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Return-Path: <70149-117416-28048-15755-rsinghal=adiance.com@mail.maasalongpremier.email> Delivered-To: adiance+spam@40-69-163-212.cprapid.com Received: from 40-69-163-212.cprapid.com by 40-69-163-212.cprapid.com with LMTP id bd+3AtVnOWU6XgAAeDY3lg (envelope-from <70149-117416-28048-15755-rsinghal=adiance.com@mail.maasalongpremier.email>) for <adiance+spam@40-69-163-212.cprapid.com>; Wed, 25 Oct 2023 19:09:09 +0000 Return-path: <70149-117416-28048-15755-rsinghal=adiance.com@mail.maasalongpremier.email> Envelope-to: rsinghal@adiance.com Delivery-date: Wed, 25 Oct 2023 19:09:09 +0000 Received: from [192.3.235.74] (port=51590 helo=yellow.maasalongpremier.email) by 40-69-163-212.cprapid.com with esmtp (Exim 4.96.2) (envelope-from <70149-117416-28048-15755-rsinghal=adiance.com@mail.maasalongpremier.email>) id 1qvjFa-0006GV-2X for rsinghal@adiance.com; Wed, 25 Oct 2023 19:09:08 +0000 DKIM-Signature: v=1; a=rsa-sha1; c=relaxed/relaxed; s=k1; d=maasalongpremier.email; h=Mime-Version:Content-Type:Date:From:Reply-To:Subject:To:Message-ID; i=WeirdFabric@maasalongpremier.email; bh=Y7APrXdBCh7Qbgx3bTE6zXjqABo=; b=rUU5EpBJ6cLyPc+1mjxJ3Itziz8Fg8mjxRR5txmemqp24XImMy7s0zKMab0/BxZG+Io/P9i6AIVq HRWerUKGGYTzXcmr4y32EWTvu6Ud/0tJ3ugJCQvk6n0Aq/cnBckOmQAEzjL3TXoXrPhH2OAIr38s HQHn0Lf29e/l15F9RVU= DomainKey-Signature: a=rsa-sha1; c=nofws; q=dns; s=k1; d=maasalongpremier.email; b=sK9pIG354oL8rQ5BWNAB7rQ3gl/fhxsVE5UnTAU6vfdov7fv80kd1aZTVFkiyuxaIAceqkUfmG50 XlzrChGrbdc0u1WihLtckhyyhzYH4wgdmd1J6ViP4TWnwt75LYchBPmbegYAqGPQkTUJQHEQEER7 fa8BQvrRRNHZY4Mz20I=; Mime-Version: 1.0 Content-Type: multipart/alternative; boundary="18dc188849d4b9b3c5558634fabe9906_1caa8_6d90" Date: Wed, 25 Oct 2023 20:00:45 +0200 From: "Weird Fabric" <WeirdFabric@maasalongpremier.email> Reply-To: "Shocking Magical Towel" <WeirdFabric@maasalongpremier.email> To: <rsinghal@adiance.com> Message-ID: <6sfv4geq8elg23x1-6ih8vcirtxwyfw95-1caa8-6d90@maasalongpremier.email> X-Spam-Status: Yes, score=24.6 X-Spam-Score: 246 X-Spam-Bar: ++++++++++++++++++++++++ X-Spam-Report: Spam detection software, running on the system "40-69-163-212.cprapid.com", has identified this incoming email as possible spam. The original message has been attached to this so you can view it or label similar future email. If you have any questions, see root\@localhost for details. Content preview: You'll Never Believe This "Magical" Towel Exists... http://maasalongpremier.email/cGLp6C9SE4lRWbrMDfFz5q4p1cIjbhXAKMoiSM7KUc7s9qhmBw http://maasalongpremier.email/jXnYQs7EK-AGMEQXqkfhsIST7Mli_CG5CUE62UsH95s-hwNlHg Content analysis details: (24.6 points, 5.0 required) pts rule name description ---- ---------------------- -------------------------------------------------- 4.5 URIBL_DBL_SPAM Contains a spam URL listed in the Spamhaus DBL blocklist [URIs: maasalongpremier.email] 1.2 RCVD_IN_BL_SPAMCOP_NET RBL: Received via a relay in bl.spamcop.net [Blocked - see <https://www.spamcop.net/bl.shtml?192.3.235.74>] 2.7 RCVD_IN_PSBL RBL: Received via a relay in PSBL [192.3.235.74 listed in psbl.surriel.com] 1.9 URIBL_ABUSE_SURBL Contains an URL listed in the ABUSE SURBL blocklist [URIs: maasalongpremier.email] 4.0 SPF_FAIL SPF: sender does not match SPF record (fail) [SPF failed: Please see http://www.openspf.org/Why?s=mfrom;id=70149-117416-28048-15755-rsinghal%3Dadiance.com%40mail.maasalongpremier.email;ip=192.3.235.74;r=40-69-163-212.cprapid.com] 0.0 HTML_MESSAGE BODY: HTML included in message 0.0 HTML_FONT_LOW_CONTRAST BODY: HTML font color similar or identical to background -0.1 DKIM_VALID Message has at least one valid DKIM or DK signature 0.1 DKIM_SIGNED Message has a DKIM or DK signature, not necessarily valid -0.1 DKIM_VALID_EF Message has a valid DKIM or DK signature from envelope-from domain -0.1 DKIM_VALID_AU Message has a valid DKIM or DK signature from author's domain 1.7 RAZOR2_CHECK Listed in Razor2 (http://razor.sf.net/) 2.4 RAZOR2_CF_RANGE_51_100 Razor2 gives confidence level above 50% [cf: 100] 2.0 RDNS_NONE Delivered to internal network by a host with no rDNS 0.5 FSL_BULK_SIG Bulk signature with no Unsubscribe 1.7 LONGLN_LOW_CONTRAST Excessively long line + hidden text 2.1 NORDNS_LOW_CONTRAST No rDNS + hidden text X-Spam-Flag: YES Subject: ***SPAM*** You'll Never Believe This "Magical" Towel Exists... --18dc188849d4b9b3c5558634fabe9906_1caa8_6d90 Content-Type: text/plain; Content-Transfer-Encoding: 8bit You'll Never Believe This "Magical" Towel Exists... http://maasalongpremier.email/cGLp6C9SE4lRWbrMDfFz5q4p1cIjbhXAKMoiSM7KUc7s9qhmBw http://maasalongpremier.email/jXnYQs7EK-AGMEQXqkfhsIST7Mli_CG5CUE62UsH95s-hwNlHg Insulin was one of Hodgkin's most extraordinary research projects. It began in 1934 when she was offered a small sample of crystalline insulin by Robert Robinson. The hormone captured her imagination because of the intricate and wide-ranging effect it has in the body. However, at this stage X-ray crystallography had not been developed far enough to cope with the complexity of the insulin molecule. She and others spent many years improving the technique. It took 35 years after taking her first photograph of an insulin crystal for X-ray crystallography and computing techniques to be able to tackle larger and more complex molecules like insulin. Hodgkin's dream of unlocking the structure of insulin was put on hold until 1969 when she was finally able to work with her team of young, international scientists to uncover the structure for the first time. Hodgkin's work with insulin was instrumental in paving the way for insulin to be mass-produced and used on a large scale for treatment of both type one and type two diabetes. She went on to cooperate with other laboratories active in insulin research, giving advice, and traveling the world giving talks about insulin and its importance for the future of diabetes. Solving the structure of insulin had two important implications for the treatment of diabetes, both making mass production of insulin possible and allowing scientists to alter the structure of insulin to create even better drug options for patients going forward --18dc188849d4b9b3c5558634fabe9906_1caa8_6d90 Content-Type: text/html; Content-Transfer-Encoding: 8bit <html> <head> <title>Newsletter</title> </head> <body><a href="http://maasalongpremier.email/7AhvG3wIb-erZ1OrUzThYMSuVisIuVU1_5adRRTdsB8g5fmvfQ"><img src="http://maasalongpremier.email/65ec75a24ab5ed6e54.jpg" /><img height="1" src="http://www.maasalongpremier.email/v50Hq3bn8qARq0Ft0IvT1Jkmw2harny5s4aJkN8h3EieH2HLCw" width="1" /></a> <center> <div style="width:600px; padding:10px; text-align:left; border:2px solid #000000; font-family:arial; text-align:left;"> <center><a href="http://maasalongpremier.email/cGLp6C9SE4lRWbrMDfFz5q4p1cIjbhXAKMoiSM7KUc7s9qhmBw" http:="" microsoft.com="" rel="sponsored" target="blank"><img http:="" microsoft.com="" src="http://maasalongpremier.email/d4ba680dbeaadd4c83.png" /></a></center> <br /> <br /> This is a complete <strong>game-changer</strong>, and your life will never be the same.<br /> <br /> In a nutshell, this super cool <strong>Nano-technology</strong> does this for you...<br /> <br /> * Lets you replace ALL the chemical cleaners in your home, because you can unlock the extremely powerful of water to clean...<br /> <br /> Without chemicals! 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It began in 1934 when she was offered a small sample of crystalline insulin by Robert Robinson. The hormone captured her imagination because of the intricate and wide-ranging effect it has in the body. However, at this stage X-ray crystallography had not been developed far enough to cope with the complexity of the insulin molecule. She and others spent many years improving the technique. It took 35 years after taking her first photograph of an insulin crystal for X-ray crystallography and computing techniques to be able to tackle larger and more complex molecules like insulin. Hodgkin's dream of unlocking the structure of insulin was put on hold until 1969 when she was finally able to work with her team of young, international scientists to uncover the structure for the first time. Hodgkin's work with insulin was instrumental in paving the way for insulin to be mass-produced and used on a large scale for treatment of both type one and type two diabetes. She went on to cooperate with other laboratories active in insulin research, giving advice, and traveling the world giving talks about insulin and its importance for the future of diabetes. Solving the structure of insulin had two important implications for the treatment of diabetes, both making mass production of insulin possible and allowing scientists to alter the structure of insulin to create even better drug options for patients going forward</p> </center> </body> </html> --18dc188849d4b9b3c5558634fabe9906_1caa8_6d90--
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