Kiran Iqbal
Institute of Business Administration, Karachi

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ENCRYPTION APOCALYPSE? PREPARING DATA SECURITY FOR THE QUANTUM COMPUTING ERA Kiran Iqbal; Zainab Ali; Bilal Aslam
Journal of Computer Science Advancements Vol. 3 No. 4 (2025)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/jsca.v3i4.3338

Abstract

The imminent maturation of quantum computing threatens to nullify the mathematical hardness underpinning global Public Key Infrastructure, creating an urgent “Harvest Now, Decrypt Later” vulnerability. This study investigates the operational feasibility of transitioning to NIST-standardized Post-Quantum Cryptography (PQC) protocols within heterogeneous network environments. Utilizing a rigorous quantitative benchmarking framework, we evaluated the performance of lattice-based primitives, specifically ML-KEM and ML-DSA, against classical standards across high-performance servers and resource-constrained IoT devices. Empirical data reveals a fundamental architectural paradigm shift: while PQC algorithms exhibit superior computational execution speeds, they introduce severe transmission overheads, resulting in memory saturation and packet fragmentation on edge hardware. Results demonstrate that hybrid encryption schemes provide valid risk mitigation but incur statistically significant latency penalties due to expanded artifact sizes. We definitively conclude that the “Encryption Apocalypse” is primarily a bandwidth and memory bottleneck rather than a computational one, mandating the immediate deployment of adaptive crypto-agility frameworks to manage the infrastructural constraints of the post-quantum era.
INTEGRATION OF NANOTECHNOLOGY AND REGENERATIVE MEDICINE FOR NEXT-GENERATION HEALTHCARE SOLUTIONS Kiran Iqbal; Ahmed Shah; Sara Hussain
Journal of Biomedical and Techno Nanomaterials Vol. 3 No. 1 (2026)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/jbtn.v3i1.3562

Abstract

Nanotechnology and regenerative medicine are two rapidly evolving fields with the potential to transform healthcare by providing advanced solutions for tissue repair, disease treatment, and personalized medicine. The integration of nanotechnology with regenerative medicine offers the opportunity to enhance the efficacy of stem cell therapies, drug delivery systems, and tissue engineering, enabling more precise and effective treatments. Despite promising results, challenges remain regarding the scalability, biocompatibility, and long-term safety of nanomaterials in clinical applications. This study aims to explore the integration of nanotechnology with regenerative medicine to develop next-generation healthcare solutions. It focuses on evaluating the potential applications, challenges, and future directions of nanomaterial-based therapies in tissue regeneration and disease management. A systematic review of the current literature on nanotechnology and regenerative medicine was conducted. The review included studies on nanomaterials used for tissue engineering, drug delivery, and stem cell therapies. In vitro and in vivo research data were analyzed to assess the effectiveness and biocompatibility of nanomaterial-based approaches. The findings indicate that nanomaterial-based systems significantly improve the performance of regenerative medicine therapies, offering enhanced tissue regeneration, targeted drug delivery, and better integration with biological systems. However, issues like material stability and immune response remain. The integration of nanotechnology and regenerative medicine holds significant potential for advancing healthcare solutions. Addressing the current challenges will be critical for the successful translation of these technologies into clinical practice.