Investigation of the usability of Ce- and N-doped hybrid carbon quantum dots for the removal of neodymium ions DOI Creative Commons
Berkant Şentürk, Sabriye Yusan

Journal of Radioanalytical and Nuclear Chemistry, Journal Year: 2025, Volume and Issue: unknown

Published: April 17, 2025

Language: Английский

Evolution and Recent Scenario of Nanotechnology in Agriculture and Food Industries DOI Creative Commons

M. Vijayakumar,

G. J. Surendhar,

L. Natrayan

et al.

Journal of Nanomaterials, Journal Year: 2022, Volume and Issue: 2022(1)

Published: Jan. 1, 2022

Nanotechnology is an emerging technology in the field of food and agriculture; every individual molecule atom can be modified or controlled by this technology. Everything that exists on earth made up atoms molecules. Problems all fields easily overcome modifying altering their nanosize. Similarly, nanotechnology could address many issues agriculture industries. Nanomaterials play a keen role place pesticides, fertilizers, biosensors. Nutrition enhancement, safe delivery bioactive components micronutrients, preservations were facilitated applications nanotechnologies. Efforts have to taken create awareness among public field. Future research directions identified review improve nanoembedded system. This article reviews recent development industries through nanotechnology, application agricultural sectors, backlogs such sectors.

Language: Английский

Citations

70

Artificial Intelligence in Regenerative Medicine: Applications and Implications DOI Creative Commons
Hamed Nosrati, Masoud Nosrati

Biomimetics, Journal Year: 2023, Volume and Issue: 8(5), P. 442 - 442

Published: Sept. 20, 2023

The field of regenerative medicine is constantly advancing and aims to repair, regenerate, or substitute impaired unhealthy tissues organs using cutting-edge approaches such as stem cell-based therapies, gene therapy, tissue engineering. Nevertheless, incorporating artificial intelligence (AI) technologies has opened new doors for research in this field. AI refers the ability machines perform tasks that typically require human ways learning patterns data applying without being explicitly programmed. potential improve accelerate various aspects development, particularly, although not exclusively, when complex are involved. This review paper provides an overview context medicine, discusses its applications with a focus on personalized highlights challenges opportunities

Language: Английский

Citations

59

Current developments and future perspectives of nanotechnology in orthopedic implants: an updated review DOI Creative Commons
Wenqing Liang, Chao Zhou,

Juqin Bai

et al.

Frontiers in Bioengineering and Biotechnology, Journal Year: 2024, Volume and Issue: 12

Published: March 18, 2024

Orthopedic implants are the most commonly used fracture fixation devices for facilitating growth and development of incipient bone treating diseases defects. However, orthopedic suffer from various drawbacks complications, including bacterial adhesion, poor cell proliferation, limited resistance to corrosion. One major currently available is their inadequate osseointegration at tissue-implant interface. This leads loosening as a result immunological rejection, wear debris formation, low mechanical fixation, implant-related infections. Nanotechnology holds promise offer wide range innovative technologies use in translational research. Nanomaterials have great potential applications due exceptional tribological qualities, high tear, ability maintain drug release, capacity osseointegration, capability regenerate tissue. Furthermore, nanostructured materials possess mimic features hierarchical structure native bones. They facilitate decrease rate infection, prevent biofilm among other diverse functions. The emergence polymers, metals, ceramics, carbon has enabled novel approaches orthopaedic review provides concise overview nanotechnology-based biomaterials utilized orthopedics, encompassing metallic nonmetallic nanomaterials. A further provided regarding biomedical biomaterials, application orthopedics delivery systems tissue engineering scaffold preparation, surface modification implantable improve osteointegration properties, treatment musculoskeletal Hence, this article offers contemporary current nanotechnology engineering, well its prospective future applications.

Language: Английский

Citations

17

A critical review on Lantana camara extract-mediated bio-inspired synthesis of nanomaterials and their potential application: Challenges and future perspectives DOI

Kajalben Patel,

Mamta Patil,

Yogita Abhale

et al.

Inorganic Chemistry Communications, Journal Year: 2025, Volume and Issue: 173, P. 113830 - 113830

Published: Jan. 5, 2025

Language: Английский

Citations

2

A Mechanistic Overview on Green Assisted Formulation of Nanocomposites and Their Multifunctional Role in Biomedical Applications DOI Creative Commons

Mahnoor Mahnoor,

Khafsa Malik, Abeer Kazmi

et al.

Heliyon, Journal Year: 2025, Volume and Issue: 11(3), P. e41654 - e41654

Published: Jan. 8, 2025

The importance of nanocomposites constantly attains attention because their unique properties all across the fields especially in medical perspectives. study green-synthesized has grown to be extremely fascinating field research. Nanocomposites are more promising than mono-metallic nanoparticles they exhibit synergistic effects. This review encapsulates current development formulation plant-mediated by using several plant species and impact secondary metabolites on biocompatible functioning. Phyto-synthesis produces diverse nanomaterials with biocompatibility, environment-friendliness, vivo actions, characterized varying sizes, shapes, biochemical nature. process is advantageous conventional physical chemical procedures. New studies have been conducted determine biomedical efficacy against various diseases. Unfortunately, there inadequate investigation into green-assisted nanocomposites. Incorporating phytosynthesized therapeutic interventions not only enhances healing processes but also augments host's immune defenses infections. highlights phytosynthesis applications, including antibacterial, antidiabetic, antiviral, antioxidant, antifungal, anti-cancer, other as well toxicity. explores mechanistic action achieve designated tasks. Biogenic for multimodal imaging potential exchange methods materials Well-designed utilized innovative theranostic agents subsequent objective efficiently diagnosing treating a variety human disorders.

Language: Английский

Citations

2

Advances in Drug Targeting, Drug Delivery, and Nanotechnology Applications: Therapeutic Significance in Cancer Treatment DOI Creative Commons
Fatih Çiftçi, Ali Can Özarslan, İmran Cagri Kantarci

et al.

Pharmaceutics, Journal Year: 2025, Volume and Issue: 17(1), P. 121 - 121

Published: Jan. 16, 2025

In the 21st century, thanks to advances in biotechnology and developing pharmaceutical technology, significant progress is being made effective drug design. Drug targeting aims ensure that acts only pathological area; it defined as ability accumulate selectively quantitatively target tissue or organ, regardless of chemical structure active substance method administration. With targeting, conventional, biotechnological gene-derived drugs body’s organs, tissues, cells can be transported specific regions. These systems serve carriers regulate timing release. Despite having many advantageous features, these have limitations thoroughly treating complex diseases such cancer. Therefore, combining with nanoparticle technologies imperative treat cancer at both local systemic levels effectively. The nanocarrier-based delivery involves encapsulating target-specific molecules into polymeric vesicular systems. Various (DDS) were investigated discussed this review article. first part passive systems, hydrogels, thermoplastics, microdevices transdermal-based second carrier nanobiotechnology (carbon nanotubes, nanoparticles, coated, pegylated, solid lipid nanoparticles smart nanogels). third part, advantages discussed, finally, market research commercial used nanotechnological approaches was included.

Language: Английский

Citations

2

Advanced bioremediation by an amalgamation of nanotechnology and modern artificial intelligence for efficient restoration of crude petroleum oil-contaminated sites: a prospective study DOI Open Access

Rupshikha Patowary,

Arundhuti Devi, Ashis K. Mukherjee

et al.

Environmental Science and Pollution Research, Journal Year: 2023, Volume and Issue: 30(30), P. 74459 - 74484

Published: May 23, 2023

Language: Английский

Citations

26

Exploring the biological application of Penicillium fimorum-derived silver nanoparticles: In vitro physicochemical, antifungal, biofilm inhibitory, antioxidant, anticoagulant, and thrombolytic performance DOI Creative Commons
Hamed Barabadi,

Kiana Mobaraki,

Kamyar Jounaki

et al.

Heliyon, Journal Year: 2023, Volume and Issue: 9(6), P. e16853 - e16853

Published: June 1, 2023

This study showed the anti-candida, biofilm inhibitory, antioxidant, anticoagulant, and thrombolytic properties of biogenic silver nanoparticles (AgNPs) fabricated by using supernatant Penicillium fimorum (GenBank accession number OQ568180) isolated from soil. The AgNPs were characterized different analytical techniques. A sharp surface plasmon resonance (SPR) peak colloidal at 429.5 nm in UV-vis spectrum confirmed fabrication nanosized particles. broth microdilution assay anti-candida with a minimum inhibitory concentration (MIC) 4 μg mL-1. In next step, protein DNA leakage assays as well reactive oxygen species (ROS) performed to evaluate possible mechanisms representing an increase total along climb-up ROS levels AgNPs-treated samples. Flow cytometry also dose-dependent cell death Further studies performance against Candia albicans. concentrations MIC 4*MIC inhibited 79.68 ± 14.38% 83.57 3.41% formation C. albicans, respectively. Moreover, this that intrinsic pathway may play significant role anticoagulant AgNPs. addition, 500 mL-1, represented 49.27%, 73.96 2.59% DPPH radical scavenging potential, Promising biological suggests these nanomaterials good candidate for biomedical pharmaceutical applications.

Language: Английский

Citations

24

Advancing foodborne pathogen detection: a review of traditional and innovative optical and electrochemical biosensing approaches DOI
Zeus Saldaña‐Ahuactzi, Francisco Javier Gómez-Montaño,

Janet Morales-Chávez

et al.

Microchimica Acta, Journal Year: 2025, Volume and Issue: 192(2)

Published: Jan. 22, 2025

Language: Английский

Citations

1

Biochar for the Mitigation of Metal/Metalloid Stress in Plants DOI Creative Commons
Mohammad Sarraf, Edappayil Janeeshma, Namira Arif

et al.

Journal of Plant Growth Regulation, Journal Year: 2024, Volume and Issue: 43(10), P. 3303 - 3319

Published: May 8, 2024

Abstract Metal(loid) pollution has become one of the most pressing environmental issues, threatening all living organisms. stress adversely impacts plant growth, physiology, and overall productivity. Numerous physicochemical approaches have been developed employed to counteract reduce detrimental effects metal(loid)s. However, these methods raised concerns, leading questions about their appropriateness efficacy. Consequently, alternative eco-friendly solutions, such as application biochar, gained prominence. Biochar is a carbon-rich material derived from pyrolysis hydrothermal processes various organic materials. Due its exceptional properties, biochar believed enhance soil quality fertility. Several global studies underscored positive role in reducing uptake metal(loid)s by plants polluted soils. In this article, we explore facets reactions toxicity attempt draw links between use improvements physiology performance. We also review effectiveness phytoremediation, influence on nutrient adsorption mechanisms, assisting growth defense systems.

Language: Английский

Citations

5