Rabu, 25 November 2009

Terong, Antioksidan dan Pengikat Zat Besi

Terong, Antioksidan dan Pengikat Zat Besi
SELASA, 24 NOVEMBER 2009 | 07:58 WIB

KOMPAS.com - Sayuran yang satu ini tak asing lagi di telinga. Bentuknya yang khas dengan warnanya yang ungu membuatnya mudah dikenali dari sayuran lainnya.

Tahukah Anda bahwa terong mempunyai sifat antioksidan yang baik karena kandungan fitonutriennya mengandung komponen fenol seperti caffeic, asam klorogenik serta flavonoid seperti nasunin?

Para peneliti dari US Agricultural Service di Beltsville, Maryland menyatakan komponen fenol dalam terong berkhasiat sebagai antioksidan. Selain fenol, di dalam terong terdapat komponen lain yang bersifat melindungi tubuh dari infeksi bakteri dan jamur.

Meskipun terong bervariasi, tapi ternyata di dalam semua variasi terdapat kandungan fenol yang predominan yaitu asam klorogenik. Selain sebagai antiradikal bebas, komponen asam ini juga berfungsi sebagai antikanker, antimikroba dan anti LDL serta antiviral.

Selain asam klorogenik, komponen flavonoid seperti nasunin juga merupakan antioksidan serta pemberi proteksi membran sel tubuh terhadap radikal bebas dengan memberikan makanan bergizi bagi otak. Membran sel di dalam otak mengandung lipid yang tidak hanya memproteksi sel tubuh dari radikal bebas tapi juga mengabsorbsi nutrisi untuk tubuh dan membuang hasil metabolisme tubuh.

Nasunin juga berfungsi sebagai pengikat zat besi jika terjadi kelebihan zat besi di dalam tubuh. Zat besi memang baik untuk fungsi imunitas dan transport oksigen dalam tubuh. Tapi jika berlebihan, zat besi di dalam tubuh akan meningkatkan risiko penyakit jantung dan kanker.

Wanita yang masih mengalami menstruasi akan kehilangan zat besi setiap bulannya sehingga risiko mengidap penyakit jantung akan lebih kecil. Tetapi pada wanita yang sudah menopause dan juga para pria, zat besi tidak mudah dikeluarkan sehingga bisa terjadi penumpukan di dalam tubuh.

Untuk itu, nasunin yang bersifat mengikat zat besi ini bisa mengurangi pembentukan radikal bebas dan melindungi kerusakan sel tubuh serta mengurangi kerusakan akibat radikal bebas di sendi-sendi tubuh.

dr.Intan Airlina Febiliawanti

Editor: acandra

http://kesehatan.kompas.com/read/xml/2009/11/24/0758535/terong.antioksidan.dan.pengikat.zat.besi

Minggu, 22 November 2009

Asteroid Explosion over Indonesia

Asteroid Explosion over Indonesia

Written by Nicholos Wethington ShareThis

The dusty tail as a result of an asteroid explosion over Bone, Indonesia on October 8th.

This has taken awhile to filter into the Western press, but an asteroidexploded over the town of Bone,Indonesia on October 8th at around 11am local time. Initially, locals called the police to report that a plane had crashed, or that an earthquake shook the ground, as reported in theJakarta Globe. The Jakarta Post quoted Thomas Djamaluddin, head of the Lapan Center for Climate and Atmosphere Science Implementation as saying that the explosion was due to a meteorite or bit of space junk that had entered the Earth's atmosphere. As it turns out after further analysis, the explosion wasdue to an asteroid about 5-10 meters (15-30 feet) in diameter exploding in the air between 15 and 20 km (nine to 12 miles) above sea level. Nobody was injured as a result of the explosion, but it evidently caused quite a scare with the local population!

In a press release from the Near Earth Object (NEO) program, the explosion was detected by many International Monitoring System (IMS) infrasound stations, five of them 10,000 km (6200 miles) away, and one 18,000 km (11,100 miles) from the blast. These stations monitor seismic waves, infrasound (low frequency soundwaves), hydroacoustic, and radionuclide emissions as part of the Comprehensive Nuclear-Test-Ban Treaty Organization (CTBTO). They are well equipped to monitor explosions of nuclear weapons, but also detect other events such as meteorite impacts and asteroid explosions, tsunamis and earthquakes.

When analyzed, the amount and intensity of low frequency sound waves created by the explosion allowed researchers Elizabeth Silber and Peter Brown of the Meteor Infrasound Group at the Univ. of Western Ontario to determine that the explosion caused by the asteroid was on the scale of 30 – 50 kilotons of TNT. To give you an idea of how powerful of an explosion this is, the bombs dropped over Hiroshima and Nagasaki in World War II exploded with the force of 20 kilotons of TNT.

A video of the explosion can be seen here: Asteroid Explodes over Bone, Indonesia. The fireball – also called a bolide – created a dusty tail upon entering the atmosphere of the Earth. It is estimated that the asteroid was traveling around 72,000 km/hour (45,000 miles/hour) when it hit the atmosphere. As an asteroid enters the thick Earth atmosphere, it slows down abruptly and heats up due to the process of ablation. If this asteroid were made of metal instead of rock, it would likely have impacted the ground causing a lot of damage. Fortunately for the residents of Bone and the surrounding area, the rock broke up in a large fireball instead. There haven't been any reports of pieces that have touched down as of yet.

Asteroids of this size are predicted to impact the Earth about every 2-12 years, and the last one of this magnitude was a bolide over the Marshall Islands on February 1, 1994. That impactor was estimated to be between 4.4 and 13.5 meters. A full analysis of that event is available on the SAO/NASA Astrophysics Data System.

Of course, events like this always raise the question of why the object wasn't detectedbefore it even entered the atmosphere. The NEO program has cataloged over 600 objects in the size of 10 meters, but there are many, many more out there. The cost of a monitoring and cataloging all of the Near Earth Objects would be in the hundreds of millions of dollars, but more events like this may spur the political will and capital to further efforts at protecting human lives from the potential damage of meteorite impacts.

Source: Night Sky, Spaceweather.com, JPL Press Release

http://www.universetoday.com/2009/10/30/asteroid-explosion-over-indonesia/

Sabtu, 21 November 2009

Strong Leonid Meteor Shower

Strong Leonid Meteor Shower Peaks Early Tuesday Morning


One of the best annual meteor showers will peak in the pre-dawn hours Tuesday, and for some skywatchers the show could be quite impressive.

The best seats are in Asia, but North American observers should be treated to an above average performance of the Leonid meteor shower, weather permitting. The trick for all observers is to head outside in the wee hours of the morning – between 1 a.m. and dawn – regardless where you live.

The Leonids put on a solid show every year, if skies are clear and moonlight does not interfere. This year the moon is near its new phase, and not a factor. For anyone in the Northern Hemisphere with dark skies, away from urban and suburban lighting, the show should be worth getting up early to see.

"We're predicting 20 to 30 meteors per hour over the Americas, and as many as 200 to 300 per hour over Asia," said Bill Cooke of NASA's Meteoroid Environment Office. Other astronomers who work in the nascent field of meteor shower prediction have put out similar forecasts.

Urban dwellers and suburbanites will see far fewer, as the fainter meteors will be drowned out by local lights.

Behind the Leonids

The Leonids are created by the comet Tempel-Tuttle, which passes through the inner solar system every 33 years on its orbit around the sun. Each time by, it leaves a new river of debris, mostly bits of ice and rock no bigger than a sand grain but a few the size of a pea or marble.

Over time, these cosmic streams spread out, so predicting exactly what will happen is difficult.

"We can predict when Earth will cross a debris stream with pretty good accuracy," Cooke said. "The intensity of the display is less certain, though, because we don't know how much debris is in each stream."

When Earth plows into the debris, the bits hit the atmosphere and vaporize, creating sometimes dramatic streaks of light and the occasional fireball with a smoky-looking trail that can remain visible for several minutes.

The Leonid stream is moving in the opposite direction of Earth, producing impact speeds of 160,000 mph (72 kilometers per second) – higher than many other meteors.

"Such speeds tend to produce meteors with hues of white, blue, aquamarine and even green," says Joe Rao, SPACE.com's skywatching columnist.

How to watch

The best viewing will be in rural areas. Get out of town if you can. If you have local lights, scout a location in advance where the lights are blocked by a building, tree or hill.

Dress warmly, and take a blanket or lounge chair so you can lie back and scan as much of the sky as possible. "At this time of year, meteor watching can be a long, cold business," Rao reminds people.

Leonids can appear anywhere, but if you trace them back, they all point to a hub, or radiant, in the constellation Leo – hence the name.

Give your eyes 15 minutes to adjust to the darkness. Then give the show at least a half-hour. The hourly rates stated above typically come in bursts, with lulls that may test your patience. No special equipment is needed. Telescopes and binoculars are of no use because meteors move too quickly.

When to watch

Earth will pass through one of the denser debris streams at around 4 a.m. EST (1 a.m. PST) Tuesday. If you have only an hour or less to watch, center it around this time. Leo will be high in the sky for East Coast skywatchers, putting more meteors into view. In the West, Leo will be low in the eastern sky at this time, so fewer shooting stars will be above the horizon, and therefore Western skywatchers should also try to stick it out until daybreak.

Across Europe, the best bet is to watch anytime between 1 a.m. and daybreak local time.

The planet will pass through an even denser stream later, just before dawn Wednesday in Indonesia and China, but that show won't be visible from North America because it will be daytime here.

One truth about the Leonids: They always produce, and they sometimes produce spectacular, unforgettable fireballs.

SPACE.com offers rich and compelling content about space science, travel and exploration as well as astronomy, technology, business news and more. The site boasts a variety of popular features including ourspace image of the day and other space pictures,space videos, Top 10s, Trivia, podcasts and Amazing Images submitted by our users. Join our community, sign up for our free newsletters and register for our RSS Feeds today!

http://news.yahoo.com/s/space/20091116/sc_space/strongleonidmeteorshowerpeaksearlytuesdaymorning;_ylt=Ah7Wop9an2Q6iP6X1huYvSxXr7sF;_ylu=X3oDMTNxZjViaXFmBGFzc2V0A3NwYWNlLzIwMDkxMTE2L3N0cm9uZ2xlb25pZG1ldGVvcnNob3dlcnBlYWtzZWFybHl0dWVzZGF5bW9ybmluZwRwb3MDMTcEc2VjA3luX3BhZ2luYXRlX3N1bW1hcnlfbGlzdARzbGsDc3Ryb25nbGVvbmlk

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Quick restart of Big Bang machine stuns scientists

Quick restart of Big Bang machine stuns scientists


FILE - This May 31, 2007 file photo, shows a view of the LHC (large hadronAP – FILE - This May 31, 2007 file photo, shows a view of the LHC (large hadron collider) in its tunnel at …

GENEVA – Scientists moved Saturday to prepare the world's largest atom smasher for exploring the depths of matter after successfully restarting the $10 billion machine following more than a year of repairs.

The nuclear physicists working on the Large Hadron Collider were surprised that they could so quickly get beams of protons whizzing near the speed of light during the restart late Friday, said James Gillies, spokesman for the European Organization for Nuclear Research.

The machine was heavily damaged by a simple electrical fault in September last year.

Some scientists had gone home early Friday and had to be called back as the project jumped ahead, Gillies said.

At a meeting early Saturday "they basically had to tear up the first few pages of their PowerPoint presentation which had outlined the procedures that they were planning to follow," he said. "That was all wrapped up by midnight. They are going through the paces really very fast."

The European Organization for Nuclear Research has taken the restart of the collider step by step to avoid further setbacks as it moves toward new scientific experiments — probably starting in January — regarding the makeup of matter and the universe.

CERN, as it is known, had hoped by 7 a.m. (0600 GMT) Saturday to get the beams to travel the 27-kilometer (17-mile) circular tunnel under the Swiss-French border, but things went so well Friday evening that they had achieved the operation seven hours earlier.

Praise from scientists around the world was quick. "First beam through the Atlas!" whooped an Internet message from Adam Yurkewicz, an American scientist working on the massive Atlas detector on the machine.

"I congratulate the scientists and engineers that have worked to get the LHC back up and running," said Dennis Kovar of the U.S. Department of Energy, which participates in the project.

"The LHC is a machine unprecedented in size, in complexity, and in the scope of the international collaboration that has built it over the last 15 years," said Kovar.

The next step, possibly later Saturday, was to decide whether to collide beams in the detectors to get necessary measuring data or to try using the machine to accelerate the protons to higher energy than any machine has ever reached, said Gillies.

In the meantime CERN is using about 2,000 superconducting magnets — some of them 15 meters (50 feet) long — to improve control of the beams of billions of protons so they will remain tightly bunched and stay clear of sensitive equipment.

Gillies said the scientists are being very conservative.

"They're leaving a lot of time so that the guys who are operating the machine are under no pressure whatsoever to tick off the boxes and move forward," he said.

Officials said Friday evening's progress was an important step on the road toward scientific discoveries at the LHC, which are expected in 2010.

"We've still got some way to go before physics can begin, but with this milestone we're well on the way," CERN Director General Rolf Heuer said.

With great fanfare, CERN circulated its first beams Sept. 10, 2008. But the machine was sidetracked nine days later when a badly soldered electrical splice overheated and set off a chain of damage to the magnets and other parts of the collider.

Steve Myers, CERN's director for accelerators, said the improvements since then have made the LHC a far better understood machine than it was a year ago.

The LHC is expected soon to be running with more energy the world's current most powerful accelerator, the Tevatron at Fermilab near Chicago. It is supposed to keep ramping up to seven times the energy of Fermilab in coming years.

This will allow the collisions between protons to give insights into dark matter and what gives mass to other particles, and to show what matter was in the microseconds of rapid cooling after the Big Bang that many scientists theorize marked the creation of the universe billions of years ago.

When the machine is fully operational, the magnets will control the beams of protons and send them in opposite directions through two parallel tubes the size of fire hoses. In rooms as large as cathedrals 300 feet (100 meters) below the ground the magnets will force them into huge detectors to record what happens.

The LHC operates at nearly absolute zero temperature, colder than outer space, which allows thesuperconducting magnets to guide the protons most efficiently.

Physicists have used smaller, room-temperature colliders for decades to study the atom. They once thought protons and neutrons were the smallest components of the atom's nucleus, but the colliders showed that they are made of quarks and gluons and that there are other forces and particles. And scientists still have other questions about antimatter, dark matter and supersymmetry they want to answer with CERN's new collider.

The Superconducting Super Collider being built in Texas would have been bigger than the LHC, but in 1993 the U.S. Congress canceled it after costs soared and questions were raised about its scientific value

Gillies said the LHC should be ramped up to 3.5 trillion electron volts some time next year, which will be 3 1/2 times as powerful as Fermilab. The two laboratories are friendly rivals, working on equipment and sharing scientists.

But each would be delighted to make the discovery of the elusive Higgs boson, the particle or field that theoretically gives mass to other particles. That is widely expected to deserve the Nobel Prize for physics.

More than 8,000 physicists from other labs around the world also have work planned for the LHC. The organization is run by its 20 European member nations, with support from other countries, including observers Japan, India, Russia and the U.S. that have made big contributions.

http://news.yahoo.com/s/ap/20091121/ap_on_sc/eu_sci_big_bang_machine

Selasa, 17 November 2009

Menentukan Waktu Kelahiran Bayi Berbobot Kecil

Selasa, 17/11/2009 15:05 WIB

Menentukan Waktu Kelahiran Bayi Berbobot Kecil

Vera Farah Bararah - detikHealth


img
(Foto: sciencedaily)
New York, Bayi berbobot kecil atau yang dinamakanIntrauterine Growth Restriction (IUGR) sangat berisiko ketika dilahirkan. Bobotnya yang kecil membuatnya rentan mengalami masalah kesehatan mulai dari pernafasan hingga gangguan otak.

Kondisi janin berbobot rendah ini biasanya lebih kecil dari jumlah bulan kehamilannya. Kini dengan mengandalkan USG dan informasi fisiologis dengan algoritma berdasarkan data yang ada, dapat diketahui kapan sebaiknya bayi dilahirkan.

Sebelumnya, dokter hanya menggunakan USG dalam melihat kesehatan bayi IUGR untuk menentukan kapan waktu terbaik melahirkan sang bayi.

"Dokter harus mempertimbangkan waktu yang terbaik untuk melahirkan, karena jika terlalu lama di dalam rahim kemungkinan bisa mengalami kerusakan otak sedangkan jika ingin dilahirkan harus dipastikan dulu apakah bayi sudah memiliki jantung yang kuat untuk bertahan hidup di luar rahim," ujar Prof Ofer Barnea dari departemen TAU Biomedical Engineering, seperti dikutip dari ScienceDaily, Selasa (17/11/2009).

Dengan menggunakan pasangan model antara matematika dengan informasi fisiologis bayi, maka dokter mendapatkan data penting perkembangan sistem sirkulasi janin. Dengan begitu dapat ditentukan kapan bayi cukup kuat untuk bertahan hidup sendiri.

Penemuan ini merupakan salah satu kemajuan besar dalam bidang kedokteran khususnya pediatrik. Peneliti mengukur data yang didapatkan dari bayi lalu memindahkannya ke program yang sudah ada untuk memperkirakan tekanan, aliran dan parameter lain yang dibutuhkan.

Sistem ini pertama kali dikembangkan untuk mengobati sindrom jantung kiri hypoplastic, yaitu suatu kondisi dimana sisi jantung bagian kiri tidak berfungsi.

"Dengan menggunakan kombinasi ini diharapkan bisa mendapatkan kesehatan bayi yang lebih baik, lebih sedikit cacat lahir dan tingkat kelangsungan hidup yang lebih baik," ujar Prof Barnea.

Para ilmuwan berharap pengembangan alat ini bisa untuk memonitor kondisi bayi. Saat ini sedang dilakukan studi kelayakan dan diperkirakan cara ini bisa masuk ke rumah sakit dalam waktu dua tahun ke depan.

Mutasi Gen Kunci Panjang Umur Manusia 1 Abad

Selasa, 17/11/2009 14:24 WIB

Mutasi Gen Kunci Panjang Umur Manusia 1 Abad

Irna Gustia - detikHealth


img
Ibu Suri Wafat 101 Tahun (dailymail)
London, Rata-rata manusia hidup selama 60-70 tahun tahun. Tapi tak sedikit orang yang berumur hingga mencapai angka 100 tahun. Ternyata gen yang mengalami mutasi (mutan) menjadi rahasia sehat dan panjang umur manusia usia 1 abad.

Dalam penelitian terbaru, ilmuwan menemukan hubungan yang jelas antara manusia berumur 100 tahun dengan enzim hiperaktif yang bisa memperbaiki sel-sel. Peneliti mengatakan penemuan ini dapat digunakan untuk anti penuaan.

Manusia yang berumur 100 tahun atau lebih secara efektif memiliki mekanika tubuh yang terus menerus melakukan perbaikan fungsi tubuh agar bisa tetap bekerja. Dibandingkan dengan manusia normal yang sel-sel tubuhnya memiliki pusat kendali yang terkait dengan waktu.

Peneliti dari Albert Einstein College of Medicine di AS mempelajari sekelompok orang Yahudi Ashkenazi dan menemukan mereka yang hidup lama karena variasi mutan dari enzim telomerase.

Enzim ini bekerja untuk membangun kembali telomeres yang menutup setiap ujung sel kromosom yang bisa menghentikan terurainya enzim.

"Manusia yang panjang umur mampu mempertahankan panjang telomeres yang lebih baik," kata Youin Suh dari Yeshiva University seperti dilansir dari dailymail, Selasa (17/11/2009).

Semakin panjang telemore, sel akan semakin terlindungi dan proses penuaan berjalan lebih lambat.

Dalam laporan di Proceedings of the National Academy of Sciences, peneliti mengatakan mereka mempelajari komunitas Yahudi Ashkenazi karena berkelompok sangat erat sehingga memudahkan untuk mengidentifikasi penyakit yang disebabkan perbedaan genetik.

Mereka terlihat sangat tua tetapi tetapi sangat sehat dengan rata-rata usia 97 tahun. Para manusia usia 100 tahun dan keturunannya memiliki gen mutan yang mempertahankan panjang telomeres dimana sel mereka membelah dari waktu ke waktu.

Ini berarti sebagian besar mereka terhindari dari penyakit yang berkaitan dengan usia seperti penyakit kardiovaskular (pembuluh darah) dan diabetes.

12 Jenis Kanker Bisa Dideteksi Sekaligus

Selasa, 17/11/2009 17:23 WIB

12 Jenis Kanker Bisa Dideteksi Sekaligus

Nurul Ulfah - detikHealth


img
ilustrasi (Foto : Goodhealth)
Jakarta, Setiap sel dalam tubuh manusia berpotensi menjadi sel kanker sehingga skrining dan deteksi dini sangat penting dilakukan. Kini dengan teknologi baru, 12 jenis kanker bisa langsung dideteksi dengan satu kali pemeriksaan menggunakan Biomarker C-12 Protein Chip.

Pemeriksaan 12 kanker sekaligus baru pertama kali di Indonesia yang dirintis Laboraorium Klinik Prodia Jakarta. Bekerjasama dengan negara Malaysia, kini 12 jenis kanker bisa terdeteksi langsung hanya dengan menggunakan sebuah chip.

Selama ini, pemeriksaan dan skrining kanker hanya bisa dilakukan satu persatu. Tapi kini, dengan teknologi Biomarker C-12 Protein Chip, 12 jenis kanker bisa langsung terdeteksi, antara lain kanker hati, paru, lambung, esophagus (kerongkongan), prostat, usus besar, payudara, ovarium, pankreas, rahim, testis, kandung kemih, tiroid dan endometrium.

"Jadi harga pemeriksaannya pun akan lebih murah. Karena jika kita melakukan skrining 12 kanker satu persatu, harganya bisa mencapai Rp 3-4 juta. Tapi dengan teknologi ini harganya cuma Rp 1,5 juta saja," ujar Ampi Retnowardani, Marketing Communication Manager Prodia i acara 'Konsep Baru dalam Skrining Kanker dengan Biomarker C-12 Protein Chip' di Laboratorium Klinik Prodia, Jakarta, Selasa (17/11/2009)..

Menurut data dari Anti Cancer Research tahun 2004, kenker diketahui sebagai penyebab kematian nomor 2 di dunia setelah jantung. Tapi pada tahun 2010 diprediksikan menjadi pembunuh nomor 1. Biasanya penderita kanker baru sadar dirinya terkena kanker saat memasuki stadium lanjut.

"Itu karena sel kanker tumbuhnya perlahan-lahan dan pada stadium awal umumnya tidak bergejala. Ditambah lagi dengan rasa malas untuk memeriksakan diri," ujar Dr Agus Kosasih, SpPK, konsultan Prodia dan penanggung jawab laboratorium patologi RS Kanker Dharmais.

"Prinsip dasar dari Biomarker C-12 Protein Chip adalah mendeteksi sinyal tumor atau kanker yang ada dalam tubuh melalui sampel darah. Secara sederhananya, darah dimasukkan ke dalam chip, lalu chip reader akan membaca sinyal adanya kanker dari protein asing dalam darah yang nanti disesuaikan dengan standarnya," jelas Dr Agus.

Tujuan utama dari penggunaan chip ini sebenarnya untuk memantau efek pengobatan terhadap perkembangan kanker. "Tapi bisa juga untuk sekedar ingin tahu saja, apa kita punya kanker atau tidak dalam tubuh. Karena meski kelihatan dari luar sehat-sehat saja, tapi sebenarnya setiap sel dalam tubuh kita berpotensi menjadi kanker. Apalagi kalau sudah ada benjolan yang agak aneh, harusnya langsung curiga sampai terbukti itu benar-benar kanker atau bukan," tutur Dr Agus.

Namun sayangnya, meski teknologi ini sudah ada di Indonesia, tapi alatnya hingga kini masih berada di Malaysia karena Biomarker C-12 Protein Chip ini merupakan hasil kerjasama laboratorium klinik Prodia dengan HSC Medical Centre Kulala Lumpur Malaysia.

"Kita hanya melakukan sampling darah disini. Untuk pemeriksaannya, kita kirim ke Malaysia. Tapi dengan begitu kan menguntungkan pasien juga, karena tidak usah repot-repot ke Malaysia. Hasilnya sudah bisa diketahui seminggu kemudian," ujar Ampi.

Jadi dengan alat ini, bisa diketahui bibit kanker apa saja yang bersarang dalam tubuh kita. Seperti paket komplit saja, mudah, murah dan cepat.