Unveiling piperazine-quinoline hybrids as potential multi-target directed anti-Alzheimer's agents: design, synthesis and biological evaluation

被引:4
|
作者
Nagani, Afzal [1 ,2 ]
Shah, Moksh [1 ]
Patel, Salman [1 ]
Patel, Harnisha [1 ]
Parikh, Vruti [1 ]
Patel, Ashish [3 ]
Patel, Sagar [4 ]
Patel, Kirti [5 ]
Parmar, Hardik [5 ]
Bhimani, Bhargav [6 ]
Yadav, Mange Ram [2 ]
机构
[1] Parul Univ, Parul Inst Pharm, Vadodara, Gujarat, India
[2] Parul Univ, Res & Dev Cell, Vadodara, Gujarat, India
[3] Charotar Univ Sci & Technol, Ramanbhai Patel Coll Pharm, CHARUSAT Campus, Anand, Gujarat, India
[4] Univ Toronto, Sunnybrook Res Inst, Sunnybrook Hlth Sci Ctr, Toronto, ON, Canada
[5] Maharaja Sayajirao Univ Baroda, Fac Pharm, Vadodara, Gujarat, India
[6] Piramal Pharm Solut, Ahmadabad, Gujarat, India
关键词
Piperazine; Quinoline; Acetylcholinesterase; Butyrylcholinesterase; Metal chelation; Antioxidant; MOLECULAR DOCKING; BUTYRYLCHOLINESTERASE INHIBITORS; AMYLOID-BETA; DERIVATIVES; DISEASE; COPPER; IRON; METALS; DRUGS; ZINC;
D O I
10.1007/s11030-024-10927-4
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Multi-target directed ligands (MTDLs) have recently been popularized due to their outstanding efficacy in combating the complicated features of Alzheimer's disease. This study details the synthesis of piperazine-quinoline-based MTDLs through a multicomponent Petasis reaction, targeting multiple factors such as AChE, BuChE, metal chelation to restore metal dyshomeostasis, and antioxidant activity. Some of the synthesized compounds exhibited notable inhibitory activity against AChE and BuChE enzymes at specific concentrations. Among the synthesized compounds compound (95) containing a 4-chloroaniline moiety and a 4-methoxybenzyl group displayed the most promising inhibitory activities against AChE (IC50 3.013 mu M) and BuChE (IC50 = 3.144 mu M). Compound (83) featuring 2-methoxyaniline and 4-fluorobenzyl substituents, exhibited the highest BuChE inhibition (IC50 1.888 mu M). Notably, compound (79) demonstrated 93-times higher selectivity for BuChE over AChE. Molecular docking and molecular dynamics simulations were also performed to explore the binding modes and stability of these compounds with the AChE amd BuChE proteins. Further, kinetics study was performed against AChE for comounds (83 and 95) which indicated mixed inhibition of the enzyme by these compounds, Amongs the synthesized compounds, nine compounds were assessed for their antioxidant activity, displaying significant antioxidant properties with IC50 values ranging from 156 mu M to 310 mu M. Moreover, all the compounds demonstrated metal chelating tendency with Cu+2, Zn+2, Fe+2, Fe+3 and Al+3. This study provides insights into the design of novel MTDLs, highlighting compound (95) as a potential candidate for combating Alzheimer's disease.
引用
收藏
页码:1453 / 1478
页数:26
相关论文
共 50 条
  • [31] Design, Synthesis and Evaluation of Hesperetin Derivatives as Potential Multifunctional Anti-Alzheimer Agents
    Li, Bo
    Huang, Ai-Ling
    Zhang, Yi-Long
    Li, Zeng
    Ding, Hai-Wen
    Huang, Cheng
    Meng, Xiao-Ming
    Li, Jun
    MOLECULES, 2017, 22 (07):
  • [32] Design, synthesis and biological evaluation of new benzoxazolone/benzothiazolone derivatives as multi-target agents against Alzheimer's disease
    Erdogan, Merve
    Kilic, Burcu
    Sagkan, Rahsan Ilikci
    Aksakal, Fatma
    Ercetin, Tugba
    Gulcan, Hayrettin O.
    Dogruer, Deniz S.
    EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 2021, 212
  • [33] Design, synthesis and anti-Alzheimer's disease activity study of xanthone derivatives based on multi-target strategy
    Kou, Xiaodi
    Song, Lulu
    Wang, Yunhua
    Yu, Qiao
    Ju, Hui
    Yang, Aihong
    Shen, Rui
    BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2020, 30 (04)
  • [34] Novel donepezil-chalcone-rivastigmine hybrids as potential multifunctional anti-Alzheimer's agents: Design, synthesis, in vitro biological evaluation, in vivo and in silico studies
    Sang, Zhipei
    Bai, Ping
    Ban, Yujuan
    Wang, Keren
    Wu, Anguo
    Mi, Jing
    Hu, Jiaqi
    Xu, Rui
    Zhu, Gaofeng
    Wang, Jianta
    Zhang, Jiquan
    Wang, Changning
    Tan, Zhenghuai
    Tang, Lei
    BIOORGANIC CHEMISTRY, 2022, 127
  • [35] Synthesis and biological evaluation of 2-arylbenzofuran derivatives as potential anti-Alzheimer's disease agents
    Yun, Yinling
    Miao, Yuhang
    Sun, Xiaoya
    Sun, Jie
    Wang, Xiaojing
    JOURNAL OF ENZYME INHIBITION AND MEDICINAL CHEMISTRY, 2021, 36 (01) : 1346 - 1356
  • [36] Synthesis and biological evaluation of 3-arylbenzofuranone derivatives as potential anti-Alzheimer's disease agents
    Yang, Jie
    Yun, Yinling
    Miao, Yuhang
    Sun, Jie
    Wang, Xiaojing
    JOURNAL OF ENZYME INHIBITION AND MEDICINAL CHEMISTRY, 2020, 35 (01) : 805 - 814
  • [37] Design, synthesis, biological evaluation, and molecular dynamics of novel cholinesterase inhibitors as anti-Alzheimer's agents
    Shamsimeymandi, Reza
    Pourshojaei, Yaghoub
    Eskandari, Khalil
    Mohammadi-Khanaposhtani, Maryam
    Abiri, Ardavan
    Khodadadi, Arash
    Langarizadeh, Amin
    Sharififar, Fariba
    Amirheidari, Bagher
    Akbarzadeh, Tahmineh
    Lotfian, Hania
    Foroumadi, Alireza
    Asadipour, Ali
    ARCHIV DER PHARMAZIE, 2019, 352 (07)
  • [38] Design, synthesis and biological evaluation of 1-aryldonepezil analogues as anti-Alzheimer's disease agents
    Luo, Jiao
    Xu, Jing-Jing
    Ren, Hui-Jun
    Xu, Jin-Bu
    Gao, Feng
    Fang, Dong-Mei
    Wan, Lin-Xi
    FUTURE MEDICINAL CHEMISTRY, 2024, 16 (10) : 983 - 997
  • [39] Panaxadiol carbamate derivatives: Synthesis and biological evaluation as potential multifunctional anti-Alzheimer agents
    Quan, Yin-Sheng
    Li, Xiaoting
    Pang, Lei
    Deng, Hao
    Chen, Fener
    Lee, Jung Joon
    Quan, Zhe-Shan
    Liu, Peng
    Guo, Hong-Yan
    Shen, Qing-Kun
    BIOORGANIC CHEMISTRY, 2024, 143
  • [40] Design, synthesis, and biological evaluation of thienopyrimidine and thienotriazine derivatives as multitarget anti-Alzheimer agents
    Eissa, Kholoud, I
    Kamel, Mona M.
    Mohamed, Lamia W.
    Galal, Mai A.
    Kassab, Asmaa E.
    DRUG DEVELOPMENT RESEARCH, 2022, 83 (06) : 1394 - 1407