AI-driven innovations in Alzheimer's disease: Integrating early diagnosis, personalized treatment, and prognostic modelling.

Journal: Ageing research reviews
Published Date:

Abstract

Alzheimer's disease (AD) presents a significant challenge in neurodegenerative research and clinical practice due to its complex etiology and progressive nature. The integration of artificial intelligence (AI) into the diagnosis, treatment, and prognostic modelling of AD holds promising potential to transform the landscape of dementia care. This review explores recent advancements in AI applications across various stages of AD management. In early diagnosis, AI-enhanced neuroimaging techniques, including MRI, PET, and CT scans, enable precise detection of AD biomarkers. Machine learning models analyze these images to identify patterns indicative of early cognitive decline. Additionally, AI algorithms are employed to detect genetic and proteomic biomarkers, facilitating early intervention. Cognitive and behavioral assessments have also benefited from AI, with tools that enhance the accuracy of neuropsychological tests and analyze speech and language patterns for early signs of dementia. Personalized treatment strategies have been revolutionized by AI-driven approaches. In drug discovery, virtual screening and drug repurposing, guided by predictive modelling, accelerate the identification of effective treatments. AI also aids in tailoring therapeutic interventions by predicting individual responses to treatments and monitoring patient progress, allowing for dynamic adjustment of care plans. Prognostic modelling, another critical area, utilizes AI to predict disease progression through longitudinal data analysis and risk prediction models. The integration of multi-modal data, combining clinical, genetic, and imaging information, enhances the accuracy of these predictions. Deep learning techniques are particularly effective in fusing diverse data types to uncover new insights into disease mechanisms and progression. Despite these advancements, challenges remain, including ethical considerations, data privacy, and the need for seamless integration of AI tools into clinical workflows. This review underscores the transformative potential of AI in AD management while highlighting areas for future research and development. By leveraging AI, the healthcare community can improve early diagnosis, personalize treatments, and predict disease outcomes more accurately, ultimately enhancing the quality of life for individuals with AD.

Authors

  • Mayur Kale
    Smt. Kishoritai Bhoyar College of Pharmacy, Kamptee, Nagpur, Maharashtra 441002, India. Electronic address: mayur.kale28@gmail.com.
  • Nitu Wankhede
    Smt. Kishoritai Bhoyar College of Pharmacy, Kamptee, Nagpur, Maharashtra 441002, India. Electronic address: nitu.wankhede211994@gmail.com.
  • Rupali Pawar
    Smt. Kishoritai Bhoyar College of Pharmacy, Kamptee, Nagpur, Maharashtra 441002, India. Electronic address: pawarrupali327@gmail.com.
  • Suhas Ballal
    Department of Chemistry and Biochemistry, School of Sciences, JAIN (Deemed to be University), Bangalore, Karnataka, India. Electronic address: b.suhas@jainuniversity.ac.in.
  • Rohit Kumawat
    Department of Neurology, National Institute of Medical Sciences, NIMS University, Jaipur, Rajasthan, India. Electronic address: Rohit.Kumawat1@nimsuniversity.org.
  • Manish Goswami
    Chandigarh Pharmacy College, Chandigarh Group of Colleges, Jhanjeri, Mohali, Punjab 140307, India. Electronic address: Manish2411.research@cgcjhanjeri.in.
  • Mohammad Khalid
    Bioactive Research Laboratory, Faculty of Pharmacy, Integral University, Uttar Pradesh, India.
  • Brijesh Taksande
    Smt. Kishoritai Bhoyar College of Pharmacy, Kamptee, Nagpur, Maharashtra 441002, India. Electronic address: brijeshtaksande@gmail.com.
  • Aman Upaganlawar
    SNJB's Shriman Sureshdada Jain College of Pharmacy, Neminagar, Chandwad, Nashik, Maharashtra, India. Electronic address: amanrxy@gmail.com.
  • Milind Umekar
    Smt. Kishoritai Bhoyar College of Pharmacy, Kamptee, Nagpur, Maharashtra 441002, India. Electronic address: drmilindumekar@gmail.com.
  • Spandana Rajendra Kopalli
    Department of Biomedical Chemistry, College of Biomedical and Health Science, Konkuk University, Chungju, Korea.
  • Sushruta Koppula
    b Department of Biotechnology , College of Biomedical and Health Sciences, Konkuk University , Chungju-si , Chungbuk , Republic of Korea.