Literature DB >> 29312794

Camptothecin (CPT) and its derivatives are known to target topoisomerase I (Top1) as their mechanism of action: did we miss something in CPT analogue molecular targets for treating human disease such as cancer?

Fengzhi Li1, Tao Jiang2, Qingyong Li3, Xiang Ling1,4.   

Abstract

Camptothecin (CPT) was discovered from plant extracts more than 60 years ago. Since then, only two CPT analogues (irinotecan and topotecan) have been approved for cancer treatment, although several thousand CPT derivatives have been synthesized and many of them were actively studied in our research community over the past 6+ decades. In this review article, we briefly summarize: (1) the discovery and early development of CPTs, (2) the recognized CPT mechanism of action (MOA), (3) the synthesis of CPT and CPT analogues, and (4) the structure-activity relationship (SAR) of CPT and its analogues. Next, we provide evidence that certain CPT analogues can exert improved efficacy with low toxicity independently of topoisomerase I (Top1) inhibition; instead, these CPT analogues use novel MOAs by targeting important cancer survival-associated oncogenic proteins and/or by bypassing various treatment-resistant mechanisms. We then present a comprehensive review of the most advanced CPT analogues in clinical development, with the goal of resolving why no new CPTs have been FDA approved for cancer treatment, beyond irinotecan and topotecan. We argue that new CPT Top1 inhibitor drugs are unlikely being found to be significantly better than irinotecan and/or topotecan in terms of the overall antitumor activity and toxicity. The significance of CPT analogues that possess novel MOAs has not been sufficiently recognized so far. In our opinion, this is a research area with great potential to make a breakthrough for development of the next generation of CPT analogues that possess high efficacy (due to novel targets) and low toxicity (due to low inhibition of Top1 activity/function) for effective treatment of human disease, including cancer.

Entities:  

Keywords:  Camptothecin (CPT); FL118; Mcl-1; XIAP; analogue/derivative; cIAP2; clinical trials; novel mechanism of action; survivin; topoisomerase I (Top1)

Year:  2017        PMID: 29312794      PMCID: PMC5752681     

Source DB:  PubMed          Journal:  Am J Cancer Res        ISSN: 2156-6976            Impact factor:   6.166


  341 in total

1.  Combined radiation and 9-nitrocamptothecin (rubitecan) in the treatment of locally advanced pancreatic cancer.

Authors:  K R Kemp; J G Liehr; B Giovanella
Journal:  Ann N Y Acad Sci       Date:  2000       Impact factor: 5.691

2.  Testing of the topoisomerase 1 inhibitor Genz-644282 by the pediatric preclinical testing program.

Authors:  Peter J Houghton; Richard Lock; Hernan Carol; Christopher L Morton; Richard Gorlick; E Anders Kolb; Stephen T Keir; C Patrick Reynolds; Min H Kang; John M Maris; Catherine A Billups; Mindy X Zhang; Stephen L Madden; Beverly A Teicher; Malcolm A Smith
Journal:  Pediatr Blood Cancer       Date:  2011-05-05       Impact factor: 3.167

3.  CRLX101, a Nanoparticle-Drug Conjugate Containing Camptothecin, Improves Rectal Cancer Chemoradiotherapy by Inhibiting DNA Repair and HIF1α.

Authors:  Xi Tian; Minh Nguyen; Henry P Foote; Joseph M Caster; Kyle C Roche; Christian G Peters; Pauline Wu; Lata Jayaraman; Edward G Garmey; Joel E Tepper; Scott Eliasof; Andrew Z Wang
Journal:  Cancer Res       Date:  2016-10-26       Impact factor: 12.701

4.  Phase I and pharmacologic study of 9-aminocamptothecin given by 72-hour infusion in adult cancer patients.

Authors:  W Dahut; N Harold; C Takimoto; C Allegra; A Chen; J M Hamilton; S Arbuck; M Sorensen; F Grollman; H Nakashima; R Lieberman; M Liang; W Corse; J Grem
Journal:  J Clin Oncol       Date:  1996-04       Impact factor: 44.544

5.  Novel camptothecin derivative BNP1350 in experimental human ovarian cancer: determination of efficacy and possible mechanisms of resistance.

Authors:  Annemarie H Van Hattum; Hennie M M Schlüper; Frederick H Hausheer; Herbert M Pinedo; Epie Boven
Journal:  Int J Cancer       Date:  2002-07-01       Impact factor: 7.396

6.  A phase II study of 9-nitro-camptothecin in patients with previously treated metastatic breast cancer.

Authors:  Kathy D Miller; Sharon E Soule; LaTrice G Haney; Patricia Guiney; Darryl J Murry; Luigi Lenaz; Show-Li Sun; George W Sledge
Journal:  Invest New Drugs       Date:  2004-01       Impact factor: 3.850

7.  A phase II study of liposomal lurtotecan (OSI-211) in patients with topotecan resistant ovarian cancer.

Authors:  Michael V Seiden; Franco Muggia; Allan Astrow; Ursula Matulonis; Susanna Campos; Maria Roche; Julia Sivret; Jason Rusk; Emma Barrett
Journal:  Gynecol Oncol       Date:  2004-04       Impact factor: 5.482

8.  Phase II and dose-escalation with or without granulocyte colony-stimulating factor study of 9-aminocamptothecin in relapsed and refractory lymphomas.

Authors:  W H Wilson; R Little; D Pearson; E S Jaffe; S M Steinberg; B D Cheson; R Humphrey; D R Kohler; P Elwood
Journal:  J Clin Oncol       Date:  1998-07       Impact factor: 44.544

9.  In vitro transport of gimatecan (7-t-butoxyiminomethylcamptothecin) by breast cancer resistance protein, P-glycoprotein, and multidrug resistance protein 2.

Authors:  Serena Marchetti; Roos L Oostendorp; Dick Pluim; Monique van Eijndhoven; Olaf van Tellingen; Alfred H Schinkel; Richard Versace; Jos H Beijnen; Roberto Mazzanti; Jan H Schellens
Journal:  Mol Cancer Ther       Date:  2007-12       Impact factor: 6.261

10.  Phase I/IIa study of combination chemotherapy with CKD-602 and cisplatin in patients with recurrent epithelial ovarian cancer.

Authors:  Hee Seung Kim; Sok-Bom Kang; Sang-Soo Seo; Seung-Su Han; Jae Weon Kim; Noh-Hyun Park; Soon-Beom Kang; Hyo-Pyo Lee; Yong Sang Song
Journal:  Ann N Y Acad Sci       Date:  2009-08       Impact factor: 5.691

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  41 in total

1.  Measurement of NLG207 (formerly CRLX101) nanoparticle-bound and released camptothecin in human plasma.

Authors:  Keith T Schmidt; Cody J Peer; Alwin D R Huitema; Monique D Williams; Susan Wroblewski; Jan H M Schellens; Ravi A Madan; William D Figg
Journal:  J Pharm Biomed Anal       Date:  2019-12-27       Impact factor: 3.935

Review 2.  Comparison of Strategies to Overcome Drug Resistance: Learning from Various Kingdoms.

Authors:  Hiroshi Ogawara
Journal:  Molecules       Date:  2018-06-18       Impact factor: 4.411

3.  Critical roles of Rad54 in tolerance to apigenin-induced Top1-mediated DNA damage.

Authors:  Zilu Zhao; Xiaohua Wu; Fang He; Cuifang Xiang; Xiaoyu Feng; Xin Bai; Xin Liu; Jingxia Zhao; Shunichi Takeda; Yong Qing
Journal:  Exp Ther Med       Date:  2021-03-18       Impact factor: 2.447

4.  Synthesis of dihydrofuran-3-one and 9,10-phenanthrenequinone hybrid molecules and biological evaluation against colon cancer cells as selective Akt kinase inhibitors.

Authors:  Jingjing Huang; Yufei Chen; Yinfeng Guo; Ming Bao; Kemiao Hong; Yuanqing Zhang; Wenhao Hu; Jinping Lei; Yongqiang Liu; Xinfang Xu
Journal:  Mol Divers       Date:  2022-06-25       Impact factor: 2.943

Review 5.  Exploring the anticancer activities of novel bioactive compounds derived from endophytic fungi: mechanisms of action, current challenges and future perspectives.

Authors:  Rubina Kousar; Muhammad Naeem; Mohamad Ikhwan Jamaludin; Ammara Arshad; Aisyah Nazirah Shamsuri; Nelofar Ansari; Samreen Akhtar; Abu Hazafa; Jalal Uddin; Ajmal Khan; Ahmed Al-Harrasi
Journal:  Am J Cancer Res       Date:  2022-07-15       Impact factor: 5.942

Review 6.  Clinically Applicable Inhibitors Impacting Genome Stability.

Authors:  Anu Prakash; Juan F Garcia-Moreno; James A L Brown; Emer Bourke
Journal:  Molecules       Date:  2018-05-13       Impact factor: 4.411

7.  Assessment of NR4A Ligands That Directly Bind and Modulate the Orphan Nuclear Receptor Nurr1.

Authors:  Paola Munoz-Tello; Hua Lin; Pasha Khan; Ian Mitchelle S de Vera; Theodore M Kamenecka; Douglas J Kojetin
Journal:  J Med Chem       Date:  2020-12-08       Impact factor: 7.446

8.  TOP1 modulation during melanoma progression and in adaptative resistance to BRAF and MEK inhibitors.

Authors:  Érica Aparecida de Oliveira; Jagat Chauhan; Julia Rezende da Silva; Larissa Anastacio da Costa Carvalho; Diogo Dias; Danielle Gonçalves de Carvalho; Luis Roberto Masao Watanabe; Vito W Rebecca; Gordon Mills; Yiling Lu; Aloisio Souza Felipe da Silva; Márcia Edilaine Lopes Consolaro; Meenhard Herlyn; Patricia A Possik; Colin R Goding; Silvya Stuchi Maria-Engler
Journal:  Pharmacol Res       Date:  2021-09-22       Impact factor: 7.658

9.  Design and synthesis of C-aryl angular luotonins via a one-pot aza-Nazarov-Friedlander sequence and their Topo-I inhibition studies along with C-aryl vasicinones and luotonins.

Authors:  Sivappa Rasapalli; Vamshikrishna Reddy Sammeta; Zachary F Murphy; James A Golen; Keli Agama; Yves Pommier; Sergey N Savinov
Journal:  Bioorg Med Chem Lett       Date:  2021-03-30       Impact factor: 2.940

10.  A novel topoisomerase I inhibitor DIA-001 induces DNA damage mediated cell cycle arrest and apoptosis in cancer cell.

Authors:  Jiaqi Liu; Guohe Geng; Guang Liang; Ling Wang; Kuntian Luo; Jian Yuan; Shiguang Zhao
Journal:  Ann Transl Med       Date:  2020-02
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