; Islam, Md. Rezaul; Harun-Or-Rashid, Md.; Ahmed, Muniruddin; Ramproshad, Sarker; Mondal, Banani; Dey, Abhijit; Damiri, Fouad; Berrada, Mohammed; Rahman, Md. Habibur; Cavalu, Simona
    Antimicrobial s are a type of agent widely used to prevent various microbial infections in humans and animals. Antimicrobial resistance is a major cause of clinical antimicrobial therapy failure, and it has become a major public health concern around the world. Increasing the development of multiple antimicrobial s has become available for humans and animals with no appropriate guidance. As a result, inappropriate use of antimicrobial s has significantly produced antimicrobial resistance. However, an increasing number of infections such as sepsis are untreatable due to this antimicrobial resistance. In either case, life-saving drugs are rendered ineffective in most cases. The actual causes of antimicrobial resistance are complex and versatile. A lack of adequate health services, um-optimized use of antimicrobial s in humans and animals, poor water and sanitation systems, wide gaps in access and research and development in healthcare technologies, and environmental pollution have vital impacts on antimicrobial resistance. This current review will highlight the natural history and basics of the development of antimicrobial s, the relationship between antimicrobial use in humans and antimicrobial use in animals, the simplistic pathways, and mechanisms of antimicrobial resistance, and how to control the spread of this resistance.
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    IOT Based Heart Rate Monitoring System
    (Daffodil International University, 2018-12) Islam, Monzurul; Harun-Or-Rashid, Md.
    The Internet of Things (IoT) has been generally used to interconnect the accessible medicinal assets and offer savvy, solid, and compelling human services administration to the elderly individuals. Wellbeing observing for dynamic and helped living is one of the ideal models that can utilize the IoT focal points to enhance the elderly way of life. In this paper, we present an IoT engineering redid for social insurance applications. The proposed engineering gathers the information and transfers it to the cloud where it is handled and dissected. Criticism activities dependent on the broke down information can be sent back to the client. A model of the proposed design has been worked to exhibit its execution focal points.
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    MikroTik Configuration and Linux Administration
    (Daffodil International University, 2018-11) Harun-Or-Rashid, Md.
    As a student of CSE, I have completed my internship report in DOL “on ISP Server configuration on linux and mikroTik platform. The report is a requirement of the internship program for my Bachelor of Science course degree. When two computers are connected and it can exchange data or information then creates a network. we can add more computers and return data or information when we need that time we require a special type of computer are called Server computer Such as- Proxy server, DNS server, Web server, Mail server, FTP server, Firewall. Each of the server computer act variously. Otherwise we can’t control any network. When a networks are appended with the internet and the network need to impervious the data, must install computer server using Linux OS. In that reason I optioned the subject of my internship on” Mikrotik Configuration and Linux Administration”.
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    Multifunctional Role of Natural Products for the Treatment of Parkinson's Disease
    (Scopus, 22-10-16) Rahman, Md. Mominur; Wang, Xiaoyan; Islam, Md. Rezaul; Akash, Shopnil; Supti, Fatema Akter; Mitu, Mohona Islam; Harun-Or-Rashid, Md.; Aktar, Most. Nazmin; Kali, Most. Sumaiya Khatun; Jahan, Farhana Israt; Singla, Rajeev K.; Shen, Bairong; Rauf, Abdur; Sharma, Rohit
    Natural substances originating from plants have long been used to treat neurodegenerative disorders (NDs). Parkinson’s disease (PD) is a ND. The deterioration and subsequent cognitive impairments of the midbrain nigral dopaminergic neurons distinguish by this characteristic. Various pathogenic mechanisms and critical components have been reported, despite the fact that the origin is unknown, such as protein aggregation, iron buildup, mitochondrial dysfunction, neuroinflammation and oxidative stress. Anti-Parkinson drugs like dopamine (DA) agonists, levodopa, carbidopa, monoamine oxidase type B inhibitors and anticholinergics are used to replace DA in the current treatment model. Surgery is advised in cases where drug therapy is ineffective. Unfortunately, the current conventional treatments for PD have a number of harmful side effects and are expensive. As a result, new therapeutic strategies that control the mechanisms that contribute to neuronal death and dysfunction must be addressed. Natural resources have long been a useful source of possible treatments. PD can be treated with a variety of natural therapies made from medicinal herbs, fruits, and vegetables. In addition to their well-known anti-oxidative and anti-inflammatory capabilities, these natural products also play inhibitory roles in iron buildup, protein misfolding, the maintenance of proteasomal breakdown, mitochondrial homeostasis, and other neuroprotective processes. The goal of this research is to systematically characterize the currently available medications for Parkinson’s and their therapeutic effects, which target diverse pathways. Overall, this analysis looks at the kinds of natural things that could be used in the future to treat PD in new ways or as supplements to existing treatments. We looked at the medicinal plants that can be used to treat PD. The use of natural remedies, especially those derived from plants, to treat PD has been on the rise. This article examines the fundamental characteristics of medicinal plants and the bioactive substances found in them that may be utilized to treat PD.
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    Recent Advances in Micro- and Nano-Drug Delivery Systems Based on Natural and Synthetic Biomaterials
    (MDPI Publications, 2023-11-28) Harun-Or-Rashid, Md.; Aktar, Most. Nazmin; Hossain, Md. Sabbir; Sarkar, Nadia; Islam, Md. Rezaul; Arafat, Md. Easin; Bhowmik, Shukanta; Yusa, Shin-ichi
    Polymeric drug delivery technology, which allows for medicinal ingredients to enter a cell more easily, has advanced considerably in recent decades. Innovative medication delivery strategies use biodegradable and bio-reducible polymers, and progress in the field has been accelerated by future possible research applications. Natural polymers utilized in polymeric drug delivery systems include arginine, chitosan, dextrin, polysaccharides, poly(glycolic acid), poly(lactic acid), and hyaluronic acid. Additionally, poly(2-hydroxyethyl methacrylate), poly(N-isopropyl acrylamide), poly(ethylenimine), dendritic polymers, biodegradable polymers, and bioabsorbable polymers as well as biomimetic and bio-related polymeric systems and drug-free macromolecular therapies have been employed in polymeric drug delivery. Different synthetic and natural biomaterials are in the clinical phase to mitigate different diseases. Drug delivery methods using natural and synthetic polymers are becoming increasingly common in the pharmaceutical industry, with biocompatible and bio-related copolymers and dendrimers having helped cure cancer as drug delivery systems. This review discusses all the above components and how, by combining synthetic and biological approaches, micro- and nano-drug delivery systems can result in revolutionary polymeric drug and gene delivery devices.
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    Report on Pakiza knit composite ltd. RMG operations
    (BRAC University, 2025-11) Harun-Or-Rashid, Md.; Khakshi, James Ward
    This report summarizes my internship experience at Pakiza Knit Composite Ltd. (PKCL), where I applied the knowledge and skills gained from the PGD-KIM program across several operational departments. Throughout the training period, I worked closely with Merchandising, Industrial Engineering, RMG Production, Quality, Finishing, observing their roles and how each department supports the overall production process. I performed practical tasks such as improving KPI measurement systems, developing MIS formats, enhancing quality reporting, and correcting costing methods. These activities allowed me to analyze performance data, identify operational gaps, and recommend improvements to increase efficiency and data accuracy. The report also highlights key industry improvement suggestions and reflects on the professional development achieved during the internship. This experience strengthened my analytical ability, communication, and leadership skills, while deepening my understanding of organizational coordination. Overall, the internship connected academic learning with real practices and prepared me for future managerial responsibilities in the garment industry.
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    The Impact of Mucormycosis (Black Fungus) on SARS-CoV-2-Infected Patients
    (Daffodil International University, 22-08-19) Islam, Md. Rezaul; Rahman, Md. Mominur; Ahasan, Md. Tanjimul; Sarkar, Nadia; Akash, Shopnil; Islam, Mahfuzul; Islam, Fahadul; Aktar, Most. Nazmin; Saeed, Mohd; Harun-Or-Rashid, Md.; Hosain, Md. Kawsar; Rahaman, Md. Saidur; Afroz, Sadia; Bibi, Shabana; Rahman, Md. Habibur; Sweilam, Sherouk Hussein
    The emergence of various diseases during the COVID-19 pandemic made health workers more attentive, and one of the new pathogens is the black fungus (mucormycosis). As a result, millions of lives have already been lost. As a result of the mutation, the virus is constantly changing its traits, including the rate of disease transmission, virulence, pathogenesis, and clinical signs. A recent analysis revealed that some COVID-19 patients were also coinfected with a fungal disease called mucormycosis (black fungus). India has already categorized the COVID-19 patient black fungus outbreak as an epidemic. Only a few reports are observed in other countries. The immune system is weakened by COVID-19 medication, rendering it more prone to illnesses like black fungus (mucormycosis). COVID-19, which is caused by a B.1.617 strain of the SARS-CoV-2 virus, has been circulating in India since April 2021. Mucormycosis is a rare fungal infection induced by exposure to a fungus called mucormycete. The most typically implicated genera are Mucor rhyzuprhizopusdia and Cunninghamella. Mucormycosis is also known as zygomycosis. The main causes of infection are soil, dumping sites, ancient building walls, and other sources of infection (reservoir words “mucormycosis” and “zygomycosis” are occasionally interchanged). Zygomycota, on the other hand, has been identified as polyphyletic and is not currently included in fungal classification systems; also, zygomycosis includes Entomophthorales, but mucormycosis does not. This current review will be focused on the etiology and virulence factors of COVID-19/mucormycosis coinfections in COVID-19-associated mucormycosis patients, as well as their prevalence, diagnosis, and treatment.

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